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Yongtai Zhang

Researcher at Shanghai University

Publications -  77
Citations -  2437

Yongtai Zhang is an academic researcher from Shanghai University. The author has contributed to research in topics: Transdermal & Drug delivery. The author has an hindex of 20, co-authored 69 publications receiving 1442 citations.

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Red blood cell membrane-camouflaged nanoparticles: a novel drug delivery system for antitumor application.

TL;DR: In this review, the biomimetic platform of erythrocyte membrane-coated nano-cores is described with regard to various aspects, with particular focus placed on the coating mechanism, preparation methods, verification methods, and the latest anti-tumor applications.
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Mesoporous silica nanoparticles: synthesis, classification, drug loading, pharmacokinetics, biocompatibility, and application in drug delivery.

TL;DR: Mesoporous silica nanoparticles (MSNs) feature a high surface area and large pore volume, uniform and tunable pore size, and stable framework; thus, they have been used extensively as drug carriers and their application in drug delivery systems (DDS).
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Enhanced in vitro and in vivo skin deposition of apigenin delivered using ethosomes.

TL;DR: Optimal apigenin-loaded ethosomes showed superior skin targeting both in vitro and in vivo and represent a promising therapeutic approach for the treatment of UVB-induced skin inflammation.
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CD44 Assists the Topical Anti-Psoriatic Efficacy of Curcumin-Loaded Hyaluronan-Modified Ethosomes: A New Strategy for Clustering Drug in Inflammatory Skin.

TL;DR: Increased topical drug delivery of curcumin to inflamed tissues using HA-ES targeting the highly expressed CD44 protein is demonstrated, suggesting that the specific adhesion ofHA-ES to CD44 increased drug accumulation in the skin.
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Preparation and characterization of solid lipid nanoparticles loaded with frankincense and myrrh oil

TL;DR: The presented SLNs can be used as drug carriers for hydrophobic oil drugs extracted from traditional Chinese medicines and increased the antitumor efficacy of FMO in H22-bearing Kunming mice.