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Forced expression of human macrophage colony-stimulating factor in CD34(+) cells promotes monocyte differentiation in vitro and in vivo but blunts osteoclastogenesis in vitro.

May 1, 2017

Eur J Haematol

Abstract OBJECTIVES Here, we tested the hypothesis that human M-CSF (hM-CSF) overexpressed in cord blood (CB) CD34 cells would induce differentiation and survival of monocytes and osteoclasts in vitro and in vivo. METHODS Human M-CSF was overexpressed in cord blood CD34 cells using a lentiviral vector. RESULTS We show that LV-hM-CSF-transduced CB CD34 cells expand […]

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Generation of human osteoclasts from peripheral blood.

January 1, 2012

Methods Mol Biol

Abstract Osteoclasts are multi-nucleated cells that have the unique ability to resorb calcified bone matrix. They derive from haematopoietic precursor cells, and can be generated in vitro by stimulation of peripheral blood mononuclear cells with the cytokines M-CSF and RANKL. In this chapter, we describe the method for generating human osteoclast from peripheral blood or […]

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Alterations in osteoclast function and phenotype induced by different inhibitors of bone resorption–implications for osteoclast quality.

June 1, 2010

BMC Musculoskelet Disord

Abstract BACKGROUND Normal osteoclasts resorb bone by secretion of acid and proteases. Recent studies of patients with loss of function mutations affecting either of these processes have indicated a divergence in osteoclastic phenotypes. These difference in osteoclast phenotypes may directly or indirectly have secondary effects on bone remodeling, a process which is of importance for […]

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Human macrophage foam cells degrade atherosclerotic plaques through cathepsin K mediated processes.

April 21, 2010

BMC Cardiovasc Disord

Abstract BACKGROUND Proteolytic degradation of Type I Collagen by proteases may play an important role in remodeling of atherosclerotic plaques, contributing to increased risk of plaque rupture.The aim of the current study was to investigate whether human macrophage foam cells degrade the extracellular matrix (ECM) of atherosclerotic plaques by cathepsin K mediated processes. METHODS We […]

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Acidification of the osteoclastic resorption compartment provides insight into the coupling of bone formation to bone resorption.

February 1, 2005

Am J Pathol

Abstract Patients with defective osteoclastic acidification have increased numbers of osteoclasts, with decreased resorption, but bone formation that remains unchanged. We demonstrate that osteoclast survival is increased when acidification is impaired, and that impairment of acidification results in inhibition of bone resorption without inhibition of bone formation. We investigated the role of acidification in human […]

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Transforming growth factor-beta controls human osteoclastogenesis through the p38 MAPK and regulation of RANK expression.

November 7, 2003

J Biol Chem

Abstract Although RANK-L is essential for osteoclast formation, factors such as transforming growth factor-beta (TGF-beta) are potent modulators of osteoclastogenic stimuli. To systematically investigate the role of TGF-beta in human osteoclastogenesis, monocytes were isolated from peripheral blood by three distinct approaches, resulting in either a lymphocyte-rich, a lymphocyte-poor, or a pure osteoclast precursor (CD14-positive) cell […]

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