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Xiaopei Hu

Researcher at Sichuan University

Publications -  8
Citations -  230

Xiaopei Hu is an academic researcher from Sichuan University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 1, co-authored 2 publications receiving 47 citations.

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Multifunctional Gold Nanoparticles: A Novel Nanomaterial for Various Medical Applications and Biological Activities

TL;DR: This article systematically review the methods of synthesis, the modification and characterization techniques of AuNPs, medical applications, and some biological activities of Au NPs, to provide a reference for future studies.
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DLBLS_SS: protein secondary structure prediction using deep learning and broad learning system

TL;DR: Zhang et al. as mentioned in this paper proposed a novel PSSP model DLBLS_SS based on deep learning and broad learning system (BLS) to predict 3-state and 8-state secondary structure.
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Silmitasertib-induced macropinocytosis promoting DDP intracellular uptake to enhance cell apoptosis in oral squamous cell carcinoma.

TL;DR: In this paper, the authors proved that silmitasertib (previously CX-4945) could trigger macropinocytosis, which may increase the intracellular uptake of DDP and enhance apoptosis via in vivo and in vitro experiments.
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A guanosine-based hydrogel integrating photothermal effect of PDAAuNPs through dynamic borate bond for photothermal therapy of cancer.

TL;DR: In vitro and in vivo results confirmed that the GBPA hydrogel not only exhibited excellent photothermal toxicity, stability, injectability, and biocompatibility, but also possessed high photothermal antitumor activity, which suggested that it could be used as a dual-functional hydrogels integrating photothermal effect and localized delivery in one system.
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pH-responsive dual-functional hydrogel integrating localized delivery and anti-cancer activities for highly effective therapy in PDX of OSCC

TL;DR: In this article , a pH-responsive dual-functional isoguanosine-phenylboronic-guanosine (isoGPBG) hydrogel with both localized delivery and anti-cancer activity in one molecule is successfully developed in one pot by following a simple and green procedure.