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Cytoprotection of PEG-modified adult porcine pancreatic islets for improved xenotransplantation.

机译:PEG修饰的成年猪胰腺胰岛的细胞保护作用,可改善异种移植。

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Functional poly(ethylene glycol) (PEG) derivatives, including monosuccinimidyl PEG (MSPEG) with molecular weight (MW) of 2000 (2kDa) as well as 5kDa and disuccinimidyl PEG (DSPEG) with MW of 3 and 6kDa, were synthesized and characterized. They were used to modify the surface of adult porcine islets for cytoprotection. The islets were isolated, purified and modified with functional PEG. Untreated porcine islets were used as control. An in vitro human antibody/complement-mediated cytotoxicity test based on the release of intracellular lactate dehydrogenase was used to evaluate cytotoxicity of human serum to the modified islets. In vitro cell viability was assessed using membrane-integrity straining and islet metabolism in culture. In vitro islet functionality was evaluated by glucose-stimulated insulin release of islets in static incubation with human serum. In vivo islet functionality was evaluated by monitoring non-fasting blood glucose level in streptozotocin-induced diabetic (SCID) immunocompromized mice after intraportal transplantation of porcine islets. Results show that all the PEG derivatives used in the study showed significant in vitro and in vivo cytoprotections against cytotoxic effects elicited by human serum and diabetic SCID mice, respectively, to porcine islets. DSPEG derivatives combined with human albumin exhibited a better cytoprotection, as compared to MSPEG ones, due to the capacity of the succinimidyl groups to selectively react with amino groups of the albumin under physiological conditions. The effects of both MW and concentration of the PEG derivatives on cytoprotection were significant. It appears that this novel biotechnology will be an attractive approach for improved xenotransplantation of islets.
机译:合成并表征了功能性聚乙二醇(PEG)衍生物,包括分子量(MW)为2000(2kDa)和5kDa的单琥珀酰亚胺基PEG(MSPEG)和MW为3和6kDa的二琥珀酰亚胺基PEG(DSPEG)。它们被用来修饰成年猪胰岛的表面以进行细胞保护。分离胰岛,纯化并用功能性PEG修饰。未经处理的猪胰岛用作对照。基于细胞内乳酸脱氢酶释放的体外人抗体/补体介导的细胞毒性试验用于评估人血清对修饰的胰岛的细胞毒性。使用膜完整性过滤和培养中的胰岛代谢评估了体外细胞活力。在与人血清静态孵育中,通过葡萄糖刺激的胰岛胰岛素释放来评估胰岛的体外功能。通过监测猪胰岛门静脉内移植后链脲佐菌素诱导的糖尿病(SCID)免疫受损小鼠的非空腹血糖水平来评估其体内胰岛功能。结果表明,该研究中使用的所有PEG衍生物均对人血清和糖尿病SCID小鼠分别对猪胰岛表现出显着的体外和体内细胞保护作用,以抵抗细胞毒性作用。与MSPEG相比,与人白蛋白结合的DSPEG衍生物表现出更好的细胞保护作用,这是由于琥珀酰亚胺基在生理条件下与白蛋白的氨基选择性反应的能力。 MW和PEG衍生物的浓度对细胞保护的影响是显着的。看来,这种新颖的生物技术将是改善胰岛异种移植的一种有吸引力的方法。

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