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Ping-Hua Sun

Researcher at Jinan University

Publications -  93
Citations -  1284

Ping-Hua Sun is an academic researcher from Jinan University. The author has contributed to research in topics: Docking (molecular) & Human rights. The author has an hindex of 16, co-authored 75 publications receiving 795 citations. Previous affiliations of Ping-Hua Sun include Chinese Ministry of Education.

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Betulinic Acid and its Derivatives as Potential Antitumor Agents

TL;DR: This review critically describes the recent research on isolation, synthesis, and derivatization of BA and its natural analogs betulin and 23‐hydroxybetulinic acid and focuses on the current knowledge of antitumor properties, combination treatments, and pharmacological mechanisms of these compounds.
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Bacteria Detection: From Powerful SERS to Its Advanced Compatible Techniques.

TL;DR: Progress report on advances in the detection of bacteria using SERS and other compatible techniques are discussed in order to summarize its development in recent years.
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Ultrasensitive and Simultaneous SERS Detection of Multiplex MicroRNA Using Fractal Gold Nanotags for Early Diagnosis and Prognosis of Hepatocellular Carcinoma.

TL;DR: In this article, a magnetically assisted sandwich-type surface-enhanced Raman scattering (SERS)-based biosensor was proposed for ultrasound sensitive and multiplex detection of three hepatocellular carcinoma-related microRNA (miRNA) biomarkers.
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Anti-Inflammatory Effects of Cajaninstilbene Acid and Its Derivatives.

TL;DR: The mechanism studies demonstrated that the anti-inflammatory activity of CSA and its derivative is associated with the inhibition of NF-κB and MAPK pathways, relying partly on resisting the LPS-induced decrease of PPARγ through improving its expression.
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Late-stage azolation of benzylic C‒H bonds enabled by electrooxidation

TL;DR: A late-stage azolation of benzylic C‒H bonds enabled by electrooxidation is described, which proceeds in an undivided cell under mild, catalyst- and chemical-oxidant-free reaction conditions and can be directly used to install benzyl and azole motifs on highly functionalized drug molecules.