Zhang Vivian, Ou Carrie, Kevlishvili Ilia, Hemmingsen Christina M, Accardo Joseph V, Kulik Heather J, Kalow Julia A
Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States of America.
Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States of America.
ACS Macro Lett. 2024 May 21;13(5):621-626. doi: 10.1021/acsmacrolett.4c00245. Epub 2024 May 3.
Thioesters are an essential functional group in biosynthetic pathways, which has motivated their development as reactive handles in probes and peptide assembly. Thioester exchange is typically accelerated by catalysts or elevated pH. Here, we report the use of bifunctional aromatic thioesters as dynamic covalent cross-links in hydrogels, demonstrating that at physiologic pH in aqueous conditions, transthioesterification facilitates stress relaxation on the time scale of hundreds of seconds. We show that intramolecular hydrogen bonding is responsible for accelerated exchange, evident in both molecular kinetics and macromolecular stress relaxation. Drawing from concepts in the vitrimer literature, this system exemplifies how dynamic cross-links that exchange through an associative mechanism enable tunable stress relaxation without altering stiffness.
硫酯是生物合成途径中的一种重要官能团,这促使它们被开发为探针和肽组装中的反应性基团。硫酯交换通常通过催化剂或升高pH来加速。在此,我们报道了使用双功能芳香硫酯作为水凝胶中的动态共价交联剂,证明在生理pH的水性条件下,硫酯交换促进了数百秒时间尺度上的应力松弛。我们表明分子内氢键是加速交换的原因,这在分子动力学和大分子应力松弛中都很明显。借鉴热致液晶聚合物文献中的概念,该系统例证了通过缔合机制进行交换的动态交联如何在不改变刚度的情况下实现可调的应力松弛。