Department of Forest Biomaterials, North Carolina State University, Raleigh NC-27606, USA.
Department of Chemistry, North Carolina State University, Raleigh NC-27606, USA.
Carbohydr Polym. 2022 Feb 15;278:118973. doi: 10.1016/j.carbpol.2021.118973. Epub 2021 Dec 4.
The outstanding versatility of starch offers a source of inspiration for the development of high-performance-value-added biomaterials for the biomedical field, including drug delivery, tissue engineering and diagnostic imaging. This is because starch-based materials can be tailored to specific applications via facile grafting or other chemistries, introducing specific substituents, with starch being effectively the "template" used in all the chemical transformations discussed in this review. A considerable effort has been carried out to obtain specific tailored starch-based grafted polymers, taking advantage of its biocompatibility and biodegradability with appealing sustainability considerations. The aim of this review is to critically explore the latest research that use grafting chemistries on starch for the synthesis of products for biomedical applications. An effort is made in reviewing the literature that proposes synthetic "greener" approaches, the use of enzymes and their immobilized analogues and alternative solvent systems, including water emulsions, ionic liquids and supercritical CO.
淀粉卓越的多功能性为开发用于生物医学领域的高性能增值生物材料提供了灵感,包括药物输送、组织工程和诊断成像。这是因为基于淀粉的材料可以通过简单的接枝或其他化学方法进行定制,引入特定的取代基,淀粉实际上是本综述中讨论的所有化学转化的“模板”。人们已经付出了相当大的努力,利用其生物相容性和可生物降解性以及吸引人的可持续性考虑因素,获得了具有特定用途的定制淀粉接枝聚合物。本综述的目的是批判性地探讨利用接枝化学在淀粉上合成用于生物医学应用的产品的最新研究。本文努力综述了提出合成“更绿色”方法的文献,使用酶及其固定化类似物和替代溶剂系统,包括水乳液、离子液体和超临界 CO2。