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Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis

Rheumatoid arthritis (RA) is one of the most prevalent autoimmune diseases. Its therapy is often challenging, even in the era of biologicals. Previously, we observed the anti-inflammatory effects of garlic-derived organic polysulfide dimethyl trisulfide (DMTS). Some of these effects were mediated by...

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Autores principales: Bátai, István Z., Dombi, Ágnes, Borbély, Éva, Fehér, Ádám, Papp, Ferenc, Varga, Zoltan, Mócsai, Attila, Helyes, Zsuzsanna, Pintér, Erika, Pozsgai, Gábor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9229242/
https://www.ncbi.nlm.nih.gov/pubmed/35745590
http://dx.doi.org/10.3390/ph15060671
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author Bátai, István Z.
Dombi, Ágnes
Borbély, Éva
Fehér, Ádám
Papp, Ferenc
Varga, Zoltan
Mócsai, Attila
Helyes, Zsuzsanna
Pintér, Erika
Pozsgai, Gábor
author_facet Bátai, István Z.
Dombi, Ágnes
Borbély, Éva
Fehér, Ádám
Papp, Ferenc
Varga, Zoltan
Mócsai, Attila
Helyes, Zsuzsanna
Pintér, Erika
Pozsgai, Gábor
author_sort Bátai, István Z.
collection PubMed
description Rheumatoid arthritis (RA) is one of the most prevalent autoimmune diseases. Its therapy is often challenging, even in the era of biologicals. Previously, we observed the anti-inflammatory effects of garlic-derived organic polysulfide dimethyl trisulfide (DMTS). Some of these effects were mediated by activation of the TRPA1 ion channel. TRPA1 was mostly expressed in a subset of nociceptor neurons. We decided to investigate the action of DMTS in K/BxN serum-transfer arthritis, which is a relevant model of RA. TRPA1 gene knockout (KO) and wild-type (WT) mice were used. The interaction of DMTS and TRPA1 was examined using a patch clamp in CHO cells. Arthritis was characterized by mechanical hyperalgesia, paw swelling, movement range of the ankle joint, hanging performance, plasma extravasation rate, myeloperoxidase activity, and histological changes in the tibiotarsal joint. DMTS activated TRPA1 channels dose-dependently. DMTS treatment reduced paw swelling and plasma extravasation in both TRPA1 WT and KO animals. DMTS-treated TRPA1 KO animals developed milder collagen deposition in the inflamed joints than WT ones. TRPA1 WT mice did not exhibit significant cartilage damage compared to ones administered a vehicle. We concluded that DMTS and related substances might evolve into novel complementary therapeutic aids for RA patients.
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spelling pubmed-92292422022-06-25 Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis Bátai, István Z. Dombi, Ágnes Borbély, Éva Fehér, Ádám Papp, Ferenc Varga, Zoltan Mócsai, Attila Helyes, Zsuzsanna Pintér, Erika Pozsgai, Gábor Pharmaceuticals (Basel) Article Rheumatoid arthritis (RA) is one of the most prevalent autoimmune diseases. Its therapy is often challenging, even in the era of biologicals. Previously, we observed the anti-inflammatory effects of garlic-derived organic polysulfide dimethyl trisulfide (DMTS). Some of these effects were mediated by activation of the TRPA1 ion channel. TRPA1 was mostly expressed in a subset of nociceptor neurons. We decided to investigate the action of DMTS in K/BxN serum-transfer arthritis, which is a relevant model of RA. TRPA1 gene knockout (KO) and wild-type (WT) mice were used. The interaction of DMTS and TRPA1 was examined using a patch clamp in CHO cells. Arthritis was characterized by mechanical hyperalgesia, paw swelling, movement range of the ankle joint, hanging performance, plasma extravasation rate, myeloperoxidase activity, and histological changes in the tibiotarsal joint. DMTS activated TRPA1 channels dose-dependently. DMTS treatment reduced paw swelling and plasma extravasation in both TRPA1 WT and KO animals. DMTS-treated TRPA1 KO animals developed milder collagen deposition in the inflamed joints than WT ones. TRPA1 WT mice did not exhibit significant cartilage damage compared to ones administered a vehicle. We concluded that DMTS and related substances might evolve into novel complementary therapeutic aids for RA patients. MDPI 2022-05-27 /pmc/articles/PMC9229242/ /pubmed/35745590 http://dx.doi.org/10.3390/ph15060671 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bátai, István Z.
Dombi, Ágnes
Borbély, Éva
Fehér, Ádám
Papp, Ferenc
Varga, Zoltan
Mócsai, Attila
Helyes, Zsuzsanna
Pintér, Erika
Pozsgai, Gábor
Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis
title Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis
title_full Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis
title_fullStr Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis
title_full_unstemmed Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis
title_short Investigation of the Role of the TRPA1 Ion Channel in Conveying the Effect of Dimethyl Trisulfide on Vascular and Histological Changes in Serum-Transfer Arthritis
title_sort investigation of the role of the trpa1 ion channel in conveying the effect of dimethyl trisulfide on vascular and histological changes in serum-transfer arthritis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9229242/
https://www.ncbi.nlm.nih.gov/pubmed/35745590
http://dx.doi.org/10.3390/ph15060671
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