4.5 Article

Influence of Angptl1 on osteoclast formation and osteoblastic phenotype in mouse cells

Journal

BMC MUSCULOSKELETAL DISORDERS
Volume 22, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12891-021-04278-6

Keywords

Angptl1; Osteoblast; Osteoclast; Adipocyte; Bone

Funding

  1. Nakatomi Foundation
  2. Ministry of Education, Culture, Sports, Science, and Technology of Japan [C:20 K09514, C: 19 K09659, 15H05935]

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This study demonstrates that Angptl1 suppresses osteoclast formation and enhances osteoblastic differentiation in mouse cells, while inhibiting adipogenic differentiation of 3T3-L1 cells.
Background Osteoblasts and osteoclasts play important roles during the bone remodeling in the physiological and pathophysiological states. Although angiopoietin family Angiopoietin like proteins (Angptls), including Angptl1, have been reported to be involved in inflammation, lipid metabolism and angiogenesis, the roles of Angptl1 in bone have not been reported so far. Methods We examined the effects of Angptl1 on the osteoblast and osteoclast phenotypes using mouse cells. Results Angptl1 significantly inhibited the osteoclast formation and mRNA levels of tartrate-resistant acid phosphatase and cathepsin K enhanced by receptor activator of nuclear factor kappa B ligand in RAW 264.7 and mouse bone marrow cells. Moreover, Angptl1 overexpression significantly enhanced Osterix mRNA levels, alkaline phosphatase activity and mineralization induced by bone morphogenetic protein-2 in ST2 cells, although it did not affect the expression of osteogenic genes in MC3T3-E1 and mouse osteoblasts. On the other hand, Angptl1 overexpression significantly reduced the mRNA levels of peroxisome proliferator-activated receptor gamma and adipocyte protein-2 as well as the lipid droplet formation induced by adipogenic medium in 3T3-L1 cells. Conclusions The present study first indicated that Angptl1 suppresses and enhances osteoclast formation and osteoblastic differentiation in mouse cells, respectively, although it inhibits adipogenic differentiation of 3T3-L1 cells. These data suggest the possibility that Angptl1 might be physiologically related to bone remodeling.

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