1 Department of Animal Biology, School of Veterinary Medicine, University of Pennsylvania , Philadelphia, Pennsylvania.
Stem Cells Dev. 2013 Oct 1;22(19):2581-95. doi: 10.1089/scd.2012.0387. Epub 2013 Jun 18.
Despite the appreciated interdependence of skeletal and hematopoietic development, the cell and matrix components of the hematopoietic niche remain to be fully defined. Utilizing mice with disrupted function of collagen X (ColX), a major hypertrophic cartilage matrix protein associated with endochondral ossification, our data identified a cytokine defect in trabecular bone cells at the chondro-osseous hematopoietic niche as a cause for aberrant B lymphopoiesis in these mice. Specifically, analysis of ColX transgenic and null mouse chondro-osseous regions via micro-computed tomography revealed an altered trabecular bone environment. Additionally, cocultures with hematopoietic and chondro-osseous cell types highlighted impaired hematopoietic support by ColX transgenic and null mouse derived trabecular bone cells. Further, cytokine arrays with conditioned media from the trabecular osteoblast cocultures suggested an aberrant hematopoietic cytokine milieu within the chondro-osseous niche of the ColX deficient mice. Accordingly, B lymphopoiesis was rescued in the ColX mouse derived trabecular osteoblast cocultures with interlukin-7, stem cell factor, and stromal derived factor-1 supplementation. Moreover, B cell development was restored in vivo after injections of interlukin-7. These data support our hypothesis that endrochondrally-derived trabecular bone cells and matrix constituents provide cytokine-rich niches for hematopoiesis. Furthermore, this study contributes to the emerging concept that niche defects may underlie certain immuno-osseous and hematopoietic disorders.
尽管骨骼和造血发育之间存在着令人赞赏的相互依存关系,但造血龛位的细胞和基质成分仍有待完全定义。利用胶原蛋白 X(ColX)功能失调的小鼠,这是一种与软骨内骨化相关的主要肥大软骨基质蛋白,我们的数据确定了软骨 - 骨造血龛位的小梁骨细胞中的细胞因子缺陷是这些小鼠中异常 B 淋巴细胞发生的原因。具体而言,通过微计算机断层扫描分析 ColX 转基因和 null 鼠软骨 - 骨区域显示出小梁骨环境的改变。此外,与造血和软骨 - 骨细胞类型的共培养突出了 ColX 转基因和 null 鼠衍生的小梁骨细胞对造血支持的受损。此外,小梁成骨细胞共培养物的条件培养基的细胞因子阵列表明 ColX 缺陷小鼠的软骨 - 骨龛位中存在异常的造血细胞因子环境。因此,在 ColX 小鼠衍生的小梁成骨细胞共培养物中添加白细胞介素-7、干细胞因子和基质衍生因子-1可挽救 B 淋巴细胞发生。此外,白细胞介素-7 的注射可恢复体内 B 细胞发育。这些数据支持我们的假设,即软骨内骨衍生的小梁骨细胞和基质成分提供富含细胞因子的造血龛位。此外,这项研究有助于新兴概念,即龛位缺陷可能是某些免疫骨和造血疾病的基础。