Univ Lille Nord de France, F-59000 Lille, France.
BMC Biotechnol. 2010 Mar 30;10:28. doi: 10.1186/1472-6750-10-28.
In view of the importance of beta cells in glucose homeostasis and the profound repercussions of beta cell pathology on human health, the acquisition of tools to study pancreatic islet function is essential for the design of alternative novel therapies for diabetes. One promising approach toward this goal involves the modification of gene expression profile of beta cells.
This study describes a new method of gene and siRNA delivery into human pancreatic islets by microporation technology. We demonstrated that mild islet distention with accutase greatly enhanced the transfection efficiency without compromising in vitro function (secretion, apoptosis and viability). As an example, the recently identified gene involved in type 2 diabetes, ZnT8, can be over-expressed or silenced by RNA interference using this technology. Microporation can also be used on rodent islets.
Taken together, our results demonstrate that microporation technology can be used to modify gene expression in whole rodent and human islets without altering their in vitro function and will be key to the elucidation of the factors responsible for proper islet function.
鉴于β细胞在葡萄糖稳态中的重要性,以及β细胞病理学对人类健康的深远影响,获得研究胰岛功能的工具对于设计糖尿病的替代新疗法至关重要。实现这一目标的一个有前途的方法涉及对β细胞的基因表达谱进行修饰。
本研究描述了一种通过微孔穿孔技术将基因和 siRNA 递送入人胰岛的新方法。我们证明,用 Accutase 轻轻扩张胰岛可大大提高转染效率,而不会损害体外功能(分泌、凋亡和活力)。例如,最近发现的与 2 型糖尿病有关的基因 ZnT8 可以使用该技术通过 RNA 干扰进行过表达或沉默。微孔穿孔技术也可用于啮齿动物胰岛。
总之,我们的结果表明,微孔穿孔技术可用于修饰整个啮齿动物和人胰岛中的基因表达,而不会改变其体外功能,这将是阐明影响胰岛功能的因素的关键。