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Absorbable magnesium-based stent: physiological factors to consider for in vitro degradation assessments

机译:可吸收的镁基支架:体外降解评估要考虑的生理因素

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Absorbable metals have been widely tested in various in vitro settings using cells to evaluate their possible suitability as an implant material. However, there exists a gap between in vivo and in vitro test results for absorbable materials. A lot of traditional in vitro assessments for permanent materials are no longer applicable to absorbable metallic implants. A key step is to identify and test the relevant microenvironment and parameters in test systems, which should be adapted according to the specific application. New test methods are necessary to reduce the difference between in vivo and in vitro test results and provide more accurate information to better understand absorbable metallic implants. In this investigative review, we strive to summarize the latest test methods for characterizing absorbable magnesium-based stent for bioabsorption/biodegradation behavior in the mimicking vascular environments. Also, this article comprehensively discusses the direction of test standardization for absorbable stents to paint a more accurate picture of the in vivo condition around implants to determine the most important parameters and their dynamic interactions.
机译:可吸收金属已经在各种体外环境下使用细胞进行了广泛测试,以评估其作为植入材料的可能适用性。但是,可吸收材料的体内和体外测试结果之间存在差距。许多关于永久材料的传统体外评估已不再适用于可吸收的金属植入物。关键步骤是在测试系统中识别和测试相关的微环境和参数,应根据特定应用对其进行调整。需要新的测试方法来减少体内和体外测试结果之间的差异,并提供更准确的信息以更好地理解可吸收的金属植入物。在本研究综述中,我们努力总结用于表征可吸收镁基支架在模拟血管环境中的生物吸收/生物降解行为的最新测试方法。此外,本文还全面讨论了可吸收支架的测试标准化方向,以绘制出植入物周围体内状况的更准确图片,以确定最重要的参数及其动态相互作用。

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