Lean J M, Fuller K, Chambers T J
Department of Cellular Pathology, St George's Hospital Medical School, London, United Kingdom.
Blood. 2001 Nov 1;98(9):2707-13. doi: 10.1182/blood.v98.9.2707.
Although bone resorption and osteoclast numbers are reduced in osteopetrotic (op/op) mice, osteoclasts are nevertheless present and functional, despite the absence of macrophage colony-stimulating factor (M-CSF). This suggests that alternative factors can partly compensate for the crucial actions of M-CSF in osteoclast induction. It was found that when nonadherent bone marrow cells were incubated in RANKL with Flt3 ligand (FL) without exogenous M-CSF, tartrate-resistance acid phosphatase (TRAP)-positive cells were formed, and bone resorption occurred. Without FL, only macrophagelike TRAP-negative cells were present. Granulocyte-macrophage CSF, stem cell factor, interleukin-3, and vascular endothelial growth factor could not similarly replace the need for M-CSF. TRAP-positive cell induction in FL was not due to synergy with M-CSF produced by the bone marrow cells themselves because FL also enabled their formation from the hemopoietic cells of op/op mice, which lack any M-CSF. FL appeared to substitute for M-CSF by supporting the differentiation of adherent cells that express mRNA for RANK and responsiveness to RANKL. To determine whether FL can account for the compensation for M-CSF deficiency that occurs in vivo, FL signaling was blockaded in op/op mice by the injection of soluble recombinant Flt3. It was found that the soluble receptor induced a substantial decrease in osteoclast number, strongly suggesting that FL is responsible for the partial compensation for M-CSF deficiency that occurs in these mice.
尽管骨硬化(op/op)小鼠的骨吸收和破骨细胞数量减少,但尽管缺乏巨噬细胞集落刺激因子(M-CSF),破骨细胞仍然存在且具有功能。这表明替代因子可以部分补偿M-CSF在破骨细胞诱导中的关键作用。研究发现,当非贴壁骨髓细胞在无外源性M-CSF的情况下与Flt3配体(FL)一起在RANKL中孵育时,会形成抗酒石酸酸性磷酸酶(TRAP)阳性细胞,并发生骨吸收。没有FL时,仅存在巨噬细胞样TRAP阴性细胞。粒细胞-巨噬细胞集落刺激因子、干细胞因子、白细胞介素-3和血管内皮生长因子不能类似地替代对M-CSF的需求。FL中TRAP阳性细胞的诱导不是由于与骨髓细胞自身产生的M-CSF协同作用,因为FL也能使其从缺乏任何M-CSF的op/op小鼠的造血细胞中形成。FL似乎通过支持表达RANK mRNA并对RANKL有反应的贴壁细胞的分化来替代M-CSF。为了确定FL是否可以解释体内发生的M-CSF缺乏的补偿情况,通过注射可溶性重组Flt3在op/op小鼠中阻断FL信号传导。研究发现,可溶性受体导致破骨细胞数量大幅减少,强烈表明FL负责这些小鼠中发生的M-CSF缺乏的部分补偿。