Literature DB >> 16098350

Can ureteral stent encrustation analysis predict urinary stone composition?

Morgan Rouprêt1, Michel Daudon, Vincent Hupertan, Bernard Gattegno, Philippe Thibault, Olivier Traxer.   

Abstract

OBJECTIVES: To determine the value of mid-infrared spectroscopy (MIRS) of ureteral stent encrustations in predicting urinary stone composition.
METHODS: A retrospective study analyzed the composition of stent encrustations and urinary stones by MIRS in patients who had had a stent for ureteral obstruction between 2001 and 2003. The overall correlation was evaluated. The correlation coefficient kappa for agreement between the proportions of each component was calculated.
RESULTS: A total of 72 stents and 72 stones from 72 patients were analyzed. The mean stent indwelling time was 55.5 days (range 14 to 102). The stents had been placed for fever (52 cases, 72%), pain refractory to analgesics (15 cases, 21%), and impairment of kidney function (5 cases, 7%). The overall correlation between stone composition and stent encrustation was 71.4%, excluding biofilm analysis. The kappa value was 0.78 for the main component (n = 72; P < 0.0005), 0.61 for the secondary component (n = 72; P < 0.0005), and 0.91 for the agreement between the composition of encrustations at each end of a stent (n = 30; P < 0.0005).
CONCLUSIONS: MIRS analysis of stent encrustations is a reliable method of predicting stone composition when the stone cannot be retrieved. Systematic MIRS analysis of stent encrustations is not recommended but can be very useful in clinical situations in which no stone is available.

Entities:  

Mesh:

Year:  2005        PMID: 16098350     DOI: 10.1016/j.urology.2005.03.054

Source DB:  PubMed          Journal:  Urology        ISSN: 0090-4295            Impact factor:   2.649


  8 in total

Review 1.  Ureteral stent-associated complications--where we are and where we are going.

Authors:  Dirk Lange; Samir Bidnur; Nathan Hoag; Ben H Chew
Journal:  Nat Rev Urol       Date:  2014-12-23       Impact factor: 14.432

2.  Evolution of a neglected ureteral stent.

Authors:  Vikrampal Bhatti; Abhilash Koratala
Journal:  Intern Emerg Med       Date:  2017-01-16       Impact factor: 3.397

Review 3.  Silicone vs. Polyurethane Stent: The Final Countdown.

Authors:  Suresh Mathias; Oliver Wiseman
Journal:  J Clin Med       Date:  2022-05-12       Impact factor: 4.964

4.  Encrustations on ureteral stents from patients without urinary tract infection reveal distinct urotypes and a low bacterial load.

Authors:  Matthias T Buhmann; Dominik Abt; Oliver Nolte; Thomas R Neu; Sebastian Strempel; Werner C Albrich; Patrick Betschart; Valentin Zumstein; Antonia Neels; Katharina Maniura-Weber; Qun Ren
Journal:  Microbiome       Date:  2019-04-13       Impact factor: 14.650

5.  Surface analysis of ureteral stent before and after implantation in the bodies of child patients.

Authors:  Katarzyna Arkusz; Kamila Pasik; Andrzej Halinski; Adam Halinski
Journal:  Urolithiasis       Date:  2020-09-09       Impact factor: 3.436

6.  The accumulation of particles in ureteric stents is mediated by flow dynamics: Full-scale computational and experimental modeling of the occluded and unoccluded ureter.

Authors:  Ali Mosayyebi; Aravinthan Vijayakumar; Maryam Mosayebi; Dirk Lange; Bhaskar K Somani; Costantino Manes; Dario Carugo
Journal:  APL Bioeng       Date:  2022-05-05

Review 7.  Mucosa-interfacing electronics.

Authors:  Kewang Nan; Vivian R Feig; Binbin Ying; Julia G Howarth; Ziliang Kang; Yiyuan Yang; Giovanni Traverso
Journal:  Nat Rev Mater       Date:  2022-09-14       Impact factor: 76.679

8.  Interactive Effects of Copper-Doped Urological Implants with Tissue in the Urinary Tract for the Inhibition of Cell Adhesion and Encrustation in the Animal Model Rat.

Authors:  Wolfgang Kram; Henrike Rebl; Julia E de la Cruz; Antonia Haag; Jürgen Renner; Thomas Epting; Armin Springer; Federico Soria; Marion Wienecke; Oliver W Hakenberg
Journal:  Polymers (Basel)       Date:  2022-08-16       Impact factor: 4.967

  8 in total

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