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首页> 外文期刊>Bulletin of the Korean Chemical Society >Dynamic Research of a Potential Carrier for Hydrophobic Compound Model Pyrene Using Amphiphilic Peptide EYK
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Dynamic Research of a Potential Carrier for Hydrophobic Compound Model Pyrene Using Amphiphilic Peptide EYK

机译:使用两亲性肽EYK动态研究疏水化合物Model的潜在载体

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In recent years, the study of self-assembly peptide used in drug delivery system has been attracted great interest from scientists. In the category are self-assembly peptides in the structure either with one hydrophobic surface and another hydrophilic or a hydrophobic head and a hydrophilic tail. Here, we focus on a novel designed peptide EYK with double amphiphilic surfaces, investigating on the capability of peptide as a carrier for hydrophobic compound model pyrene. The fluorescence data presented the dynamic process of the transfer, showing that the pyrene was in the crystalline form in peptide solution, and molecularly migrated from its peptide encapsulations into the membrane bilayers when the peptide-pyrene suspension was mixed with liposome vesicles. The results indicated that the peptide EYK could stabilize hydrophobic pyrene in aqueous solution and delivered it into EPC liposome as a potential carrier.
机译:近年来,用于药物递送系统的自组装肽的研究已引起科学家的极大兴趣。在该类别中,结构中的自组装肽具有一个疏水表面和另一个亲水表面,或者具有疏水头和亲水尾。在这里,我们专注于新型设计的具有双亲两性表面的肽EYK,研究了该肽作为疏水化合物模型a载体的能力。荧光数据显示了转移的动态过程,表明the在肽溶液中呈晶体形式,并且当将肽-re悬浮液与脂质体囊泡混合时,分子从其肽包封分子迁移到膜双层中。结果表明,该肽EYK可以稳定水溶液中的疏水pyr,并作为潜在的载体传递到EPC脂质体中。

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