Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, The Nanos, Singapore 138669, Singapore.
IBM Almaden Research Center, 650 Harry Road, San Jose, California 95120, United States.
Biomacromolecules. 2017 Jan 9;18(1):178-188. doi: 10.1021/acs.biomac.6b01463. Epub 2016 Dec 7.
Introduction of hydrophilic components, particularly amines and zwitterions, onto a degradable polymer platform, while maintaining precise control over the polymer composition, has been a challenge. Recognizing the importance of these hydrophilic residues in multiple aspects of the nanobiomedicine field, herein, a straightforward synthetic route to access well-defined amphiphilic and hydrophilic degradable block copolymers from diethanolamine-derived functional eight-membered N-substituted aliphatic cyclic carbonates is reported. By this route, tertiary amine, secondary amine, and zwitterion residues can be incorporated across the polymer backbone. Demonstration of pH-responsiveness of these hydrophilic residues and their utility in the development of drug-delivery vehicles, catered for the specific requirements of respective model drugs (doxorubicin and diclofenac sodium salt) are shown. As hydrophilic components in degradable polymers play crucial roles in the biological interactions, these materials offers opportunities to expand the scope and applicability of aliphatic cyclic carbonates. Our approach to these functional polycarbonates will expand the range of biocompatible and biodegradable synthetic materials available for nanobiomedicine, including drug and gene delivery, antimicrobials, and hydrophilic polymers as poly(ethylene glycol) (PEG) alternatives.
引言
在可降解聚合物平台上引入亲水性成分,特别是胺和两性离子,同时保持对聚合物组成的精确控制,一直是一个挑战。鉴于这些亲水性残基在纳米生物医学领域的多个方面的重要性,本文报道了一种从二乙醇胺衍生的功能八元 N-取代脂肪族环状碳酸酯中获得具有明确结构的两亲性和亲水性可降解嵌段共聚物的简便合成路线。通过该路线,可以在聚合物主链上引入叔胺、仲胺和两性离子残基。展示了这些亲水性残基的 pH 响应性及其在药物传递载体开发中的用途,以满足各自模型药物(阿霉素和双氯芬酸钠盐)的特定要求。由于可降解聚合物中的亲水性成分在生物相互作用中起着至关重要的作用,这些材料为扩大脂肪族环状碳酸酯的范围和适用性提供了机会。我们对这些功能性聚碳酸酯的研究方法将扩展可用于纳米生物医学的生物相容性和可生物降解合成材料的范围,包括药物和基因传递、抗菌剂以及作为聚乙二醇(PEG)替代品的亲水性聚合物。