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首页> 外文期刊>Biotechnology and bioprocess engineering >Three-dimensional Scaffold Containing EGF Incorporated Biodegradable Polymeric Nanoparticles for Stem Cell Based Tissue Engineering Applications
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Three-dimensional Scaffold Containing EGF Incorporated Biodegradable Polymeric Nanoparticles for Stem Cell Based Tissue Engineering Applications

机译:包含EGF掺入的可生物降解聚合物纳米粒子的三维支架,用于基于干细胞的组织工程应用

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Stem cell-based tissue engineering holds much hope for the development of multifunctional tissues to replace diseased organs. The attachment and survival of stem cells on a three-dimensional (3D) scaffold must be enhanced for faster progression of stem cell based tissue engineering. This study evaluate the stability of mesenchy-mal stem cells (MSCs) in 3D porous scaffolds composed of a collagen and chitosan blend impregnated with epidermal growth factor incorporated chitosan nanoparticles (EGF-CNP). The EGF-CNP scaffolds were characterized by transmission electron microscopy, which revealed that the nanoparticles were round in shape and 20 ~ 50 nm in size. The scaffolds were prepared by freeze drying. A Fourier-transform infrared spectrum study revealed that the linkage between collagen and chitosan was through an ionic interaction. Thermal analysis and degradation studies showed that the scaffold could be used in tissue engineering application. MSCs proliferated well in the EGF-CNP impregnated scaffold. A scanning electron microscope study showed anchored and elongated MSCs on the EGF-CNP impregnated scaffold. A 3D biodegradable collagen chitosan scaffold impregnated with EGF-CNP is a promising transportable candidate for MSC-based tissue engineering, and this scaffold could be used as an in vitro model for subsequent clinical applications.
机译:基于干细胞的组织工程对于开发多功能组织替代患病器官抱有很大希望。必须增强干细胞在三维(3D)支架上的附着和存活,以加快基于干细胞的组织工程的发展。这项研究评估了3D多孔支架中的间充质干细胞(MSC)的稳定性,该支架由胶原和壳聚糖共混物组成,并掺入了表皮生长因子的壳聚糖纳米颗粒(EGF-CNP)。通过透射电子显微镜对EGF-CNP支架进行表征,结果表明该纳米颗粒为圆形,尺寸为20〜50 nm。通过冷冻干燥来制备支架。傅立叶变换红外光谱研究表明,胶原蛋白和壳聚糖之间的联系是通过离子相互作用。热分析和降解研究表明该支架可用于组织工程应用。 MSC在EGF-CNP浸渍的支架中增殖良好。扫描电子显微镜研究显示在EGF-CNP浸渍的支架上锚定并拉长了MSC。浸有EGF-CNP的3D可生物降解的胶原壳聚糖支架是基于MSC的组织工程的有希望的可移植候选者,该支架可用作后续临床应用的体外模型。

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