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Betatrophin The long awaited circulating factor from the liver promoting beta-cell replication?

机译:Betatrophin期待已久的肝脏循环因子促进β细胞复制?

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摘要

Regenerative therapy in diabetes with the capacity to reconstitute a functional beta-cell mass sufficient for glycemic control holds the promise to effectively prevent the development of devastating late complications due to the unique ability of the beta-cell to sense and regulate blood-glucose levels. An ability that cannot be mimicked by insulin replacement therapy or any other means of current treatment regiments for very large patient populations. Recently, Douglas A. Melton's group from Harvard University reported the identification of a circulating protein secreted from the liver under insulin resistant states which is sufficient to dramatically and specifically increase the replication rate of beta-cells in the mouse resulting in an increased functional beta-cell mass over time. They re-named the factor betatrophin and described a number of exciting features of this molecule which suggested that it could be a potential candidate for development as a regenerative medicine in diabetes. 1 The official name of the gene encoding mouse betatrophin is Gm6484, but it has been annotated a number of times under different names: EG624219(2,3), RIFL4, Lipasin(5) and ANGPTL8.(6) The official human gene name is C19orf80, but it has also been annotated as TD26(7), LOC55908(8), as well as RIFL, Lipasin, ANGPTL8 and betatrophin.
机译:糖尿病中的再生疗法具有重构足以控制血糖的功能性β细胞的能力,由于β细胞具有感知和调节血糖水平的独特能力,有望有效预防破坏性晚期并发症的发展。对于非常大的患者群体,不能通过胰岛素替代疗法或任何其他当前治疗方案的手段来模仿的能力。最近,哈佛大学的道格拉斯·梅尔顿(Douglas A. Melton)研究小组报告了在胰岛素抵抗状态下从肝脏分泌的循环蛋白的鉴定,该蛋白足以显着并特异性地提高小鼠β细胞的复制率,从而导致功能性β-随时间变化的细胞质量。他们将其重命名为甜菜碱因子,并描述了该分子的许多令人兴奋的特征,这表明它可能成为发展为糖尿病的再生药物的潜在候选者。 1编码小鼠甜菜碱的基因的正式名称是Gm6484,但是已经用不同的名称多次标注:EG624219(2,3),RIFL4,Lipasin(5)和ANGPTL8。(6)官方人类基因名称是C19orf80,但也被标注为TD26(7),LOC55908(8)以及RIFL,Lipasin,ANGPTL8和甜菜碱。

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