Macrophages are commonly found within osteolytic secondary carcinomas in bone, but the manner in which these cells contribute to malignant bone resorption is uncertain. Macrophages isolated from primary breast carcinomas were co-cultured for up to 21 days with UMR 106 rat osteoblast-like cells on bo
CELLS OF THE MONONUCLEAR PHAGOCYTE SERIES DIFFERENTIATE INTO OSTEOCLASTIC LACUNAR BONE RESORBING CELLS
β Scribed by QUINN, J. M. W.; SABOKBAR, A.; ATHANASOU, N. A.
- Publisher
- John Wiley and Sons
- Year
- 1996
- Tongue
- English
- Weight
- 702 KB
- Volume
- 179
- Category
- Article
- ISSN
- 0022-3417
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β¦ Synopsis
Although the osteoclast shares several features with other cells of the mononuclear phagocyte system (MPS), its precise cellular ontogeny is unknown, and its membership of the M P S is controversial. This study examined whether various cells of the M P S can be induced to differentiate into cells capable of the highly specialized osteoclastic function of lacunar bone resorption. We isolated mouse and rat monocytes, mouse (liver, peritoneal, alveolar, brain) tissue macrophages, and spleen and marrow haemopoietic cells, as well as foreign body macrophages and macrophage polykaryons derived from subcutaneous granulomas formed by implantation of latex beads and coverslips in mice. When these cells were incubated with UMR106 osteoblast-like cells on glass coverslips and human cortical bone slices in the presence of 1,25dihydroxy vitamin D, [1,25(OH),D,] for 7 and 14 days, numerous tartrate-resistant acid phosphatasepositive cells formed in these co-cultures and scanning electron microscopy revealed extensive lacunar resorption of the bone surface.
Bone resorption was seen as early as 4 days after monocytes were co-cultured with UMR106 cells. With the exception of bone marrow-derived cells, lacunar resorption was not seen in the absence of UMR106 cells. These findings show that a bone-derived stromal cell element is necessary for differentiation of monocytes and tissue and inflammatory macrophages into osteoclast-like cells capable of extensive lacunar bone resorption, and would argue in favour of osteoclast membership of the MPS.
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