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Aluminum induces osteoblast apoptosis through the oxidative stress-mediated JNK signaling pathway. | LitMetric

Aluminum induces osteoblast apoptosis through the oxidative stress-mediated JNK signaling pathway.

Biol Trace Elem Res

College of Animal Science and Veterinary Medicine, Jilin University, 5333 Xi'an Road, Changchun, Jilin, 130062, China.

Published: December 2012

AI Article Synopsis

  • Aluminum exposure inhibits bone formation by inducing oxidative stress and apoptosis in osteoblasts.
  • Al-treated osteoblasts showed lower activity of bone formation markers and higher rates of cell death compared to controls.
  • The study identified that the JNK signaling pathway plays a crucial role in this process by promoting cell apoptosis and reducing osteoblast functionality.

Article Abstract

Aluminum (Al) is considered to be a potentially toxic metal. Al exposure inhibits bone formation. Few studies have investigated the mechanism of inhibitory effects of Al on bone formation. Thus, in this study, osteoblasts were cultured and exposed to different concentrations of Al to investigate the mechanism behind the inhibitory effects of Al on bone formation. Al-treated osteoblasts showed signs of oxidative stress and a high apoptosis rate. The levels of osteoblasts activity markers (bone gamma-carboxyglutamic acid protein and bone alkaline phosphatase) were significantly lower in the Al-treated groups than in the control group. The c-Jun N-terminal kinase (JNK), a major signaling pathway in regulating cell apoptosis, was activated. The phosphorylation state of JNK was significantly increased. The mRNA and protein expression of c-Jun were both significantly upregulated. The pro-apoptotic genes (caspase 3, caspase 9, bax, and factor-related apoptosis ligand) were significantly increased. However, Bcl-2, an anti-apoptotic gene, was significantly decreased. In conclusion, the results of this study indicate that Al induces osteoblast apoptosis by activating the oxidative stress-mediated JNK pathway, which causes cell injuries and reduces the number and function of osteoblasts, thereby inhibiting bone formation.

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Source
http://dx.doi.org/10.1007/s12011-012-9523-5DOI Listing

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