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Facile mechanical shaking method is an improved isolation approach for islet preparation and transplantation

机译:简便的机械摇动方法是胰岛制备和移植的一种改进的隔离方法

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摘要

Successful islet isolation is crucial for islet transplantation and cell treatment for type 1 diabetes. Current isolation methods are able to obtain 500–1,000 islets per rat, which results in a waste of ≥50% of total islets. In the present study, a facile mechanical shaking method for improving islet yield (up to 1,500 per rat) was developed and summarized, which was demonstrated to be more effective than the existing well-established stationary method. The present results showed that isolated islets have a maximum yield of 1,326±152 when shaking for 15 min for the fully-cannulated pancreas. For both fully-cannulated and half-cannulated pancreas in the presence of rat DNAse inhibitor, the optimal shaking time was amended to 20 min with a further increased yield of 1,344±134 and 1,286±124 islets, respectively. Furthermore, the majority of the isolated islets were morphologically intact with a well-defined surface and almost no central necrotic zone, which suggested that the condition of islets obtained via the mechanical shaking method was consistent with the stationary method. Islet size distribution was also calculated and it was demonstrated that islets from the stationary method exhibited the same size distribution as the non-cannulated group, which had more larger islets than the fully-cannulated and half-cannulated groups isolated via the shaking method. In addition, the results of glucose challenge showed that the refraction index of each group was >2.5, which indicated the well-preserved function of isolated islets. Furthermore, the transplanted islets exhibited a therapeutic effect after 1 day of transplantation; however, they failed to control blood glucose levels after ~7 days of transplantation. In conclusion, these results demonstrated that the facile mechanical shaking method may markedly improve the yield of rat islet isolation, and in vitro and in vivo investigation demonstrated the well-preserved function of isolated islets in the control of blood glucose. Therefore, the facile mechanical shaking method may be an alternative improved procedure to obtain higher islet yield for islet preparation and transplantation in the treatment of type 1 diabetes.
机译:成功的胰岛分离对于1型糖尿病的胰岛移植和细胞治疗至关重要。当前的隔离方法每只大鼠能够获得500–1,000个胰岛,这造成了总胰岛浪费的≥50%。在本研究中,已开发并总结了一种用于提高胰岛产量的简便机械摇动方法(每只大鼠高达1,500个),该方法被证明比现有的完善的固定方法更有效。目前的结果表明,对于完全插管的胰腺,摇动15分钟后,分离的胰岛的最大产量为1,326±152。对于存在大鼠DNAse抑制剂的完全插管和半插管的胰腺,最佳振荡时间被修改为20分钟,分别增加了1,344±134和1286±124个胰岛的产量。此外,大多数分离的胰岛形态完整,表面清晰,几乎没有中央坏死区,这表明通过机械摇动法获得的胰岛状况与固定法一致。还计算了胰岛的大小分布,并证明了固定方法的胰岛显示出与非插管组相同的大小分布,与通过振动法分离的完全插管和半插管组相比,胰岛的胰岛更大。另外,葡萄糖激发的结果表明,每组的折射率均大于2.5,这表明分离的胰岛的功能良好。此外,移植的胰岛在移植1天后显示出治疗效果;其结果显示,但是,他们在移植约7天后未能控制血糖水平。总之,这些结果表明,简便的机械摇动方法可以显着提高大鼠胰岛分离的产率,并且体外和体内研究表明,分离的胰岛在控制血糖方面具有良好的功能。因此,简便的机械摇动方法可能是获得更高胰岛产量的另一种改进方法,用于胰岛制备和移植治疗1型糖尿病。

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