Dou Wang
Jinan University
14 Papers
34 Citations
Dou Wang is an academic researcher from Jinan University. The author has contributed to research in topics: Photothermal therapy & Chemistry. The author has an hindex of 9, co-authored 13 publications. Previous affiliations of Dou Wang include Guangzhou Institutes of Biomedicine and Health & Southern University of Science and Technology.
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Papers
Novel concept of the smart NIR-light-controlled drug release of black phosphorus nanostructure for cancer therapy.
Meng Qiu,Dou Wang,Weiyuan Liang,Liping Liu,Yin Zhang,Xing Chen,David K. Sang,Chenyang Xing,Zhongjun Li,Biqin Dong,Feng Xing,Dianyuan Fan,Shiyun Bao,Han Zhang,Yihai Cao +14 more
TL;DR: This work proposes a unique concept for precision cancer therapy by external light excitation to release cancer drugs by light activation of black phosphorus (BP) at hydrogel nanostructures for cancer therapy.
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Biocompatible and biodegradable inorganic nanostructures for nanomedicine: Silicon and black phosphorus
Meng Qiu,Ajay Singh,Dou Wang,Junle Qu,Mark T. Swihart,Han Zhang,Paras N. Prasad,Paras N. Prasad +7 more
TL;DR: This contribution reviews the latest advances in silicon and BP-based biomedical nanomaterials for disease diagnosis and therapy and their common feature characteristics as biodegradable biocompatible elemental semiconductors.
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Conceptually Novel Black Phosphorus/Cellulose Hydrogels as Promising Photothermal Agents for Effective Cancer Therapy.
Chenyang Xing,Shiyou Chen,Meng Qiu,Xin Liang,Quan Liu,Qingshuang Zou,Zhongjun Li,Zhongjian Xie,Dou Wang,Biqin Dong,Liping Liu,Dianyuan Fan,Han Zhang +12 more
TL;DR: The present work demonstrates that green and injectable composite hydrogels based on cellulose and BP nanosheets (BPNSs) are of great efficiency for PTT against cancer and may facilitate the development of BP–polymer‐based photothermal agents in the form of hydrogel for biomedical‐related clinic applications.
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In Vivo Enrichment and Elimination of Circulating Tumor Cells by Using a Black Phosphorus and Antibody Functionalized Intravenous Catheter
Dou Wang,Dou Wang,Chenchen Ge,Weiyuan Liang,Qinhe Yang,Quan Liu,Wei Ma,Lulin Shi,Hong Wu,Yuhua Zhang,Zongze Wu,Chaoying Wei,Luodan Huang,Fang Zhiyuan,Liping Liu,Shiyun Bao,Han Zhang +16 more
TL;DR: A minimally invasive therapeutic intravenous catheter for in vivo enriching and photothermal killing of CTCs is developed and holds great promise as an effective clinical intervention for cancer patients.
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Prodrug-Loaded Zirconium Carbide Nanosheets as a Novel Biophotonic Nanoplatform for Effective Treatment of Cancer.
Quan Liu,Zhongjian Xie,Zhongjian Xie,Meng Qiu,Meng Qiu,Inseob Shim,Yunlong Yang,Yunlong Yang,Sisi Xie,Qinhe Yang,Dou Wang,Shiyou Chen,Taojian Fan,Bo Ding,Ziheng Guo,Dickson Adah,Dickson Adah,Xinhuang Yao,Yuhua Zhang,Hong Wu,Zongze Wu,Chaoying Wei,Hongzhong Wang,Hyeong Seok Kim,Qingshuang Zou,Yan Qiaoting,Zhen Cai,Jong Seung Kim,Liping Liu,Han Zhang,Yihai Cao +30 more
TL;DR: In vitro and in vivo experimental evidence shows the potent anticancer effects of the integrated ZrC@prodrug biophotonic nanoplatform by specifically targeting malignant cells, chemotherapy/hyperthermia‐induced tumor inflammation, and angiogenesis.
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