Department of Biomedical Engineering, Graduate School of Biomedical Engineering, Tohoku University, Sendai, Miyagi, Japan.
Biochem Biophys Res Commun. 2012 Aug 10;424(4):724-9. doi: 10.1016/j.bbrc.2012.07.019. Epub 2012 Jul 16.
The present work describes the influence of both vitamin C (VC) and mechanical stimulation on development of the extracellular matrix (ECM) and improvement in mechanical properties of a chondrocyte-agarose construct in a regenerating tissue disease model of hyaline cartilage. We used primary bovine chondrocytes and two types of VC, ascorbic acid (AsA) as an acidic form and ascorbic acid 2-phosphate (A2P) as a non-acidic form, and applied uniaxial compressive strain to the tissue model using a purpose-built bioreactor. When added to the medium in free-swelling culture conditions, A2P downregulated development of ECM and suppressed improvement of the tangent modulus more than AsA. By contrast, application of mechanical stimulation to the construct both increased the tangent modulus more than the free-swelling group containing A2P and enhanced the ECM network of inner tissue to levels nearly as high as the free-swelling group containing AsA. Thus, mechanical stimulation and strain appears to enhance the supply of nutrients and improve the synthesis of ECM via mechanotransduction pathways of chondrocytes. Therefore, we suggest that mechanical stimulation is necessary for homogenous development of ECM in a cell-associated construct with a view to implantation of a large-sized articular cartilage defect.
本研究旨在探讨维生素 C(VC)和机械刺激对细胞外基质(ECM)发育和软骨细胞-琼脂糖构建体机械性能改善的影响,该构建体用于透明软骨再生组织疾病模型。我们使用原代牛软骨细胞和两种 VC,即抗坏血酸(AsA)的酸性形式和抗坏血酸 2-磷酸(A2P)的非酸性形式,并使用定制的生物反应器对组织模型施加单轴压缩应变。在自由膨胀培养条件下添加到培养基中时,A2P 下调 ECM 的发育,并比 AsA 更抑制切线模量的改善。相比之下,施加机械刺激可使构建体的切线模量比含有 A2P 的自由膨胀组增加更多,并将内部组织的 ECM 网络增强至接近含有 AsA 的自由膨胀组的水平。因此,机械刺激和应变似乎通过软骨细胞的机械转导途径增强了营养物质的供应并改善了 ECM 的合成。因此,我们建议机械刺激对于细胞相关构建体中 ECM 的均匀发育是必要的,以期植入大型关节软骨缺损。