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Yushi Liu

Researcher at Chengdu University of Traditional Chinese Medicine

Publications -  20
Citations -  162

Yushi Liu is an academic researcher from Chengdu University of Traditional Chinese Medicine. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 3, co-authored 11 publications receiving 43 citations.

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Structure-based design of charge-conversional drug self-delivery systems for better targeted cancer therapy.

TL;DR: In vivo mice experiments have demonstrated that the co-delivered irinotecan curcumin nanoparticles exhibited significantly enhanced lung and gallbladder targeting, improved macrophage-clearance escape and ameliorated colorectal cancer treatment with an eradication of life-threatening diarrhea, bringing hope for better targeted chemotherapy and clinical translation.
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Puerariae Lobatae radix flavonoids and puerarin alleviate alcoholic liver injury in zebrafish by regulating alcohol and lipid metabolism

TL;DR: It is suggested that PLF and puerarin alleviated alcohol-induced hepatic steatosis in zebrafish larvae by regulating alcohol and lipid metabolism, which was closely related to the regulation of the AMPKα-ACC signaling pathway.
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Cardiotoxicity evaluation and comparison of diterpene alkaloids on zebrafish

TL;DR: This is the first study on cardiotoxicity comparison of DAs, providing references for the rational and safe application of these compounds and some plant species containing them to reduce side effects while retaining therapeutic efficacy.
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Andrographolide: A review of its pharmacology, pharmacokinetics, toxicity and clinical trials and pharmaceutical researches.

TL;DR: Wang et al. as discussed by the authors presented a comprehensive review of andrographis paniculata (Burm. f. ex Nees), including its pharmacology, pharmacokinetics, toxicity and pharmaceutical researches.
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Nano–Liposomes Double Loaded with Curcumin and Tetrandrine: Preparation, Characterization, Hepatotoxicity and Anti–Tumor Effects

TL;DR: This work showed that nano–liposomes can significantly improve the physical and chemical properties of CUR and TET and make them safer and more efficient.