Kremer Antje, Ribitsch Iris, Reboredo Jenny, Dürr Julia, Egerbacher Monika, Jenner Florien, Walles Heike
1 Department of Tissue Engineering and Regenerative Medicine (TERM), University Hospital Wuerzburg , Wuerzburg, Germany .
2 Translational Center Wuerzburg 'Regenerative therapies,' Wuerzburg Branch of the Fraunhofer IGB, Wuerzburg, Germany .
Tissue Eng Part A. 2017 May;23(9-10):390-402. doi: 10.1089/ten.TEA.2016.0317. Epub 2017 Apr 7.
Meniscal injuries are the most frequently encountered soft tissue injuries in the equine stifle joint. Due to the inherent limited repair potential of meniscal tissue, meniscal injuries do not only affect the meniscus itself but also lead to impaired joint homeostasis and secondary osteoarthritis. The presented study compares 3D coculture constructs of primary equine mesenchymal stem cells (MSC) and meniscus cells (MC) seeded on three different scaffolds-a cell-laden collagen type I hydrogel (Col I gel), a tissue-derived small intestinal matrix scaffold (SIS-muc) and a combination thereof-for their qualification to be applied for meniscus tissue engineering. To investigate cell attachment of primary MC and MSC on SIS-muc matrix SEM pictures were performed. For molecular analysis, lyophilized samples of coculture constructs with different cell ratios (100% MC, 100% MSC, and 50% MC and 50% MSC, 20% MC, and 80% MSC) were digested and analyzed for DNA and GAG content. Active matrix remodeling of 3D coculture models was indicated by matrix metalloproteinases detection. For comparison of tissue-engineered constructs with the histologic architecture of natural equine menisci, paired lateral and medial menisci of 15 horses representing different age groups were examined. A meniscus phenotype with promising similarity to native meniscus tissue in its GAG/DNA expression in addition to Col I, Col II, and Aggrecan production was achieved using a scaffold composed of Col I gel on SIS-muc combined with a coculture of MC and MSC. The results encourage further development of this scaffold-cell combination for meniscus tissue engineering.
半月板损伤是马膝关节中最常见的软组织损伤。由于半月板组织固有的修复潜力有限,半月板损伤不仅会影响半月板本身,还会导致关节内环境稳态受损和继发性骨关节炎。本研究比较了接种在三种不同支架上的原代马间充质干细胞(MSC)和半月板细胞(MC)的三维共培养构建体——负载细胞的I型胶原水凝胶(Col I凝胶)、组织来源的小肠基质支架(SIS-muc)及其组合——用于半月板组织工程的适用性。为了研究原代MC和MSC在SIS-muc基质上的细胞附着情况,进行了扫描电子显微镜(SEM)图片分析。对于分子分析,将具有不同细胞比例(100% MC、100% MSC、50% MC和50% MSC、20% MC和80% MSC)的共培养构建体的冻干样品进行消化,并分析其DNA和糖胺聚糖(GAG)含量。通过检测基质金属蛋白酶来表明三维共培养模型的活性基质重塑。为了将组织工程构建体与天然马半月板的组织结构进行比较,检查了代表不同年龄组的15匹马的成对外侧和内侧半月板。使用由SIS-muc上的Col I凝胶组成的支架与MC和MSC的共培养,实现了在GAG/DNA表达以及I型胶原、II型胶原和聚集蛋白聚糖产生方面与天然半月板组织具有良好相似性的半月板表型。这些结果鼓励进一步开发这种用于半月板组织工程的支架-细胞组合。