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预防尿支架和导管结壳的潜在策略——跳出固有思维:改善尿支架的多学科研究欧洲网络(ENIUS)倡议。

Potential strategies to prevent encrustations on urinary stents and catheters - thinking outside the box: a European network of multidisciplinary research to improve urinary stents (ENIUS) initiative.

机构信息

Physico-chimie des Électrolytes Et Nanosystèmes Interfaciaux, Sorbonne Université, Paris, France.

3B's Research Group, University of Minho, BarcoGuimaraes, Portugal.

出版信息

Expert Rev Med Devices. 2021 Jul;18(7):697-705. doi: 10.1080/17434440.2021.1939010. Epub 2021 Jun 11.

Abstract

Urinary stents have been around for the last 4 decades, urinary catheters even longer. They are associated with infections, encrustation, migration, and patient discomfort. Research efforts to improve them have shifted onto molecular and cellular levels. ENIUS brought together translational scientists to improve urinary implants and reduce morbidity.: A working group within the ENIUS network was tasked with assessing future research lines for the improvement of urinary implants.Topics were researched systematically using Embase and PubMed databases. Clinicaltrials.gov was consulted for ongoing trials. Relevant topics were coatings with antibodies, enzymes, biomimetics, bioactive nano-coats, antisense molecules, and engineered tissue. Further, pH sensors, biodegradable metals, bactericidal bacteriophages, nonpathogenic uropathogens, enhanced ureteric peristalsis, electrical charges, and ultrasound to prevent stent encrustations were addressed. All research lines addressed in this paper seem viable and promising. Some of them have been around for decades but are yet to proceed to clinical application (i.e. tissue engineering). Others are very recent and, at least in urology, still only conceptual (i.e. antisense molecules). Perhaps the most important learning point resulting from this pan-European multidisciplinary effort is that collaboration between all stakeholders is not only fruitful but also truly essential.

摘要

在过去的 40 年里,尿路支架已经存在,而导尿管的历史则更为悠久。它们与感染、结垢、迁移和患者不适有关。为了改进这些器械,研究工作已经转向分子和细胞水平。ENIUS 将转化科学家聚集在一起,以改善尿路植入物并降低发病率:ENIUS 网络内的一个工作组负责评估改善尿路植入物的未来研究方向。使用 Embase 和 PubMed 数据库系统地研究了主题。向 Clinicaltrials.gov 咨询了正在进行的试验。相关主题包括抗体、酶、仿生学、生物活性纳米涂层、反义分子和工程组织的涂层。此外,还研究了 pH 传感器、可生物降解的金属、杀菌噬菌体、非致病性尿路病原体、增强输尿管蠕动、电荷和超声以防止支架结垢。本文中讨论的所有研究方向似乎都是可行且有前途的。其中一些已经存在了几十年,但尚未进入临床应用(即组织工程)。其他的则非常新,至少在泌尿科,仍然只是概念性的(即反义分子)。或许,从这项泛欧多学科努力中得出的最重要的学习点是,所有利益相关者之间的合作不仅富有成效,而且是真正必要的。

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