Cargando…

The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse

INTRODUCTION: The aim of this study was to test the naturally occurring organosulfur compound dipropyltetrasulfide (DPTTS), found in plants, which has antibiotic and anticancer properties, as a treatment for HOCl-induced systemic sclerosis in the mouse. METHODS: The prooxidative, antiproliferative,...

Descripción completa

Detalles Bibliográficos
Autores principales: Marut, Wioleta, Jamier, Vincent, Kavian, Niloufar, Servettaz, Amélie, Winyard, Paul G, Eggleton, Paul, Anwar, Awais, Nicco, Carole, Jacob, Claus, Chéreau, Christiane, Weill, Bernard, Batteux, Frédéric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3979139/
https://www.ncbi.nlm.nih.gov/pubmed/24286210
http://dx.doi.org/10.1186/ar4351
_version_ 1782310695512047616
author Marut, Wioleta
Jamier, Vincent
Kavian, Niloufar
Servettaz, Amélie
Winyard, Paul G
Eggleton, Paul
Anwar, Awais
Nicco, Carole
Jacob, Claus
Chéreau, Christiane
Weill, Bernard
Batteux, Frédéric
author_facet Marut, Wioleta
Jamier, Vincent
Kavian, Niloufar
Servettaz, Amélie
Winyard, Paul G
Eggleton, Paul
Anwar, Awais
Nicco, Carole
Jacob, Claus
Chéreau, Christiane
Weill, Bernard
Batteux, Frédéric
author_sort Marut, Wioleta
collection PubMed
description INTRODUCTION: The aim of this study was to test the naturally occurring organosulfur compound dipropyltetrasulfide (DPTTS), found in plants, which has antibiotic and anticancer properties, as a treatment for HOCl-induced systemic sclerosis in the mouse. METHODS: The prooxidative, antiproliferative, and cytotoxic effects of DPTTS were evaluated ex vivo on fibroblasts from normal and HOCl mice. In vivo, the antifibrotic and immunomodulating properties of DPTTS were evaluated in the skin and lungs of HOCl mice. RESULTS: H(2)O(2) production was higher in fibroblasts derived from HOCl mice than in normal fibroblasts (P < 0.05). DPTTS did not increase H(2)O(2) production in normal fibroblasts, but DPTTS dose-dependently increased H(2)O(2) production in HOCl fibroblasts (P < 0.001 with 40 μM DPTTS). Because H(2)O(2) reached a lethal threshold in cells from HOCl mice, the antiproliferative, cytotoxic, and proapoptotic effects of DPTTS were significantly higher in HOCl fibroblasts than for normal fibroblasts. In vivo, DPTTS decreased dermal thickness (P < 0.001), collagen content in skin (P < 0.01) and lungs (P < 0.05), αSMA (P < 0.01) and pSMAD2/3 (P < 0.01) expression in skin, formation of advanced oxidation protein products and anti-DNA topoisomerase-1 antibodies in serum (P < 0.05) versus untreated HOCl mice. Moreover, in HOCl mice, DPTTS reduced splenic B-cell counts (P < 0.01), the proliferative rates of B-splenocytes stimulated by lipopolysaccharide (P < 0.05), and T-splenocytes stimulated by anti-CD3/CD28 mAb (P < 0.001). Ex vivo, it also reduced the production of IL-4 and IL-13 by activated T cells (P < 0.05 in both cases). CONCLUSIONS: The natural organosulfur compound DPTTS prevents skin and lung fibrosis in the mouse through the selective killing of diseased fibroblasts and its immunomodulating properties. DPTTS may be a potential treatment for systemic sclerosis.
format Online
Article
Text
id pubmed-3979139
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-39791392014-04-09 The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse Marut, Wioleta Jamier, Vincent Kavian, Niloufar Servettaz, Amélie Winyard, Paul G Eggleton, Paul Anwar, Awais Nicco, Carole Jacob, Claus Chéreau, Christiane Weill, Bernard Batteux, Frédéric Arthritis Res Ther Research Article INTRODUCTION: The aim of this study was to test the naturally occurring organosulfur compound dipropyltetrasulfide (DPTTS), found in plants, which has antibiotic and anticancer properties, as a treatment for HOCl-induced systemic sclerosis in the mouse. METHODS: The prooxidative, antiproliferative, and cytotoxic effects of DPTTS were evaluated ex vivo on fibroblasts from normal and HOCl mice. In vivo, the antifibrotic and immunomodulating properties of DPTTS were evaluated in the skin and lungs of HOCl mice. RESULTS: H(2)O(2) production was higher in fibroblasts derived from HOCl mice than in normal fibroblasts (P < 0.05). DPTTS did not increase H(2)O(2) production in normal fibroblasts, but DPTTS dose-dependently increased H(2)O(2) production in HOCl fibroblasts (P < 0.001 with 40 μM DPTTS). Because H(2)O(2) reached a lethal threshold in cells from HOCl mice, the antiproliferative, cytotoxic, and proapoptotic effects of DPTTS were significantly higher in HOCl fibroblasts than for normal fibroblasts. In vivo, DPTTS decreased dermal thickness (P < 0.001), collagen content in skin (P < 0.01) and lungs (P < 0.05), αSMA (P < 0.01) and pSMAD2/3 (P < 0.01) expression in skin, formation of advanced oxidation protein products and anti-DNA topoisomerase-1 antibodies in serum (P < 0.05) versus untreated HOCl mice. Moreover, in HOCl mice, DPTTS reduced splenic B-cell counts (P < 0.01), the proliferative rates of B-splenocytes stimulated by lipopolysaccharide (P < 0.05), and T-splenocytes stimulated by anti-CD3/CD28 mAb (P < 0.001). Ex vivo, it also reduced the production of IL-4 and IL-13 by activated T cells (P < 0.05 in both cases). CONCLUSIONS: The natural organosulfur compound DPTTS prevents skin and lung fibrosis in the mouse through the selective killing of diseased fibroblasts and its immunomodulating properties. DPTTS may be a potential treatment for systemic sclerosis. BioMed Central 2013 2013-10-28 /pmc/articles/PMC3979139/ /pubmed/24286210 http://dx.doi.org/10.1186/ar4351 Text en Copyright © 2013 Marut et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Marut, Wioleta
Jamier, Vincent
Kavian, Niloufar
Servettaz, Amélie
Winyard, Paul G
Eggleton, Paul
Anwar, Awais
Nicco, Carole
Jacob, Claus
Chéreau, Christiane
Weill, Bernard
Batteux, Frédéric
The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse
title The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse
title_full The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse
title_fullStr The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse
title_full_unstemmed The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse
title_short The natural organosulfur compound dipropyltetrasulfide prevents HOCl-induced systemic sclerosis in the mouse
title_sort natural organosulfur compound dipropyltetrasulfide prevents hocl-induced systemic sclerosis in the mouse
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3979139/
https://www.ncbi.nlm.nih.gov/pubmed/24286210
http://dx.doi.org/10.1186/ar4351
work_keys_str_mv AT marutwioleta thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT jamiervincent thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT kavianniloufar thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT servettazamelie thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT winyardpaulg thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT eggletonpaul thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT anwarawais thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT niccocarole thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT jacobclaus thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT chereauchristiane thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT weillbernard thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT batteuxfrederic thenaturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT marutwioleta naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT jamiervincent naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT kavianniloufar naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT servettazamelie naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT winyardpaulg naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT eggletonpaul naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT anwarawais naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT niccocarole naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT jacobclaus naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT chereauchristiane naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT weillbernard naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse
AT batteuxfrederic naturalorganosulfurcompounddipropyltetrasulfidepreventshoclinducedsystemicsclerosisinthemouse