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心血管系统中表观遗传漂变的潜在诊断和预后生物标志物

Potential Diagnostic and Prognostic Biomarkers of Epigenetic Drift within the Cardiovascular Compartment.

作者信息

Wallace Robert G, Twomey Laura C, Custaud Marc-Antoine, Moyna Niall, Cummins Philip M, Mangone Marco, Murphy Ronan P

机构信息

School of Health & Human Performance, Dublin City University, Ireland.

INSERM 1083, Angers Medical University, France.

出版信息

Biomed Res Int. 2016;2016:2465763. doi: 10.1155/2016/2465763. Epub 2016 Jan 28.

Abstract

Biomarkers encompass a wide range of different measurable indicators, representing a tangible link to physiological changes occurring within the body. Accessibility, sensitivity, and specificity are significant factors in biomarker suitability. New biomarkers continue to be discovered, and questions over appropriate selection and assessment of their usefulness remain. If traditional markers of inflammation are not sufficiently robust in their specificity, then perhaps alternative means of detection may provide more information. Epigenetic drift (epigenetic modifications as they occur as a direct function with age), and its ancillary elements, including platelets, secreted microvesicles (MVs), and microRNA (miRNA), may hold enormous predictive potential. The majority of epigenetic drift observed in blood is independent of variations in blood cell composition, addressing concerns affecting traditional blood-based biomarker efficacy. MVs are found in plasma and other biological fluids in healthy individuals. Altered MV/miRNA profiles may also be found in individuals with various diseases. Platelets are also highly reflective of physiological and lifestyle changes, making them extremely sensitive biomarkers of human health. Platelets release increased levels of MVs in response to various stimuli and under a plethora of disease states, which demonstrate a functional effect on other cell types.

摘要

生物标志物涵盖了广泛的不同可测量指标,代表了与体内发生的生理变化的切实联系。可及性、敏感性和特异性是生物标志物适用性的重要因素。新的生物标志物不断被发现,关于其适当选择和有用性评估的问题仍然存在。如果传统的炎症标志物在特异性方面不够强大,那么或许替代检测手段可能会提供更多信息。表观遗传漂变(随着年龄直接发生的表观遗传修饰)及其辅助成分,包括血小板、分泌的微泡(MVs)和微小RNA(miRNA),可能具有巨大的预测潜力。在血液中观察到的大多数表观遗传漂变与血细胞组成的变化无关,解决了影响传统血液生物标志物功效的问题。MVs存在于健康个体的血浆和其他生物体液中。在患有各种疾病的个体中也可能发现MV/miRNA谱的改变。血小板也高度反映生理和生活方式的变化,使其成为人类健康的极其敏感的生物标志物。血小板在各种刺激下以及在多种疾病状态下会释放出增加水平的MVs,这对其他细胞类型具有功能影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cb8/4749768/893136b75c56/BMRI2016-2465763.001.jpg

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