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活体心血管组织中亚细胞血红素加氧酶和谷胱甘肽氧化还原电位的实时定量分析

Real-time quantification of subcellular HO and glutathione redox potential in living cardiovascular tissues.

作者信息

Panieri Emiliano, Millia Carlo, Santoro Massimo M

机构信息

Department of Molecular Biotechnology and Health Sciences, University of Turin, Torino, Italy.

Laboratory of Endothelial Molecular Biology, Vesalius Research Center, Department of Oncology, VIB-KUL, Leuven, Belgium.

出版信息

Free Radic Biol Med. 2017 Aug;109:189-200. doi: 10.1016/j.freeradbiomed.2017.02.022. Epub 2017 Feb 10.

Abstract

Detecting and measuring the dynamic redox events that occur in vivo is a prerequisite for understanding the impact of oxidants and redox events in normal and pathological conditions. These aspects are particularly relevant in cardiovascular tissues wherein alterations of the redox balance are associated with stroke, aging, and pharmacological intervention. An ambiguous aspect of redox biology is how redox events occur in subcellular organelles including mitochondria, and nuclei. Genetically-encoded Rogfp2 fluorescent probes have become powerful tools for real-time detection of redox events. These probes detect hydrogen peroxide (HO) levels and glutathione redox potential (E), both with high spatiotemporal resolution. By generating novel transgenic (Tg) zebrafish lines that express compartment-specific Rogfp2-Orp1 and Grx1-Rogfp2 sensors we analyzed cytosolic, mitochondrial, and the nuclear redox state of endothelial cells and cardiomyocytes of living zebrafish embryos. We provide evidence for the usefulness of these Tg lines for pharmacological compounds screening by addressing the blocking of pentose phosphate pathways (PPP) and glutathione synthesis, thus altering subcellular redox state in vivo. Rogfp2-based transgenic zebrafish lines represent valuable tools to characterize the impact of redox changes in living tissues and offer new opportunities for studying metabolic driven antioxidant response in biomedical research.

摘要

检测和测量体内发生的动态氧化还原事件是理解氧化剂和氧化还原事件在正常和病理条件下影响的先决条件。这些方面在心血管组织中尤为相关,其中氧化还原平衡的改变与中风、衰老和药物干预有关。氧化还原生物学中一个不明确的方面是氧化还原事件如何在包括线粒体和细胞核在内的亚细胞器中发生。基因编码的Rogfp2荧光探针已成为实时检测氧化还原事件的强大工具。这些探针能以高时空分辨率检测过氧化氢(HO)水平和谷胱甘肽氧化还原电位(E)。通过生成表达特定区域的Rogfp2-Orp1和Grx1-Rogfp2传感器的新型转基因(Tg)斑马鱼品系,我们分析了活斑马鱼胚胎内皮细胞和心肌细胞的胞质、线粒体和核氧化还原状态。我们通过研究磷酸戊糖途径(PPP)和谷胱甘肽合成的阻断,从而改变体内亚细胞氧化还原状态,为这些Tg品系用于药物化合物筛选的实用性提供了证据。基于Rogfp2的转基因斑马鱼品系是表征氧化还原变化对活组织影响的宝贵工具,并为生物医学研究中研究代谢驱动的抗氧化反应提供了新机会。

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