Department of Internal Medicine, Seoul National University College of Medicine, Seoul, Korea.
Tissue Eng Part A. 2013 Mar;19(5-6):685-96. doi: 10.1089/ten.TEA.2012.0047. Epub 2013 Jan 5.
Umbilical cord blood (UCB) has recently been recognized as a new source of mesenchymal stem cells (MSCs) for use in stem cell therapy. We studied the effects of systemic injection of human UCB-MSCs and their conditioned medium (CM) on ovariectomy (OVX)-induced bone loss in nude mice. Ten-week-old female nude mice were divided into six groups: Sham-operated mice treated with vehicle (Sham-Vehicle), OVX mice subjected to UCB-MSCs (OVX-MSC), or human dermal fibroblast (OVX-DFB) transplantation, OVX mice treated with UCB-MSC CM (OVX-CM), zoledronate (OVX-Zol), or vehicle (OVX-Vehicle). Although the OVX-Vehicle group exhibited significantly less bone mineral density (BMD) gain compared with the Sham-Vehicle group, transplantation of hUCB-MSCs (OVX-MSC group) has effectively prevented OVX-induced bone mass attenuation. Notably, the OVX-CM group also showed BMD preservation comparable to the OVX-MSC group. In addition, microcomputed tomography analysis demonstrated improved trabecular parameters in both the OVX-MSC and OVX-CM groups compared to the OVX-Vehicle or OVX-DFB group. Histomorphometric analysis showed increased bone formation parameters, accompanied by increased serum procollagen type-I N-telopeptide levels in OVX-MSC and OVX-CM mice. However, cell-trafficking analysis failed to demonstrate engraftment of MSCs in bone tissue 48 h after cell infusion. In vitro, hUCB-MSC CM increased alkaline phosphatase (ALP) activity in human bone marrow-derived MSCs and mRNA expression of collagen type 1, Runx2, osterix, and ALP in C3H10T1/2 cells. Furthermore, hUCB-MSC CM significantly increased survival of osteocyte-like MLO-Y4 cells, while it inhibited osteoclastic differentiation. To summarize, transplantation of hUCB-MSCs could effectively prevent OVX-mediated bone loss in nude mice, which appears to be mediated by a paracrine mechanism rather than direct engraftment of the MSCs.
脐带血(UCB)最近被认为是间充质干细胞(MSCs)的新来源,可用于干细胞治疗。我们研究了全身注射人 UCB-MSCs 及其条件培养基(CM)对去卵巢(OVX)诱导裸鼠骨丢失的影响。将 10 周龄雌性裸鼠分为六组:假手术组用载体(Sham-Vehicle)处理、OVX 组用人 UCB-MSCs(OVX-MSC)或人真皮成纤维细胞(OVX-DFB)移植、OVX 组用 UCB-MSC CM(OVX-CM)、唑来膦酸(OVX-Zol)或载体(OVX-Vehicle)处理。虽然 OVX-Vehicle 组的骨矿物质密度(BMD)增加明显少于 Sham-Vehicle 组,但 hUCB-MSCs 移植(OVX-MSC 组)有效防止了 OVX 诱导的骨量衰减。值得注意的是,OVX-CM 组也显示出与 OVX-MSC 组相当的 BMD 保留。此外,微计算机断层扫描分析显示,与 OVX-Vehicle 或 OVX-DFB 组相比,OVX-MSC 和 OVX-CM 组的小梁参数均得到改善。组织形态计量学分析显示,OVX-MSC 和 OVX-CM 组的骨形成参数增加,同时血清型前胶原 I N-端肽水平升高。然而,细胞追踪分析未能证明细胞输注后 48 小时 MSC 可在骨组织中定植。体外,hUCB-MSC CM 增加了人骨髓来源 MSC 的碱性磷酸酶(ALP)活性和 C3H10T1/2 细胞中胶原 I、Runx2、osterix 和 ALP 的 mRNA 表达。此外,hUCB-MSC CM 显著增加了成骨细胞样 MLO-Y4 细胞的存活率,同时抑制了破骨细胞分化。综上所述,hUCB-MSCs 的移植可有效预防裸鼠 OVX 介导的骨丢失,这似乎是通过旁分泌机制而不是 MSC 的直接定植来实现的。