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Effect of magnesium ion on human osteoblast activity
He, L Y; Zhang, X M; Liu, B; Tian, Y; Ma, W H.
  • He, L Y; Hebei Medical University. The Key Laboratory for Orthopedic Biomechanics of Hebei Province. Department of Orthopedic Surgery. Shijiazhuang. CN
  • Zhang, X M; Hebei Medical University. Department of Orthopedic Surgery. Shijiazhuang. CN
  • Liu, B; Hebei Medical University. The Key Laboratory for Orthopedic Biomechanics of Hebei Province. Department of Orthopedic Surgery. Shijiazhuang. CN
  • Tian, Y; Hebei Medical University. The Key Laboratory for Orthopedic Biomechanics of Hebei Province. Department of Orthopedic Surgery. Shijiazhuang. CN
  • Ma, W H; Hebei Medical University. The Key Laboratory for Orthopedic Biomechanics of Hebei Province. Department of Orthopedic Surgery. Shijiazhuang. CN
Braz. j. med. biol. res ; 49(7): e5257, 2016. graf
Artículo en Inglés | LILACS | ID: biblio-951691
ABSTRACT
Magnesium, a promising biodegradable metal, has been reported in several studies to increase bone formation. Although there is some information regarding the concentrations of magnesium ions that affect bone remodeling at a cellular level, little is known about the effect of magnesium ions on cell gap junctions. Therefore, this study aimed to systematically investigate the effects of different concentrations of magnesium on bone cells, and further evaluate its effect on gap junctions of osteoblasts. Cultures of normal human osteoblasts were treated with magnesium ions at concentrations of 1, 2 and 3 mM, for 24, 48 and 72 h. The effects of magnesium ions on viability and function of normal human osteoblasts and on gap junction intercellular communication (GJIC) in osteoblasts were investigated. Magnesium ions induced significant (P<0.05) increases in cell viability, alkaline phosphate activity and osteocalcin levels of human osteoblasts. These stimulatory actions were positively associated with the concentration of magnesium and the time of exposure. Furthermore, the GJIC of osteoblasts was significantly promoted by magnesium ions. In conclusion, this study demonstrated that magnesium ions induced the activity of osteoblasts by enhancing GJIC between cells, and influenced bone formation. These findings may contribute to a better understanding of the influence of magnesium on bone remodeling and to the advance of its application in clinical practice.
Asunto(s)


Texto completo: Disponible Índice: LILACS (Américas) Asunto principal: Osteoblastos / Magnesio Tipo de estudio: Estudios de evaluación Límite: Humanos Idioma: Inglés Revista: Braz. j. med. biol. res Asunto de la revista: Biologia / Medicina Año: 2016 Tipo del documento: Artículo País de afiliación: China Institución/País de afiliación: Hebei Medical University/CN

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Texto completo: Disponible Índice: LILACS (Américas) Asunto principal: Osteoblastos / Magnesio Tipo de estudio: Estudios de evaluación Límite: Humanos Idioma: Inglés Revista: Braz. j. med. biol. res Asunto de la revista: Biologia / Medicina Año: 2016 Tipo del documento: Artículo País de afiliación: China Institución/País de afiliación: Hebei Medical University/CN