Nilsson S K, Lieschke G J, Garcia-Wijnen C C, Williams B, Tzelepis D, Hodgson G, Grail D, Dunn A R, Bertoncello I
Sir Donald and Lady Trescowthick Research Laboratories, Peter MacCallum Cancer Institute, Melbourne, Australia.
Blood. 1995 Jul 1;86(1):66-72.
Osteopetrotic (op/op) mice are characterized by an autosomal recessive inactivating mutation resulting in the absence of biologically active colony-stimulating factor-1 (CSF-1). Consequently, young op/op mice have a severe deficiency of macrophages and osteoclasts resulting in excessive bone formation, occlusion of the marrow cavity, and reduced marrow hematopoietic activity. Recently, we showed that the osteopetrosis and hematopoietic deficiencies evident in young op/op mice are not permanent but are progressively corrected with age. There are increases in osteoclast activity; bone resorption; femoral marrow space; and marrow hematopoietic activity, cellularity, and macrophage content. In the present study we show that CSF-1-/- granulocyte-macrophage colony-stimulating factor (GM-CSF)(-/-)-deficient mice also undergo the same pattern of hematopoietic correction as the op/op mouse. Also, like the op/op mouse, the peritoneal cellularity and macrophage content of CSF-1/GM-CSF-deficient mice remains severely reduced. Our data show that the "knockout" of GM-CSF does not change the op/op phenotype, and that GM-CSF is not essential for the correction of the hematopoietic deficiencies in the op/op mouse. Importantly, the data also show that neither GM-CSF nor CSF-1 is an absolute requirement for the commitment of primitive hematopoietic stem cells to the macrophage lineage or for the differentiation of at least some classes of macrophages. This finding suggests that an alternate regulatory factor can be involved in macrophage and osteoclast commitment, differentiation, and function in vivo.
骨石化(op/op)小鼠的特征是常染色体隐性失活突变,导致缺乏生物活性的集落刺激因子-1(CSF-1)。因此,年幼的op/op小鼠严重缺乏巨噬细胞和破骨细胞,导致骨形成过多、骨髓腔闭塞以及骨髓造血活性降低。最近,我们发现年幼的op/op小鼠中明显的骨石化和造血缺陷并非永久性的,而是会随着年龄的增长逐渐得到纠正。破骨细胞活性、骨吸收、股骨骨髓腔、骨髓造血活性、细胞数量和巨噬细胞含量均有所增加。在本研究中,我们发现CSF-1-/-粒细胞-巨噬细胞集落刺激因子(GM-CSF)-/-缺陷小鼠也经历了与op/op小鼠相同的造血纠正模式。此外,与op/op小鼠一样,CSF-1/GM-CSF缺陷小鼠的腹腔细胞数量和巨噬细胞含量仍然严重减少。我们的数据表明,GM-CSF的“敲除”不会改变op/op表型,并且GM-CSF对于纠正op/op小鼠的造血缺陷并非必不可少。重要的是,数据还表明,GM-CSF和CSF-1对于原始造血干细胞向巨噬细胞谱系的定向分化或至少某些类型巨噬细胞的分化都不是绝对必需的。这一发现表明,体内可能存在另一种调节因子参与巨噬细胞和破骨细胞的定向分化、分化和功能。