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Light responsive metal–organic frameworks as controllable CO-releasing cell culture substrates

机译:光响应性金属有机框架作为可控释CO的细胞培养底物

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摘要

A new carbon monoxide (CO)-releasing material has been developed by embedding a manganese carbonyl complex, MnBr(bpydc)(CO)3 (bpydc = 5,5′-dicarboxylate-2,2′-bipyridine) into a highly robust Zr(iv)-based metal–organic framework (MOF). Efficient and controllable CO-release was achieved under exposure to low intensity visible light. Size-controllable nanocrystals of the photoactive MOF were obtained and their CO-releasing properties were correlated with their crystal sizes. The photoactive crystals were processed into cellular substrates with a biocompatible polymer matrix, and the light-induced delivery of CO and its subsequent cellular uptake were monitored using a fluorescent CO-probe. The results discussed here demonstrate a new opportunity to use MOFs as macromolecular scaffolds towards CO-releasing materials and the advantage of MOFs for high CO payloads, which is essential in future therapeutic applications.
机译:通过将锰羰基锰配合物MnBr(bpydc)(CO)3(bpydc = 5,5'-dicarboxylate-2,2'-bipyridine)嵌入到高度坚固的Zr中,已开发出一种新的释放一氧化碳(CO)的材料。 (iv)基于金属的有机框架(MOF)。暴露于低强度可见光下可实现有效且可控的CO释放。获得了光活性MOF的尺寸可控的纳米晶体,其释放CO的特性与其晶体尺寸相关。将光敏晶体加工成具有生物相容性聚合物基质的细胞基质,并使用荧光CO探针监测光诱导的CO释放及其随后的细胞摄取。此处讨论的结果证明了将MOF用作释放CO的高分子支架的新机会,以及MOF具有高CO有效负载的优势,这在未来的治疗应用中必不可少。

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