Orthogonally Crosslinked Gelatin-Norbornene Hydrogels for Biomedical Applications

IF 4.4 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Macromolecular bioscience Pub Date : 2023-09-25 DOI:10.1002/mabi.202300371
Chien-Chi Lin, Ellen Frahm, Favour O. Afolabi
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Abstract

The thiol-norbornene photo-click reaction has exceptionally fast crosslinking efficiency compared with chain-growth polymerization at equivalent macromer contents. The orthogonal reactivity between norbornene and thiol/tetrazine permits crosslinking of synthetic and naturally derived macromolecules with modularity, including poly(ethylene glycol) (PEG)-norbornene (PEGNB), gelatin-norbornene (GelNB), among others. For example, collagen-derived gelatin contains both cell adhesive motifs (e.g., Arg-Gly-Asp or RGD) and protease-labile sequences, making it an ideal macromer for forming cell-laden hydrogels. First reported in 2014, GelNB is increasingly used in orthogonal crosslinking of biomimetic matrices in various applications. GelNB can be crosslinked into hydrogels using multi-functional thiol linkers (e.g., dithiothreitol (DTT) or PEG-tetra-thiol (PEG4SH) via visible light or longwave ultraviolet (UV) light step-growth thiol-norbornene reaction or through an enzyme-mediated crosslinking (i.e., horseradish peroxidase, HRP). GelNB-based hydrogels can also be modularly crosslinked with tetrazine-bearing macromers via inverse electron-demand Diels-Alder (iEDDA) click reaction. This review surveys the various methods for preparing GelNB macromers, the crosslinking mechanisms of GelNB-based hydrogels, and their applications in cell and tissue engineering, including crosslinking of dynamic matrices, disease modeling, and tissue regeneration, delivery of therapeutics, as well as bioprinting and biofabrication.

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用于生物医学应用的正交交联明胶降冰片烯水凝胶。
与同等大分子单体含量的链生长聚合相比,硫醇降冰片烯光点击反应具有异常快速的交联效率。降冰片烯和硫醇/四嗪之间的正交反应性允许合成和天然衍生的具有模块性的大分子交联,包括聚乙二醇(PEG)-降冰片烯(PEGNB)、明胶-降冰片ne(GelNB)等。例如,胶原衍生的明胶含有细胞粘附基序(例如Arg-Gly-Asp或RGD)和蛋白酶不稳定序列,使其成为形成载有细胞的水凝胶的理想大分子单体。2014年首次报道,GelNB在各种应用中越来越多地用于仿生基质的正交交联。GelNB可以使用多功能硫醇连接体(例如,二硫苏糖醇(DTT)或PEG四硫醇(PEG4SH),通过可见光或长波紫外线(UV)分步生长硫醇降冰片烯反应或通过酶介导的交联(即辣根过氧化物酶,HRP)交联成水凝胶。基于GelNB的水凝胶也可以通过反电子需求Diels-Alder(iEDDA)点击反应与含四嗪的大分子单体进行模块交联。本文综述了制备GelNB大分子单体的各种方法、基于GelNB的水凝胶的交联机制及其在细胞和组织工程中的应用,包括动态基质的交联、疾病建模和组织再生、治疗剂的递送以及生物打印和生物制造。
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来源期刊
Macromolecular bioscience
Macromolecular bioscience 生物-材料科学:生物材料
CiteScore
7.90
自引率
2.20%
发文量
211
审稿时长
1.5 months
期刊介绍: Macromolecular Bioscience is a leading journal at the intersection of polymer and materials sciences with life science and medicine. With an Impact Factor of 2.895 (2018 Journal Impact Factor, Journal Citation Reports (Clarivate Analytics, 2019)), it is currently ranked among the top biomaterials and polymer journals. Macromolecular Bioscience offers an attractive mixture of high-quality Reviews, Feature Articles, Communications, and Full Papers. With average reviewing times below 30 days, publication times of 2.5 months and listing in all major indices, including Medline, Macromolecular Bioscience is the journal of choice for your best contributions at the intersection of polymer and life sciences.
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