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Biomimetic hydrogels with spatial- and temporal-controlled chemical cues for tissue engineering

机译:具有用于组织工程的空间和颞控制化学线索的仿生水凝胶

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摘要

Biomimetic hydrogels have emerged as the most useful tissue engineering scaffold materials. Their versatile chemistry can recapitulate multiple physical and chemical features to integrate cells, scaffolds, and signaling molecules for tissue regeneration. Due to their highly hydrophilic nature hydrogels can recreate nutrient-rich aqueous environments for cells. Soluble regulatory molecules can be incorporated to guide cell proliferation and differentiation. Importantly, the controlled dynamic parameters and spatial distribution of chemical cues in hydrogel scaffolds are critical for cell-cell communication, cell-scaffold interaction, and morphogenesis. Herein, we review biomimetic hydrogels that provide cells with spatiotemporally controlled chemical cues as tissue engineering scaffolds. Specifically, hydrogels with temporally controlled growth factor-release abilities, spatially controlled conjugated bioactive molecules/motifs, and targeting delivery and reload properties for tissue engineering applications are discussed in detail. Examples of hydrogels that possess clinically favorable properties, such as injectability, self-healing ability, stimulus-responsiveness, and pro-remodeling features, are also covered.
机译:仿生水凝胶已成为最有用的组织工程支架材料。它们的多功能化学可以重新承载多种物理和化学特征,以整合细胞,支架和信号传导分子进行组织再生。由于它们高度亲水性,水凝胶可以为细胞重新创建富含营养的水性环境。可溶性调节分子可以掺入引导细胞增殖和分化。重要的是,水凝胶支架中的化学线索的受控动态参数和空间分布对于细胞 - 细胞通信,细胞 - 支架相互作用和形态发生至关重要。在此,我们评估仿生水凝胶,其提供具有起动性控制的细胞作为组织工程支架。具体地,具有时间上受控生长因子释放能力的水凝胶,空间控制的缀合的生物活性分子/基序以及针对组织工程应用的靶向输送和重新加载性能。还覆盖了具有临床良好性质的水凝胶的实例,例如可注射性,自我愈合能力,刺激反应性和促进功能。

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