Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization

One of the defenses against nephrolithiasis is provided by macromolecules that modulate the nucleation, growth, aggregation and retention of crystals in the kidneys. The aim of the present study was to determine the behavior of two of these proteins, Tamm-Horsfall and uromodulin, in calcium oxalate...

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Main Authors: Carvalho M., Mulinari R.A., Nakagawa Y.
Format: Article
Language:English
Published: Associação Brasileira de Divulgação Científica 2002-01-01
Series:Brazilian Journal of Medical and Biological Research
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-879X2002001000009
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spelling doaj-18527333b4ff4dbab24b16459186b1ad2020-11-25T02:42:24ZengAssociação Brasileira de Divulgação CientíficaBrazilian Journal of Medical and Biological Research0100-879X0034-73102002-01-01351011651172Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallizationCarvalho M.Mulinari R.A.Nakagawa Y.One of the defenses against nephrolithiasis is provided by macromolecules that modulate the nucleation, growth, aggregation and retention of crystals in the kidneys. The aim of the present study was to determine the behavior of two of these proteins, Tamm-Horsfall and uromodulin, in calcium oxalate crystallization in vitro. We studied a group of 10 male stone formers who had formed at least one kidney stone composed of calcium oxalate. They were classified as having idiopathic nephrolithiasis and had no well-known metabolic risk factors involved in kidney stone pathogenesis. Ten normal men were used as controls, as was a group consisting of five normal women and another consisting of five pregnant women. Crystallization was induced by a fixed supersaturation of calcium oxalate and measured with a Coulter Counter. All findings were confirmed by light and scanning electron microscopy. The number of particulate material deposited from patients with Tamm-Horsfall protein was higher than that of the controls (P<0.001). However, Tamm-Horsfall protein decreased the particle diameter of the stone formers when analyzed by the mode of the volume distribution curve (P<0.002) (5.64 ± 0.55 µm compared to 11.41 ± 0.48 µm of uromodulin; 15.94 ± 3.93 µm and 12.45 ± 0.97 µm of normal men Tamm-Horsfall protein and uromodulin, respectively; 8.17 ± 1.57 µm and 9.82 ± 0.95 µm of normal women Tamm-Horsfall protein and uromodulin, respectively; 12.17 ± 1.41 µm and 12.99 ± 0.51 µm of pregnant Tamm-Horsfall protein and uromodulin, respectively). Uromodulin produced fewer particles than Tamm-Horsfall protein in all groups. Nonetheless, the total volume of the crystals produced by uromodulin was higher than that produced by Tamm-Horsfall protein. Our results indicate a different effect of Tamm-Horsfall protein and uromodulin. This dual behavior suggests different functions. Tamm-Horsfall protein may act on nucleation and inhibit crystal aggregation, while uromodulin may promote aggregation of calcium oxalate crystals.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-879X2002001000009Tamm-Horsfall proteinUromodulinCalcium oxalateNephrolithiasis
collection DOAJ
language English
format Article
sources DOAJ
author Carvalho M.
Mulinari R.A.
Nakagawa Y.
spellingShingle Carvalho M.
Mulinari R.A.
Nakagawa Y.
Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization
Brazilian Journal of Medical and Biological Research
Tamm-Horsfall protein
Uromodulin
Calcium oxalate
Nephrolithiasis
author_facet Carvalho M.
Mulinari R.A.
Nakagawa Y.
author_sort Carvalho M.
title Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization
title_short Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization
title_full Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization
title_fullStr Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization
title_full_unstemmed Role of Tamm-Horsfall protein and uromodulin in calcium oxalate crystallization
title_sort role of tamm-horsfall protein and uromodulin in calcium oxalate crystallization
publisher Associação Brasileira de Divulgação Científica
series Brazilian Journal of Medical and Biological Research
issn 0100-879X
0034-7310
publishDate 2002-01-01
description One of the defenses against nephrolithiasis is provided by macromolecules that modulate the nucleation, growth, aggregation and retention of crystals in the kidneys. The aim of the present study was to determine the behavior of two of these proteins, Tamm-Horsfall and uromodulin, in calcium oxalate crystallization in vitro. We studied a group of 10 male stone formers who had formed at least one kidney stone composed of calcium oxalate. They were classified as having idiopathic nephrolithiasis and had no well-known metabolic risk factors involved in kidney stone pathogenesis. Ten normal men were used as controls, as was a group consisting of five normal women and another consisting of five pregnant women. Crystallization was induced by a fixed supersaturation of calcium oxalate and measured with a Coulter Counter. All findings were confirmed by light and scanning electron microscopy. The number of particulate material deposited from patients with Tamm-Horsfall protein was higher than that of the controls (P<0.001). However, Tamm-Horsfall protein decreased the particle diameter of the stone formers when analyzed by the mode of the volume distribution curve (P<0.002) (5.64 ± 0.55 µm compared to 11.41 ± 0.48 µm of uromodulin; 15.94 ± 3.93 µm and 12.45 ± 0.97 µm of normal men Tamm-Horsfall protein and uromodulin, respectively; 8.17 ± 1.57 µm and 9.82 ± 0.95 µm of normal women Tamm-Horsfall protein and uromodulin, respectively; 12.17 ± 1.41 µm and 12.99 ± 0.51 µm of pregnant Tamm-Horsfall protein and uromodulin, respectively). Uromodulin produced fewer particles than Tamm-Horsfall protein in all groups. Nonetheless, the total volume of the crystals produced by uromodulin was higher than that produced by Tamm-Horsfall protein. Our results indicate a different effect of Tamm-Horsfall protein and uromodulin. This dual behavior suggests different functions. Tamm-Horsfall protein may act on nucleation and inhibit crystal aggregation, while uromodulin may promote aggregation of calcium oxalate crystals.
topic Tamm-Horsfall protein
Uromodulin
Calcium oxalate
Nephrolithiasis
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-879X2002001000009
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AT mulinarira roleoftammhorsfallproteinanduromodulinincalciumoxalatecrystallization
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