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Well-Defined Construction of Functional Macromolecular Architectures Based on Polymerization of Amino Acid Urethanes

机译:基于氨基酸氨基甲酸氨基酸聚合的功能性大分子架构明确施工

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摘要

Polypeptide synthesis was accomplished using the urethane derivatives of amino acids as monomers, which can be easily prepared, purified, and stored at ambient temperature without the requirement for special precautions. The urethanes of amino acids are readily synthesized by the N-carbamoylation of onium salts of amino acids using diphenyl carbonate (DPC). The prepared urethanes are then efficiently cyclized to produce amino acid N-carboxyanhydrides (NCAs). Thereafter, in the presence of primary amines, the ring-opening polymerization (ROP) of NCAs is initiated using the amines, to yield polypeptides with controlled molecular weights. The polypeptides have propagating chains bearing reactive amino groups and initiating chain ends endowed with functional moieties that originate from the amines. Aiming to benefit from these interesting characteristics of the polypeptide synthesis using the urethanes of amino acids, various macromolecular architectures containing polypeptide components have been constructed and applied as biofunctional materials in highly efficient antifouling coatings against proteins and cells, as biosensors for specific molecules, and in targeted drug delivery.
机译:使用氨基酸的氨基酸衍生物作为单体来完成多肽合成,其可以容易地制备,纯化并在环境温度下储存,而不需要采用特殊预防措施。使用二苯基碳酸酯(DPC),通过氨基酸的甘氨酸盐的N-碳酸氨基酸氨基酸氨基酸氨基酸。然后将制备的氨基甲酸乙烷有效地环化以产生氨基酸N-羧酸酐(NCAs)。此后,在伯胺存在下,使用胺开始NCA的开环聚合(ROP),得到具有受控分子量的多肽。多肽具有携带反应性氨基的载体链和引发链终止,赋予源于胺的功能性部分。旨在利用氨基酸氨基甲酸氨基乙烷的多肽合成的这些有趣的特性,含有多肽组分的各种大分子架构已经构建并作为生物官能材料作为蛋白质和细胞的高效防污涂料,作为特定分子的生物传感器,以及有针对性的药物递送。

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