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Preliminary Validation of a Dynamic Electrochemical Biodegradation Test Bench in Pseudo-Physiological Conditions

机译:伪生理条件下动态电化学生物降解试验台的初步验证

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摘要

There is a growing interest in the development of next generation stent materials. In vitro tests that accurately predict in vivo conditions, are needed for a full evaluation of a material’s corrosion in vivo. In this manuscript a novel approach for the design of a dynamic electrochemical test bench is evaluated in hopes to later characterize and model biodegradable metallic stent materials. This dynamic test bench design allows for real-time corrosion testing with easy variation of temperature, shear stress, and simulated body fluids (SBF), with minimal complications of test sample fabrication. Preliminary tests have shown Tafel generation stable. Further testing of the stability of the test bench were conducted with the incorporation SBF, shear stress, and temperature. Shear stress was applied through variation in fluid velocities at 0 m/s, 0.127 m/s, 0.245 m/s, 0.372 m/s, 0.489 m/s at 37°C. Incorporation of the different SBFs showed no significant difference in corrosion readings; however, variances were observed higher in DMEM and PBS, than in Hanks, respectively. This dynamic test bench showed to be relatively stable under temperature and SBF modification; however, further optimization is needed to decrease variances seen throughout fluid velocity analysis.
机译:对下一代支架材料的开发越来越感兴趣。要全面评估材料的体内腐蚀状况,需要进行能够准确预测体内状况的体外测试。在此手稿中,评估了一种用于设计动态电化学测试台的新颖方法,以期以后表征和建模可生物降解的金属支架材料。这种动态测试台设计允许实时腐蚀测试,温度,剪切应力和模拟体液(SBF)的变化很容易,并且测试样品制造的复杂性降至最低。初步测试表明,Tafel生成稳定。结合SBF,剪切应力和温度对测试台的稳定性进行了进一步测试。通过在37°C下以0 m / s,0.127 m / s,0.245 m / s,0.372 m / s,0.489 m / s的速度变化施加剪切应力。掺入不同的SBF并没有显示出明显的腐蚀读数差异。但是,在DMEM和PBS中观察到的差异分别比在Hanks中高。该动态试验台在温度和SBF改性下显示相对稳定。但是,需要进一步优化以减少整个流体速度分析中看到的差异。

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