Literature DB >> 11074067

Uric acid calculi: types, etiology and mechanisms of formation.

F Grases1, A I Villacampa, A Costa-Bauzá, O Söhnel.   

Abstract

The study of the composition and structure of 41 stones composed of uric acid was complemented by in vitro investigation of the crystallization of uric acid. Uric acid dihydrate (UAD) precipitates from synthetic urine under physiological conditions when the medium is supersaturated with respect to this compound, though uric acid anhydrous (UAA) represents the thermodynamically stable form. Solid UAD in contact with liquid transforms into UAA within 2 days. This transition is accompanied by development of hexagonal bulky crystals of UAA and appearance of cracks in the UAD crystals. Uric acid calculi can be classified into two groups, differing in outer appearance and inner structure. Type I includes stones with a little central core and a compact columnar UAA shell and stones with interior structured in alternating densely non-columnar layers developed around a central core; both of them are formed mainly by crystalline growth at low uric acid supersaturation. Type II includes porous stones without inner structure and stones formed by a well developed outermost layer with an inner central cavity; this type of stones is formed mainly by sedimentation of uric acid crystals generated at higher uric acid supersaturation.

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Year:  2000        PMID: 11074067     DOI: 10.1016/s0009-8981(00)00359-4

Source DB:  PubMed          Journal:  Clin Chim Acta        ISSN: 0009-8981            Impact factor:   3.786


  10 in total

1.  Compositional analysis of various layers of upper urinary tract stones by infrared spectroscopy.

Authors:  Zhang He; Zhang Jing; Zheng Jing-Cun; Hu Chuan-Yi; Gao Fei
Journal:  Exp Ther Med       Date:  2017-08-02       Impact factor: 2.447

2.  Uric acid monohydrate--a new urinary calculus phase.

Authors:  Gernot Schubert; Günter Reck; Harald Jancke; Werner Kraus; Christoph Patzelt
Journal:  Urol Res       Date:  2005-05-29

3.  Clinical significance of uric acid dihydrate in urinary stones.

Authors:  Walter Ludwig Strohmaier; Jürgen Seilnacht; Gernot Schubert
Journal:  Urol Res       Date:  2010-12-30

4.  Urinary pH and renal lithiasis.

Authors:  F Grases; A Costa-Bauzá; I Gomila; M Ramis; A García-Raja; R M Prieto
Journal:  Urol Res       Date:  2011-05-19

5.  Preventive and therapeutic effects of sodium bicarbonate on melamine-induced bladder stones in mice.

Authors:  Shu-Ting Ren; Yun-Xia Du; Chang-Fu Xu; Jiao-Jiao Zhang; Li-Ping Mo; Ying Sun; Xiao-Li Gao
Journal:  Urolithiasis       Date:  2014-08-05       Impact factor: 3.436

Review 6.  Kidney stones.

Authors:  Saeed R Khan; Margaret S Pearle; William G Robertson; Giovanni Gambaro; Benjamin K Canales; Steeve Doizi; Olivier Traxer; Hans-Göran Tiselius
Journal:  Nat Rev Dis Primers       Date:  2016-02-25       Impact factor: 52.329

7.  Influence of ureteral stone components on the outcomes of electrohydraulic lithotripsy.

Authors:  Hyeong Cheol Song; Ha Bum Jung; Yong Seong Lee; Young Goo Lee; Ki Kyung Kim; Sung Tae Cho
Journal:  Korean J Urol       Date:  2012-12-20

8.  Comparison of Two Dietary Supplements for Treatment of Uric Acid Renal Lithiasis: Citrate vs. Citrate + Theobromine.

Authors:  Yumaira Hernandez; Antonia Costa-Bauza; Paula Calvó; Joan Benejam; Pilar Sanchis; Felix Grases
Journal:  Nutrients       Date:  2020-07-07       Impact factor: 5.717

9.  A new device for simple and accurate urinary pH testing by the Stone-former patient.

Authors:  Felix Grases; Adrian Rodriguez; Francisco Berga; Antonia Costa-Bauza; Rafael Maria Prieto; Isabel Burdallo; Alfredo Cadarso; Cecilia Jimenez-Jorquera; Antonio Baldi; Rosendo Garganta
Journal:  Springerplus       Date:  2014-04-28

10.  Effect of Consumption of Cocoa-Derived Products on Uric Acid Crystallization in Urine of Healthy Volunteers.

Authors:  Antonia Costa-Bauza; Felix Grases; Paula Calvó; Adrian Rodriguez; Rafael M Prieto
Journal:  Nutrients       Date:  2018-10-16       Impact factor: 5.717

  10 in total

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