Bacelar Ana H, Silva-Correia Joana, Oliveira Joaquim M, Reis Rui L
3B's Research Group - Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark, Parque de Ciência e Tecnologia, Zona Industrial da Gandra, 4805-017 Barco GMR, Portugal.
J Mater Chem B. 2016 Oct 7;4(37):6164-6174. doi: 10.1039/c6tb01488g. Epub 2016 Aug 15.
Gellan gum, a microbial exopolysaccharide fermentation product of Pseudomonas elodea, is a natural biomaterial that has shown promise for tissue engineering and regenerative medicine applications. Although this exopolysaccharide possesses many advantages, such as interesting physicochemical properties and non-cytotoxicity, the mechanical properties and processability of gellan gum are not totally satisfactory in different tissue engineering contexts, i.e. gellan gum hydrogels are mechanically weak and the high gelling temperature is also unfavourable. An additional critical limitation is the lack of specific attachment sites for anchorage-dependent cells. However, the multiple hydroxyl groups and the free carboxyl per repeating unit of gellan gum can be used for chemical modification and functionalization in order to optimize its physicochemical and biological properties. A number of physical modification approaches have also been employed. This review outlines the recent progress in gellan gum hydrogels and their derivatives, and identifies the new challenges in tissue engineering, provided by blending and/or chemical modification.
结冷胶是伊乐藻假单胞菌的一种微生物胞外多糖发酵产物,是一种天然生物材料,已显示出在组织工程和再生医学应用中的潜力。尽管这种胞外多糖具有许多优点,如有趣的物理化学性质和无细胞毒性,但在不同的组织工程环境中,结冷胶的机械性能和加工性能并不完全令人满意,即结冷胶水凝胶机械性能较弱,且高凝胶温度也不利。另一个关键限制是缺乏用于贴壁依赖性细胞的特定附着位点。然而,结冷胶每个重复单元的多个羟基和游离羧基可用于化学修饰和功能化,以优化其物理化学和生物学性质。也采用了一些物理修饰方法。本综述概述了结冷胶水凝胶及其衍生物的最新进展,并确定了通过混合和/或化学修饰在组织工程中面临的新挑战。