INM-Leibniz Institute for New Materials, Campus D2-2, 66123 Saarbrücken, Germany.
Chemistry Department, Saarland University, 66123 Saarbrücken, Germany.
ACS Appl Mater Interfaces. 2020 Aug 26;12(34):37862-37872. doi: 10.1021/acsami.0c08568. Epub 2020 Aug 14.
Hydrogels for wound management and tissue gluing applications have to adhere to tissues for a given time scale and then disappear, either by removal from the skin or by slow degradation for applications inside the body. Advanced wound management materials also envision the encapsulation of therapeutic drugs or cells to support the natural healing process. The design of hydrogels that can fulfill all of these properties with minimal chemical complexity, a stringent condition to favor transfer into a real medical device, is challenging. Herein, we present a hydrogel design with a moderate structural complexity that fulfills a number of relevant properties for wound dressing: it can form in situ and encapsulate cells, it can adhere to tissues, and it can be degraded on demand by light exposure under cytocompatible conditions. The hydrogels are based on starPEG macromers terminated with catechol groups as cross-linking units and contain intercalated photocleavable nitrobenzyl triazole groups. Hydrogels are formed under mild conditions (-(2-hydroxyethyl)piperazine-'-ethanesulfonic acid (HEPES) buffer with 9-18 mM sodium periodate as the oxidant) and are compatible with encapsulated cells. Upon light irradiation, the cleavage of the nitrobenzyl group mediates depolymerization, which enables the on-demand release of cells and debonding from tissues. The molecular design and obtained properties reported here are interesting for the development of advanced wound dressings and cell therapies and expand the range of functionality of current alternatives.
用于伤口管理和组织黏合应用的水凝胶必须在给定的时间尺度内黏附在组织上,然后要么通过从皮肤上移除,要么通过体内缓慢降解而消失。先进的伤口管理材料还设想封装治疗药物或细胞以支持自然愈合过程。设计能够以最小的化学复杂性满足所有这些特性的水凝胶,是有利于将其转化为实际医疗设备的严格条件,这是具有挑战性的。在这里,我们提出了一种具有适度结构复杂性的水凝胶设计,该设计满足了伤口敷料的许多相关特性:它可以原位形成并封装细胞,它可以黏附在组织上,并且可以在细胞相容性条件下通过光暴露按需降解。水凝胶基于以儿茶酚基团为交联单元的星形 PEG 大分子,并且含有嵌入的光解硝基苄基三唑基团。水凝胶在温和的条件下形成(-(2-羟乙基)哌嗪-'-乙磺酸(HEPES)缓冲液,其中 9-18mM 高碘酸钠作为氧化剂),并与封装的细胞兼容。光照射下,硝基苄基的裂解介导解聚,从而能够按需释放细胞并与组织分离。这里报道的分子设计和获得的特性对于先进的伤口敷料和细胞治疗的发展很有趣,并扩展了当前替代方案的功能范围。