Department of Pharmacology, Harbin Medical University, Baojian Road 157, Harbin 150081, China.
Toxicol Lett. 2010 Mar 15;193(2):173-8. doi: 10.1016/j.toxlet.2010.01.001. Epub 2010 Jan 14.
It was previously reported that excessive arsenic trioxide would produce cardiovascular toxicity. Bone marrow mesenchymal stem cells (BMSCs) have been shown to play a supporting role in cardiovascular functions. The increasing apoptosis of BMSCs commonly would promote the development of cardiovascular diseases. Thus we hypothesize that arsenic trioxide caused apoptosis in BMSCs, which provided a better understanding of arsenic toxicity in hearts. The present study was designed to investigate the proapoptotic effects of arsenic trioxide on BMSCs and explore the mechanism underlying arsenic trioxide-induced BMSCs apoptosis. We demonstrate that arsenic trioxide significantly inhibited survival ratios of BMSCs in a concentration-dependent and time-dependent manner. The Annexin V/PI staining and terminal deoxynucleotidyl transferasemediated dUTP nick-end labelling (TUNEL) assay also showed that arsenic trioxide markedly induced the apoptosis of BMSCs. The caspase-3 activity was obviously enhanced in the presence of arsenic trioxide in a concentration-dependent manner in BMSCs. Additionally, arsenic trioxide caused the increase of intracellular free calcium (Ca(2+)) in rat BMSCs. BAPTA pretreatment may attenuate the apoptosis of BMSCs induced by arsenic trioxide. Taken together, arsenic trioxide could inhibit the proliferation and induce the apoptosis of BMSCs by modulating intracellular Ca(2+), and activating the caspase-3 activity.
先前有报道称,三氧化二砷过量会产生心血管毒性。骨髓间充质干细胞(BMSCs)在心血管功能中起支持作用。BMSCs 凋亡的增加通常会促进心血管疾病的发展。因此,我们假设三氧化二砷会导致 BMSCs 凋亡,从而更好地了解三氧化二砷对心脏的毒性。本研究旨在探讨三氧化二砷对 BMSCs 的促凋亡作用,并探讨其诱导 BMSCs 凋亡的机制。我们证明三氧化二砷在浓度和时间依赖性方式下显著抑制 BMSCs 的存活率。 Annexin V/PI 染色和末端脱氧核苷酸转移酶介导的 dUTP 缺口末端标记(TUNEL)检测也显示三氧化二砷显著诱导 BMSCs 凋亡。在 BMSCs 中,三氧化二砷以浓度依赖性方式明显增强了 caspase-3 活性。此外,三氧化二砷导致大鼠 BMSCs 内游离钙浓度(Ca(2+))增加。BAPTA 预处理可能减轻三氧化二砷诱导的 BMSCs 凋亡。综上所述,三氧化二砷通过调节细胞内 Ca(2+)和激活 caspase-3 活性来抑制 BMSCs 的增殖并诱导其凋亡。