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The Role of Bone Marrow-Derived Cells during Ectopic Bone Formation of Mouse Femoral Muscle in GFP Mouse Bone Marrow Transplantation Model

机译:GFP小鼠骨髓移植模型中小鼠骨髓异位骨形成过程中骨髓衍生细胞的作用

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摘要

Multipotential ability of bone marrow-derived cells has been clarified, and their involvement in repair and maintenance of various tissues has been reported. However, the role of bone marrow-derived cells in osteogenesis remains unknown. In the present study, bone marrow-derived cells during ectopic bone formation of mouse femoral muscle were traced using a GFP bone marrow transplantation model. Bone marrow cells from C57BL/6-Tg (CAG-EGFP) mice were transplanted into C57BL/6 J wild type mice. After transplantation, insoluble bone matrix (IBM) was implanted into mouse muscle. Ectopic bone formation was histologically assessed at postoperative days 7, 14, and 28. Immunohistochemistry for GFP single staining and GFP-osteocalcin double staining was then performed. Bone marrow transplantation successfully replaced hematopoietic cells with GFP-positive donor cells. Immunohistochemical analyses revealed that osteoblasts and osteocytes involved in ectopic bone formation were GFP-negative, whereas osteoclasts and hematopoietic cells involved in bone formation were GFP-positive. These results indicate that bone marrow-derived cells might not differentiate into osteoblasts. Thus, the main role of bone marrow-derived cells in ectopic osteogenesis may not be to induce bone regeneration by differentiation into osteoblasts, but rather to contribute to microenvironment formation for bone formation by differentiating tissue stem cells into osteoblasts.
机译:骨髓来源的细胞的多潜能已经被阐明,并且已经报道了它们参与各种组织的修复和维持。然而,骨髓来源的细胞在成骨中的作用仍然未知。在本研究中,使用GFP骨髓移植模型追踪小鼠股骨异位骨形成过程中的骨髓衍生细胞。将C57BL / 6-Tg(CAG-EGFP)小鼠的骨髓细胞移植到C57BL / 6 J野生型小鼠中。移植后,将不溶性骨基质(IBM)植入小鼠肌肉。在术后第7、14和28天通过组织学评估异位骨的形成。然后进行GFP单次染色和GFP-骨钙素双次染色的免疫组织化学。骨髓移植成功地用GFP阳性供体细胞替代了造血细胞。免疫组织化学分析显示,参与异位骨形成的成骨细胞和骨细胞为GFP阴性,而参与骨形成的破骨细胞和造血细胞为GFP阳性。这些结果表明,骨髓来源的细胞可能不会分化为成骨细胞。因此,骨髓来源的细胞在异位成骨中的主要作用可能不是通过分化成成骨细胞来诱导骨再生,而是通过将组织干细胞分化为成骨细胞而有助于形成骨形成的微环境。

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