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Development of Soft Nanocomposite Materials and Their Applications in Cell Culture and Tissue Engineering

机译:软纳米复合材料的开发及其在细胞培养和组织工程中的应用

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摘要

Novel soft nanocomposite materials with unique organic/inorganic network structures have been developed by extending the strategy of “organic/inorganic nanocomposites” to the field of soft materials. The structures described here were synthesized by in-situ free-radical polymerization of various monomers in the presence of exfoliated clay (hectorite) in aqueous media. The nanocomposite hydrogels (NC gels) and soft nanocomposites (M-NCs) obtained were flexible and transparent soft materials, regardless of the clay content, that could be prepared in various shapes and surface forms, each consisting of individually different polymer/clay network structures. Owing to these unique network structures, both NC gels and M-NCs showed extraordinary mechanical properties such as ultrahigh elongation at break and widely controlled modulus and strength, which could overcome the problems (e.g., mechanical fragility, optical turbidity, poor processing ability) associated with conventional chemically crosslinked materials. In addition, the NC gels and M-NCs exhibited a number of new characteristics related to optical anisotropy, morphology, biocompatibility, stimulus sensitivity and cell culture. In the present review, we outline the novel features of these soft nanocomposites, and demonstrate their potential as soft culture substrates useful for tissue engineering as well as soft, transparent, absorbing, and mechanically tough biomaterials for many bio-applications.
机译:通过将“有机/无机纳米复合材料”的策略扩展到软材料领域,已经开发出具有独特的有机/无机网络结构的新型软纳米复合材料。本文所述的结构是在水性介质中,在片状粘土(锂蒙脱石)存在下,通过各种单体的原位自由基聚合反应合成的。所获得的纳米复合水凝胶(NC凝胶)和柔软的纳米复合物(M-NCs)是柔性且透明的柔软材料,与粘土含量无关,可以制成各种形状和表面形式,每种形式分别由不同的聚合物/粘土网络结构组成。由于这些独特的网络结构,NC凝胶和M-NC均显示出非凡的机械性能,例如超高的断裂伸长率和广泛控制的模量和强度,可以克服相关的问题(例如,机械脆性,光学浊度,加工能力差)与传统的化学交联材料。另外,NC凝胶和M-NCs表现出许多与光学各向异性,形态,生物相容性,刺激敏感性和细胞培养有关的新特性。在本综述中,我们概述了这些柔软的纳米复合材料的新颖特征,并展示了它们作为可用于组织工程的柔软培养基质以及对于许多生物应用而言柔软,透明,吸收和机械坚韧的生物材料的潜力。

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