Assmann Anke, Hinault Charlotte, Kulkarni Rohit N
Research Division, Joslin Diabetes Center and Department of Medicine, Harvard Medical School, Boston, MA 02215, USA.
Pediatr Diabetes. 2009 Feb;10(1):14-32. doi: 10.1111/j.1399-5448.2008.00468.x. Epub 2008 Sep 19.
Type 1 and type 2 diabetes mellitus together are predicted to affect over 300 million people worldwide by the year 2020. A relative or absolute paucity of functional β-cells is a central feature of both types of disease, and identifying the pathways that mediate the embryonic origin of new β-cells and mechanisms that underlie the proliferation of existing β-cells are major efforts in the fields of developmental and islet biology. A poor secretory response of existing β-cells to nutrients and hormones and the defects in hormone processing also contribute to the hyperglycemia observed in type 2 diabetes and has prompted studies aimed at enhancing β-cell function. The factors that contribute to a greater susceptibility in aging individuals to develop diabetes is currently unclear and may be linked to a poor turnover of β-cells and/or enhanced susceptibility of β-cells to apoptosis. This review is an update on the recent work in the areas of islet/β-cell regeneration and hormone processing that are relevant to the pathophysiology of the endocrine pancreas in type 1, type 2 and obesity-associated diabetes.
预计到2020年,全球1型和2型糖尿病患者总数将超过3亿。功能性β细胞相对或绝对缺乏是这两种疾病的核心特征,确定介导新β细胞胚胎起源的途径以及现有β细胞增殖的机制是发育生物学和胰岛生物学领域的主要研究方向。现有β细胞对营养物质和激素的分泌反应不佳以及激素加工缺陷也导致了2型糖尿病患者的高血糖,这促使人们开展旨在增强β细胞功能的研究。目前尚不清楚导致老年人患糖尿病易感性增加的因素,可能与β细胞更新不良和/或β细胞对凋亡的易感性增加有关。本综述是对胰岛/β细胞再生和激素加工领域近期工作的更新,这些工作与1型、2型及肥胖相关糖尿病的内分泌胰腺病理生理学相关。