van Eijk Floor, Saris Daniel B F, Creemers Laura B, Riesle Jens, Willems W Jaap, van Blitterswijk Clemens A, Verbout Abraham J, Dhert Wouter J A
Department of Orthopedics University Medical Center Utrecht, Utrecht, the Netherlands.
Tissue Eng Part A. 2008 Aug;14(8):1425-33. doi: 10.1089/ten.tea.2007.0081.
Bone marrow stromal cells (BMSCs) have been shown to proliferate and produce matrix when seeded onto braided poly(L-lactide/glycolide) acid (PLGA) scaffolds. Mechanical stimulation may be applied to stimulate tissue formation during ligament tissue engineering. This study describes for the first time the effect of constant load on BMSCs seeded onto a braided PLGA scaffold. The seeded scaffolds were subjected to four different loading regimes: Scaffolds were unloaded, loaded during seeding, immediately after seeding, or 2 days after seeding. During the first 5 days, changing the mechanical environment seemed to inhibit proliferation, because cells on scaffolds loaded immediately after seeding or after a 2-day delay, contained fewer cells than on unloaded scaffolds or scaffolds loaded during seeding (p<0.01 for scaffolds loaded after 2 days). During this period, differentiation increased with the period of load applied. After day 5, differences in cell content and collagen production leveled off. After day 11, cell number decreased, whereas collagen production continued to increase. Cell number and differentiation at day 23 were independent of the timing of the mechanical stimulation applied. In conclusion, static load applied to BMSCs cultured on PLGA scaffolds allows for proliferation and differentiation, with loading during seeding yielding the most rapid response. Future research should be aimed at elucidating the biomechanical and biochemical characteristics of tissue formed by BMSCs on PLGA under mechanical stimulation.
骨髓基质细胞(BMSCs)已被证明接种到编织聚(L-丙交酯/乙交酯)酸(PLGA)支架上时能够增殖并产生基质。在韧带组织工程中,可以施加机械刺激来促进组织形成。本研究首次描述了恒定负荷对接种在编织PLGA支架上的BMSCs的影响。对接种后的支架施加四种不同的加载方式:支架不加载、接种时加载、接种后立即加载或接种后2天加载。在最初的5天里,改变机械环境似乎会抑制增殖,因为接种后立即加载或延迟2天加载的支架上的细胞比未加载支架或接种时加载的支架上的细胞少(接种后2天加载的支架p<0.01)。在此期间,分化随着加载时间的延长而增加。5天后,细胞含量和胶原蛋白产生的差异趋于平稳。11天后,细胞数量减少,而胶原蛋白产生继续增加。23天时的细胞数量和分化与施加机械刺激的时间无关。总之,对培养在PLGA支架上的BMSCs施加静态负荷可促进增殖和分化,接种时加载产生的反应最迅速。未来的研究应致力于阐明机械刺激下BMSCs在PLGA上形成的组织的生物力学和生化特性。