Fuwei Yang
Jiangnan University
10 Papers
Fuwei Yang is an academic researcher from Jiangnan University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 2, co-authored 4 publications.
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Papers
A facile synthesis of uniform hollow MIL-125 titanium-based nanoplatform for endosomal esacpe and intracellular drug delivery
Jun-Ling Song,Zhao-Qian Huang,Jing Mao,Wei-Jun Chen,Bin Wang,Fuwei Yang,Shenhuan Liu,Huijie Zhang,Lipeng Qiu,Jinghua Chen +9 more
TL;DR: In vivo antitumor results demonstrated that MIL-125-Ti-HA@DOX could not only enhance targeted tumor therapy but also lower the side effect of DOX, proving that the Ti-based nano MOF was non-toxic and biocompatibility.
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Bacteria-mediated cancer therapies: opportunities and challenges.
TL;DR: In this paper, the authors summarized the potential, status, opportunities and challenges of this growing field and discussed the recent advances in the application of bacteria-mediated cancer therapy to improve efficacy, safety and drug delivery.
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A Purposefully Designed pH/GSH-Responsive MnFe-Based Metal-Organic Frameworks as Cascade Nanoreactor for Enhanced Chemo-Chemodynamic-Starvation Synergistic Therapy.
Wei Jun Chen,Dhanu Gupta,Meiyang Yang,Fuwei Yang,Ning Feng,Ju Myung Song,Matthew J. A. Wood,Lihua Qiu,Jinghua Chen +8 more
TL;DR: A series of MnFe-based MOFs with pH/glutathione-sensitivity are synthesized and then combined with gold nanoparticles and cisplatin prodrugs as a cascade nanoreactor for chemo-chemodynamic-starvation synergistic therapy for anticancer therapeutic effect.
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Engineered bacteria combined with doxorubicin nanoparticles suppress angiogenesis and metastasis in murine melanoma models.
Meiyang Yang,Mariana Maciel Conceição,Weijun Chen,Fuwei Yang,Bingke Zhao,Matthew J.A. Wood,Lihua Qiu,Jinghua Chen +7 more
TL;DR: In this article , an engineered bacteria-based system (GDOX@HSEc) was developed using synthetic biology and interfacial chemistry technologies to concurrently produce naturally occurring heparin sulfatase 1 (HSulf-1) inside and anchor doxorubicin-loaded glycogen nanoparticles on the surface.
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Redox-sensitive hyaluronic acid-ferrocene micelles delivering doxorubicin for enhanced tumor treatment by synergistic chemo/chemodynamic therepay
Fuwei Yang,Ping Wei,Meiyang Yang,Weijun Chen,Bingke Zhao,Wenhua Li,Junze Wang,Lihua Qiu,Jinghua Chen +8 more
TL;DR: In this paper , a targeting redox-sensitive micellar system (DOX/FCH) composed of ferrocene (Fc) and hyaluronic acid (HA) was prepared to deliver DOX for synergetic chemotherapy and chemodynamic therapy (CDT).
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