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Ureteral stents: What your eyes can't see! An in vitro study.

作者信息

Kutchukian Stessy, Chicaud Marie, Corrales Mariela, Solano Catalina, Candela Luigi, Doizi Steeve, Bazin Dominique, Traxer Olivier, Panthier Frédéric

机构信息

GRC n(o) 20, groupe de recherche clinique sur la lithiase urinaire, hôpital Tenon, Sorbonne université, 75020 Paris, France; Service d'urologie, hôpital Tenon, Assistance publique-Hôpitaux de Paris, Sorbonne université, 4, rue de la Chine, 75020 Paris, France; PIMM, UMR 8006 CNRS-Arts et métiers ParisTech, 151, boulevard de l'Hôpital, 75013 Paris, France; Service d'urologie, CHU de Poitiers, Poitiers, France.

GRC n(o) 20, groupe de recherche clinique sur la lithiase urinaire, hôpital Tenon, Sorbonne université, 75020 Paris, France; Service d'urologie, hôpital Tenon, Assistance publique-Hôpitaux de Paris, Sorbonne université, 4, rue de la Chine, 75020 Paris, France; PIMM, UMR 8006 CNRS-Arts et métiers ParisTech, 151, boulevard de l'Hôpital, 75013 Paris, France; Service d'urologie, CHU de Limoges, Limoges, France.

出版信息

Fr J Urol. 2024 Jul;34(7-8):102644. doi: 10.1016/j.fjurol.2024.102644. Epub 2024 May 15.

Abstract

OBJECTIVES

To characterize and compare in vitro the surfaces of ureteral stents (STENTS) before utilization.

METHODS

Our in vitro experiment included six unused STENTS models: three double-pigtail with side orifices (ImaJin and Stenostent [Coloplast©,France], TriaSoft [BostonScientific©,USA]), two double-pigtail without side orifice (Vortek-TumorStent [Coloplast©,France], Urosoft-TumorStent [Bard-Angiomed©,Germany]) and one single-pigtail (J-Fil [Rocamed©,Monaco]). STENTS were made of polyurethane except for ImaJin (silicone). For all STENTS, four parts of the stent were specifically analyzed under high-resolution scanning electron microscopy (HR-SEM,FEI-XL40 [Philips©,France]): surface core, lateral orifice, ureteral loop, and black marking surface. Each experiment was repeated with three different samples from three different stents. STENTS analysis included multiple imperfection searches, defined as irregularities>10μm.

RESULTS

All STENTS presented imperfections with no discernible differences. Imperfections were mainly located on the stent loop and on the lateral orifice. For STENTS without side orifice (J-Fil, Urosoft) imperfections were also reported, on the beveled cut as well as the distal loop orifice. Marking surfaces examinations found defects in the Urosoft and imperfections in the ImaJin and Stenostent. The Triasoft presented a better smoothness on marking surfaces compared to other STENTS. Additional matter was reported on the loop distal orifice for J-Fil and ImaJin but all STENTS presented irregular cross-sectional aeras.

CONCLUSION

All ureteral stents are not perfectly smooth even before utilization. Imperfections were noticed regardless to stent composition or shape, and could play a role in the incrustation phenomenon, is association with inner irregularities, infection, and urine composition. Both manufacturing and material could have an impact on the stent external surface's smoothness.

摘要

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