首页> 外文期刊>International journal of applied mechanics >Prevention of Encrustation on Ureteral Stents: Which Surface Parameters Provide Guidance for the Development of Novel Stent Materials?
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Prevention of Encrustation on Ureteral Stents: Which Surface Parameters Provide Guidance for the Development of Novel Stent Materials?

机译:预防输尿管上的结壳:哪种表面参数为新型支架材料的开发提供了指导?

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Encrustations of ureteral stents are one of the biggest problems with urological implants. Crystalline biofilms can occur alone or in combination with bacterial biofilms. To identify which surface parameters provide guidance for the development of novel stent materials, we used an in vitro encrustation system. Synthetic urine with increasing pH to simulate an infection situation was pumped over the polymer samples with adjusted flow rates at 37 degrees C to mimic the native body urine flow. Chemical surface features (contact angle, surface charge), as well as encrustations were characterized. The encrustations on the materials were analyzed quantitatively (dry mass) and qualitatively using scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), and Fourier transform infrared spectroscopy (FTIR). The aim of this comparative study was to identify crucial surface parameters that might predict the quantity and type of mineral deposits in vitro and provide guidance for the development and screening of new polymer-based biomaterials for ureteral stent design. For the first time, we could identify that, within the range of our polymers, those materials with a slight hydrophilicity and a strong negative zeta potential (around 60 mV) were most favorable for use as ureteral stent materials, as the deposition of crystalline biofilms was minimized.
机译:输尿管支架的结壳是泌尿外植入物的最大问题之一。结晶生物膜可以单独发生或与细菌生物膜组合发生。为了确定哪些表面参数为新型支架材料的开发提供指导,我们使用了体外镶嵌系统。随着pH值的增加,在37摄氏度下用调节的流速泵送了对pH值以模拟感染情况进行泵送的尿液以模拟天然体内尿流。化学表面特征(接触角,表面电荷),以及结束。使用扫描电子显微镜(SEM),能量分散X射线光谱(EDX)和傅里叶变换红外光谱(FTIR)定量(干质量)和定性分析材料上的结壳。该比较研究的目的是鉴定可能预测体外矿物沉积物的数量和类型的关键表面参数,并为输尿管支架设计的新的聚合物基生物材料的开发和筛选提供指导。首次,我们可以确定,在我们的聚合物的范围内,那些具有轻微亲水性和强的负Zeta电位(约60mV)的材料最有利于用作输尿管支架材料,因为晶体生物膜的沉积被最小化。

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