Department of Biomedical Engineering, State University of New York-Stony Brook, USA.
Biomed Mater. 2011 Dec;6(6):065002. doi: 10.1088/1748-6041/6/6/065002. Epub 2011 Oct 7.
Fibroblasts and macrophages are the two major types of cells responding to implanted biomaterials. They play crucial roles in inflammatory responses, host-material interactions and tissue remodeling. However, the synergistic interactions of these two cell types with biomaterials are not fully understood. In this investigation, an in vitro fibroblast/macrophage co-culture system was utilized to examine the biocompatibility and the potential to induce inflammatory responses of an electrospun Dextran/PLGA scaffold. The scaffold did not affect the morphologies, attachments, proliferations and viabilities of both the fibroblasts and macrophages, cultured separately or together. Moreover, it only activated a small subset of the macrophages implicating a low potential to induce either severe acute or chronic inflammatory response. Additionally, fibroblasts played a role in prolonging macrophage activation in the presence of the scaffolds. Using antibody arrays, IL-10, SDF-1, MIP-1 gamma and RANTES were found to be up-regulated when the cells were incubated with the scaffolds. The results of subdermal implantation of the Dextran/PLGA scaffolds confirmed its biocompatibility and low inflammatory potential.
成纤维细胞和巨噬细胞是对植入生物材料做出反应的两种主要细胞类型。它们在炎症反应、宿主-材料相互作用和组织重塑中发挥着关键作用。然而,这两种细胞类型与生物材料的协同相互作用尚未完全被理解。在这项研究中,利用体外成纤维细胞/巨噬细胞共培养系统来研究电纺的葡聚糖/PLGA 支架的生物相容性和引发炎症反应的潜力。支架不会影响单独或共同培养的成纤维细胞和巨噬细胞的形态、附着、增殖和活力。此外,它只激活了一小部分巨噬细胞,表明其引发严重急性或慢性炎症反应的潜力较低。此外,当细胞与支架孵育时,成纤维细胞在延长巨噬细胞激活方面发挥了作用。使用抗体阵列,发现当细胞与支架孵育时,IL-10、SDF-1、MIP-1γ和 RANTES 被上调。葡聚糖/PLGA 支架皮下植入的结果证实了其生物相容性和低炎症潜力。