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Bioscaffolds embedded with regulatory modules for cell growth and tissue formation: A review

机译:嵌入具有细胞生长和组织形成的监管模块的Bioscaffolds:审查

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摘要

The demand for artificial organs has greatly increased because of various aging-associated diseases and the wide need for organ transplants. A recent trend in tissue engineering is the precise reconstruction of tissues by the growth of cells adhering to bioscaffolds, which are three-dimensional (3D) structures that guide tissue and organ formation. Bioscaffolds used to fabricate bionic tissues should be able to not only guide cell growth but also regulate cell behaviors. Common regulation methods include biophysical and biochemical stimulations. Biophysical stimulation cues include matrix hardness, external stress and strain, surface topology, and electromagnetic field and concentration, whereas biochemical stimulation cues include growth factors, proteins, kinases, and magnetic nanoparticles. This review discusses bioink preparation, 3D bioprinting (including extrusion-based, inkjet, and ultraviolet-assisted 3D bioprinting), and regulation of cell behaviors. In particular, it provides an overview of state-of-the-art methods and devices for regulating cell growth and tissue formation and the effects of biophysical and biochemical stimulations on cell behaviors. In addition, the fabrication of bioscaffolds embedded with regulatory modules for biomimetic tissue preparation is explained. Finally, challenges in cell growth regulation and future research directions are presented.
机译:由于各种衰老相关疾病和器官移植的广泛需求,对人工器官的需求大大增加。最近组织工程的趋势是通过粘附在杀生物节形的细胞的生长确切地重建组织,这是引导组织和器官形成的三维(3D)结构。用于制造仿生组织的Biosc形胶带应该不仅能够引导细胞生长,而且还能调节细胞行为。常见的调节方法包括生物物理和生化刺激。生物物理刺激提示包括基质硬度,外部应力和应变,表面拓扑和电磁场和浓度,而生物化学刺激提示包括生长因子,蛋白质,激酶和磁性纳米颗粒。该审查讨论了生物源,3D BioPlinting(包括挤出,喷墨和紫外线辅助3D生物印刷)和细胞行为的调节。特别是,它概述了用于调节细胞生长和组织形成的最先进的方法和装置以及生物物理和生物化学刺激对细胞行为的影响。此外,还解释了嵌入具有用于仿生组织制剂的调节模块的生物索金属区的制造。最后,提出了细胞生长调节和未来研究方向的挑战。

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