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巨噬细胞集落刺激因子产生缺陷的骨硬化(op)突变小鼠中的骨重塑与巨噬细胞分化

Bone remodeling and macrophage differentiation in osteopetrosis (op) mutant mice defective in the production of macrophage colony-stimulating factor.

作者信息

Takatsuka H, Umezu H, Hasegawa G, Usuda H, Ebe Y, Naito M, Shultz L D

机构信息

Second Department of Pathology, Niigata University School of Medicine, Japan.

出版信息

J Submicrosc Cytol Pathol. 1998 Apr;30(2):239-47.

PMID:9648288
Abstract

Mice homozygous for the osteopetrosis (op) mutation are characterized by defective differentiation of osteoclasts, monocytes, and tissue macrophages due to a lack of functional macrophage colony-stimulating factor (M-CSF/CSF-1) activity. In young (4-6 week-old) op/op mice, the bone marrow cavities were filled with spongious bone. In aged (50-72 week-old) op/op mice, the bone marrow cavities were markedly reconstructed and marrow hematopoiesis was expanded. Numbers of osteoclasts and bone marrow macrophages in aged op/op mice were increased but most of the osteoclasts were mononuclear cells and showed poorly developed ruffled borders. Lysosomes of bone marrow macrophages were laden with abundant crystalloid materials in aged op/op mice and aged littermate mice. However, such macrophages were not observed in young op/op mice nor in young littermates. In contrast to the marked increase in numbers of osteoclasts and macrophages in the bone marrow, the number of Kupffer cells in the liver did not increase in aged op/op mice. Kupffer cells in aged op/op mice did not show ultrastructural maturation with aging and contained a few crystalloid structures. M-CSF administration to aged op/op mice induced numerical increases in Kupffer cells and lysosomes in Kupffer cells, disappearance of crystalloid structures in lysosomes of Kupffer cells, and the development of ruffled border in osteoclasts. These findings indicate that M-CSF-independent mechanisms for macrophage and osteoclast development in aged op/op mice are restricted to bone marrow. M-CSF plays important roles in the differentiation of macrophage and osteoclast and the production and function of lysosomes.

摘要

骨硬化(op)突变纯合子小鼠的特征是,由于缺乏功能性巨噬细胞集落刺激因子(M-CSF/CSF-1)活性,破骨细胞、单核细胞和组织巨噬细胞的分化存在缺陷。在年轻(4-6周龄)的op/op小鼠中,骨髓腔被松质骨填充。在老年(50-72周龄)的op/op小鼠中,骨髓腔明显重建,骨髓造血功能增强。老年op/op小鼠中的破骨细胞和骨髓巨噬细胞数量增加,但大多数破骨细胞为单核细胞,其皱褶缘发育不良。在老年op/op小鼠和同窝老龄小鼠中,骨髓巨噬细胞的溶酶体中充满了丰富的晶体物质。然而,在年轻的op/op小鼠和同窝幼鼠中未观察到此类巨噬细胞。与骨髓中破骨细胞和巨噬细胞数量的显著增加形成对比的是,老年op/op小鼠肝脏中的库普弗细胞数量并未增加。老年op/op小鼠中的库普弗细胞并未随着衰老而表现出超微结构成熟,且含有一些晶体结构。给老年op/op小鼠注射M-CSF可导致库普弗细胞数量增加、库普弗细胞中的溶酶体数量增加、库普弗细胞溶酶体中的晶体结构消失以及破骨细胞中皱褶缘的形成。这些发现表明,老年op/op小鼠中巨噬细胞和破骨细胞发育的M-CSF非依赖机制仅限于骨髓。M-CSF在巨噬细胞和破骨细胞的分化以及溶酶体的产生和功能中发挥着重要作用。

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