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破骨细胞功能抑制会减少体内造血干细胞数量。

Inhibition of osteoclast function reduces hematopoietic stem cell numbers in vivo.

机构信息

Kennedy Institute of Rheumatology, Charing Cross Campus, Imperial College, 65 Aspenlea Road, London, United Kingdom.

出版信息

Blood. 2011 Feb 3;117(5):1540-9. doi: 10.1182/blood-2010-05-282855. Epub 2010 Dec 3.

Abstract

Osteoblasts play a crucial role in the hematopoietic stem cell (HSC) niche; however, an overall increase in their number does not necessarily promote hematopoiesis. Because the activity of osteoblasts and osteoclasts is coordinately regulated, we hypothesized that active bone-resorbing osteoclasts would participate in HSC niche maintenance. Mice treated with bisphosphonates exhibited a decrease in proportion and absolute number of Lin(-)cKit(+)Sca1(+) Flk2(-) (LKS Flk2(-)) and long-term culture-initiating cells in bone marrow (BM). In competitive transplantation assays, the engraftment of treated BM cells was inferior to that of controls, confirming a decrease in HSC numbers. Accordingly, bisphosphonates abolished the HSC increment produced by parathyroid hormone. In contrast, the number of colony-forming-unit cells in BM was increased. Because a larger fraction of LKS in the BM of treated mice was found in the S/M phase of the cell cycle, osteoclast impairment makes a proportion of HSCs enter the cell cycle and differentiate. To prove that HSC impairment was a consequence of niche manipulation, a group of mice was treated with bisphosphonates and then subjected to BM transplantation from untreated donors. Treated recipient mice experienced a delayed hematopoietic recovery compared with untreated controls. Our findings demonstrate that osteoclast function is fundamental in the HSC niche.

摘要

成骨细胞在造血干细胞(HSC)龛位中起着至关重要的作用;然而,成骨细胞数量的总体增加并不一定能促进造血。由于成骨细胞和破骨细胞的活性是协调调节的,我们假设活跃的破骨细胞会参与 HSC 龛位的维持。用双膦酸盐治疗的小鼠表现出骨髓中 Lin(-)cKit(+)Sca1(+)Flk2(-)(LKS Flk2(-))和长期培养起始细胞比例和绝对数量的减少。在竞争性移植实验中,处理后的骨髓细胞的植入率低于对照组,证实 HSC 数量减少。因此,双膦酸盐消除了甲状旁腺激素产生的 HSC 增加。相比之下,骨髓中集落形成单位细胞的数量增加。因为在治疗小鼠的骨髓中,更大比例的 LKS 处于细胞周期的 S/M 期,破骨细胞的损伤使一部分 HSCs 进入细胞周期并分化。为了证明 HSC 损伤是龛位操作的结果,一组小鼠用双膦酸盐治疗,然后接受未处理供体的骨髓移植。与未处理的对照组相比,接受治疗的受体小鼠的造血恢复延迟。我们的研究结果表明,破骨细胞功能在 HSC 龛位中是基础的。

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