West China Journal of Stomatology

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Influence of copper -bearing stainless steel on adhesion, proliferation and apoptosis of vascular endothelial cell

Xu Lu1, Zhang Yang1, Yang Ke2, Ren Ling2, Wang Qiang3   

  1. 1. Dept. of Orthodontics, Stomatology School of China Medical University, Shenyang 110002, China; 2. Dept. of Specialized Materials and Devices, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China; 3. Dept. of Dental Materials, Stomatology School of China Medical University, Shenyang 110002, China
  • Online:2013-02-01 Published:2013-02-01

Abstract:

 Objective  To observe the influence of copper -bearing stainless steel on adhesion, proliferation and apoptosis of vascular endothelial cell(VEC). Methods  The samples of two kinds of materials were inoculated with VEC and incubated for 1, 2 and 3 d. After stained by acridine orange, the cells adhered on the surface of samples were observed under a fluorescent microscope. The proliferation of VEC was detected by methyl thiazolyl tetrazolium(MTT) test. Next, leaching liquor of these two kinds of materials was prepared and used to culture VEC. The apoptosis of VEC was measured by flow cytometry. Results Fluorescent microscope showed VEC spread into fusiform shape, copper-bearing stainless steel surfaces had a significantly higher number of adherent VEC than 316L stainless steel at 1 and 2 d(P<0.05). No significant difference of adherent VEC was observed between two kinds of materials at 3 d(P>0.05). MTT results indicated that the optical density(OD) value of copper-bearing stainless steel were higher than that of 316L stainless steel at 1 and 2 d(P<0.05). No significant difference of OD value was observed between two kinds of materials at 3 d(P>0.05). The early apoptosis ratio of 316L stainless steel was higher than copper-bearing stainless stee(l P<0.05). Conclusion  Copper-bearing stainless steel could promote the adhesion, proliferation of VEC, and inhibit the early apoptosis ratio of VEC.

Key words: copper-bearing stainless steel, vascular endothelial cell, adhesion, proliferation, apoptosis