Su Jing
Department of Chemistry, Northeastern Illinois University, Chicago, IL 60625, USA.
Gels. 2018 Sep 2;4(3):72. doi: 10.3390/gels4030072.
Hydrogels are three-dimensional networks composed of hydrated polymer chains and have been a material of choice for many biomedical applications such as drug delivery, biosensing, and tissue engineering due to their unique biocompatibility, tunable physical characteristics, flexible methods of synthesis, and range of constituents. In many cases, methods for crosslinking polymer precursors to form hydrogels would benefit from being highly selective in order to avoid cross-reactivity with components of biological systems leading to adverse effects. Crosslinking reactions involving the thiol group (SH) offer unique opportunities to construct hydrogel materials of diverse properties under mild conditions. This article reviews and comments on thiol-mediated chemoselective and biocompatible strategies for crosslinking natural and synthetic macromolecules to form injectable hydrogels for applications in drug delivery and cell encapsulation.
水凝胶是由水合聚合物链组成的三维网络,由于其独特的生物相容性、可调节的物理特性、灵活的合成方法和多种成分,已成为许多生物医学应用(如药物递送、生物传感和组织工程)的首选材料。在许多情况下,交联聚合物前体以形成水凝胶的方法若具有高度选择性将更有益处,这样可以避免与生物系统的成分发生交叉反应而产生不良影响。涉及硫醇基团(SH)的交联反应为在温和条件下构建具有不同性质的水凝胶材料提供了独特的机会。本文综述并评论了硫醇介导的化学选择性和生物相容性策略,这些策略用于交联天然和合成大分子以形成可注射水凝胶,用于药物递送和细胞封装应用。