首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Extension of C-elegans lifespan using the center dot NO-delivery dinitrosyl iron complexes
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Extension of C-elegans lifespan using the center dot NO-delivery dinitrosyl iron complexes

机译:使用中心点无递送二硝基铁复合物延伸C-elegans寿命

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摘要

The ubiquitous and emerging physiology function of endogenous nitric oxide in vascular, myocardial, immune, and neuronal systems prompts chemists to develop a prodrug for the controlled delivery of center dot NO in vivo and for the translational biomedical application. Inspired by the discovery of natural [Fe(NO)(2)] motif, herein, we develop the synthetic dinitrosyl iron complexes (DNICs) [Fe-2(mu-SR)(2)(NO)(4)] (1) as a universal platform for the O-2-triggered release of center dot NO, for the regulation of center dot NO-release kinetics (half-life = 0.6-27.4 h), and for the activation of physiological function of center dot NO. Using C. elegans as a model organism, the center dot NO-delivery DNIC 1 regulates IIS signaling pathway, AMPK signaling pathway, and mitochondrial function pathway to extend the lifespan and to delay the aging process based on the lifespan analysis, SA-beta gal activity assay, and next-generation RNA sequencing analysis. This study unveils the anti-aging effect of center dot NO and develops DNICs as a chemical biology probe for the continued discovery of unprecedented NO physiology.
机译:血管,心肌,免疫和神经元系统中内源性一氧化氮的无处不在的和新出现的生理学功能促使化学家在体内和转化生物医学应用中对中心点No的受控输送进行前药。通过发现天然[Fe(NO)]图案的激励,在此,我们开发合成二硝基硅烷络合物(DNICS)[Fe-2(MU-SR)(2)(NO)(4)](1 )作为中心点NO的O-2触发释放的通用平台,对于中心点无释放动力学(半衰期= 0.6-27.4小时),以及中心点NO的生理功能的激活。使用C. Elegans作为模型生物,中心点无递送DNIC 1调节IIS信号通路,AMPK信号通路和线粒体功能途径,以扩展寿命并延迟基于寿命分析的衰老过程,SA-Beta Gal活性测定和下一代RNA测序分析。本研究推出了中心点NO的抗衰老效果,并发展了DNIC作为化学生物学探测器,以便继续发现前所未有的没有生理学。

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