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Biochemistry and Biophysics Reports|June 24, 2024
Piceatannol enhances hyaluronic acid synthesis through SIRT1-Mediated HAS2 upregulation in human dermal fibroblastsMizuki Yoshihara, Shinpei Kawakami, Yuko Matsui, et al.Scientific Reports|January 11, 2025
Passion fruit seed extract protects hydrogen peroxide-induced cell damage in human retinal pigment epithelium ARPE-19 cellsHaruka Uozumi, Shinpei Kawakami, Yuko Matsui, et al.Biochemistry and Biophysics Reports|May 14, 2019
Piceatannol markedly upregulates heme oxygenase-1 expression and alleviates oxidative stress in skeletal muscle cellsShiori Nonaka, Shinpei Kawakami, Hiroko Maruki-Uchida, et al.Life (Basel, Switzerland)|January 21, 2022
Constituent Characteristics and Functional Properties of Passion Fruit Seed ExtractShinpei Kawakami, Makoto Morinaga, Sakuka Tsukamoto-Sen, et al.Nutrients|November 1, 2014
Piceatannol and its metabolite, isorhapontigenin, induce SIRT1 expression in THP-1 human monocytic cell lineShinpei Kawakami, Yosuke Kinoshita, Hiroko Maruki-Uchida, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 28, 2012
Capsaicin induces theta-band synchronization between gustatory and autonomic insular corticesMitsuru Saito, Hiroki Toyoda, Shinpei Kawakami, et al.Biochemical and Biophysical Research Communications|December 19, 2012
Effect of long-term piceatannol treatment on eNOS levels in cultured endothelial cellsYosuke Kinoshita, Shinpei Kawakami, Koji Yanae, et al.Bioscience, Biotechnology, and Biochemistry|March 24, 2025
Piceatannol promotes the osteogenic differentiation of human periodontal ligament cells through MAPKs activationHiromu Morimoto, Hirofumi Inoue, Kotone Date, et al.Journal of Clinical Biochemistry and Nutrition|November 25, 2024
Innovative novel candy made from a low-solubility amorphous material promotes saliva secretion: a randomized, double-blind, placebo-controlled crossover comparative trialShinpei Kawakami, Sadao Mori, Shota Kawasaki, et al.Pflugers Archiv : European Journal of Physiology|August 29, 2014
Enhanced lateral inhibition in the barrel cortex by deletion of phospholipase C-related catalytically inactive protein-1/2 in miceHiroki Toyoda, Mitsuru Saito, Hajime Sato, et al.Pageof 2