Sieminski A L, Hebbel R P, Gooch K J
Department of Bioengineering and Institute for Medicine and Engineering, University of Pennsylvania, Philadelphia, PA 19104-6392, USA.
Exp Cell Res. 2004 Jul 15;297(2):574-84. doi: 10.1016/j.yexcr.2004.03.035.
When suspended in collagen gels, endothelial cells elongate and form capillary-like networks containing lumens. Human blood outgrowth endothelial cells (HBOEC) suspended in relatively rigid 3 mg/ml floating collagen gels, formed in vivo-like, thin, branched multi-cellular structures with small, thick-walled lumens, while human umbilical vein endothelial cells (HUVEC) formed fewer multi-cellular structures, had a spread appearance, and had larger lumens. HBOEC exert more traction on collagen gels than HUVEC as evidenced by greater contraction of floating gels. When the stiffness of floating gels was decreased by decreasing the collagen concentration from 3 to 1.5 mg/ml, HUVEC contracted gels more and formed thin, multi-cellular structures with small lumens, similar in appearance to HBOEC in floating 3 mg/ml gels. In contrast to floating gels, traction forces exerted by cells in mechanically constrained gels encounter considerable resistance. In constrained collagen gels (3 mg/ml), both cell types appeared spread, formed structures with fewer cells, had larger, thinner-walled lumens than in floating gels, and showed prominent actin stress fibers, not seen in floating gels. These results suggest that the relative magnitudes of cellular force generation and apparent matrix stiffness modulate capillary morphogenesis in vitro and that this balance may play a role in regulating angiogenesis in vivo.
当悬浮于胶原蛋白凝胶中时,内皮细胞会伸长并形成含有管腔的毛细血管样网络。悬浮于相对坚硬的3毫克/毫升漂浮胶原蛋白凝胶中的人血源性内皮细胞(HBOEC)形成了类似体内的、薄的、分支状的多细胞结构,其管腔小且壁厚;而人脐静脉内皮细胞(HUVEC)形成的多细胞结构较少,呈铺展状外观,且管腔较大。如漂浮凝胶收缩更明显所示,HBOEC对胶原蛋白凝胶施加的牵引力比HUVEC更大。当通过将胶原蛋白浓度从3毫克/毫升降至1.5毫克/毫升来降低漂浮凝胶的硬度时,HUVEC使凝胶收缩得更多,并形成了具有小管腔的薄的多细胞结构,其外观与悬浮于3毫克/毫升漂浮凝胶中的HBOEC相似。与漂浮凝胶不同,细胞在机械约束凝胶中施加的牵引力会遇到相当大的阻力。在约束性胶原蛋白凝胶(3毫克/毫升)中,两种细胞类型均呈铺展状,形成的细胞结构较少,管腔比漂浮凝胶中的更大且壁更薄,并显示出明显的肌动蛋白应力纤维,而这在漂浮凝胶中未见。这些结果表明,细胞产生力的相对大小和表观基质硬度在体外调节毛细血管形态发生,并且这种平衡可能在体内调节血管生成中发挥作用。