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首页> 外文期刊>Journal of biomedical materials research, Part A >Does the tissue engineering architecture of poly(3-hydroxybutyrate) scaffold affects cell-material interactions?
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Does the tissue engineering architecture of poly(3-hydroxybutyrate) scaffold affects cell-material interactions?

机译:聚(3-羟基丁酸酯)支架的组织工程结构是否影响细胞与材料的相互作用?

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A critical element in tissue engineering involves the fabrication of a three-dimensional scaffold. The scaffold provides a space for new tissue formation, supports cellular ingrowth, and proliferation and mimics many roles of the extracellular matrix. Poly(3-hydroxybutyrate) (PHB) is the most thoroughly investigated member of the polyhydroxyalkanoates (PHAs) family that has various degrees of biocompatibility and biodegradability for tissue engineering applications. In this study, we fabricated PHB scaffolds by utilizing electrospinning and salt-leaching procedures. The behavior of monkey epithelial kidney cells (Vero) and mouse mesenchymal stem cells (mMSCs) on these scaffolds was compared by the MTS assay and scanning electron microscopy. Additionally, this study investigated the mechanical and physical properties of these scaffolds by measuring tensile strength and modulus, dynamic contact angle and porosity. According to our results, the salt-leached scaffolds showed more wettability and permeability, but inferior mechanical properties when compared with nanofibrous scaffolds. In terms of cell response, salt-leached scaffolds showed enhanced Vero cell proliferation, whereas both scaffolds responded similarly in the case of mMSCs proliferation. In brief, nanofibrous scaffolds can be a better substrate for cell attachment and morphology.
机译:组织工程中的关键要素涉及三维支架的制造。支架为新组织的形成提供了空间,支持细胞向内生长和增殖,并模仿细胞外基质的许多作用。聚(3-羟基丁酸酯)(PHB)是聚羟基链烷酸酯(PHA)家族中经过最彻底研究的成员,其在组织工程应用中具有不同程度的生物相容性和生物降解性。在这项研究中,我们通过利用静电纺丝和盐浸程序制造了PHB支架。通过MTS分析和扫描电子显微镜比较了这些支架上的猴上皮肾细胞(Vero)和小鼠间充质干细胞(mMSCs)的行为。此外,这项研究通过测量拉伸强度和模量,动态接触角和孔隙率研究了这些支架的机械和物理性能。根据我们的结果,与纳米纤维支架相比,盐浸支架表现出更多的润湿性和渗透性,但机械性能较差。在细胞反应方面,盐浸支架显示出增强的Vero细胞增殖,而在mMSCs增殖的情况下,两种支架的反应相似。简而言之,纳米纤维支架可以是细胞附着和形态的更好的基质。

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