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Mitochondrion|February 25, 2023
Development of a sensitive double TaqMan Probe-based qPCR Angle-Degree method to detect mutation frequenciesKazuo Tomita, Hiroko P Indo, Tomoaki Sato, et al.
Archives of Biochemistry and Biophysics|April 3, 2021
Translocation of HSP47 and generation of mitochondrial reactive oxygen species in human neuroblastoma SK-N-SH cells following electron and X-ray irradiationHiroko P Indo, Hiromu Ito, Keiichi Nakagawa, et al.
Cell Biochemistry and Biophysics|January 20, 2025
Synephrine Inhibits Oxidative Stress and H2O2-Induced Premature SenescenceHiroshi Abe, Hiroko P Indo, Hiromu Ito, et al.
Journal of Clinical Biochemistry and Nutrition|October 12, 2020
Effects of low-dose X-ray irradiation on melanin-derived radicals in mouse hair and skinKen-Ichiro Matsumoto, Megumi Ueno, Ikuo Nakanishi, et al.
Journal of Clinical Biochemistry and Nutrition|June 4, 2016
Reactive oxygen species induced by non-steroidal anti-inflammatory drugs enhance the effects of photodynamic therapy in gastric cancer cellsHiromu Ito, Hirofumi Matsui, Aki Hirayama, et al.
Journal of Clinical Biochemistry and Nutrition|December 6, 2017
Cancer cell-specific mitochondrial reactive oxygen species promote non-heme iron uptake and enhance the proliferation of gastric epithelial cancer cellHiromu Ito, Hiromi Kurokawa, Aki Hirayama, et al.
Journal of Clinical Biochemistry and Nutrition|October 9, 2019
5-Aminolevulinic acid induced apoptosis via oxidative stress in normal gastric epithelial cellsHiromu Ito, Hiromi Kurokawa, Hideo Suzuki, et al.
Journal of Clinical Biochemistry and Nutrition|August 15, 2014
Mitochondrial reactive oxygen species accelerate the expression of heme carrier protein 1 and enhance photodynamic cancer therapy effectHiromu Ito, Hirofumi Matsui, Masato Tamura, et al.
Journal of Clinical Biochemistry and Nutrition|April 2, 2014
Reactive oxygen species involved cancer cellular specific 5-aminolevulinic acid uptake in gastric epithelial cellsHiromu Ito, Masato Tamura, Hirofumi Matsui, et al.
Current Pharmaceutical Design|July 22, 2011
Mitochondria as possible pharmaceutical targets for the effects of vitamin E and its homologues in oxidative stress-related diseasesHideyuki J Majima, Hiroko P Indo, Shigeaki Suenaga, et al.
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