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糖尿病中的β细胞:将生物标志物与功能测量相结合。

The β Cell in Diabetes: Integrating Biomarkers With Functional Measures.

机构信息

Division of Metabolism, Endocrinology and Nutrition, Department of Medicine, VA Puget Sound Health Care System and University of Washington, Seattle, 98108 WA, USA.

BC Children's Hospital Research Institute and Centre for Molecular Medicine and Therapeutics, Vancouver, BC, V5Z 4H4, Canada.

出版信息

Endocr Rev. 2021 Sep 28;42(5):528-583. doi: 10.1210/endrev/bnab021.

Abstract

The pathogenesis of hyperglycemia observed in most forms of diabetes is intimately tied to the islet β cell. Impairments in propeptide processing and secretory function, along with the loss of these vital cells, is demonstrable not only in those in whom the diagnosis is established but typically also in individuals who are at increased risk of developing the disease. Biomarkers are used to inform on the state of a biological process, pathological condition, or response to an intervention and are increasingly being used for predicting, diagnosing, and prognosticating disease. They are also proving to be of use in the different forms of diabetes in both research and clinical settings. This review focuses on the β cell, addressing the potential utility of genetic markers, circulating molecules, immune cell phenotyping, and imaging approaches as biomarkers of cellular function and loss of this critical cell. Further, we consider how these biomarkers complement the more long-established, dynamic, and often complex measurements of β-cell secretory function that themselves could be considered biomarkers.

摘要

大多数类型糖尿病患者的高血糖发病机制与胰岛β细胞密切相关。前肽加工和分泌功能受损以及这些重要细胞的丧失,不仅在已确诊的患者中可见,而且在那些患有该疾病风险增加的个体中也通常可见。生物标志物用于反映生物过程、病理状况或对干预措施的反应,并且越来越多地用于预测、诊断和预后疾病。它们在研究和临床环境中的不同类型糖尿病中也被证明是有用的。本综述重点介绍β细胞,讨论遗传标志物、循环分子、免疫细胞表型和成像方法作为细胞功能和这种关键细胞丧失的生物标志物的潜在用途。此外,我们还考虑了这些生物标志物如何补充更长期确立的、动态的且通常复杂的β细胞分泌功能测量,这些测量本身也可以被认为是生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beb3/9115372/c008ea046781/bnab021_iffig1.jpg

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