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Elevated vascular endothelial growth factor production in islets improves islet graft vascularization.

机译:胰岛中血管内皮生长因子的产生升高可改善胰岛移植物的血管形成。

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Successful islet transplantation depends on the infusion of sufficiently large quantities of islets, of which only approximately 30% become stably engrafted. Rapid and adequate revascularization of transplanted islets is important for islet survival and function. Delayed and insufficient revascularization can deprive islets of oxygen and nutrients, resulting in islet cell death and early graft failure. To improve islet revascularization, we delivered human vascular endothelial growth factor (VEGF) cDNA to murine islets, followed by transplantation under the renal capsule in diabetic mice. Diabetic animals receiving a marginal mass of 300 islets that were pretransduced with a VEGF vector exhibited near normoglycemia. In contrast, diabetic mice receiving an equivalent number of islets that were transduced with a control vector remained hyperglycemic. Immunohistochemistry with anti-insulin and anti-CD31 antibodies revealed a relatively higher insulin content and greater degree of microvasculature in the VEGF vector-transduced islet grafts, which correlated with significantly improved blood glucose profiles and enhanced insulin secretion in response to glucose challenge in this group of diabetic recipient mice. These results demonstrate that VEGF production in islets stimulates graft angiogenesis and enhances islet revascularization. This mechanism might be explored as a novel strategy to accelerate islet revascularization and improve long-term survival of functional islet mass posttransplantation.
机译:成功的胰岛移植取决于输注足够数量的胰岛,其中只有大约30%的胰岛被稳定植入。快速和适当的移植胰岛血运重建对于胰岛存活和功能很重要。血运重建的延迟和不足会剥夺胰岛的氧气和营养,导致胰岛细胞死亡和早期移植失败。为了改善胰岛的血运重建,我们将人血管内皮生长因子(VEGF)cDNA传递到了小鼠的胰岛,然后在糖尿病小鼠的肾囊中进行了移植。用VEGF载体预转导的,边缘有300个胰岛的糖尿病动物表现出接近常血糖的状态。相反,接受等价胰岛的糖尿病小鼠接受了对照载体的转导,仍然保持高血糖状态。用抗胰岛素和抗CD31抗体进行的免疫组织化学分析显示,在VEGF载体转导的胰岛移植物中,胰岛素含量相对较高,微脉管系统的程度较高,这与该组患者应对葡萄糖激发的血糖水平显着改善和胰岛素分泌增加有关糖尿病受体小鼠。这些结果证明,胰岛中的VEGF产生刺激移植血管生成并增强胰岛的血运重建。该机制可作为一种新的策略来探索,以加速胰岛血运重建并改善移植后功能性胰岛的长期生存。

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