Smith Spenser S, Reyes Jackeline Rodriguez, Arbon Kate S, Harvey Wendy A, Hunt Lindsey M, Heggland Sara J
Department of Biology, The College of Idaho, 2112 Cleveland Blvd., Caldwell, ID 83605, USA.
Toxicol In Vitro. 2009 Feb;23(1):60-6. doi: 10.1016/j.tiv.2008.10.011. Epub 2008 Nov 5.
Exposure to cadmium poses a threat to human health, including increased susceptibility to developing the bone disease osteoporosis. Despite its recognized importance as an environmental toxin, little is known about how cadmium directly impacts bone-forming osteoblasts. We previously reported that cadmium induces apoptosis in human osteoblast-like Saos-2 cells. In this work, we hypothesize that cadmium exposure induces oxidative stress which leads to decreased RUNX2 mRNA expression and increased apoptotic death, and predict that the antioxidant NAC mitigates the damaging effects of cadmium. Oxidative stress is implicated in osteoporosis; furthermore the osteoblast transcriptional factor RUNX2 is reported to play a protective role against osteoporosis in postmenopausal women. Cells treated with 10 microM CdCl2 exhibited signs of oxidative damage including depletion in glutathione, increased reactive oxygen species formation, and enhanced lipid peroxidation. RUNX2 mRNA expression, by RT-PCR, was significantly reduced after exposure to 10 microM CdCl2. Pretreatment with the antioxidant NAC (1mM) prevented cadmium-induced decrease in RUNX2 mRNA and protected cells from apoptotic death. This study provides insight into the mechanisms underlying cadmium-induced osteotoxicity. In addition, this study distinguishes itself by identifying RUNX2 as a target for heavy metal-induced osteotoxicity.
接触镉对人类健康构成威胁,包括增加患骨病骨质疏松症的易感性。尽管镉作为一种环境毒素的重要性已得到认可,但关于镉如何直接影响成骨细胞,人们所知甚少。我们之前报道过镉会诱导人成骨样Saos-2细胞凋亡。在这项研究中,我们假设镉暴露会诱导氧化应激,进而导致RUNX2 mRNA表达降低和凋亡死亡增加,并预测抗氧化剂NAC可减轻镉的有害影响。氧化应激与骨质疏松症有关;此外,据报道成骨细胞转录因子RUNX2在绝经后女性预防骨质疏松症中起保护作用。用10微摩尔/升氯化镉处理的细胞表现出氧化损伤迹象,包括谷胱甘肽消耗、活性氧生成增加和脂质过氧化增强。通过逆转录聚合酶链反应检测,暴露于10微摩尔/升氯化镉后,RUNX2 mRNA表达显著降低。用抗氧化剂NAC(1毫摩尔/升)预处理可防止镉诱导的RUNX2 mRNA降低,并保护细胞免于凋亡死亡。本研究深入探讨了镉诱导骨毒性的潜在机制。此外,本研究通过将RUNX2确定为重金属诱导骨毒性的靶点而独具特色。