Z
Zhuang Liu
Researcher at Soochow University (Suzhou)
Publications - 649
Citations - 107700
Zhuang Liu is an academic researcher from Soochow University (Suzhou). The author has contributed to research in topics: Photothermal therapy & Medicine. The author has an hindex of 149, co-authored 535 publications receiving 87662 citations. Previous affiliations of Zhuang Liu include Suranaree University of Technology & Agilent Technologies.
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Ultra-small MoS2 nanodots with rapid body clearance for photothermal cancer therapy
TL;DR: A new type of ultra-small nanoparticle with efficient tumor homing/treatment abilities, as well as rapid body clearance behavior, making it promising for cancer theranostics without long-term toxicity concerns is presented.
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2D MoS2 Nanostructures for Biomedical Applications.
Teng Liu,Zhuang Liu +1 more
TL;DR: The progress of MoS2 nanosheets and their composites in the area of nanomedicine, with the emphasis on their synthesis and modification strategies, as well as evaluations of their in vivo behaviors and toxicology profiles are summarized.
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Fluorinated Chitosan To Enhance Transmucosal Delivery of Sonosensitizer-Conjugated Catalase for Sonodynamic Bladder Cancer Treatment Post-intravesical Instillation.
Guangzhi Li,Guangzhi Li,Guangzhi Li,Shupeng Wang,Shupeng Wang,Dashi Deng,Zhisheng Xiao,Ziliang Dong,Zhiping Wang,Qifang Lei,Qifang Lei,Shan Gao,Guixiao Huang,Enpu Zhang,Guohua Zeng,Zhong Wen,Song Wu,Song Wu,Zhuang Liu +18 more
TL;DR: A nano-sonosensitizer formulation with FCS to enhance transmucosal delivery and intra-tumoral diffusion, and CAT to improve tumor oxygenation is presented, promising for instillation-based SDT to treat bladder tumors without the concern of systemic toxicity.
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Bimetallic Oxide MnMoOX Nanorods for in Vivo Photoacoustic Imaging of GSH and Tumor-Specific Photothermal Therapy.
Fei Gong,Liang Cheng,Nailin Yang,Qiutong Jin,Longlong Tian,Mengyun Wang,Yonggang Li,Zhuang Liu +7 more
TL;DR: This work synthesizes bimetallic oxide MnMoOX nanorods as an intelligent nanoprobe for in vivo GSH detection via photoacoustic (PA) imaging and presents a new type of GSH-responsive nanoprobe, promising for tumor-specific imaging and therapy.
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Degradable Vanadium Disulfide Nanostructures with Unique Optical and Magnetic Functions for Cancer Theranostics.
TL;DR: Along with the gradual degradation of VS2, the VS2 @lipid-PEG nanoparticles exhibit effective body excretion without appreciable toxicity, which means they are promising for applications in cancer theranostics.