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The chloride channel inhibitor NS3736 [corrected] prevents bone resorption in ovariectomized rats without changing bone formation.

July 1, 2004

J Bone Miner Res

Abstract UNLABELLED Chloride channel activity is essential for osteoclast function. Consequently, inhibition of the osteoclastic chloride channel should prevent bone resorption. Accordingly, we tested a chloride channel inhibitor on bone turnover and found that it inhibits bone resorption without affecting bone formation. This study indicates that chloride channel inhibitors are highly promising for treatment of […]

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Matrix metalloproteinase-12 (MMP-12) in osteoclasts: new lesson on the involvement of MMPs in bone resorption.

January 1, 2004

Bone

Abstract Osteoclasts require matrix metalloproteinase (MMP) activity and cathepsin K to resorb bone, but the critical MMP has not been identified. Osteoclasts express MMP-9 and MMP-14, which do not appear limiting for resorption, and the expression of additional MMPs is not clear. MMP-12, also called metalloelastase, is reported only in a few cells, including tissue […]

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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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Investigation of bone disease using isomerized and racemized fragments of type I collagen.

January 1, 2003

Calcif Tissue Int

Abstract In the collagen type I C-telopeptide an aspartyl-glycine site within the sequence AHDGGR is susceptible to molecular rearrangement. In newly synthesized collagen this site is in the native form, denoted alpha L. During aging a spontaneous reaction occurs resulting in three age-modified forms: an isomerized form (beta L) a racemized form (alpha D), and […]

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Matrix metalloproteinase-dependent activation of latent transforming growth factor-beta controls the conversion of osteoblasts into osteocytes by blocking osteoblast apoptosis.

November 15, 2002

J Biol Chem

Abstract Upon termination of bone matrix synthesis, osteoblasts either undergo apoptosis or differentiate into osteocytes or bone lining cells. In this study, we investigated the role of matrix metalloproteinases (MMPs) and growth factors in the differentiation of osteoblasts into osteocytes and in osteoblast apoptosis. The mouse osteoblast cell line MC3T3-E1 and primary mouse calvarial osteoblasts […]

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