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Click chemistry-based biopolymeric hydrogels for regenerative medicine

机译:点击基于化学的生物聚合物水凝胶进行再生药物

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Click chemistry is not a single specific reaction, but describes ways of generating products which emulate examples in nature. Click reactions occur in one pot, are not disturbed by water, generate minimal and inoffensive byproducts, and are characterized by a high thermodynamic driving force, driving the reaction quickly and irreversibly towards a high yield of a single reaction product. As a result, over the past 15 years it has become a very useful bio-orthogonal method for the preparation of chemical cross-linked biopolymer-based hydrogel, in the presence of e.g. growth factors and live cells, or in-vivo. Biopolymers are renewable and non-toxic, providing a myriad of potential backbone toolboxes for hydrogel design. The goal of this review is to summarize recent advances in the development of click chemistry-based biopolymeric hydrogels, and their applications in regenerative medicine. In particular, various click chemistry approaches, including copper-catalyzed azide-alkyne cycloaddition reactions, copper-free click reactions (e.g. the Diels-Alder reactions, the strain-promoted azide-alkyne cycloaddition reactions, the radical mediated thiol-ene reactions, and the oxime-forming reactions), and pseudo-click reactions (e.g. the thiol-Michael addition reactions and the Schiff base reactions) are highlighted in the first section. In addition, numerous biopolymers, including proteins (e.g. collagen, gelatin, silk, and mucin), polysaccharides (e.g. hyaluronic acid, alginate, dextran, and chitosan) and polynucleotides (e.g. deoxyribonucleic acid), are discussed. Finally, we discuss biopolymeric hydrogels, cross-linked by click chemistry, intended for the regeneration of skin, bone, spinal cord, cartilage, and cornea. This article provides new insights for readers in terms of the design of regenerative medicine, and the use of biopolymeric hydrogels based on click chemistry reactions.
机译:点击化学不是一个特定的反应,而是描述了产生仿制性质的产品的方法。点击反应发生在一个锅中,不会受水扰,产生最小且不透露的副产品,并通过高热力驱动力,迅速驱动反应,朝向高产率的单一反应产物的高产率。结果,在过去的15年中,它已成为制备化学交联生物聚合物基水凝胶的非常有用的生物正交方法,在此处存在于例如时。生长因子和活细胞,或体内。生物聚合物是可再生和无毒的,提供用于水凝胶设计的无数潜在的骨干工具箱。本综述的目标是总结近期基于化学的生物聚合物水凝胶的发展的进展及其在再生医学中的应用。特别地,各种点击化学方法,包括铜催化的叠氮化物 - 炔环加油反应,无铜咔哒反应(例如Diels-Alder反应,应变促进的叠氮化物 - 炔环加加入反应,自由基介导的硫醇-eE反应,和在第一部分突出了肟形成反应)和假咔哒反应(例如硫醇 - 迈克尔添加反应和席夫碱基反应)。此外,还讨论了许多生物聚合物,包括蛋白质(例如胶原蛋白,明胶,丝绸和粘蛋白),多糖(例如透明质酸,藻酸盐,葡聚糖和壳聚糖)和多核苷酸(例如脱氧核酸)。最后,我们讨论生物聚糖水凝胶,通过点击化学交联,用于再生皮肤,骨,脊髓,软骨和角膜。本文在再生医学设计方面为读者提供了新的见解,以及基于点击化学反应的生物聚糖水凝胶。

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