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Poly (glycerol adipate) (PGA) an Enzymatically Synthesized Functionalizable Polyester and Versatile Drug Delivery Carrier: A Literature Update

机译:聚己二酸甘油酯(PGA)一种酶促合成的可官能化聚酯和多功能药物递送载体:文献更新

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摘要

The enzymatically synthesized poly (glycerol adipate) (PGA) has demonstrated all the desirable key properties required from a performing biomaterial to be considered a versatile “polymeric-tool” in the broad field of drug delivery. The step-growth polymerization pathway catalyzed by lipase generates a highly functionalizable platform while avoiding tedious steps of protection and deprotection. Synthesis requires only minor purification steps and uses cheap and readily available reagents. The final polymeric material is biodegradable, biocompatible and intrinsically amphiphilic, with a good propensity to self-assemble into nanoparticles (NPs). The free hydroxyl group lends itself to a variety of chemical derivatizations via simple reaction pathways which alter its physico-chemical properties with a possibility to generate an endless number of possible active macromolecules. The present work aims to summarize the available literature about PGA synthesis, architecture alterations, chemical modifications and its application in drug and gene delivery as a versatile carrier. Following on from this, the evolution of the concept of enzymatically-degradable PGA-drug conjugation has been explored, reporting recent examples in the literature.
机译:酶法合成的聚己二酸甘油酯(PGA)证明了高性能生物材料所需的所有理想关键特性,这些特性被认为是广泛的药物输送领域中通用的“聚合工具”。脂肪酶催化的逐步增长聚合途径产生了高度可官能化的平台,同时避免了繁琐的保护和脱保护步骤。合成仅需很少的纯化步骤,并使用廉价且容易获得的试剂。最终的聚合物材料是可生物降解的,生物相容的并且本质上是两亲的,具有自组装成纳米颗粒(NP)的良好倾向。游离羟基可通过简单的反应途径使其自身发生多种化学衍生反应,这些反应途径会改变其理化性质,并可能产生无数种可能的活性大分子。本工作旨在总结有关PGA合成,结构改变,化学修饰及其在药物和基因递送中作为通用载体的应用的可用文献。在此之后,已经探索了可酶降解的PGA-药物偶联概念的发展,报道了文献中的最新实例。

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