Elsevier

Bone

Volume 17, Issue 2, Supplement 1, August 1995, Pages S87-S91
Bone

Modulation of osteoclast differentiation by local factors

https://doi.org/10.1016/8756-3282(95)00185-GGet rights and content

Abstract

Bone-resorbing osteoclasts are of hemopoietic cell origin, probably of the CFU-M-derived monocyte-macrophage family. Bone marrow-derived osteoblastic stromal cells play an important role in modulating the differentiation of osteoclast progenitors in two different ways: one is the production of soluble factors, and the other is cell-to-cell recognition between osteoclast progenitors and osteoblastic stromal cells. M-CSF is probably the most important soluble factor, which appears to be necessary for not only proliferation of osteoclast progenitors, but also differentiation into mature osteoclasts and their survival. A number of local factors as well as systemic hormones induce osteoclast differentiation. They are classified into three categories in terms of the signal transduction: vitamin D receptor-mediated signals [1α,25(OH)2D3]; protein kinase A-mediated signals (PTH, PTHrP, PGE2, and IL-1); and gp130-mediated signals (IL-6, IL-11, oncostatin M, and leukemia inhibitory factor). All of these osteoclast-inducing factors appear to act on osteoblastic cells to commonly induce osteoclast differentiation factor (ODF), which recognizes osteoclast progenitors and prepares them to differentiate into mature osteoclasts. This line of approach will undoubtedly produce new ways to treat several metabolic bone diseases caused by abnormal osteoclast recruitment such as osteoporosis, osteopetrosis, Paget's disease, rheumatoid arthritis, and periodontal disease.

References (30)

  • C.W.G.M. Löwik et al.

    Parathyroid hormone (PTH) and PTH-like protein (PLP) stimulate interleukin-6 production by osteogenic cells: A possible role of interleukin-6 in osteoclastogenesis

    Biochem Biophys Res Commun

    (1989)
  • T. Akatsu et al.

    Parathyroid hormone (PTH)-related protein is a potent stimulator of osteoclast-like multinucleated cell formation to the same extent as PTH in mouse marrow cultures

    Endocrinology

    (1989)
  • T. Akatsu et al.

    Role of prosteglandins in interleukin-1-induced bone resorption in mice in vitro

    J Bone Miner Res

    (1991)
  • T.J. Chambers et al.

    Generation of osteoclast-inductive and osteoclastogenic cell lines from the H-2KbtsA58 transgenic mouse

  • R. Felix et al.

    Macrophage colony-stimulating factor restores in vivo bone resorption in the op/op osteopetrotic mouse

    Endocrinology

    (1990)
  • K. Fuller et al.

    Macrophage colony-stimulating factor stimulates survival and chemotactic behavior in isolated osteoclasts

    J Exp Med

    (1993)
  • G. Girasole et al.

    Interleukin 11: A new cytokine critical for osteoclast development

    J Clin Invest

    (1994)
  • Y. Ishimi et al.

    IL-6 is produced by osteoblasts and induces bone resorption

    J Immunol

    (1990)
  • R.L. Jilka et al.

    Increased osteoclast development after estrogen loss: Mediation by interleukin-6

    Science (Wash DC)

    (1992)
  • T. Kishimoto et al.

    Interleukin-6 and its receptor: A paradigm for cytokines

    Science

    (1992)
  • M.Y. Lee et al.

    Isolation of murine osteoclast colony-stimulating factor

  • T. Masuzawa et al.

    Estrogen deficiency stimulates B lymphopoiesis in mouse bone marrow

    J Clin Invest

    (1994)
  • A.E. Namen et al.

    Stimulation of B-cell progenitors by cloned murine interleukin-7

    Nature (London)

    (1988)
  • S.-I. Nishikawa et al.

    B lymphopoiesis on stromal cell clone: Stromal cell clones acting on different stages of B cell differentiation

    Eur J Immunol

    (1988)
  • V. Poli et al.

    Interleukin-6 deficient mice are protected from bone loss caused by estrogen depletion

    EMBO J

    (1994)
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