Lazarjani Hamideh Aghajani, Vasheghani-Farahani Ebrahim, Barani Leila, Hashemi-Najafabadi Sameereh, Shojaosadati Seyed Abbas, Zahediasl Saleh, Tairahi Taki, Atyabi Fatemeh
Biotechnology Group, Department of Chemical Enineering, Faculty of Engineering, Tarbiat Modares University, Tehran, Iran.
Artif Cells Blood Substit Immobil Biotechnol. 2010 Oct;38(5):250-8. doi: 10.3109/10731199.2010.488634.
Modifying the surface of living cells with specially selected polymers is a new method of protecting them from the immune system. Covalent attachment of polyethylene glycol (PEG) derivatives on the capsule of pancreatic islets in aqueous media under moderate conditions is an example. This study aimed to find out whether higher polymer concentration could protect PEGylated islets from immune systems more efficiently without affecting their viability and morphology. Methoxy polyethylene glycol succinimidyl carbonate (mPEG-SC) with molecular weight of 5 kDa at different concentrations was grafted onto islets capsules. It was found that at polymer concentrations higher than 22 mg/mL, islets lost their viability with changes in their surface structure as compared to free islets. At mPEG-SC concentrations less than 22 mg/mL, there was no change in morphology and viability of PEGylated islets, but PEGylation of islets at polymer concentration 7 mg/mL was not sufficient for their camouflaging. Polymer concentration of 22 mg/mL was more effective in weakening the immunogenicity of islets. It was concluded that increasing the 5kDa mPEG-SC concentration up to 22 mg/ml protected islets from the immune cells more efficiently without affecting their viability and functionality.
用特别挑选的聚合物修饰活细胞表面是一种保护它们免受免疫系统攻击的新方法。在温和条件下,在水介质中将聚乙二醇(PEG)衍生物共价连接到胰岛包膜上就是一个例子。本研究旨在探究更高的聚合物浓度是否能在不影响其活力和形态的情况下,更有效地保护聚乙二醇化的胰岛免受免疫系统攻击。将不同浓度的分子量为5 kDa的甲氧基聚乙二醇琥珀酰亚胺碳酸酯(mPEG-SC)接枝到胰岛包膜上。结果发现,与游离胰岛相比,当聚合物浓度高于22 mg/mL时,胰岛会失去活力,其表面结构也会发生变化。当mPEG-SC浓度低于22 mg/mL时,聚乙二醇化胰岛的形态和活力没有变化,但聚合物浓度为7 mg/mL时对胰岛的聚乙二醇化不足以使其伪装。22 mg/mL的聚合物浓度在削弱胰岛免疫原性方面更有效。得出的结论是,将5 kDa mPEG-SC浓度提高到22 mg/ml能更有效地保护胰岛免受免疫细胞攻击,同时不影响其活力和功能。