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Science China. Life Sciences|October 19, 2010
Structural characteristics of the hydrophobic patch of azurin and its interaction with p53: a site-directed spin labeling studyChao Xu, Junjie Yin, Baolu ZhaoAntioxidants & Redox Signaling|April 14, 2009
Superoxide anion regulates the mitochondrial free Ca2+ through uncoupling proteinsZhaofei Wu, Jie Zhang, Baolu ZhaoFree Radical Biology & Medicine|August 9, 2005
Protective effect of green tea polyphenols on the SH-SY5Y cells against 6-OHDA induced apoptosis through ROS-NO pathwayShuhong Guo, Erwan Bezard, Baolu ZhaoThe European Journal of Neuroscience|November 5, 2004
Nitric oxide synthase inhibition prevents neuronal death in the developing visual cortexYueting Zhang, Jie Zhang, Baolu ZhaoFree Radical Biology & Medicine|January 28, 2004
Genistein ameliorates beta-amyloid peptide (25-35)-induced hippocampal neuronal apoptosisHaiyan Zeng, Qi Chen, Baolu ZhaoArchives of Biochemistry and Biophysics|August 31, 2010
The interaction of azurin and C-terminal domain of p53 is mediated by nucleic acidsChao Xu, Yan Zhao, Baolu ZhaoScience China. Life Sciences|July 19, 2013
Green tea catechins prevent obesity through modulation of peroxisome proliferator-activated receptorsJingqi Yan, Yan Zhao, Baolu ZhaoRedox Report : Communications in Free Radical Research|August 22, 2002
Protective effects of green tea polyphenols and their major component, (-)-epigallocatechin-3-gallate (EGCG), on 6-hydroxydopamine-induced apoptosis in PC12 cellsGuangjun Nie, Yuanlin Cao, Baolu ZhaoChemical Research in Toxicology|September 16, 2003
Tea catechins protect against lead-induced ROS formation, mitochondrial dysfunction, and calcium dysregulation in PC12 cellsLiuji Chen, Xianqiang Yang, Hongli Jiao, et al.Methods in Enzymology|November 18, 2005
The ESR method to determine nitric oxide in plantsYangcang Xu, Yuanlin Cao, Yi Tao, et al.Pageof 6