Pramanik Bapan
Department of Chemistry, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Gels. 2022 Sep 7;8(9):569. doi: 10.3390/gels8090569.
Thixotropy is a fascinating feature present in many gel systems that has garnered a lot of attention in the medical field in recent decades. When shear stress is applied, the gel transforms into sol and immediately returns to its original state when resting. The thixotropic nature of the hydrogel has inspired scientists to entrap and release enzymes, therapeutics, and other substances inside the human body, where the gel acts as a drug reservoir and can sustainably release therapeutics. Furthermore, thixotropic hydrogels have been widely used in various therapeutic applications, including drug delivery, cornea regeneration and osteogenesis, to name a few. Because of their inherent biocompatibility and structural diversity, peptides are at the forefront of cutting-edge research in this context. This review will discuss the rational design and self-assembly of peptide-based thixotropic hydrogels with some representative examples, followed by their biomedical applications.
触变性是许多凝胶体系中存在的一个迷人特性,近几十年来在医学领域备受关注。当施加剪切应力时,凝胶会转变为溶胶,静置时又会立即恢复到原始状态。水凝胶的触变性激发了科学家们在人体内包裹和释放酶、治疗剂及其他物质的灵感,在人体内凝胶充当药物储存库并可持续释放治疗剂。此外,触变性水凝胶已广泛应用于各种治疗应用中,包括药物递送、角膜再生和成骨等。由于其固有的生物相容性和结构多样性,肽在这方面处于前沿的前沿研究中。本文将通过一些代表性实例讨论基于肽的触变性水凝胶的合理设计和自组装,随后介绍其生物医学应用。