Department of Chemistry and Biochemistry and California NanoSystems Institute, University of California, Los Angeles, 607 Charles E. Young Drive East, Los Angeles, California 90095, United States.
Biomacromolecules. 2020 Jun 8;21(6):2147-2154. doi: 10.1021/acs.biomac.0c00133. Epub 2020 May 5.
Polymers that stabilize biomolecules are important as excipients in protein formulation. Herein, we describe a class of degradable polymers that have tunable degradation rates depending on the polymer backbone and can stabilize proteins to aggregation. Specifically, zwitterion- and trehalose-substituted polycaprolactone, polyvalerolactone, polycarbonate, and polylactide were prepared and characterized with regards to their hydrolytic degradation and ability to stabilize insulin to mechanical agitation during heat. Ring-opening polymerization (ROP) of allyl-substituted monomers was performed by using organocatalysis, resulting in well-defined alkene-substituted polymers with good control over molecular weight and dispersity. The polymers were then modified by using photocatalyzed thiol-ene reactions to install protein-stabilizing carboxybetaine and trehalose side chains. The resulting polymers were water-soluble and exhibited a wide range of half-lives, from 12 h to more than 3 months. The polymers maintained the ability to stabilize the therapeutic protein insulin from activity loss due to aggregation, demonstrating their potential as degradable excipients for protein formulation.
稳定生物分子的聚合物作为蛋白质配方的赋形剂非常重要。本文描述了一类可降解聚合物,其降解速率取决于聚合物主链,并能稳定蛋白质免受机械搅拌引起的聚集。具体来说,两性离子和海藻糖取代的聚己内酯、聚戊内酯、聚碳酸酯和聚乳酸通过开环聚合(ROP)用有机催化合成,并对其水解降解和在热时机械搅拌稳定胰岛素的能力进行了表征。烯丙基取代单体的 ROP 反应采用有机催化进行,得到了具有良好分子量和分散性控制的定义明确的烯键取代聚合物。然后通过光催化硫醇-烯反应对聚合物进行修饰,引入了稳定蛋白质的羧基甜菜碱和海藻糖侧链。所得聚合物水溶性好,半衰期范围很广,从 12 小时到 3 个月以上。这些聚合物能够保持稳定治疗性蛋白质胰岛素的能力,使其免受聚集引起的活性丧失,表明它们有潜力成为蛋白质配方的可降解赋形剂。