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Role of Epithelium Sodium Channel in Bone Formation 被引量:4

Role of Epithelium Sodium Channel in Bone Formation
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摘要 Objective:To review the recent developments in the mechanisms of epithelium sodium channels (ENaCs) induced bone formation and regulation.Data Sources:Studies written in English or Chinese were searched using Medline,PubMed and the index of Chinese-language literature with time restriction from 2005 to 2014.Keywords included ENaC,bone,bone formation,osteonecrosis,estrogen,and osteoporosis.Data from published articles about the structure of ENaC,mechanism of ENaC in bone formation in recent domestic and foreign literature were selected.Study Selection:Abstract and full text of all studies were required to obtain.Studies those were not accessible and those did not focus on the keywords were excluded.Results:ENaCs are tripolymer ion channels which are assembled from homologous α,β,and γ subunits.Crystal structure of ENaCs suggests that ENaC has a central ion-channel located in the central symmetry axis of the three subunits.ENaCs are protease sensitive channels whose iron-channel activity is regulated by the proteolytic reaction.Channel opening probability of ENaCs is regulated by proteinases,mechanical force,and shear stress.Several molecules are involved in regulation of ENaCs in bone formation,including nitride oxide synthases,voltage-sensitive calcium channels,and cyclooxygenase-2.Conclusion:The pathway of ENaC involved in shear stress has an effect on stimulating osteoblasts even bone formation by estrogen interference. Objective:To review the recent developments in the mechanisms of epithelium sodium channels (ENaCs) induced bone formation and regulation.Data Sources:Studies written in English or Chinese were searched using Medline,PubMed and the index of Chinese-language literature with time restriction from 2005 to 2014.Keywords included ENaC,bone,bone formation,osteonecrosis,estrogen,and osteoporosis.Data from published articles about the structure of ENaC,mechanism of ENaC in bone formation in recent domestic and foreign literature were selected.Study Selection:Abstract and full text of all studies were required to obtain.Studies those were not accessible and those did not focus on the keywords were excluded.Results:ENaCs are tripolymer ion channels which are assembled from homologous α,β,and γ subunits.Crystal structure of ENaCs suggests that ENaC has a central ion-channel located in the central symmetry axis of the three subunits.ENaCs are protease sensitive channels whose iron-channel activity is regulated by the proteolytic reaction.Channel opening probability of ENaCs is regulated by proteinases,mechanical force,and shear stress.Several molecules are involved in regulation of ENaCs in bone formation,including nitride oxide synthases,voltage-sensitive calcium channels,and cyclooxygenase-2.Conclusion:The pathway of ENaC involved in shear stress has an effect on stimulating osteoblasts even bone formation by estrogen interference.
出处 《Chinese Medical Journal》 SCIE CAS CSCD 2016年第5期594-600,共7页 中华医学杂志(英文版)
基金 a grant of the National Natural Science Foundation of China
关键词 Bone Formation Epithelium Sodium Channel ESTROGEN OSTEOBLASTS Shear Stress Bone Formation Epithelium Sodium Channel Estrogen Osteoblasts Shear Stress
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  • 1Strnad M. Salt and cancer[J]. Acta Medica Croatica, 2010, 64(2): 159-61.
  • 2He FJ, Macgregor GA. Reducing population salt intake worldwide: from evidence to implementation[J]. Prog Cardiovasc Dis, 2010, 52 (5): 363-82.
  • 3Krzesinski JM. Sodium and arterial hypertension-one htmdred years of controversies[J]. Bull Mem Acad R Med Belg, 2009, 164 (3-4): 143-55.
  • 4Caudarella R, Vescini F, Rizzoli E, et al. Salt intake, hypertension, and osteoporosis[J]. J Endocrinol Invest, 2009, 32(4 Suppl): 15-20.
  • 5Jelakovi6 B, Premuzi6 V, Skupnjak B, et al. Salt-hidden poison in everyday meal[J]. Lijec Vjesn, 2009, 131(5-6): 146-54.
  • 6Studer RA, Person E, Robinson-Rechavi M, et al. Evolution of theepithelial sodium channel and the sodium pump as limiting factors of aldosterone action on Sodium transport [J]. Physiol Genomics, 2011, 43(13): 844-54.
  • 7Almaca J, Dahim6ne S, Appel N, et al. Functional genomlcs assays to study CFTR traffic and ENaC function [J]. Methods Mol Biol, 2011, 742: 249-64.
  • 8Qadri YJ, Cormet-Boyaka E, Benos DJ, et al. CFTR regulation of epithelial sodium channel[J]. Methods Mol Biol, 2011,742: 35-50.
  • 9Vilasi A, Capasso G. Proteomics and tubulopathies [J]. J Nephrol, 2010, 23(Suppl 16): S221-7.
  • 10Mobasheri A, Pocock AE, Trujillo E, et al. Detection of mRNA and protein of the ct subunit of the epithelial sodium channel (ENaC) in human osteoblasts and human ACL cells [J]. J Physiol, 2001, 6: 46-535.

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