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Thermoresponsive polymers: Insights into decisive hydrogel characteristics, mechanisms of gelation, and promising biomedical applications

机译:热响应性聚合物:洞悉决定性的水凝胶特性,胶凝机理和有前途的生物医学应用

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摘要

Thermally induced gelling systems have gained enormous attention over the last decade. They consist of hydrophilic homopolymers or block copolymers in water that present a sol at room temperature and form a gel after administration into the body. This article reviews the main types of thermoresponsive polymers, with special focus on decisive hydrogel characteristics, mechanisms of gelation, and biocompatibility. Promising biomedical applications are described with a focus on injectable formulations, which include solubilization of small hydrophobic drugs, controlled release, delivery of labile biopharmaceutics, such as proteins and genes, cell encapsulation, and tissue regeneration. Furthermore, combinations of thermoresponsive hydrogels and various nanocarriers as promising systems for sustained drug delivery are discussed through selected examples from the literature. Finally, there is a brief overview of current progress in nano-sized systems incorporating thermoresponsive properties.
机译:在过去的十年中,热诱导胶凝体系引起了极大的关注。它们由在水中的亲水均聚物或嵌段共聚物组成,该亲水均聚物或嵌段共聚物在室温下呈溶胶状态,并在给药至体内后形成凝胶。本文概述了热敏聚合物的主要类型,特别关注决定性的水凝胶特性,胶凝机理和生物相容性。描述了有前景的生物医学应用,重点是可注射制剂,其中包括小的疏水性药物的增溶,控释,不稳定的生物药物(如蛋白质和基因)的递送,细胞包封和组织再生。此外,通过选自文献的实例讨论了热响应性水凝胶和各种纳米载体的组合作为有希望的持续药物递送系统。最后,简要概述了具有热响应特性的纳米系统的最新进展。

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