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PSTP-3,5-Me Inhibits Osteoclast Differentiation and Bone Resorption.
Cho, Eunjin; Chen, Zhihao; Lee, Jinkyung; Lee, Sunwoo; Lee, Tae-Hoon.
Afiliação
  • Cho E; Department of Oral Biochemistry, Dental Science Research Institute, School of Dentistry, Chonnam National University, Gwangju 61186, Korea. ag8414@gmail.com.
  • Chen Z; Department of Molecular Medicine (BK21plus), Chonnam National University Graduate School, Gwangju 61186, Korea. chinaczhihao@gmail.com.
  • Lee J; Department of Oral Biochemistry, Dental Science Research Institute, School of Dentistry, Chonnam National University, Gwangju 61186, Korea. wlsrud1945@naver.com.
  • Lee S; Department of Chemistry, Chonnam National University, Gwangju 61186, Korea. sunwoo@chonnam.ac.kr.
  • Lee TH; Department of Oral Biochemistry, Dental Science Research Institute, School of Dentistry, Chonnam National University, Gwangju 61186, Korea. thlee83@jnu.ac.kr.
Molecules ; 24(18)2019 Sep 14.
Article em En | MEDLINE | ID: mdl-31540026
ABSTRACT
Osteogenesis is an orchestrated process regulated by osteoclastogenesis and osteoblastogenesis. Excessive osteoclastogenesis causes bone diseases, such as osteoporosis. Although a few drugs are effective in osteoporosis treatment, these drugs lead to side effects, including cellulitis, flatulence, and hypocalcemia. In this study, we reported a 2-(N-Phenylmethylsulfonamido)-N-(2-(phenylthio)phenyl)propanamide (PSTP) compound, PSTP-3,5-Me, as a potential therapeutic agent for osteoporosis. Mouse bone marrow-derived macrophages (BMMs) were differentiated into osteoclasts by receptor activator of nuclear factor kappa B ligand (RANKL) and macrophage colony-stimulating factor (M-CSF) in the presence of PSTP-3,5-Me. PSTP-3,5-Me inhibited osteoclast differentiation by reduced tartrate-resistant acid phosphatase (TRAP)-positive osteoclasts, and suppressed the expression of osteoclast marker genes, such as cathepsin K (Ctsk) and TRAP (Acp5). We investigated signaling pathways mediated by RANKL and its receptor, RANK, and found that PSTP-3,5-Me inhibits nucleus translocation of nuclear factor of activated T cell cytoplasmic-1 (NFATc1). Moreover, PSTP-3,5-Me inhibited F-actin ring formation and mineral resorption. Overall, our data suggests that PSTP-3,5-Me attenuates osteoclast differentiation by blocking the activation of NFATc1.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Osteoclastos / Reabsorção Óssea / Células da Medula Óssea / Transdução de Sinais / Antígenos de Diferenciação / Diferenciação Celular / Regulação da Expressão Gênica Limite: Animals Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Osteoclastos / Reabsorção Óssea / Células da Medula Óssea / Transdução de Sinais / Antígenos de Diferenciação / Diferenciação Celular / Regulação da Expressão Gênica Limite: Animals Idioma: En Ano de publicação: 2019 Tipo de documento: Article