Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, U.K.
Department of Chemistry, University of York, Heslington YO10 5DD, U.K.
Biomacromolecules. 2023 Nov 13;24(11):4646-4652. doi: 10.1021/acs.biomac.3c00290. Epub 2023 Oct 4.
Thiol-reactive Michael acceptors are commonly used for the formation of chemically cross-linked hydrogels. In this paper, we address the drawbacks of many Michael acceptors by introducing pyridazinediones as new cross-linking agents. Through the use of pyridazinediones and their mono- or dibrominated analogues, we show that the mechanical strength, swelling ratio, and rate of gelation can all be controlled in a pH-sensitive manner. Moreover, we demonstrate that the degradation of pyridazinedione-gels can be induced by the addition of thiols, thus providing a route to responsive or dynamic gels, and that monobromo-pyridazinedione gels are able to support the proliferation of human cells. We anticipate that our results will provide a valuable and complementary addition to the existing toolkit of cross-linking agents, allowing researchers to tune and rationally design the properties of biomedical hydrogels.
硫醇反应性迈克尔受体通常用于形成化学交联水凝胶。在本文中,我们通过引入哒嗪二酮作为新的交联剂来解决许多迈克尔受体的缺点。通过使用哒嗪二酮及其单溴代或二溴代类似物,我们表明机械强度、溶胀比和凝胶形成速率都可以以 pH 敏感的方式进行控制。此外,我们证明可以通过添加硫醇来诱导哒嗪二酮凝胶的降解,从而提供了一种制备响应性或动态凝胶的途径,并且单溴代哒嗪二酮凝胶能够支持人类细胞的增殖。我们预计,我们的研究结果将为现有的交联剂工具包提供有价值的补充,使研究人员能够调整和合理设计生物医学水凝胶的性能。