Department of Oral Health Sciences, School of Dentistry, University of Washington, Seattle, WA, USA.
J Dent Res. 2013 Jun;92(6):524-31. doi: 10.1177/0022034513485599. Epub 2013 Apr 22.
Dental pulp stem cells (DPSCs) have previously demonstrated potential pericyte-like topography and function. However, the mechanisms regulating their pericyte function are still unknown. In this study, murine DPSC angiogenic and pericyte function were investigated. Tie2-GFP mouse DPSCs were negative for GFP, indicating the absence of endothelial cells in DPSC cultures. Endothelial cells co-cultured with DPSCs formed more mature in vitro tube-like structures as compared with those co-cultured with bone marrow stromal cells (BMSCs). Many DPSCs were located adjacent to vascular tubes, assuming a pericyte location. Subcutaneous DPSC transplants in mice with matrigel (MG) (DPSC-MG) induced more vessel formation than BMSC-MG. Soluble Flt (sFlt), an angiogenic inhibitor that binds VEGF-A, significantly decreased the amount of blood vessels in DPSC-MG, but not in BMSC-MG. sFlt inhibited VEGFR2 and downstream ERK signaling in DPSCs. Similar to sFlt inhibition, VEGFR2 knockdown in DPSCs resulted in down-regulation of Vegfa, Vegf receptors, and EphrinB2 and decreased angiogenic induction of DPSCs in vivo. Therefore, the capacity of DPSCs to induce angiogenesis is VEGFR2-dependent. DPSCs enhance angiogenesis by secreting VEGF ligands and associating with vessels resembling pericyte-like cells. This study provides first insights into the mechanism(s) of DPSC angiogenic induction and their function as pericytes, crucial aspects for DPSC use in tissue regeneration.
牙髓干细胞(DPSCs)先前表现出潜在的周细胞样形态和功能。然而,调节其周细胞功能的机制尚不清楚。在这项研究中,研究了鼠源性 DPSCs 的血管生成和周细胞功能。Tie2-GFP 小鼠 DPSCs 呈 GFP 阴性,表明 DPSCs 培养物中不存在内皮细胞。与骨髓基质细胞(BMSCs)共培养的内皮细胞形成的体外管状结构比与 BMSCs 共培养的更成熟。许多 DPSCs 位于血管管附近,呈现周细胞位置。在含有基质胶(MG)的小鼠中进行皮下 DPSC 移植(DPSC-MG)比 BMSC-MG 诱导更多的血管形成。可溶性 Flt(sFlt)是一种结合 VEGF-A 的血管生成抑制剂,可显著减少 DPSC-MG 中的血管数量,但不减少 BMSC-MG 中的血管数量。sFlt 抑制了 DPSCs 中的 VEGFR2 和下游 ERK 信号通路。与 sFlt 抑制相似,VEGFR2 在 DPSCs 中的敲低导致 Vegfa、VEGF 受体和 EphrinB2 的下调,并降低了 DPSCs 在体内的血管生成诱导。因此,DPSCs 诱导血管生成的能力依赖于 VEGFR2。DPSCs 通过分泌 VEGF 配体并与类似周细胞样细胞的血管结合来增强血管生成。这项研究首次深入了解了 DPSCs 血管生成诱导的机制及其作为周细胞的功能,这是 DPSCs 在组织再生中应用的关键方面。