Matheson Loren A, Maksym Geoffrey N, Santerre J Paul, Labow Rosalind S
Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ontario, Canada.
J Biomed Mater Res A. 2007 Jun 15;81(4):971-81. doi: 10.1002/jbm.a.31117.
Tissue engineering concepts have expanded in the last decade to consider the importance of biochemical signaling from extracellular matrix (ECM) proteins adhered to substrates such as polymeric and ceramic scaffolds. This study investigated combined ECM/mechanical factors on the key signaling cells (macrophages) for wound healing, since previously, mechanical strain and ECM proteins have only been considered separately for their effects on macrophage morphology. Human U937 macrophage-like cells were cultured on a model elastomeric membrane, coated with either collagen type I or poly-RGD peptide (ProNectin). The cells were subjected to cyclic uniform uniaxial or nonuniform biaxial strain with the Flexercell Tension Plus system to simulate strains that various soft tissue implants may undergo during the critical tissue-implant integration period. The surface coatings affected total cellular protein, which was significantly higher in cells on collagen than ProNectin coated surfaces after biaxial, but not uniaxial strain, whereas ProNectin coated surfaces caused a decrease in DNA following uniaxial, but not biaxial strain. Adding the protein coatings that relate to the wound healing process during tissue regeneration, elicited effects specific to the strain type imposed. The combination of these parameters caused changes in U937 macrophage-like cells that should be considered in the outcome of the desired performance in the tissue-material constructs.
在过去十年中,组织工程学概念不断扩展,开始考虑细胞外基质(ECM)蛋白附着于聚合物和陶瓷支架等底物时产生的生化信号传导的重要性。本研究调查了ECM/机械因素对伤口愈合关键信号细胞(巨噬细胞)的综合影响,因为此前,机械应变和ECM蛋白仅被分别考虑其对巨噬细胞形态的影响。将人U937巨噬细胞样细胞培养在涂有I型胶原蛋白或聚RGD肽(ProNectin)的弹性体模型膜上。使用Flexercell Tension Plus系统对细胞施加周期性均匀单轴或非均匀双轴应变,以模拟各种软组织植入物在关键组织-植入物整合期可能经历的应变。表面涂层影响总细胞蛋白,双轴应变后,胶原蛋白涂层表面的细胞中总细胞蛋白显著高于ProNectin涂层表面,但单轴应变后并非如此,而ProNectin涂层表面在单轴应变后导致DNA减少,但双轴应变后并非如此。在组织再生过程中添加与伤口愈合过程相关的蛋白涂层,会引发特定于所施加应变类型的效应。这些参数的组合导致U937巨噬细胞样细胞发生变化,在组织-材料构建体的预期性能结果中应予以考虑。