Kahn Cyril J F, Vaquette Cédryck, Rahouadj Rachid, Wang Xiong
Group Cell and Tissue Engineering, LEMTA-UMR 7563 CNRS, Nancy-University, Vandoeuvre, France.
Biomed Mater Eng. 2008;18(4-5):283-7.
Bioreactors are defined as devices in which biological and/or biochemical processes develop under closely monitored and tightly controlled environmental and operating conditions (e.g. pH, temperature, mechanical conditions, nutrient supply and waste removal). In functional tissue engineering of musculoskeletal tissues, a bioreactor capable of controlling dynamic loading plays a determinant role. It has been shown that mechanical stretching promotes the expression of type I and III collagens, fibronectin, tenascin-C in cultured ligament fibroblasts (J.C.-H. Goh et al., Tissue Eng. 9 (2003), S31) and that human bone marrow mesenchymal stem cells (hBMMSC) - even in the absence of biochemical regulators - could be induced to differentiate into ligament-like fibroblast by the application of physiologically relevant cyclic strains (G. Vunjak-Novakovic et al., Ann. Rev. Biomed. Eng. 6 (2004), 131; H.A. Awad et al., Tissue Eng. 5 (1999), 267; R.G. Young et al., J. Orthop. Res. 16 (1998), 406). Different bioreactors are commercially available but they are too generic to be used for a given tissue, each tissue showing specific mechanical loading properties. In the case of ligament tissue engineering, the design of a bioreactor is still an open question. Our group proposes a bioreactor allowing cyclic traction-torsion on a scaffold seeded with stem cells.
生物反应器被定义为在密切监测和严格控制的环境及操作条件(如pH值、温度、机械条件、营养供应和废物清除)下进行生物和/或生化过程的装置。在肌肉骨骼组织的功能组织工程中,能够控制动态加载的生物反应器起着决定性作用。研究表明,机械拉伸可促进培养的韧带成纤维细胞中I型和III型胶原蛋白、纤连蛋白、腱生蛋白-C的表达(J.C.-H. Goh等人,《组织工程》9 (2003),S31),并且即使在没有生化调节剂的情况下,通过施加生理相关的循环应变,人骨髓间充质干细胞(hBMMSC)也可被诱导分化为韧带样成纤维细胞(G. Vunjak-Novakovic等人,《生物医学工程年度评论》6 (2004),131;H.A. Awad等人,《组织工程》5 (1999),267;R.G. Young等人,《矫形研究杂志》16 (1998),406)。市面上有不同的生物反应器可供选择,但它们过于通用,无法用于特定组织,每种组织都有其特定的机械加载特性。在韧带组织工程方面,生物反应器的设计仍然是一个悬而未决的问题。我们团队提出了一种生物反应器,可对接种有干细胞的支架施加循环拉伸-扭转作用。