Oregon State University, College of Veterinary Medicine, 105 Magruder Hall, 700 SW 30th St., Corvallis, OR 97331, United States.
Res Vet Sci. 2013 Dec;95(3):1201-9. doi: 10.1016/j.rvsc.2013.07.026. Epub 2013 Aug 6.
Meniscal injuries are a common cause of pain and osteoarthritis in dogs. We describe here the production of synoviocyte-derived autologous neotissues for potential application in meniscal tissue engineering, via two different culture techniques: contracted or tensioned synthesis of synoviocyte neotissues. Synoviocytes were obtained during routine stifle arthroscopy and cultured from 14 dogs with naturally occurring osteoarthritis of the stifle. Neotissues were analyzed for meniscal-like matrix components and their gene expression, inflammatory gene expression, and cell viability. Tension improved cell viability, and, independent of cell viability, fibrochondrogenic activity by promoting expression of collagen type 1 and aggrecan genes and attenuating gene expression of IL-6. Through this mechanism tension increased collagen protein content and chondrogenic index of neotissues. Alpha smooth muscle actin was present in all neotissues and was responsible for grossly visible contractile behavior. Application of tension to synoviocytes may be a viable culture method towards in vitro meniscal tissue engineering.
半月板损伤是犬疼痛和骨关节炎的常见原因。我们通过两种不同的培养技术:收缩或张力合成滑膜细胞新生组织,来描述通过滑膜细胞产生用于半月板组织工程的自体新生组织。滑膜细胞是在常规膝关节镜检查过程中获得的,并从 14 只患有自然发生的膝关节骨关节炎的狗中培养而来。分析了新生组织的半月板样基质成分及其基因表达、炎症基因表达和细胞活力。张力提高了细胞活力,并且通过促进胶原蛋白 1 和聚集蛋白基因的表达以及减弱白细胞介素 6 的基因表达,独立于细胞活力,促进了成纤维软骨生成活性。通过这种机制,张力增加了新生组织的胶原蛋白含量和软骨生成指数。α平滑肌肌动蛋白存在于所有新生组织中,是肉眼可见的收缩行为的原因。向滑膜细胞施加张力可能是体外半月板组织工程的一种可行的培养方法。