Black Katie A, Priftis Dimitrios, Perry Sarah L, Yip Jeremy, Byun William Y, Tirrell Matthew
Department of Bioengineering, University of California Berkeley, Berkeley, California 94720 United States.
UC Berkeley-UCSF Graduate Program in Bioengineering, Berkeley, California 94720 United States.
ACS Macro Lett. 2014 Oct 21;3(10):1088-1091. doi: 10.1021/mz500529v. Epub 2014 Oct 9.
Proteins have gained increasing success as therapeutic agents; however, challenges exist in effective and efficient delivery. In this work, we present a simple and versatile method for encapsulating proteins via complex coacervation with oppositely charged polypeptides, poly(l-lysine) (PLys) and poly(d/l-glutamic acid) (PGlu). A model protein system, bovine serum albumin (BSA), was incorporated efficiently into coacervate droplets via electrostatic interaction up to a maximum loading of one BSA per PLys/PGlu pair and could be released under conditions of decreasing pH. Additionally, encapsulation within complex coacervates did not alter the secondary structure of the protein. Lastly the complex coacervate system was shown to be biocompatible and interact well with cells in vitro. A simple, modular system for encapsulation such as the one presented here may be useful in a range of drug delivery applications.
蛋白质作为治疗剂已取得越来越大的成功;然而,在有效和高效递送方面仍存在挑战。在这项工作中,我们提出了一种简单且通用的方法,通过与带相反电荷的多肽聚(L-赖氨酸)(PLys)和聚(D/L-谷氨酸)(PGlu)进行复凝聚来封装蛋白质。一个模型蛋白质系统,牛血清白蛋白(BSA),通过静电相互作用被有效地纳入凝聚层液滴中,每个PLys/PGlu对最多可负载一个BSA,并且在pH值降低的条件下可以释放。此外,在复合凝聚层中的封装不会改变蛋白质的二级结构。最后,复合凝聚层系统被证明具有生物相容性,并且在体外与细胞相互作用良好。像本文所展示的这种简单、模块化的封装系统可能在一系列药物递送应用中有用。