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化学生物学中的自由基:从化学行为到生物标志物开发

Free radicals in chemical biology: from chemical behavior to biomarker development.

作者信息

Chatgilialoglu Chryssostomos, Ferreri Carla, Masi Annalisa, Melchiorre Michele, Sansone Anna, Terzidis Michael A, Torreggiani Armida

机构信息

ISOF - Bio Free Radicals, Consiglio Nazionale delle Ricerche.

出版信息

J Vis Exp. 2013 Apr 15(74):50379. doi: 10.3791/50379.

DOI:10.3791/50379
PMID:23629513
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3664958/
Abstract

The involvement of free radicals in life sciences has constantly increased with time and has been connected to several physiological and pathological processes. This subject embraces diverse scientific areas, spanning from physical, biological and bioorganic chemistry to biology and medicine, with applications to the amelioration of quality of life, health and aging. Multidisciplinary skills are required for the full investigation of the many facets of radical processes in the biological environment and chemical knowledge plays a crucial role in unveiling basic processes and mechanisms. We developed a chemical biology approach able to connect free radical chemical reactivity with biological processes, providing information on the mechanistic pathways and products. The core of this approach is the design of biomimetic models to study biomolecule behavior (lipids, nucleic acids and proteins) in aqueous systems, obtaining insights of the reaction pathways as well as building up molecular libraries of the free radical reaction products. This context can be successfully used for biomarker discovery and examples are provided with two classes of compounds: mono-trans isomers of cholesteryl esters, which are synthesized and used as references for detection in human plasma, and purine 5',8-cyclo-2'-deoxyribonucleosides, prepared and used as reference in the protocol for detection of such lesions in DNA samples, after ionizing radiations or obtained from different health conditions.

摘要

随着时间的推移,自由基在生命科学中的参与度不断增加,并与多种生理和病理过程相关联。该主题涵盖了从物理、生物和生物有机化学到生物学和医学等不同的科学领域,并应用于改善生活质量、健康和衰老。全面研究生物环境中自由基过程的多个方面需要多学科技能,化学知识在揭示基本过程和机制方面起着关键作用。我们开发了一种化学生物学方法,能够将自由基化学反应性与生物过程联系起来,提供有关作用机制途径和产物的信息。这种方法的核心是设计仿生模型,以研究水体系中生物分子(脂质、核酸和蛋白质)的行为,深入了解反应途径,并建立自由基反应产物的分子库。这种背景可成功用于生物标志物的发现,文中给出了两类化合物的例子:胆固醇酯的单反式异构体,其被合成并用作人血浆检测的参考物;嘌呤5',8-环-2'-脱氧核糖核苷,在电离辐射后或从不同健康状况下获得的DNA样品中,按照检测此类损伤的方案制备并用作参考物。

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本文引用的文献

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Role of fatty acid-based functional lipidomics in the development of molecular diagnostic tools.脂肪酸基功能脂质组学在分子诊断工具开发中的作用。
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Lipid markers of "geometrical" radical stress: synthesis of monotrans cholesteryl ester isomers and detection in human plasma.
“几何”自由基应激的脂质标志物:单转移胆甾醇酯异构体的合成及其在人血浆中的检测。
J Am Chem Soc. 2011 Sep 28;133(38):15184-90. doi: 10.1021/ja205903h. Epub 2011 Sep 1.
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Radiation-induced formation of purine 5',8-cyclonucleosides in isolated and cellular DNA: high stereospecificity and modulating effect of oxygen.辐射诱导的嘌呤 5',8-环核苷在分离和细胞 DNA 中的形成:高立体特异性和氧的调节作用。
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