期刊文献+

Inhibitory effect of iron on in vitro proliferation of smooth muscle cells 被引量:1

Inhibitory effect of iron on in vitro proliferation of smooth muscle cells
原文传递
导出
摘要 Background Iron is a biocorrodible metal that might be used in bioabsorbable stents.This study investigated the effects at the cellular and protein levels of soluble divalent iron (ferrous gluconate) and soluble trivalent iron (ferric chloride) on the proliferation of human aortic smooth muscle cell (HASMC) in vitro.Methods The water-soluble tetrazolium (WST-1) test was used to evaluate the effect of iron on proliferation of HASMC and Western blotting was used to measure the levels of signaling proteins involved in proliferative and apoptosis pathways.Results HASMC proliferation was inhibited in a concentration dependent manner after treatment with soluble divalent and trivalent iron at concentrations of 100-500 μmol/L.Western blotting analysis showed that the proliferating cell nuclear antigen (PCNA) expression following treatment with soluble divalent iron and trivalent iron at 100,300 and 500 μmol/L was reduced compared to the control.The PCNA expression decreased with increasing iron concentration and to a greater extent with the trivalent iron than with the divalent iron treatment group.The p53 expression was markedly increased in a concentration dependent manner in both iron treatment groups.Conclusion The soluble divalent iron and,to a greater degree trivalent iron,inhibited HASMC proliferation in a dosedependent manner,which may be attributed to reduction of PCNA expression and increase of p53 expression. Background Iron is a biocorrodible metal that might be used in bioabsorbable stents.This study investigated the effects at the cellular and protein levels of soluble divalent iron (ferrous gluconate) and soluble trivalent iron (ferric chloride) on the proliferation of human aortic smooth muscle cell (HASMC) in vitro.Methods The water-soluble tetrazolium (WST-1) test was used to evaluate the effect of iron on proliferation of HASMC and Western blotting was used to measure the levels of signaling proteins involved in proliferative and apoptosis pathways.Results HASMC proliferation was inhibited in a concentration dependent manner after treatment with soluble divalent and trivalent iron at concentrations of 100-500 μmol/L.Western blotting analysis showed that the proliferating cell nuclear antigen (PCNA) expression following treatment with soluble divalent iron and trivalent iron at 100,300 and 500 μmol/L was reduced compared to the control.The PCNA expression decreased with increasing iron concentration and to a greater extent with the trivalent iron than with the divalent iron treatment group.The p53 expression was markedly increased in a concentration dependent manner in both iron treatment groups.Conclusion The soluble divalent iron and,to a greater degree trivalent iron,inhibited HASMC proliferation in a dosedependent manner,which may be attributed to reduction of PCNA expression and increase of p53 expression.
出处 《Chinese Medical Journal》 SCIE CAS CSCD 2013年第19期3728-3731,共4页 中华医学杂志(英文版)
关键词 IRON PROLIFERATION smooth muscle cells iron proliferation smooth muscle cells
  • 相关文献

参考文献17

  • 1Brown DA, Lee EW, Loh CT, Kee ST. A new wave in treatment of vascular occlusive disease: biodegradable stents - clinical experience and scientific principles. J Vasc Interv Radiol 2009; 20: 315-324.
  • 2Waksman R, Pakala R, Baffour R, Seabron R, Hellinga D, Tio FO. Short-term effects of biocorrodible iron stents in porcine coronary arteries. J Interv Cardio12008; 21:15-20.
  • 3Peuster M, Hesse C, Schloo T, Fink C, Beerbaum P, von Schnakenburg C. Long-term biocompatibility of a corrodible peripheral iron stent in the porcine descending aorta. Biomaterials 2006; 27: 4955-4962.
  • 4Ramcharitar S, Serruys PW. Fully biodegradable coronary stents: progress to date. Am J Cardiovasc Drugs 2008; 8:305-314.
  • 5Waksman R, Pakala R, Kuchulakanti PK, Baffour R, Hellinga D, Seabron R, et al. Safety and efficacy of bioabsorbable magnesium alloy stents in porcine coronary arteries. Catheter Cardiovasc Interv 2006; 68:607-617.
  • 6Mueller PP, May T, Perz A, Hauser H, Peuster M. Control of smooth muscle cell proliferation by ferrous iron. Biomaterials 2006; 27: 2193-2200.
  • 7Drynda A, Hoehn R, Peuster M. Influence of Fe (Ⅱ) and Fe (Ⅲ) on the expression of genes related to cholesterol- and fatty acid metabolism in human vascular smooth muscle cells. J Mater Sci Mater Med 2010; 21: 1655-1663.
  • 8Schiffrin EL, Touyz RM. Vascular biology of endothelin. J Cardiovasc Pharmacol 1998; 32 Suppl 3: S2-S13.
  • 9Bauriedel G, Kandolf R, Welsch U, H0fling B. Mechanisms of re-stenosis after angiopIasty. Z Kardiol 1994; 83: 31-41.
  • 10Peuster M, Wohlsein P, Brugmann M, Ehlerding M, Seidler K, Fink C, et al. A novel approach to temporary stenting: degradable cardiovascular stents produced from corrodible metal-results 6-18 months after implantation into New Zealand white rabbits. Heart 2001; 86: 563-569.

同被引文献2

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部