明胶甲基丙烯酰生物支架:牙槽骨组织工程的可行选择?

Kirthanashri S. Vasanthan
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引用次数: 0

摘要

组织工程的概念涉及细胞沉积在生物支架上的特定位置,最终导致组织再生。细胞、生物支架和分子信号因子的组合作用,共同提供了模拟原生体内系统的精确微环境。牙槽骨再生由于其所处的位置,在支架的构建过程中需要适当的机械负荷和微生物菌群,这给骨再生带来了一定的挑战[1]。三维(3D)生物打印通过制造3D结构来支持多能干细胞在所需位置的粘附和增殖,为骨再生提供了巨大的可能性。3D打印允许特定形状和大小的支架的个体特异性构建,允许在引导方式下通过细胞增殖,分化和分子信号通路进行骨再生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gelatin Methacryloyl Bioscaffolds: A Viable Option for Alveolar Bone Tissue Engineering?
The concept of tissue engineering involves the deposition of cells on bioscaffolds in a particular location that ultimately leads to regeneration of tissues. The combinatorial effect of cells, bioscaffolds and molecular signaling factors, works conjunctly to provide exact microenvironment mimicking the native in vivo system. Alveolar bone regeneration due to its location, poses certain challenges where appropriate mechanical loading and microbial flora need addressing during construction of the scaffold [1]. Three dimensional (3D) bioprinting has unfolded vast possibilities for bone regeneration through fabrication of 3D constructs that support adhesion and proliferation of pleuripotent stem cells in desired location. 3D printing allows individual-specific construction of scaffolds of a certain shape and size that allow regeneration of bone through cellular proliferation, differentiation, and molecular-signalling pathways in a guided fashion.
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