Department of Oral Biology, Leeds Dental Institute, Leeds LS2 9LU, UK.
J Tissue Eng Regen Med. 2010 Feb;4(2):96-104. doi: 10.1002/term.210.
The following in vitro translational study investigated whether enamel matrix derivative (EMD), an approved biomimetic treatment for periodontal disease (Emdogain) and hard-to-heal wounds (Xelma), enhanced synovial cell colonization and protein synthesis around a scaffold used clinically for in situ tissue engineering of the torn anterior cruciate ligament (ACL). Synovial cells were enzymatically extracted from bovine synovium and dynamically seeded onto polyethylene terephthalate (PET) scaffolds. The cells were cultured in low-serum medium (0.5% FBS) for 4 weeks with either a single administration of EMD at the start of the 4 week period or multiple administrations of EMD at regular intervals throughout the 4 weeks. Samples were harvested and evaluated using the Hoechst DNA assay, BCA protein assay, cresolphthalein complexone calcium assay, SDS-PAGE, ELISA and electron microscopy. A significant increase in cell number (DNA) (p < 0.01), protein content (p < 0.01) and TGFbeta1 synthesis (p < 0.01) was observed with multiple administrations of EMD. Additionally, SDS-PAGE showed an increase in high molecular weight proteins, characteristic of the fibril-forming collagens. Electron microscopy supported these findings, showing that scaffolds treated with multiple administrations of EMD were heavily coated with cells and extracellular matrix (ECM) that enveloped the fibres. Multiple administrations of EMD to synovial cell-seeded scaffolds enhanced the formation of tissue in vitro. Additionally, it was shown that EMD enhanced TGFbeta1 synthesis of synovial cells, suggesting a potential mode of action for EMD's capacity to stimulate tissue regeneration.
本体外翻译研究旨在探讨牙骨质衍生蛋白(EMD)是否能增强滑膜细胞在用于前交叉韧带(ACL)撕裂原位组织工程的临床应用支架周围的定植和蛋白合成。滑膜细胞从牛滑膜中通过酶消化法提取,并在聚对苯二甲酸乙二醇酯(PET)支架上进行动态接种。细胞在低血清培养基(0.5% FBS)中培养 4 周,其中一组在第 4 周开始时单次给予 EMD,另一组在第 4 周内每隔一段时间多次给予 EMD。通过 Hoechst DNA 分析、BCA 蛋白分析、邻甲酚酞络合钙分析、SDS-PAGE、ELISA 和电子显微镜对样本进行了评估。结果表明,多次给予 EMD 可显著增加细胞数量(DNA)(p<0.01)、蛋白含量(p<0.01)和 TGFβ1 合成(p<0.01)。此外,SDS-PAGE 显示高分子量蛋白增加,这是纤维形成胶原的特征。电子显微镜支持了这些发现,表明用多次给予 EMD 处理的支架被大量细胞和细胞外基质(ECM)覆盖,这些 ECM 包裹着纤维。多次给予 EMD 可促进滑膜细胞种植支架的组织体外形成。此外,研究还表明 EMD 增强了滑膜细胞 TGFβ1 的合成,这表明 EMD 刺激组织再生的潜在作用机制。