TL;DR: The most common adverse reactions (≥20%) occurring at a higher incidence in patients receiving 177Lu-PSMA-617 were fatigue, dry mouth, nausea, anemia, decreased appetite, and constipation as mentioned in this paper .
Abstract: On March 23, 2022, the FDA approved Pluvicto (lutetium Lu 177 vipivotide tetraxetan, also known as 177Lu-PSMA-617) for the treatment of adult patients with prostate-specific membrane antigen (PSMA)-positive metastatic castration-resistant prostate cancer (mCRPC) who have been treated with androgen receptor pathway inhibition and taxane-based chemotherapy. The recommended 177Lu-PSMA-617 dose is 7.4 gigabecquerels (GBq; 200 mCi) intravenously every 6 weeks for up to six doses, or until disease progression or unacceptable toxicity. The FDA granted traditional approval based on VISION (NCT03511664), which was a randomized (2:1), multicenter, open-label trial that assessed the efficacy and safety of 177Lu-PSMA-617 plus best standard of care (BSoC; n = 551) or BSoC alone (n = 280) in men with progressive, PSMA-positive mCRPC. Patients were required to have received ≥1 androgen receptor pathway inhibitor, and one or two prior taxane-based chemotherapy regimens. There was a statistically significant and clinically meaningful improvement in overall survival (OS), with a median OS of 15.3 months in the 177Lu-PSMA-617 plus BSoC arm and 11.3 months in the BSoC arm, respectively (HR: 0.62; 95% confidence interval: 0.52-0.74; P < 0.001). The most common adverse reactions (≥20%) occurring at a higher incidence in patients receiving 177Lu-PSMA-617 were fatigue, dry mouth, nausea, anemia, decreased appetite, and constipation. The most common laboratory abnormalities that worsened from baseline in ≥30% of patients receiving 177Lu-PSMA-617 were decreased lymphocytes, decreased hemoglobin, decreased leukocytes, decreased platelets, decreased calcium, and decreased sodium. This article summarizes the FDA review of data supporting traditional approval of 177Lu-PSMA-617 for this indication.
TL;DR: In this article , the benefits and risks of including anthracycline and taxane chemotherapy for early-stage breast cancer substantially improved survival compared with no chemotherapy, however, concerns about short-term and long-term side-effects of Anthracylin-Taxane have led to increased use of Taxane chemotherapy without Anthracycline, which could compromise efficacy.
TL;DR: The only regulatory-approved PSMA-targeted radioligand therapy (PSMA-RLT) to date is lutetium-177-psMA-617 in the setting of PSMA positive metastatic castration-resistant prostate cancer that has failed androgen receptor pathway inhibitors and taxane chemotherapy as mentioned in this paper .
Abstract: Metastatic prostate cancer continues to be an incurable disease. Despite all the novel therapies approved in the past two decades, overall patient outcomes remain relatively poor, and these patients die on a regular basis. Clearly, improvements in current therapies are needed. Prostate-specific membrane antigen (PSMA) is a target for prostate cancer given its increased expression on the surface of the prostate cancer cells. PSMA small molecule binders include PSMA-617 and PSMA-I&T and monoclonal antibodies such as J591. These agents have been linked to different radionuclides including beta-emitters such as lutetium-177 and alpha-emitters such as actinium-225. The only regulatory-approved PSMA-targeted radioligand therapy (PSMA-RLT) to date is lutetium-177–PSMA-617 in the setting of PSMA-positive metastatic castration-resistant prostate cancer that has failed androgen receptor pathway inhibitors and taxane chemotherapy. This approval was based on the phase III VISION trial. Many other clinical trials are evaluating PSMA-RLT in various settings. Both monotherapy and combination studies are underway. This article summarizes pertinent data from recent studies and provides an overview of human clinical trials in progress. The field of PSMA-RLT is rapidly evolving, and this therapeutic approach will likely play an increasingly important role in the years to come.
TL;DR: In this paper , the authors explored the mechanisms of action of paclitaxel and its derivatives, the different formulations available, as well as the molecular pathways of cancer resistance, potential risks, and other therapeutic applications.
Abstract: Over the years, many biological and synthetic agents have been explored and tested in attempts to halt the spread of cancer and/or cure it. Currently, several natural compounds have and are being considered in this regard. For example, paclitaxel is a potent anticancer drug that originates from the tree Taxus brevifolia. Paclitaxel has several derivatives, namely, docetaxel and cabazitaxel. These agents work by disrupting microtubule assembling dynamics and inducing cell cycle arrest at the G2/M phase of the cell cycle, ultimately triggering apoptosis. Such features have helped to establish paclitaxel as an authoritative therapeutic compound against neoplastic disorders. After the completion of compound (hemi) synthesis, this drug received approval for the treatment of solid tumors either alone or in combination with other agents. In this review, we explore the mechanisms of action of paclitaxel and its derivatives, the different formulations available, as well as the molecular pathways of cancer resistance, potential risks, and other therapeutic applications. In addition, the role of paclitaxel in hematological malignancies is explored, and potential limitations in the therapeutic use of paclitaxel at the clinical level are examined. Furthermore, paclitaxel is known to cause increased antigen presentation. The immunomodulatory potential of taxanes, alone or in combination with other pharmacologic agents, is explored. Despite terpene-alkaloids derivatives’ anti-mitotic potential, the impact of this class of drugs on other oncogenic pathways, such as epithelial-to-mesenchymal transition and the epigenetic modulation of the transcription profile of cancer cells, is also analyzed, shedding light on potential future chemotherapeutic approaches to cancer.
TL;DR: TRITON2 (NCT02952534) results demonstrated the efficacy of rucaparib 600 mg BID in patients with metastatic castration-resistant prostate cancer (mCRPC) associated with a BRCA or other DNA damage repair (DDR) gene alteration as discussed by the authors .
TL;DR: Taxol (paclitaxel) is the best-selling natural-source anticancer drug ever produced and one of the most common prescriptions in the treatment of breast, lung, and ovarian cancers, saving countless lives around the world as discussed by the authors .
Abstract: Taxol (paclitaxel), the most well-known taxane diterpenoid, is the best-selling natural-source anticancer drug ever produced and one of the most common prescriptions in the treatment of breast, lung, and ovarian cancers, saving countless lives around the world. Structurally, Taxol possesses a highly oxygenated [6-8-6-4] core bearing 11 stereocenters, seven of which are contiguous chiral centers. Moreover, the extremely strained bicyclo[5.3.1] undecane ring system with a bridgehead double bond is a unique structural feature. All these features make Taxol a highly challenging synthetic target. Tremendous synthetic efforts from more than 60 research groups around the world have already culminated in ten total syntheses and three formal syntheses, as well as more than 60 synthetic model studies of Taxol. This review is intended to provide a long-overdue appraisal of the great achievements in the total syntheses of Taxol reported in the last few decades. In doing so, we summarize the development of synthesis toward Taxol from 1994 to 2022, including the evolution of synthetic strategy for accessing this complex molecular scaffold and key lessons learned from such endeavors. Finally, we briefly discuss the future of the research in this area.
TL;DR: In this article , the crystal structure of baccatin III was solved at 1.9 Å resolution, and the results showed that taxanes bind better to microtubules than to tubulin because tubulin assembly is linked to a βM-loop conformational reorganization.
Abstract: Paclitaxel (Taxol) is a taxane and a chemotherapeutic drug that stabilizes microtubules. While the interaction of paclitaxel with microtubules is well described, the lack of high-resolution structural information on a tubulin-taxane complex precludes a comprehensive description of the binding determinants that affect its mechanism of action. Here, we solved the crystal structure of baccatin III the core moiety of paclitaxel-tubulin complex at 1.9 Å resolution. Based on this information, we engineered taxanes with modified C13 side chains, solved their crystal structures in complex with tubulin, and analyzed their effects on microtubules (X-ray fiber diffraction), along with those of paclitaxel, docetaxel, and baccatin III. Further comparison of high-resolution structures and microtubules’ diffractions with the apo forms and molecular dynamics approaches allowed us to understand the consequences of taxane binding to tubulin in solution and under assembled conditions. The results sheds light on three main mechanistic questions: (1) taxanes bind better to microtubules than to tubulin because tubulin assembly is linked to a βM-loopconformational reorganization (otherwise occludes the access to the taxane site) and, bulky C13 side chains preferentially recognize the assembled conformational state; (2) the occupancy of the taxane site has no influence on the straightness of tubulin protofilaments and; (3) longitudinal expansion of the microtubule lattices arises from the accommodation of the taxane core within the site, a process that is no related to the microtubule stabilization (baccatin III is biochemically inactive). In conclusion, our combined experimental and computational approach allowed us to describe the tubulin-taxane interaction in atomic detail and assess the structural determinants for binding.
TL;DR: In this article , the association of HER2DX scores with pathological complete response (pCR) according to hormone receptor status and various treatment regimens, and survival outcome according to pCR status was evaluated.
TL;DR: Gupta et al. as discussed by the authors conducted a single-centre randomized phase III trial to evaluate the efficacy and toxicity of adding platinum to standard neoadjuvant chemotherapy in triple-negative breast cancer patients.
Abstract:
Background: Despite several studies, the impact of adding platinum on long-term outcomes in triple-negative breast cancer (TNBC) has not been definitively established. We conducted a single-centre randomized phase III trial to evaluate the efficacy and toxicity of adding platinum to standard neoadjuvant chemotherapy in these patients. Methods: Patients with histopathological diagnosis of TNBC without evidence of distant metastases who were planned to be treated with neoadjuvant chemotherapy (NACT) were randomized to experimental or control arms after stratification by menopausal status (premenopausal or perimenopausal, and postmenopausal) and stage [operable breast cancer (OBC, clinical T1-3, N0-1, M0), and locally advanced breast cancer (LABC, cT4 or N2-3, M0)]. NACT in control arm included paclitaxel 100 mg/m2 once per week for 8 weeks followed by doxorubicin (60 mg/m2) or epirubicin (90 mg/m2) plus cyclophosphamide (600 mg/m2) once every 21 days for 4 cycles while in experimental arm carboplatin (area-under-curve 2) was added once per week for 8 weeks with paclitaxel. After NACT patients received standard surgery for primary tumor and axillary lymph nodes (LN) followed by radiotherapy. The primary endpoint was disease-free survival (DFS) and the secondary endpoints were overall survival (OS), pathological complete response (pCR, absence of invasive cancer from breast and LN), and toxicity. Results: Between April 2010 and January 2020, 720 (355 control, 365 experimental) patients with a median age of 46 (25-69) years [< 50 years, 502 (69.7%), premenopausal 418 (58.2%)], were included in the study, of whom 285 (39.6%) had OBC and 435 (60.4%) had LABC, with a median clinical tumor size of 6.0 (1.2- 20.0) cm. At a median follow-up of 67.6 (18.9-142.2) months, in the experimental and control arms, the 5-year DFS were 70.6% (95% CI 65.7-75.5%) and 64.5% (95% CI 59.4-69.6%), respectively (HR 0.79, 95% CI 0.61-1.02, p=0.073), 5-year OS were 74.0 (95% CI 69.3-78.7%) and 66.7% (95% CI 61.6-71.8%), respectively (HR 0.75, 95% CI 0.57-0.98, p=0.034), and pCR were 55.2% (95% CI 49.7-69.5%) and 41.5% (95% CI 36.2-47.0%), respectively (p=0.0004). In subgroup analyses, the benefit of carboplatin was confined to patient’s < 50 years, with significant interaction between treatment and age. In women < 50 years of age, in experimental versus control arms, 5-year DFS and OS were 74.5% vs 62.3% (p=0.003, interaction p=0.003) and 76.8% vs 65.7% (p=0.003, interaction p=0.004), respectively. Addition of carboplatin had a significant beneficial impact on OS after adjusting for baseline clinical tumor size and age in a Cox model (HR 0.75, 95% CI 0.58-0.98, p=0.038). In experimental and control arms, numbers of patients with any grade >/=3 toxicity were 140 (38.5%) and 107/355 (30.14%), respectively, (p=0.02), grade >/=3 neutropenia were 2/364 (0.55%) and 1/355 (0.28%), respectively, grade >/=3 thrombocytopenia were 1/364 (0.27%) and 0 (0%), respectively, and febrile neutropenia were 26/364 (7.14%%) and 18/355 (5.07%), respectively (p=0.25). Conclusions: This study, to our knowledge the largest reported trial of neoadjuvant platinum in TNBC thus far, suggests that addition of carboplatin to sequential taxane-anthracycline neoadjuvant chemotherapy results in substantial and clinically meaningful improvement in disease-free and overall survival in young patients with TNBC and should be the standard of care in these patients.
Citation Format: Sudeep Gupta, Nita S. Nair, Rohini Hawaldar, Vaibhav Vanmali, Vani Parmar, Seema Gulia, Jaya Ghosh, Shalaka Joshi, Rajiv Sarin, Tabassum Wadasadawala, Tejal Panhale, Sangeeta Desai, Tanuja Shet, Asawari Patil, Garvit Chitkara, Sushmita Rath, Jyoti Bajpai, Meenakshi Thakkur, Rajendra Badwe. Addition of platinum to sequential taxane-anthracycline neoadjuvant chemotherapy in patients with triple-negative breast cancer: A phase III randomized controlled trial [abstract]. In: Proceedings of the 2022 San Antonio Breast Cancer Symposium; 2022 Dec 6-10; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2023;83(5 Suppl):Abstract nr GS5-01.
TL;DR: In the phase 3 TROPiCS-02 study, SG showed both significant progression-free survival (PFS) benefit and overall survival (OS) benefit (median 14.4 vs 11.2 mo; HR, 0.79; P=0.02; ESMO 2022) at the 2nd planned interim OS analysis vs TPC in pretreated HR+/HER2-mBC as discussed by the authors .
Abstract:
Background: HR+/HER2– mBC, the most common subset of breast cancer, is treated with sequential endocrine therapy + targeted agents followed by sequential single-agent chemotherapy (CT), with increasingly shorter benefit duration with each subsequent treatment. High Trop-2 expression is observed in breast cancer regardless of subtype. SG is a Trop-2-directed antibody-drug conjugate approved for pre-treated metastatic triple-negative breast cancer. In the phase 3 TROPiCS-02 study, SG showed both significant progression-free survival (PFS) benefit (HR, 0.66; P<0.001; median 5.5 vs 4.0 mo; JCO 2022) at the primary analysis and overall survival (OS) benefit (median 14.4 vs 11.2 mo; HR, 0.79; P=0.02; ESMO 2022) at the 2nd planned interim OS analysis vs TPC in pretreated HR+/HER2- mBC. Here we compare efficacy outcomes for SG and TPC by Trop-2 expression. Methods: Eligible pts had HR+/HER2- locally recurrent inoperable or mBC; received ≥1 prior taxane, endocrine therapy, a CDK4/6 inhibitor; and received 2-4 prior CT regimens for mBC. Pts were randomized 1:1 to receive SG (10 mg/kg IV on d 1 and 8, every 21 d) or TPC (eribulin, gemcitabine, capecitabine, or vinorelbine) until disease progression or unacceptable toxicity. The primary endpoint was PFS by independent review per RECIST v1.1; OS and objective response rate (ORR) were key secondary endpoints. ORR was assessed by blinded independent central review per RECIST v1.1. Membrane Trop-2 expression on archival tumor tissue was assessed by immunohistochemistry and expressed as a histochemical score (H-score; range, 0-300); efficacy outcomes were assessed in H-score <100 and ≥100 groups. The H-score <100 group was further divided into H-score ≤10 and >10- <100 subgroups to assess the activity of SG in pts with very low Trop-2 expression. Results: Data cut-off was January 3, 2022 for PFS (median follow-up, 10.2 mo) and July 1, 2022 for OS (median follow-up, 12.5 mo). In total, 543 pts were randomized to receive SG (n=272) vs TPC (n=271). Pts had a median of 3 prior CT regimens for mBC; 95% had visceral metastases. There were 238 (88%) vs 224 (83%) Trop-2-evaluable pts in the SG vs TPC groups, respectively; of these, 95% had tumors with Trop-2 H-score >0. Of Trop-2-evaluable pts, 192 (42%) and 270 (58%) had H-scores <100 and ≥100, respectively. Demographics and baseline characteristics were generally consistent across H-score groups. PFS and OS benefit was observed for SG vs TPC across both Trop-2 groups (Table). Median PFS was 5.3 vs 4.0 mo (HR, 0.77; 95% CI, 0.54-1.09) and 6.4 vs 4.1 mo (HR, 0.60; 95% CI, 0.44-0.81) in the H-score <100 and ≥100 groups; median OS was 14.6 vs 11.3 mo (HR, 0.75; 95% CI, 0.54-1.04) and 14.4 vs 11.2 mo (HR, 0.83; 95% CI, 0.62-1.11), respectively. Disease response was observed in the 34 pts with H-score ≤10 who received SG. In pts who received SG, those with H-score ≤10, >10- <100, and ≥100 had ORRs of 24%, 18%, and 23%, respectively. The safety profile for SG by Trop-2 H-score was consistent with previous reports. Conclusions: In this TROPiCS-02 post-hoc analysis, improved efficacy with SG vs TPC was observed regardless of Trop-2 expression, and there was no clear level of Trop-2 expression at which a better treatment effect for SG was observed. These results support SG as an effective novel treatment option for patients with pretreated, endocrine-resistant HR+/HER2- mBC, and reinforce that Trop-2 testing is not required for SG treatment.
Table
Citation Format: Hope Rugo, Aditya Bardia, Frederik Marmé, Javier Cortés, Peter Schmid, Delphine Loirat, Olivier Trédan, Eva Ciruelos, Florence Dalenc, Patricia Gómez Pardo, Komal Jhaveri, Monica Motwani, Oh Kyu Yoon, Hao Wang, Wendy Verret, Sara Tolaney. Sacituzumab Govitecan (SG) vs Treatment of Physician’s Choice (TPC): Efficacy by Trop-2 Expression in the TROPiCS-02 Study of Patients (Pts) With HR+/HER2– Metastatic Breast Cancer (mBC) [abstract]. In: Proceedings of the 2022 San Antonio Breast Cancer Symposium; 2022 Dec 6-10; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2023;83(5 Suppl):Abstract nr GS1-11.
TL;DR: In this article , the cabazitaxel taxane was encapsulated in poly(alkyl cyanoacrylate) (PACA) nanoparticles (NPs), designed to improve intraperitoneal delivery.
TL;DR: The CHIPOR multicentric randomized phase III trial (NCT01376752), conducted in 31 institutions, enrolled patients with a first platinum-sensitive relapse (platinum-free interval of ≥6 months) of EOC as mentioned in this paper .
Abstract: 5510 Background: Standard treatment for patients with first platinum-sensitive relapse of epithelial ovarian cancer (EOC) is based on surgery and second-line systemic chemotherapy (CT). The role of hyperthermic intra-peritoneal chemotherapy (HIPEC) remains uncertain. Methods: The CHIPOR multicentric randomized phase III trial (NCT01376752), conducted in 31 institutions, enrolled patients with a first platinum-sensitive relapse (platinum-free interval of ≥6 months) of EOC. Patients were treated with 6 cycles of platinum and taxane based CT ± bevacizumab, and those amenable to a complete cytoreductive surgery at the end of CT were enrolled and randomly assigned to receive HIPEC (cisplatin 75 mg/m² at 41°C for 60 min) or not. Randomization was performed during complete cytoreductive surgery, stratified by center, surgical outcome (no residual disease vs residual <0.25 cm), chemotherapy-free interval before relapse, and PARP inhibitor use (yes vs no). The primary endpoint was overall survival (OS). The target sample size was 404 evaluable patients, providing 80% power at 5% alpha after 268 deaths. Secondary endpoints included progression-free survival (PFS), peritoneal PFS, patient-reported outcomes, safety, and postoperative morbidity and mortality (≤60 days after surgery). Results: Between May 11, 2011, and May 14, 2021, 415 patients were randomized. Baseline characteristics were balanced between treatment arms. At the data cutoff (Jan 8, 2023), with a median follow-up of 6.2 years, 268 patients (65%) had died. Efficacy results are summarized below. Conclusions: HIPEC significantly improves OS and peritoneal PFS of women with first platinum-sensitive relapse of EOC treated with second-line platinum-based CT followed by secondary complete cytoreductive surgery. Ongoing analyses, including patient reported outcome, BRCA status, bevacizumab exposure, and subsequent therapy, will be presented. Clinical trial information: NCT01376752 . [Table: see text]
TL;DR: Early metastatic relapse of triple-negative breast cancer (mTNBC) after anthracyclins and/or taxanes based (A/T) primary treatment represents a highly aggressive cancer situation requiring urgent characterisation and handling as mentioned in this paper .
Abstract: Early metastatic relapse of triple-negative breast cancer (mTNBC) after anthracyclins and/or taxanes based (A/T) primary treatment represents a highly aggressive cancer situation requiring urgent characterisation and handling. Epidemio-Strategy-Medico-Economical-Metastatic Breast Cancer (ESME-MBC) database, a multicenter, national, observational cohort (NCT03275311) provides recent data on this entity.All ESME patients diagnosed between 2008 and 2020 with mTNBC occurring as a relapse after a systemic neoadjuvant/adjuvant taxane and/or anthracycline-based chemotherapy were included. Early relapses were defined by a metastatic diagnosis up to 12 months of the end of neo/adjuvant A/T chemotherapy. We assessed overall survival (OS) and progression-free-survival under first-line treatment (PFS1) by early versus late relapse (≥12 months).Patients with early relapse (N = 881, 46%) were younger and had a larger tumour burden at primary diagnosis than those with late relapses (N = 1045). Early relapse rates appeared stable over time. Median OS was 10.1 months (95% CI 9.3-10.9) in patients with early relapse versus 17.1 months (95% CI 15.7-18.2) in those with late relapse (adjusted hazard-ratio (aHR): 1.92 (95% CI 1.73-2.13); p < 0.001). The median PFS1 was respectively 3.1 months (95% CI 2.9-3.4) and 5.3 months (95% CI 5.1-5.8); (aHR: 1.66; [95% CI 1.50-1.83]; p < 0.001). Among early relapsed patients, a higher number of metastatic sites, visceral disease but not treatment types, were independently associated with a poorer OS.These real-world data provide strong evidence on the dismal prognosis, higher treatment resistance and major unmet medical need associated with early relapsed mTNBC. Database registration: clinicaltrials.gov Identifier NCT032753.
TL;DR: A review of the progress made in improving taxane production through genetic engineering techniques can be found in this paper , where the authors focus on the progress of genetically transforming the gymnosperm Taxus spp. cell cultures and transformed roots.
Abstract: Paclitaxel (PTX) and its derivatives are diterpene alkaloids widely used as chemotherapeutic agents in the treatment of various types of cancer. Due to the scarcity of PTX in nature, its production in cell cultures and plant organs is a major challenge for plant biotechnology. Although significant advances have been made in this field through the development of metabolic engineering and synthetic biology techniques, production levels remain insufficient to meet the current market demand for these powerful anticancer drugs. A key stumbling block is the difficulty of genetically transforming the gymnosperm Taxus spp. This review focuses on the progress made in improving taxane production through genetic engineering techniques. These include the overexpression of limiting genes in the taxane biosynthetic pathway and transcription factors involved in its regulation in Taxus spp. cell cultures and transformed roots, as well as the development and optimization of transformation techniques. Attempts to produce taxanes in heterologous organisms such as bacteria and yeasts are also described. Although promising results have been reported, the transfer of the entire PTX metabolic route has not been possible to date, and taxane biosynthesis is still restricted to Taxus cells and some endophytic fungi. The development of a synthetic organism other than Taxus cells capable of biotechnologically producing PTX will probably have to wait until the complete elucidation of its metabolic pathway.
TL;DR: In this paper , Cabozantinib (C) and nivolumab (N) were combined with anti-VEGF and immunotherapies for locally advanced/metastatic sarcomas.
Abstract: 11503 Background: Collectively, sarcomas have demonstrated less benefit from immunotherapy than many other cancers. Pts with AS have limited options, particularly after taxane chemotherapy. Although AS is a vascular malignancy, anti-VEGF therapies have minimal monotherapy clinical activity. Some cutaneous AS have a high UV damage signature, but other AS often do not. Cabozantinib (C) is a multikinase inhibitor that may alter PD-1 expression in regulatory T cells, promoting an immune permissive environment when combined with nivolumab (N), a fully human anti PD-1 MAB. We hypothesize that the combination of C+N will be an effective therapy in AS, across AS subtypes. Methods: This open-label multi-arm study enrolled pts with locally advanced/metastatic AS. Arm 3, reported here, enrolled pts who had received a taxane for AS (including adjuvant) prior to study enrollment. Pts were not restricted on number of prior lines, but prior anti-VEGF and immunotherapies were not allowed. Eligible pts received C (40 mg po daily) with N (480 mg IV every 4 wks). Treatment was permitted beyond progressive disease (PD) in the 1 st 12 wks (4 wk confirmatory scan), but PD response was censored at 12 wks. The Simon 2-stage design (null and alternative overall response rate (ORR) were 10% and 35%, respectively) required ≥1 confirmed response in 9 pts in the 1 st stage, and >4 of 18 pts (91.4% power, alpha 0.095) for the primary endpoint. Secondary endpoints were adverse events (AEs), progression free, overall survival (PFS, OS), and pt-reported outcomes (PRO). Results: 21 eligible pts [median age 66 yrs (32-92), 10 female] received ≥1 dose of C+N. Primary disease sites: 12 cutaneous (scalp/face), 1 liver, 2 breast, 6 other. All pts received prior taxanes (11/21 = 52% as adjuvant therapy) and 5/21 (24%) had also received prior anthracycline (all relapsed AS). Primary endpoint: 13 of the first 18 evaluable patients (72%) experienced objective response (OR, 95%CI: 47%-90%). After a median follow-up of 11.2 mo, 13 of 21 pts achieved OR (11 partial response, 2 complete), for ORR 62% (95%CI: 38-82%). Responses were seen in pts with primary cutaneous disease 7/12 (58%) and noncutaneous disease 6/9 (67%). Median PFS was 9.6 mo (5.3-NR), and OS 20.5 mo (14.4-NR). Off treatment reasons include: progressive disease (14), comorbid condition unrelated to AS or study (1); 6 pts remain on study. Grade (G) 3 hypertension was the only possibly treatment related AE (TRAE) occurring in ³10%. No G 4/5 TRAE were reported. Conclusions: C + N demonstrated significant antitumor activity in taxane-pretreated AS and was well tolerated without new safety concerns. Activity of the combination was seen across AS subtypes. PRO and exploratory analyses are ongoing. Support: U10CA180821, U10CA180882, U24 CA196171; U10CA180820; https://acknowledgments.alliancefound.org . U10CA180868; U10CA180888. NCT04339738. Clinical trial information: NCT04339738 .
TL;DR: In this paper , the authors reviewed the current treatment options for metastatic castration-resistant prostate cancer (mCRPC) with insights on new available therapeutic strategies, including Chemotherapy with docetaxel or cabazitaxel, as well as treatment with androgen receptor axis targeted therapies, and Radium-223.
Abstract: The therapeutic landscape of metastatic hormone sensitive and metastatic castration-resistant prostate cancer (mCRPC) is rapidly changing. We reviewed the current treatment options for mCRPC, with insights on new available therapeutic strategies. Chemotherapy with docetaxel or cabazitaxel (for patients progressing on docetaxel), as well as treatment with androgen receptor axis targeted therapies, and Radium-223 are well-established treatment options for patients with mCRPC. The advent of theragnostic in prostate cancer established Lutetium-177 (177Lu)-PSMA-617 as a new standard of care for PSMA-positive mCRPC previously treated with ARAT and taxane-based chemotherapy. Olaparib, a poly-ADP-ribose polymerase (PARP) inhibitor, is approved for selected patients with mCRPC progressed on ARATs and in combination with abiraterone acetate as first-line treatment for mCRPC. Immunotherapy showed limited efficacy in unselected patients with mCRPC and novel immunotherapy strategies need to be explored. The search for biomarkers is a growing field of interest in mCRPC, and predictive biomarkers are needed to support the choice of treatment and the development of tailored strategies.
TL;DR: In this article , the impact of prior taxane chemotherapy on response and survival outcomes in metastatic castration-resistant prostate cancer (mCRPC) patients after [177Lu]Lu-PSMA-RLT was evaluated.
Abstract: Radioligand therapy (RLT) with 177Lu-prostate-specific membrane antigen (PSMA) inhibitors ([177Lu]Lu-PSMA) is currently approved for patients with metastatic castration-resistant prostate cancer (mCRPC) after progression with at least 1 taxane and 1 androgen-receptor-pathway inhibitor. However, the impact of prior chemotherapy on [177Lu]Lu-PSMA-RLT outcomes is debatable, with various studies showing inconsistent results. This study was conducted to precisely evaluate the impact of prior taxane chemotherapy on response and survival outcomes in mCRPC patients after [177Lu]Lu-PSMA-RLT. Methods: This review followed the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. Searches in PubMed, Scopus, and Embase were made using relevant key words, and articles up to December 2022 were included. The endpoints included prostate-specific antigen (PSA) response rate (RR), progression-free survival, and overall survival (OS). Individual patient data were pooled when feasible. Univariate odds ratios (ORs) and hazard ratios (HRs) were extracted from the individual articles, and pooled estimates and 95% CIs were generated using metaanalysis. Results: Thirteen articles comprising 2,068 patients were included. In 6 articles (553 patients), taxane-naïve patients had significantly better odds of biochemical response after [177Lu]Lu-PSMA-RLT (pooled OR, 1.82; 95% CI, 1.21-2.71). Individual patient data metaanalysis for PSA RRs in 3 articles revealed a significantly higher PSA RR in the taxane-naïve versus taxane-treated patients (57.1% vs. 39.5%; difference, 17.6%; 95% CI, 5.6%-28.9%). Further, taxane-naïve status was also a predictor of significantly better progression-free survival (5 articles; 1,027 patients; pooled HR, 0.60; 95% CI, 0.51-0.69) and OS (8 articles; 1,594 patients; pooled HR, 0.54; 95% CI, 0.43-0.68) after [177Lu]Lu-PSMA-RLT. There was no evidence of publication bias. Conclusion: mCRPC patients with no prior taxanes had significantly better outcomes after [177Lu]Lu-PSMA-RLT than did taxane-treated patients. Further trials evaluating [177Lu]Lu-PSMA-RLT in the taxane-naïve setting are now required.
TL;DR: In this article , the authors developed a new antibody-drug conjugate, trastuzumab emtansine, which is a potent cytotoxic agent bound to trastusumab and is currently a standard therapeutic strategy for HER2-positive metastatic breast cancer.
Abstract: HER2-positive breast cancer is an aggressive disease. As a result of the development of specific HER2-targeted therapies, such as trastuzumab, more than 20 years ago, the prognosis of these patients has improved. Metastatic HER2-positive breast cancer patients are achieving better survival rates upon treatment with anti-HER2 therapies than patients with HER2-negative disease. Double HER2 blockade with trastuzumab and pertuzumab combined with a taxane achieved an unprecedented survival of over 57 months in first-line patients. Trastuzumab emtansine, the first antibody-drug conjugate approved for patients in second-line treatment was a potent cytotoxic agent bound to trastuzumab and is currently a standard therapeutic strategy. Despite the progress in treatment development, most patients develop resistance and eventually relapse. Advances in the design of antibody-drug conjugates have led to the development of new generation drugs with enhanced properties, such as trastuzumab deruxtecan and trastuzumab duocarmazine, which are significantly changing the paradigm in the treatment of HER2-positive metastatic breast cancer.
TL;DR: A phase III open-label study comparing oral paclitaxel plus encequidar (oPac + E) 205 mg/m2 paclitaxisel plus 15 mg E methanesulfonate monohydrate 3 consecutive days per week versus IVpac 175 mg /m2 once every 3 weeks was performed as mentioned in this paper .
Abstract: Intravenous paclitaxel (IVpac) is complicated by neuropathy and requires premedication to prevent hypersensitivity-type reactions. Paclitaxel is poorly absorbed orally; encequidar (E), a novel P-glycoprotein pump inhibitor, allows oral absorption.A phase III open-label study comparing oral paclitaxel plus E (oPac + E) 205 mg/m2 paclitaxel plus 15 mg E methanesulfonate monohydrate 3 consecutive days per week versus IVpac 175 mg/m2 once every 3 weeks was performed. Women with metastatic breast cancer and adequate organ function, at least 1 year from last taxane, were randomly assigned 2:1 to oPac + E versus IVpac. The primary end point was confirmed radiographic response using RECIST 1.1, assessed by blinded independent central review. Secondary end points included progression-free survival (PFS) and overall survival (OS).Four hundred two patients from Latin America were enrolled (265 oPac + E, 137 IVpac); demographics and prior therapies were balanced. The confirmed response (intent-to-treat) was 36% for oPac + E versus 23% for IVpac (P = .01). The PFS was 8.4 versus 7.4 months, respectively (hazard ratio, 0.768; 95.5% CI, 0.584 to 1.01; P = .046), and the OS was 22.7 versus 16.5 months, respectively (hazard ratio, 0.794; 95.5% CI, 0.607 to 1.037; P = .08). Grade 3-4 adverse reactions were 55% with oPac + E and 53% with IVpac. oPac + E had lower incidence and severity of neuropathy (2% v 15% > grade 2) and alopecia (49% v 62% all grades) than IVpac but more nausea, vomiting, diarrhea, and neutropenic complications, particularly in patients with elevated liver enzymes. On-study deaths (8% oPac + E v 9% IVpac) were treatment-related in 3% and 0%, respectively.oPac + E increased the confirmed tumor response versus IVpac, with trends in PFS and OS. Neuropathy was less frequent and severe with oPac + E; neutropenic serious infections were increased. Elevated liver enzymes at baseline predispose oPac + E patients to early neutropenia and serious infections (funded by Athenex, Inc; ClinicalTrials.gov identifier: NCT02594371).
TL;DR: In this article , a guerbet alcohol, octyldodecanol (OD), was chosen to chemically modify Cabazitaxel (CTX) employing tumor-selective sulfur/selenium bonds as linkages, and the prodrugs were capable of forming nanoassemblies spontaneously.
TL;DR: In this article , the authors proposed a biomarker-driven patient selection for treatment with [177Lu]Lu-PSMA by identifying those who are most and least likely to respond.
Abstract: [177Lu]Lu-PSMA has recently been approved for use in the post-taxane, post-novel hormonal-agent setting in patients with metastatic castration-resistant prostate cancer. As a beta-emitting radioligand targeting prostate-specific membrane antigen (PSMA), it delivers radiation to cells expressing PSMA on their surface. In pivotal clinical trials, patients were selected for this treatment based on positron emission tomography (PET)/CT imaging, requiring PSMA-avid disease with no evidence of discordant disease on 2-[18F]fluoro-2-deoxy-D-glucose PET/CT or contrast CT scan. Despite exhibiting an optimal imaging phenotype, the response for many patients is not durable, and a minority do not respond to [177Lu]Lu-PSMA at all. Disease progression is inevitable even for those who achieve an exceptional initial response. Reasons for both primary and acquired resistance are largely unknown; however, they are likely due to the presence of underlying PSMA-negative disease not identified on imaging, molecular factors conferring radioresistance, and inadequate delivery of lethal radiation, particularly to sites of micrometastatic disease. Biomarkers are urgently needed to optimize patient selection for treatment with [177Lu]Lu-PSMA by identifying those who are most and least likely to respond. Retrospective data support using several prognostic and predictive baseline patient- and disease-related parameters; however, robust prospective data is required before these can be translated into widespread use. Further, early on-treatment clinical parameters (in addition to serial prostate-specific antigen [PSA] levels and conventional restaging imaging) may serve as surrogates for predicting treatment response. With little known about the efficacy of treatments given after [177Lu]Lu-PSMA, optimal treatment sequencing is paramount, and biomarker-driven patient selection will hopefully improve treatment and survival outcomes.
TL;DR: In this article , a review of microtubule stabilizing cytotoxic agents (MSA) for prostate cancer is presented. And the authors provide an overview of the anti-prostate cancer profiles (including preclinical and clinical studies, and clinical use) of diverse MSAs as well as the mechanism of action.
Abstract: Simple Summary Prostate cancer is one of topmost health concerns, and metastatic castration-resistant prostate cancer is the fatal form. Two taxanes, docetaxel and cabazitaxel, are the only two FDA-approved chemotherapeutics that can provide survival benefits to patients with the lethal version of prostate cancer. Taxanes, alongside numerous other naturally occurring products, can promote the assembly and stability of microtubules to halt cell division and promote various cancer cell deaths. Additionally, this group of compounds, named microtubule stabilizing agents, can impede the androgen–androgen receptor complex from moving into the cell nucleus, conquering androgen receptor-containing prostate cancer cell proliferation and metastasis. This review aims to overview the preclinical and clinical studies, clinical uses, and the mechanisms of action of microtubule-stabilizing agents as anti-prostate cancer agents. Abstract A variety of microtubule-stabilizing cytotoxic agents (MSA) with diverse chemical scaffolds have been discovered from marine sponges, microorganisms, and plants. Two MSAs, docetaxel and cabazitaxel, are the exclusive chemotherapeutics that convey a survival benefit in patients with castration-resistant prostate cancer (CRPC). Additional MSAs have been investigated for their potential in treating prostate cancer in both clinical and preclinical settings. Independent of promoting mitotic arrest, MSAs can suppress the nuclear accumulation of androgen receptor (AR), which is the driving force for prostate cancer cell growth and progression. The alternative mechanism not only helps to better understand the clinical efficacy of docetaxel and cabazitaxel for AR-driven CRPC but also provides an avenue to seek better treatments for various forms of prostate cancer. The dual mechanisms of action enable MSAs to suppress AR-null prostate cancer cell proliferation by cell mitosis pathway and to interfere with the AR signaling pathway in AR positive cells. MSA chemotherapeutics, being administered alone or in combination with other therapeutics, may serve as the optimal therapeutic option for patients with either castration-sensitive or castration-resistant prostate cancer. This review provides an overview of the anti-prostate cancer profiles (including preclinical and clinical studies, and clinical use) of diverse MSAs, as well as the mechanism of action.
TL;DR: In this paper , a single-centre, single-arm phase I/II trial was conducted to evaluate the safety and preliminary efficacy of cabazitaxel and [177Lu]Lu-PSMA-617 in combination.
Abstract: TPS278 Background: [177Lu]Lu-PSMA-617 was recently FDA-approved for use in the post-taxane, post-antiandrogen setting in pts with mCRPC. Despite conferring a survival benefit, for many the treatment response is short, and progression is inevitable. One of the likely mechanisms limiting the durability of responses to [177Lu]Lu-PSMA-617 is heterogeneity in tumor PSMA expression. This can be screened for visually using PSMA and FDG PET/CT scans and inspecting for discordant disease, however, micrometastatic disease is unable to be evaluated in this way. In addition, [177Lu]Lu-PSMA-617 may not effectively target micrometastatic disease due to the longer path length of beta emitters. Cabazitaxel has radiosensitizing properties that may enhance the cytotoxic effect of [177Lu]Lu-PSMA-617, whilst also treating any PSMA-negative disease. We hypothesize that the combination of [177Lu]Lu-PSMA-617 and cabazitaxel will be well tolerated and lead to more durable responses. Methods: This single-centre, single-arm phase I/II trial will enrol 32-38 pts with mCRPC to evaluate the safety and preliminary efficacy of cabazitaxel and [177Lu]Lu-PSMA-617 in combination. Up to 6 doses of [177Lu]Lu-PSMA-617 (7.4 GBq) will be administered intravenously every 6 weeks. Cabazitaxel will be given concurrently (dose range 12.5mg/m2 - 20mg/m2), on Day 2 and Day 23 of each 6-week cycle. The dose of cabazitaxel will be escalated using a traditional 3+3 design. Key eligibility criteria include a diagnosis of mCRPC with PSMA-positive disease on PSMA PET/CT (SUVmax ≥15), with no evidence of diffuse marrow disease or sites of discordance on FDG PET/CT. Pts must have progressed after prior docetaxel and a second-generation antiandrogen, have adequate bone marrow and organ function and an ECOG performance status of 0-1. The primary objective is to establish the maximum tolerated dose of cabazitaxel and [177Lu]Lu-PSMA-617. Secondary objectives include measuring the frequency and severity of adverse events, assessment of efficacy through PSA 50% response rate, radiographic and PSA progression-free survival, overall survival, objective tumor response rate, and evaluation of pain and health-related quality of life over the first 12 months. Bloods will be taken at baseline, during treatment and at progression for ctDNA analysis, the results of which will be correlated with baseline pt and disease characteristics, and response outcomes, to determine biomarkers of treatment response and resistance. Pt recruitment commenced in August 2022 and will continue for 18 months. Clinical trial information: NCT05340374 .
TL;DR: BPX-601 as mentioned in this paper is an autologous PSCA-directed chimeric antigen receptor (CAR)-T cell immunotherapy engineered to express a rimiducid-inducible MyD88/CD40 costimulation switch to enhance T cell potency and persistence.
Abstract: 140 Background: Prostate stem cell antigen (PSCA) is expressed in >80% of metastatic prostate cancers. BPX-601 is an autologous PSCA-directed chimeric antigen receptor (CAR)-T cell immunotherapy engineered to express a rimiducid-inducible MyD88/CD40 costimulation switch to enhance T cell potency and persistence. Safety and activity of BPX-601 with rimiducid in mCRPC and pancreatic cancer is being assessed in an ongoing, phase 1/2 clinical trial (NCT02744287). Results from the first two prostate cancer cohorts are reported. Methods: Eligible mCRPC patients (pts) had progressed on ≥ 2 prior therapies including an androgen receptor antagonist and taxane. Using a 3+3 design, pts received lymphodepleting chemotherapy followed by a single-dose of 5 x 106 BPX-601 cells/kg and single or weekly doses of 0.4 mg/kg rimiducid infused over 2 hours beginning 7 days following cell infusion. Primary objective of phase 1 is to determine safety, tolerability and MTD or RP2D. Secondary objectives include characterization of clinical efficacy, PK of rimiducid and long-term safety. Biomarkers indicative of GoCAR-T cell expansion in blood, immune cell activity, and infiltration to tumor are being monitored. Results: As of Sept 2022, 8 pts received BPX-601 5x106 cells/kg; 3 and 5 pts received a single or weekly (range: 1-30) doses of rimiducid. Most common ≥ grade 3 adverse events were myelosuppression, attributed to lymphodepletion. All patients developed cytokine release syndrome (6 G1, 2 G3). Immune-effector cell associated neurotoxicity syndrome occurred and resolved in 2 pts (1 G1, 1 G4). One pt experienced a DLT of neutropenic sepsis (G5) with possible hemophagocytic lymphohistiocytosis (eg, IL-18, ferritin, M-CSF, fractalkine, MIP-1β and IL-1RA levels were elevated). Of 7 evaluable pts, PSA50 response was observed in 3 pts at Day 28. Preliminary RECIST-based results demonstrated partial response in 1, stable disease in 3, 1 progressive disease; at data cut off 2 had not reached imaging timepoint. One patient continues on study with SD after >9 months, with persistent evidence of rimiducid responsiveness. Peripheral blood BPX-601 cells expanded to an average of 3466 vector copies / μg DNA +/- 3109 during the first week with continued re-expansion to an average of 30234 copies/ug DNA +/- 67031) following rimiducid treatment. Serum IFN-γ, GM-CSF and IL-6 rapidly increased over 24 hours following rimiducid treatment (mean IFN-γ increase 26.9-fold ± 14.2) and subsequently diminished over 2 days. Conclusions: BPX-601, a PSCA-directed GoCAR-T cell product, has preliminary evidence of biologic activity with toxicity characteristic of previously reported CAR-T studies. Markers of rimiducid-induced GoCAR-T cell activation and proliferation were observed. Exploration of escalating weekly rimiducid doses > 0.4 mg/kg and BPX-601 cell doses is planned. Clinical trial information: NCT02744287 .
TL;DR: In this paper , the authors conducted a genetic study of time-to-first peripheral neuropathy event using 30× germline WGS data from whole blood samples from 4900 European-ancestry cancer patients in 14 randomized controlled trials.
Abstract: Abstract Background Dose-limiting toxicities significantly impact the benefit/risk profile of many drugs. Whole genome sequencing (WGS) in patients receiving drugs with dose-limiting toxicities can identify therapeutic hypotheses to prevent these toxicities. Chemotherapy-induced peripheral neuropathy (CIPN) is a common dose-limiting neurological toxicity of chemotherapies with no effective approach for prevention. Methods We conducted a genetic study of time-to-first peripheral neuropathy event using 30× germline WGS data from whole blood samples from 4900 European-ancestry cancer patients in 14 randomized controlled trials. A substantial number of patients in these trials received taxane and platinum-based chemotherapies as part of their treatment regimen, either standard of care or in combination with the PD-L1 inhibitor atezolizumab. The trials spanned several cancers including renal cell carcinoma, triple negative breast cancer, non-small cell lung cancer, small cell lung cancer, bladder cancer, ovarian cancer, and melanoma. Results We identified a locus consisting of low-frequency variants in intron 13 of GRID2 associated with time-to-onset of first peripheral neuropathy (PN) indexed by rs17020773 ( p = 2.03 × 10 −8 , all patients, p = 6.36 × 10 −9 , taxane treated). Gene-level burden analysis identified rare coding variants associated with increased PN risk in the C-terminus of GPR68 ( p = 1.59 × 10 −6 , all patients, p = 3.47 × 10 −8 , taxane treated), a pH-sensitive G-protein coupled receptor (GPCR). The variants driving this signal were found to alter predicted arrestin binding motifs in the C-terminus of GPR68 . Analysis of snRNA-seq from human dorsal root ganglia (DRG) indicated that expression of GPR68 was highest in mechano-thermo-sensitive nociceptors. Conclusions Our genetic study provides insight into the impact of low-frequency and rare coding genetic variation on PN risk and suggests that further study of GPR68 in sensory neurons may yield a therapeutic hypothesis for prevention of CIPN.
TL;DR: In this article , a review provides an assessment of psychological distress (depressive symptoms and anxiety symptoms) and the impact on quality of life in breast cancer survivors with chemotherapy-induced peripheral neuropathy induced by taxane-based chemotherapy.
Abstract: Purpose This review provides an assessment of psychological distress (depressive symptoms and anxiety symptoms) and the impact on quality of life in breast cancer survivors with chemotherapy-induced peripheral neuropathy induced by taxane-based chemotherapy. Methods The databases PubMed, CINAHL, Embase, and PsychInfo were searched for publications about psychological distress symptoms in breast cancer survivors with chemotherapy-induced peripheral neuropathy from taxane chemotherapy and the impact on quality of life. Results Only eight studies were identified that addressed psychological distress symptoms in BCS with CIPN treated with taxane chemotherapy and the impact of these symptoms on QOL. Of these studies, a majority reported increased symptoms of psychological distress (depressive symptoms and/or anxiety symptoms) in BCS with CIPN. Researchers found that the persistent nature of CIPN and severity of symptoms resulted in decreased QOL. Conclusions This review highlighted a notable lack of research on psychological distress (depressive symptoms and anxiety symptoms) in BCS with CIPN. Furthermore, there was a gap in knowledge in how this psychological distress impacts QOL in this population. Further research is needed to better understand the extent that BCS with CIPN experience symptoms of psychological distress and the impact on QOL. This research would enable researchers to develop interventions focused on decreasing and potentially preventing these symptoms in BCS with CIPN treated with taxane chemotherapy, thereby decreasing the impact on QOL.
TL;DR: In this article , the qualitative composition of taxoids of different structural groups was assessed in callus and suspension cell cultures of three yew species (Taxus baccata, T. canadensis, and T. wallichiana) and two T. × media hybrids.
Abstract: Plant cell cultures of various yew species are a profitable source of taxoids (taxane diterpenoids) with antitumor activity. So far, despite intensive studies, the principles of the formation of different groups of taxoids in cultured in vitro plant cells have not been fully revealed. In this study, the qualitative composition of taxoids of different structural groups was assessed in callus and suspension cell cultures of three yew species (Taxus baccata, T. canadensis, and T. wallichiana) and two T. × media hybrids. For the first time, 14-hydroxylated taxoids were isolated from the biomass of the suspension culture of T. baccata cells, and their structures were identified by high-resolution mass spectrometry and NMR spectroscopy as 7β-hydroxy-taxuyunnanin C, sinenxane C, taxuyunnanine C, 2α,5α,9α,10β,14β-pentaacetoxy-4(20), 11-taxadiene, and yunnanxane. UPLC–ESI-MS screening of taxoids was performed in more than 20 callus and suspension cell lines originating from different explants and grown in over 20 formulations of nutrient media. Regardless of the species, cell line origin, and conditions, most of the investigated cell cultures retained the ability to form taxane diterpenoids. Nonpolar 14-hydroxylated taxoids (in the form of polyesters) were predominant under in vitro culture conditions in all cell lines. These results, together with the literature data, suggest that dedifferentiated cell cultures of various yew species retain the ability to synthesize taxoids, but predominantly of the 14-OH taxoid group compared to the 13-OH taxoids found in plants.
TL;DR: In this article , the anti-parasite agent niclosamide (NA) has been repurposed as an anti-cancer agent and exerts potent anticancer activities in human cancers including ovarian cancer.
Abstract: Ovarian cancer (OC) is one of the most lethal malignancies of the female reproductive system. OC patients are usually diagnosed at advanced stages due to the lack of early diagnosis. The standard treatment for OC includes a combination of debulking surgery and platinum-taxane chemotherapy, while several targeted therapies have recently been approved for maintenance treatment. The vast majority of OC patients relapse with chemoresistant tumors after an initial response. Thus, there is an unmet clinical need to develop new therapeutic agents to overcome the chemoresistance of OC. The anti-parasite agent niclosamide (NA) has been repurposed as an anti-cancer agent and exerts potent anti-cancer activities in human cancers including OC. Here, we investigated whether NA could be repurposed as a therapeutic agent to overcome cisplatin-resistant (CR) in human OC cells. To this end, we first established two CR lines SKOV3CR and OVCAR8CR that exhibit the essential biological characteristics of cisplatin resistance in human cancer. We showed that NA inhibited cell proliferation, suppressed cell migration, and induced cell apoptosis in both CR lines at a low micromole range. Mechanistically, NA inhibited multiple cancer-related pathways including AP1, ELK/SRF, HIF1, and TCF/LEF, in SKOV3CR and OVCAR8CR cells. NA was further shown to effectively inhibit xenograft tumor growth of SKOV3CR cells. Collectively, our findings strongly suggest that NA may be repurposed as an efficacious agent to combat cisplatin resistance in chemoresistant human OC, and further clinical trials are highly warranted.
TL;DR: The Swiss Group for Clinical Cancer Research (SAKK)08/16 study as mentioned in this paper evaluated the efficacy and safety of darolutamide maintenance after successful taxane chemotherapy in patients with metastatic castration-resistant prostate cancer (mCRPC).
Abstract: To assess the efficacy and safety of darolutamide maintenance after successful taxane chemotherapy in patients with metastatic castration-resistant prostate cancer (mCRPC).Swiss Group for Clinical Cancer Research (SAKK) 08/16 is a randomized phase II study. Patients with mCRPC who received prior androgen-receptor pathway inhibitors (ARPIs) and subsequently had nonprogressive disease on a taxane were randomly assigned to darolutamide 600 mg twice a day or placebo twice a day. The primary end point was radiographic progression-free survival (rPFS) at 12 weeks. Secondary end points were rPFS, event-free survival, overall survival (OS), prostate-specific antigen (PSA) 50% response rate, and adverse events.Overall, 92 patients were recruited by 26 centers. Prior taxane was docetaxel in 93% and cabazitaxel in 7%. Prior ARPI was abiraterone in 60%, enzalutamide in 31%, and both in 9%. rPFS at 12 weeks was significantly improved with darolutamide (64.7% v 52.2%; P = .127). Median rPFS on darolutamide was 5.5 versus 4.5 months on placebo (hazard ratio [HR], 0.54 [95% CI, 0.32 to 0.91]; P = .017), and median event-free survival was 5.4 versus 2.9 months (HR, 0.46 [95% CI, 0.29 to 0.73]; P = .001). PSA 50% response rate was improved (22% v 4%; P = .014). Median OS for darolutamide was 24 versus 21.3 months for placebo (HR, 0.62 [95% CI, 0.3 to 1.26]; P = .181). Treatment-related adverse events were similar in both arms.SAKK 08/16 met its primary end point, showing that switch maintenance with darolutamide after prior taxane chemotherapy and at least one ARPI resulted in a statistically significant but clinically modest rPFS prolongation with good tolerability. The median OS with darolutamide maintenance appears promising. Should these findings be confirmed in a larger trial, maintenance treatment could be a novel strategy in managing patients with mCRPC, especially those who responded well to prior ARPI.