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Frequency-Based Releasing of Insulin in the Langerhans Islets To Counteract the Beginning of the Type-2 Diabetes in Pre-diabetes Patients

机译:郎格罕岛胰岛中基于频率的胰岛素释放以抵消糖尿病前期患者中2型糖尿病的发作

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Type-2 diabetes disease is characterized by the lost of capabilities of the beta cells to segregate granules of insulin. The action of segregation has as previous processes the entrance of Calcium 2+ ions inside the beta cells by passing the voltage-gated channel while is open. We present a scheme where a prospective frequency-based nanodevice deployed in adjacent areas of the Langerhans islets would emit permanently bunches of Calcium 2+. Once that these ions have surpassed the potential membrane acquire position to electrically interact with the granules of insulin so one expects that most of them might be released continuously, thus meanwhile it's done the pre-diabetic patient does not surpass the line that separates the condition of having or not the diagnosis of type-2 diabetes. We present computational simulations that to some extent provide an idea about the effectiveness of this induced mechanism for insulin production as well as we identified limitations on these artificial mechanisms as to produce hyperinsulinism or another anomalous consequence of these electric nanodevices.
机译:2型糖尿病的特征是β细胞分离胰岛素颗粒的能力丧失。分离的作用与以前一样,通过在打开时通过电压门控通道,使β2细胞内的钙2+离子进入。我们提出了一个方案,其中在Langerhans胰岛的相邻区域中部署的基于频率的预期纳米设备将永久性地释放钙2+束。一旦这些离子超过了潜在的膜捕获位置,即可与胰岛素颗粒发生电相互作用,因此人们希望它们中的大多数可以连续释放,因此,糖尿病前患者并不会超过区分糖尿病病情的标准。是否患有2型糖尿病。我们目前的计算机模拟在一定程度上为这种诱导机制的胰岛素生产的有效性提供了一个思路,并且我们确定了这些人工机制的局限性,以产生胰岛素过多症或这些电纳米装置的另一异常后果。

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