Jiaming Liu
Chinese Academy of Sciences
17 Papers
4 Citations
Jiaming Liu is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Photothermal therapy & Tumor microenvironment. The author has an hindex of 9, co-authored 17 publications. Previous affiliations of Jiaming Liu include Center for Excellence in Education.
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Papers
Multifunctional Graphdiyne-Cerium Oxide Nanozymes Facilitate MicroRNA Delivery and Attenuate Tumor Hypoxia for Highly Efficient Radiotherapy of Esophageal Cancer.
Xuantong Zhou,Min You,Fuhui Wang,Zhenzhen Wang,Xingfa Gao,Xingfa Gao,Chao Jing,Jiaming Liu,Jiaming Liu,Mengyu Guo,Mengyu Guo,Jiayang Li,Jiayang Li,Aiping Luo,Huibiao Liu,Huibiao Liu,Zhihua Liu,Chunying Chen +17 more
TL;DR: In this paper, a multiple radiosensitization strategy of high-Z-element-based radiation enhancement is designed, attenuating hypoxia and microRNA therapy, which can overcome radioresistance and enhance therapeutic efficacy both in a subcutaneous tumor model and human-patient derived xenograft models.
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Progress and Prospects of Graphdiyne‐Based Materials in Biomedical Applications
TL;DR: The current research progress of graphdiyne-based materials in biomedical fields is summarized, including biosensing, biological protection, cancer therapy, tissue engineering, etc.
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Graphdiyne Nanosheet-Based Drug Delivery Platform for Photothermal/Chemotherapy Combination Treatment of Cancer
Jun Jin,Mengyu Guo,Jiaming Liu,Jing Liu,Huige Zhou,Jiayang Li,Liming Wang,Huibiao Liu,Yuliang Li,Yuliang Zhao,Chunying Chen +10 more
TL;DR: For the first time, this work demonstrated a successful example of GDY for efficient photothermal/chemotherapy and suggests both safety and great promise for GDY in cancer treatment.
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A Titanium Nitride Nanozyme for pH-Responsive and Irradiation-Enhanced Cascade-Catalytic Tumor Therapy.
Jiaming Liu,Aizhu Wang,Shihui Liu,Ruiqi Yang,Longwei Wang,Fene Gao,Fene Gao,Huige Zhou,Xin Yu,Jing Liu,Jing Liu,Chunying Chen +11 more
TL;DR: In this article, an acidic TME-responsive and irradiation-mediated cascade nanocatalyst (TLGp) is presented by using TiN-NP-encapsulated liposomes linked with pH-responsive PEG-modified glucose oxidase (GOx).
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Immunological Responses Induced by Blood Protein Coronas on Two-Dimensional MoS2 Nanosheets
Didar Baimanov,Didar Baimanov,Junguang Wu,Junguang Wu,Runxuan Chu,Runxuan Chu,Rong Cai,Bing Wang,Mingjing Cao,Mingjing Cao,Ye Tao,Jiaming Liu,Jiaming Liu,Mengyu Guo,Mengyu Guo,Jing Wang,Xia Yuan,Chendong Ji,Yuliang Zhao,Yuliang Zhao,Weiyue Feng,Liming Wang,Chunying Chen,Chunying Chen +23 more
TL;DR: The results demonstrate that the blood protein components contribute to the inflammatory effects of nanosheets and provide important insights for the nanosafety evaluation and the rational design of nanomedicines in the future.
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