Robert Becky, Chenthamara Dhrisya, Subramaniam Sadhasivam
Biomaterials and Bioprocess Laboratory, Department of Microbial Biotechnology, Bharathiar University, Coimbatore 641046, India.
Biomaterials and Bioprocess Laboratory, Department of Microbial Biotechnology, Bharathiar University, Coimbatore 641046, India; Department of Extension and Career Guidance, Bharathiar University, Coimbatore 641046, India.
Int J Biol Macromol. 2022 Mar 15;201:539-556. doi: 10.1016/j.ijbiomac.2021.12.103. Epub 2021 Dec 30.
The unique physiochemical properties and the porous network architecture of hydrogel seek the attention to be explored in broad range of fields. In the last decade, numerous studies on the development of enzymatically cross-linked hydrogels have been elucidated. Implementing enzyme based cross-linking for fabrication of biomaterials over other cross-linking methods harbor various advantages, especially hydrogels designed using laccase exhibits mild reaction environment, high cross-linking efficiency and less toxicity. To our knowledge this is the first report reviewing the formulation of laccase mediated cross-linking for hydrogel preparation. Here, laccase catalyzed synthesis of hydrogel using polysaccharide viz. arabinoxylan, sugar beet pectin, galactomannan, chitosan etc. and proteins namely soy protein, gelatin, silk fibroin were discussed on highlighting their mechanical properties and its possible field of application. We have summarized the role of phenolic acids in laccase mediated cross-linking particularly ferulic acid which is a component of lignocellulose, serving cell rigidity via cross-linkage. The review also discusses on various biomedical applications such as controlled protein release, tissue engineering, and wound healing. It is anticipated that this review will give a detailed information on different laccase mediated reaction strategies that can be applied for the synthesis of various new biomaterials with tailor made properties.
水凝胶独特的物理化学性质和多孔网络结构使其在广泛的领域中受到关注并有待探索。在过去十年中,已经阐明了许多关于酶促交联水凝胶发展的研究。与其他交联方法相比,采用基于酶的交联来制造生物材料具有多种优势,特别是使用漆酶设计的水凝胶具有温和的反应环境、高交联效率和低毒性。据我们所知,这是第一篇综述漆酶介导的交联用于水凝胶制备的配方的报告。在此,讨论了漆酶催化使用多糖(即阿拉伯木聚糖、甜菜果胶、半乳甘露聚糖、壳聚糖等)和蛋白质(即大豆蛋白、明胶、丝素蛋白)合成水凝胶,重点介绍了它们的机械性能及其可能的应用领域。我们总结了酚酸在漆酶介导的交联中的作用,特别是阿魏酸,它是木质纤维素的一种成分,通过交联作用增强细胞刚性。该综述还讨论了各种生物医学应用,如蛋白质控释、组织工程和伤口愈合。预计这篇综述将提供有关不同漆酶介导的反应策略的详细信息,这些策略可用于合成具有定制特性的各种新型生物材料。