Department of Operative Dentistry and Periodontology, Dental School and Hospital, University Freiburg Medical Centre, Freiburg, Germany.
Tissue Eng Part A. 2012 Dec;18(23-24):2601-10. doi: 10.1089/ten.TEA.2012.0041. Epub 2012 Sep 28.
When prospectively applied for regenerative therapies, human bone-marrow-derived mesenchymal stem cells (hMSCs) interact with the locally residing host cells. With respect to the developmentally particular origin of oral cells, little is known about the putatively discriminative behavioral responses of hMSCs in interaction with various oral cell types, including human alveolar bone osteoblasts (hOAs), periodontal ligament fibroblasts (hPDLs), and gingival fibroblasts (hGFs). To assess the crosstalk between hMSCs and oral cells, interactive cocultures were established by combining well-characterized hMSCs with hOAs, hPDLs, or hGFs, and the behavioral hMSC aspects, that is, proliferation and gene expression, were measured by employing a 5-bromo-2'-deoxyuridine assay and real-time polymerase chain reaction, while apoptosis was quantified by in situ cell death detection kit. hMSCs expressed the typical antigen spectrum lacking CD34, CD45, CD14, CD19, and HLA-DR, while expressing CD73, CD90, and CD105, and could successfully be transformed into adipocytes, osteocytes, and chondrocytes. Monocultured control hMSCs proliferated readily, whereas a general reduction of BrdU-labeled cells was observed in cocultures. Globally, upon extending time periods, interactive coculture combinations of hMSCs with hOAs reduced both osteogenic gene and stem cell marker transcription in hMSCs, a phenomenon appearing less pronounced by combining hMSCs with hPDLs, such that the observed effects in terms of proliferation and gene expression followed the same ranking: hOAs>hGFs>hPDLs. Vice versa, in interactive hMSC cocultures, the cell survival rate was significantly increased, irrespective from the combined coculture cell counterpart. Our results show for the first time that behavior of hMSCs reflected by proliferation and gene expression was governed by interaction with various oral cells in a cell-type-discriminative manner. In addition, hMSC coculture restrains apoptosis, such that influences on cell behavior appear as a crosstalk. In summary, interactive cocultures render the basis for a prospective prediction of mutual cell behavior in hMSC-based oral tissue regeneration disclosing that oral cells shift hMSC behavior from proliferation to differentiation and apoptosis-repressing features.
当将再生疗法应用于前瞻性研究时,人骨髓间充质干细胞(hMSCs)与人局部驻留的宿主细胞相互作用。鉴于口腔细胞的发育特殊起源,对于 hMSCs 与各种口腔细胞类型(包括人牙槽骨成骨细胞(hOAs)、牙周韧带成纤维细胞(hPDLs)和牙龈成纤维细胞(hGFs))相互作用时的潜在鉴别行为反应知之甚少。为了评估 hMSCs 与口腔细胞之间的串扰,通过将经过充分表征的 hMSCs 与 hOAs、hPDLs 或 hGFs 相结合,建立了交互式共培养物,并通过 5-溴-2'-脱氧尿苷测定法和实时聚合酶链反应测量 hMSC 的行为方面,即增殖和基因表达,而通过原位细胞死亡检测试剂盒定量测量细胞凋亡。hMSCs 表达缺乏 CD34、CD45、CD14、CD19 和 HLA-DR 的典型抗原谱,而表达 CD73、CD90 和 CD105,并可成功转化为脂肪细胞、成骨细胞和软骨细胞。单独培养的对照 hMSCs 增殖迅速,而在共培养物中观察到 BrdU 标记细胞的总体减少。总体而言,随着时间的延长,hMSCs 与 hOAs 的交互式共培养组合减少了 hMSCs 中的成骨基因和干细胞标志物转录,而 hMSCs 与 hPDLs 的组合则使这种现象不那么明显,因此增殖和基因表达的观察到的效果遵循相同的排名:hOAs>hGFs>hPDLs。相反,在 hMSC 交互式共培养物中,无论与共培养物的细胞对应物如何,细胞存活率均显著增加。我们的研究结果首次表明,增殖和基因表达所反映的 hMSC 行为受到与各种口腔细胞相互作用的调控,这种相互作用具有细胞类型特异性。此外,hMSC 共培养抑制细胞凋亡,因此对细胞行为的影响表现为串扰。总之,交互式共培养物为基于 hMSC 的口腔组织再生中相互细胞行为的前瞻性预测提供了基础,揭示了口腔细胞将 hMSC 行为从增殖转变为分化和抑制凋亡的特征。