Group of Cell and Tissue Engineering, LEMTA, Nancy-Université, CNRS, Vandoeuvre, France.
J Biomater Sci Polym Ed. 2010;21(13):1737-60. doi: 10.1163/092050609X12560455246676. Epub 2010 Jun 16.
We have designed a composite scaffold for potential use in tendon or ligament tissue engineering. The composite scaffold was made of a cellularized alginate gel that encapsulated a knitted structure. Our hypothesis was that the alginate would act as a cell carrier and deliver cells to the injury site while the knitted structure would provide mechanical strength to the composite construct. The mechanical behaviour and the degradation profile of the poly(lactic-co-glycolic acid) knitted scaffolds were evaluated. We found that our scaffolds had an elastic modulus of 750 MPa and that they lost their physical integrity within 7 weeks of in vitro incubation. Autologous rabbit mesenchymal stem cell seeded composite scaffolds were implanted in a 1-cm-long defect created in the rabbit tendon, and the biomechanical properties and the morphology of the regenerated tissues were evaluated after 13 weeks. The regenerated tendons presented higher normalized elastic modulus of (60%) when compared with naturally healed tendons (40%). The histological study showed a higher cell density and vascularization in the regenerated tendons.
我们设计了一种用于肌腱或韧带组织工程的复合支架。该复合支架由细胞化藻酸盐凝胶制成,该凝胶包裹着编织结构。我们的假设是藻酸盐将充当细胞载体,将细胞输送到损伤部位,而编织结构将为复合结构提供机械强度。我们评估了聚(乳酸-共-乙醇酸)编织支架的机械性能和降解情况。我们发现,我们的支架的弹性模量为 750MPa,并且在体外孵育 7 周内失去了物理完整性。将自体兔间充质干细胞接种到复合支架中,植入兔肌腱 1cm 长的缺损处,13 周后评估再生组织的生物力学性能和形态。与自然愈合的肌腱(40%)相比,再生肌腱的归一化弹性模量(60%)更高。组织学研究表明,再生肌腱的细胞密度和血管化更高。