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Enhancing the conjugation yield of brush polymer-protein conjugates by increasing the linker length at the polymer end-group

机译:提高接合收益率刷polymer-protein轭合物通过增加链接器在聚合物末端长度

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摘要

Polymers with oligoethylene glycol side chains are promising in therapeutic protein-polymer conjugates as replacements for linear polyethylene glycol (PEG). Branched PEG polymers can confer additional stability and advantageous properties compared to linear PEGs. However, branched PEG polymers suffer from low conjugation yields to proteins, likely due to steric interactions between the bulky side chains of the polymer and the protein. In an effort to increase the yield, the linker length between the protein-reactive functional end-group of the polymer chain and the branched PEG side chain was systematically increased. This was accomplished by synthesizing four well-defined poly(poly(ethylene glycol methyl ether) acrylates) (pPEGAs) with pyridyl disulfide end-groups by reversible addition-fragmentation chain transfer (RAFT) polymerization mediated by chain transfer agents (CTAs) with different linker lengths. These, along with linear PEG and poly(N-isopropylacrylamide) (pNIPAAm), were conjugated to two model proteins, bovine serum albumin (BSA) and beta-lactoglobulin (beta LG). The conjugation yields were determined by gel electrophoresis. The length of the linker affected the conjugation yield for both proteins. For BSA, the conjugation yield step increased from 10% to 24% when the linker was altered from 1 ethylene glycol (EG) unit to 3, with no additional increase for 4 and 6 EG units. In the case of beta LG, the yield gradually increased from 9% to 33% when the linker length was increased from 1 to 6. PEG and pNIPAAm reacted with yields as high as 75%, further emphasizing the effect of steric hindrance in lowering conjugation yields.
机译:与oligoethylene乙二醇聚合物侧链承诺在治疗protein-polymer轭合物作为线性的替代品聚乙二醇(PEG)。可以提供额外的稳定性和有利吗属性相对于线性挂钩。支钉共轭聚合物遭受低收益率蛋白质,可能由于空间笨重的侧链之间的相互作用聚合物和蛋白质。收益率之间的链接器的长度蛋白反应功能的末端聚合物链和支钉支链系统地增加。通过合成四个定义良好的聚(聚乙二醇甲醚)丙烯酸酯)(pPEGAs)与吡啶基二硫端基的可逆加成断裂链转移聚合由(筏)链转移剂(cta)不同链接器的长度。结合两种模型蛋白,牛血清白蛋白(BSA)和beta-lactoglobulin(βLG)。结合收益率由凝胶电泳。影响接合产生的蛋白质。BSA的结合增加产量的一步从10%到24%链接器时改变1乙二醇(EG)的单位,没有额外增加4和6单位。βLG,产量逐渐增加链接器长度时从9%降至33%从1增加到6。与收益率高达75%,进一步强调位阻降低的影响结合收益率。

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