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Examination of the Dynamic Mechanical Properties of Tissue Engineering Scaffolds

机译:组织工程支架的动态力学性能检查

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Scaffolds of both natural and synthetic materials have been widely utilized to provide a three dimensional environment for cell growth. The characteristics of these scaffolds play a vital, but sometimes ambiguous, role in tissue engineering constructs. Collagen-glycosaminoglycan matrices have been used clinically as artificial skin implants. Previous research in our laboratory on this model has shown that gene expression is regulated by mechanical stress applied to the matrix. In this work we begin the process of quantifying the effects of mechanical stress and preparation technique on a matrix comprised of type Ⅰ collagen and chondroitin-6-sulfate. Compressive loads were applied to the matrices using a dynamic mechanical analyzer at 37 degrees Celsius and retrofitted with 5% carbon dioxide gas flow. All samples were tested hydrated in either simulated body fluid or PBS. Storage and loss modulus data are presented. Mechanical tests were performed on collagen-GAG meshes both seeded with human dermal fibroblasts and not seeded with cells. Continuing work includes gene expression analysis of the cells on the seeded matrices in order to identify differential gene expression induced by mechanical loading.
机译:天然和合成材料的支架已被广泛利用以提供用于细胞生长的三维环境。这些支架的特征在组织工程构造中起着至关重要但有时含糊不清的作用。胶原蛋白-糖胺聚糖基质已在临床上用作人造皮肤植入物。我们实验室先前对该模型的研究表明,基因表达受施加于基质的机械应力调节。在这项工作中,我们开始量化机械应力和制备技术对由Ⅰ型胶原蛋白和6-硫酸软骨素组成的基质的影响。使用动态机械分析仪在37摄氏度下将压缩载荷施加到基体上,并用5%的二氧化碳气流进行改造。所有样品均在模拟体液或PBS中进行了水合测试。给出了存储和损耗模量数据。对既植入人真皮成纤维细胞又未植入细胞的胶原蛋白-GAG网片进行了机械测试。继续的工作包括对种子基质上细胞的基因表达分析,以鉴定由机械负荷诱导的差异基因表达。

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