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Polyethyleneglycols and immunocamouflage of the cells tissues and organs for transplantation.

机译:聚乙二醇和免疫伪装的细胞组织器官的移植。

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In allogenic transplant the immediate immune response is due to the recipient T cell recognition of non-self molecules presented on graft resident donor antigen presenting cells. An alternative to the transplantation tolerance paradigm is based on the development of strategies which distort alloimmune recognition of the graft by antigen reactive cells of the recipient. Immunocamouflage relies on the modification of the cell membrane surface with non-immunogenic molecules creating a barrier that prevents the recognition of antigenic sites by cells and antibodies of the recipient. Polymers can spontaneously bind to cell and tissues surfaces and sterically stabilize the underlying surface from interactions with other components in the surrounding. They can be adsorbed or chemically grafted to surfaces. Polyethylene glycol (PEG) seems to be the more effective at sterically stabilizing underlying surfaces. The outstanding protection provided by this polymer has been attributed to its molecular properties, such as its low interfacial energy, its conformation, hydrophilicity and high flexibility. The main advantage of immunocamouflage, is that it directly modify the inherent immunogenicity of the donor tissue itself, using means that are strictly physicochemical in nature and do not rely on the details of activation pathways, leaving fully competent, the immune system of the recipient.
机译:在同种异体移植中,直接的免疫反应是由于受体T细胞识别出了移植物驻体供体抗原呈递细胞上呈递的非自身分子。移植耐受范式的替代方案基于策略的发展,该策略会扭曲受体的抗原反应性细胞对移植物的同种免疫识别。免疫伪装依赖于非免疫原性分子对细胞膜表面的修饰,从而形成阻止受体细胞和抗体识别抗原位点的屏障。聚合物可以自发​​结合到细胞和组织表面,并在空间上稳定下层表面,使其不与周围的其他成分发生相互作用。它们可以被吸附或化学接枝到表面上。聚乙二醇(PEG)似乎在空间稳定下面的表面上更有效。该聚合物提供的出色保护作用归因于其分子特性,例如低界面能,其构象,亲水性和高柔韧性。免疫伪装的主要优点是,它使用本质上严格的物理化学方法且不依赖激活途径的细节,直接改变了供体组织本身固有的免疫原性,从而使受体的免疫系统完全发挥作用。

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