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Short-term in vivo biological and mechanical remodeling of porcine acellular dermal matrices

机译:猪脱细胞真皮基质的短期体内生物和机械重塑

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摘要

The purpose of this study was to assess the biological revitalization and mechanical integrity of Strattice Reconstructive Tissue Matrix, a porcine-derived acellular dermal matrix, in vivo over time. We expanded the traditional subcutaneous model to incorporate biologic matrix scaffolds large enough to allow evaluation of mechanical properties in addition to the assessment of histological changes. Hematoxylin and eosin histology staining was used to evaluate cellular and tissue changes, and a mechanical testing frame was used to measure the ultimate tensile stress and Young’s modulus of the implanted material over time. Cell infiltration and blood vessel formation into the porcine-derived acellular dermal matrix were evident at 2 weeks and increased with implantation time. Mechanical remodeling resulted in an initial decrease in ultimate tensile stress, not associated with cell infiltration, followed by a significant increase in material strength, concurrent with histological evidence of new collagen synthesis. Young’s modulus followed a similar trend.
机译:这项研究的目的是评估Strattice 重建组织基质(一种猪衍生的脱细胞真皮基质)在一段时间内的体内生物活力和机械完整性。我们扩展了传统的皮下模型,以纳入足够大的生物基质支架以允许评估机械性能,同时评估组织学变化。使用苏木精和曙红组织学染色来评估细胞和组织的变化,并使用机械测试框架来测量植入材料随时间的极限拉伸应力和杨氏模量。在2周时细胞浸润和血管形成到猪衍生的脱细胞真皮基质中,并且随着植入时间的增加而增加。机械重塑导致最终拉伸应力的最初降低,与细胞浸润无关,随后材料强度显着提高,同时新的胶原蛋白合成也得到了组织学证据。杨氏模量也遵循类似的趋势。

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