Mann B K, Schmedlen R H, West J L
Department of Bioengineering, Rice University, Houston, TX 77251-1892, USA.
Biomaterials. 2001 Mar;22(5):439-44. doi: 10.1016/s0142-9612(00)00196-4.
Biomaterials developed for tissue engineering and wound healing applications need to support robust cell adhesion, yet also need to be replaced by new tissue synthesized by those cells. In order to maintain mechanical integrity of the tissue, the cells must generate sufficient extracellular matrix before the scaffold is degraded. We have previously shown that materials containing cell adhesive ligands to promote or improve cell adhesion can decrease extracellular matrix production (Mann et al., Modification of surfaces with cell adhesion peptides alters extracellular matrix deposition. Biomaterials 1999;20:2281-6). Such decreased matrix production by cells in tissue engineering scaffolds may result in tissue failure. However, we have found that TGF-beta1 can be used in scaffolds to dramatically increase matrix production. Matrix production by vascular smooth muscle cells grown on adhesive ligand-modified glass surfaces and in PEG hydrogels containing covalently bound adhesive ligands was increased in the presence of 0.04 pmol/ml (1 ng/ml) TGF-beta1. TGF-beta1 can counteract the effect of these adhesive ligands on matrix production; matrix production could be increased even above that observed in the absence of adhesive peptides. Further, TGF-beta1 covalently immobilized to PEG retained its ability to increase matrix production. Tethering TGF-beta1 to the polymer scaffold resulted in a significant increase in matrix production over the same amount of soluble TGF-beta1.
为组织工程和伤口愈合应用而开发的生物材料需要支持强大的细胞黏附,但也需要被这些细胞合成的新组织所取代。为了维持组织的机械完整性,细胞必须在支架降解之前产生足够的细胞外基质。我们之前已经表明,含有促进或改善细胞黏附的细胞黏附配体的材料会减少细胞外基质的产生(曼恩等人,用细胞黏附肽修饰表面会改变细胞外基质沉积。生物材料,1999年;20:2281 - 6)。组织工程支架中的细胞如此减少的基质产生可能会导致组织功能衰竭。然而,我们发现转化生长因子β1(TGF - beta1)可用于支架中以显著增加基质产生。在0.04皮摩尔/毫升(1纳克/毫升)TGF - beta1存在的情况下,生长在黏附配体修饰的玻璃表面和含有共价结合黏附配体的聚乙二醇水凝胶中的血管平滑肌细胞的基质产生增加。TGF - beta1可以抵消这些黏附配体对基质产生的影响;基质产生甚至可以增加到超过在没有黏附肽时观察到的水平。此外,共价固定在聚乙二醇上的TGF - beta1保留了其增加基质产生的能力。将TGF - beta1 tether到聚合物支架上导致与相同量的可溶性TGF - beta1相比基质产生显著增加。