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Sulfhydrated Sirtuin-1 Increasing Its Deacetylation Activity Is an Essential Epigenetics Mechanism of Anti-Atherogenesis by Hydrogen Sulfide
Du, Congkuo; Lin, Xianjuan; Xu, Wenjing; Zheng, Fengjiao; Cai, Junyan; Yang, Jichun; Cui, Qinghua; Tang, Chaoshu; Cai, Jun; Xu, Guoheng
2019
卷号30期号:2页码:184-197
关键词atherosclerosis sirtuin1 sulfhydration cystathionine gamma lyase hydrogen sulfide
ISSN号1523-0864
DOI10.1089/ars.2017.7195
URL标识查看原文
收录类别SCIE ; PUBMED
内容类型期刊论文
URI标识http://www.corc.org.cn/handle/1471x/6346386
专题中国医学科学院 北京协和医学院
推荐引用方式
GB/T 7714
Du, Congkuo,Lin, Xianjuan,Xu, Wenjing,et al. Sulfhydrated Sirtuin-1 Increasing Its Deacetylation Activity Is an Essential Epigenetics Mechanism of Anti-Atherogenesis by Hydrogen Sulfide[J],2019,30(2):184-197.
APA Du, Congkuo.,Lin, Xianjuan.,Xu, Wenjing.,Zheng, Fengjiao.,Cai, Junyan.,...&Geng, Bin.(2019).Sulfhydrated Sirtuin-1 Increasing Its Deacetylation Activity Is an Essential Epigenetics Mechanism of Anti-Atherogenesis by Hydrogen Sulfide.,30(2),184-197.
MLA Du, Congkuo,et al."Sulfhydrated Sirtuin-1 Increasing Its Deacetylation Activity Is an Essential Epigenetics Mechanism of Anti-Atherogenesis by Hydrogen Sulfide".30.2(2019):184-197.
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