Department of Engineering and Physical Sciences, Institute of Advanced Research, Gujarat 382426, India.
Department of Engineering and Physical Sciences, Institute of Advanced Research, Gujarat 382426, India.
Steroids. 2021 Jan;165:108769. doi: 10.1016/j.steroids.2020.108769. Epub 2020 Nov 15.
Bile acids have contributed immensely to hydrogel research due to their peculiar physicochemical properties and biocompatibility. The wide accessibility of bile acids and their straightforward derivatization methods make them attractive building blocks for the design of novel hydrogels systems to deliver biomolecules, drugs, and vaccines. This review conceptualizes recent developments in bile acid-based hydrogels and their applications. These bile-based hydrogels have the ability to absorb carbon dioxide efficiently and may potentially work as alternative materials for carbon dioxide capture and storage. The hydrogels hold great potential in medicine and biology applications as drug carriers and models for fundamental self-assembly in pathological conditions. Herein, we have summarized the efforts that have been made for the development of molecular hydrogels in terms of biocompatibility, therapeutic applications, and challenges associated with existing molecular hydrogels.
胆汁酸由于其独特的物理化学性质和生物相容性,在水凝胶研究中做出了巨大贡献。胆汁酸广泛易得,其衍生方法简单,因此它们成为设计新型水凝胶系统以递送生物分子、药物和疫苗的有吸引力的构建块。本综述概述了基于胆汁酸的水凝胶及其应用的最新进展。这些基于胆汁酸的水凝胶具有高效吸收二氧化碳的能力,并且可能作为二氧化碳捕获和储存的替代材料。水凝胶在医学和生物学应用中作为药物载体和病理条件下基本自组装的模型具有很大的潜力。本文总结了在分子水凝胶的开发方面所做的努力,包括生物相容性、治疗应用以及与现有分子水凝胶相关的挑战。