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外消旋 S-(乙磺酰基)-dl-半胱氨酸 N-羧基酐改善了用于β-折叠控制的开环聚合反应的链长和单体转化率。

Racemic S-(ethylsulfonyl)-dl-cysteine N-Carboxyanhydrides Improve Chain Lengths and Monomer Conversion for β-Sheet-Controlled Ring-Opening Polymerization.

作者信息

Bauer Tobias A, Muhl Christian, Schollmeyer Dieter, Barz Matthias

机构信息

Johannes Gutenberg University Mainz, Department of Chemistry, Duesbergweg 10-14, 55128, Mainz, Germany.

Leiden Academic Centre for Drug Research (LACDR), Leiden University, Einsteinweg 55, Leiden, 2333 CC, The Netherlands.

出版信息

Macromol Rapid Commun. 2021 Apr;42(8):e2000470. doi: 10.1002/marc.202000470. Epub 2020 Oct 12.

Abstract

The secondary structure formation of polypeptides not only governs folding and solution self-assembly but also affects the nucleophilic ring-opening polymerization of α-amino acid-N-carboxyanhydrides (NCAs). Whereby helical structures are known to enhance polymerization rates, β-sheet-like assemblies reduce the propagation rate or may even terminate chain growth by precipitation or gelation. To overcome these unfavorable properties, racemic mixtures of NCAs can be applied. In this work, racemic S-(ethylsulfonyl)-dl-cysteine NCA is investigated for the synthesis of polypeptides, diblock and triblock copolypept(o)ides. In contrast to the polymerization of stereoregular S-(ethylsulfonyl)-l-cysteine NCA, the reaction of S-(ethylsulfonyl)-dl-cysteine NCA proceeds with a rate constant of up to k  = 1.70 × 10 L mol s and is slightly faster than the enatiopure polymerization. While the polymerization of S-(ethylsulfonyl)-l-cysteine NCA suffers from incomplete monomer conversion and degrees of polymerization (DPs) limited to 30-40, racemic mixtures yield polypeptides with DPs of up to 102 with high conversion rates and well-defined dispersities (1.2-1.3). The controlled living nature of the ring-opening polymerization of S-(ethylsulfonyl)-dl-cysteine NCA thus enables the synthesis of triblock copolymers by sequential monomer addition. This methodology allows for precise control over DPs of individual blocks and yields uniform triblock copolymers with symmetric molecular weight distributions at a reduced synthetic effort.

摘要

多肽的二级结构形成不仅控制折叠和溶液中的自组装,还影响α-氨基酸-N-羧基酸酐(NCA)的亲核开环聚合。已知螺旋结构可提高聚合速率,而β-片状组装体则会降低增长速率,甚至可能通过沉淀或凝胶化终止链增长。为克服这些不利性质,可应用NCA的外消旋混合物。在这项工作中,研究了外消旋S-(乙磺酰基)-dl-半胱氨酸NCA用于合成多肽、二嵌段和三嵌段共多肽。与立体规整的S-(乙磺酰基)-l-半胱氨酸NCA的聚合反应不同,S-(乙磺酰基)-dl-半胱氨酸NCA的反应速率常数高达k = 1.70×10 L·mol⁻¹·s⁻¹,略快于对映体纯的聚合反应。虽然S-(乙磺酰基)-l-半胱氨酸NCA的聚合反应存在单体转化不完全且聚合度(DP)限制在30 - 40的问题,但外消旋混合物可得到DP高达102的多肽,转化率高且分散度明确(1.2 - 1.3)。因此,S-(乙磺酰基)-dl-半胱氨酸NCA的开环聚合反应的可控活性使得通过顺序添加单体合成三嵌段共聚物成为可能。这种方法能够精确控制各个嵌段的DP,并以减少的合成工作量得到具有对称分子量分布的均匀三嵌段共聚物。

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