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PEG-penetrated chitosan–alginate co-polysaccharide-based partially and fully cross-linked hydrogels as ECM mimic for tissue engineering applications

机译:PEG渗透的壳聚糖-藻酸盐共多糖基部分和完全交联的水凝胶,作为ECM模拟物,用于组织工程应用

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The emerging strategy of tissue engineering for the management of end-stage organ failure and associated complications mainly relies on ECM mimicking scaffolds for neo-tissue genesis. In the current study, novel polyethylene glycol interpenetrated cross-linked hydrogel scaffold based on a co-polysaccharide (PIAC) synthesized from two marine heteropolysaccharides, alginate and chitosan, was designed. Partially cross-linked (PIAC-P) and fully cross-linked hydrogels (PIAC-F) were prepared. The physiochemical evaluations of both the hydrogels revealed the presence of alginate fraction and extensive –OH groups on the surface, sufficient water content and water holding capacity. The porosity and bulk density were also appreciable. The scaffolds were hemocompatible and were able to adsorb appreciable plasma proteins on to the surface. MTT assay on hydrogel extracts and direct contact assay showed the nontoxic effects of fibroblast cells upon contact with the hydrogel. Live/dead assay using ethidium bromide/acridine orange cocktail on fibroblast cells grown on the hydrogels after 5?days of initial seeding displayed green nucleus revealing the non-apoptotic cells. PIAC-P hydrogels were superior to certain aspects due to the availability of free functional groups than PIAC-F where most of these groups were utilized for cross-linking. The biological evaluations confirmed the healthy being and 3D growth of fibroblasts on the porous networks of both the hydrogels. The present hydrogel can form an ECM mimic and can form a potent candidate for various tissue engineering applications.
机译:组织工程学用于治疗终末期器官衰竭和相关并发症的新兴策略主要依靠ECM模拟支架进行新组织的发生。在当前的研究中,设计了一种新型的聚乙二醇互穿交联水凝胶支架,该支架基​​于由两种海洋杂多糖藻酸盐和壳聚糖合成的共多糖(PIAC)。制备了部分交联的(PIAC-P)和完全交联的水凝胶(PIAC-F)。两种水凝胶的理化评估都表明存在藻酸盐级分和表面上广泛的–OH基团,足够的水含量和保水能力。孔隙率和堆积密度也是可观的。支架具有血液相容性,并且能够将明显的血浆蛋白吸附到表面上。对水凝胶提取物的MTT测定和直接接触测定表明,成纤维细胞与水凝胶接触后具有无毒作用。初次接种5天后,在水凝胶上生长的成纤维细胞上使用溴化乙锭/ ac啶橙混合物进行活/死分析,显示出绿色核,显示出非凋亡细胞。由于可以使用游离官能团,因此PIAC-P水凝胶优于某些方面,而PIAC-F大部分都用于交联。生物学评估证实了两种水凝胶的多孔网络上成纤维细胞的健康存在和3D生长。本发明的水凝胶可以形成ECM模拟物,并且可以形成用于各种组织工程应用的有效候选物。

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