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Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation

Secondary osteoporosis can also be caused by chronic inflammatory skin disease as well as rheumatoid arthritis or inflammatory bowel disease. However, the exact role of osteoporosis in inflammatory skin conditions has not been elucidated. Using a mouse model of dermatitis, we investigated the pathop...

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Autores principales: Mizutani, Kento, Isono, Kana, Matsushima, Yoshiaki, Okada, Karin, Umaoka, Ai, Iida, Shohei, Habe, Koji, Hagimori, Kohei, Yamazaki, Hidetoshi, Yamanaka, Keiichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7279417/
https://www.ncbi.nlm.nih.gov/pubmed/32443893
http://dx.doi.org/10.3390/ijms21103620
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author Mizutani, Kento
Isono, Kana
Matsushima, Yoshiaki
Okada, Karin
Umaoka, Ai
Iida, Shohei
Habe, Koji
Hagimori, Kohei
Yamazaki, Hidetoshi
Yamanaka, Keiichi
author_facet Mizutani, Kento
Isono, Kana
Matsushima, Yoshiaki
Okada, Karin
Umaoka, Ai
Iida, Shohei
Habe, Koji
Hagimori, Kohei
Yamazaki, Hidetoshi
Yamanaka, Keiichi
author_sort Mizutani, Kento
collection PubMed
description Secondary osteoporosis can also be caused by chronic inflammatory skin disease as well as rheumatoid arthritis or inflammatory bowel disease. However, the exact role of osteoporosis in inflammatory skin conditions has not been elucidated. Using a mouse model of dermatitis, we investigated the pathophysiology of osteoporosis in inflammatory skin conditions and the therapeutic impact of osteoporosis medication on inflammatory skin disease. We employed model mice of spontaneous skin inflammation, specifically overexpressing human caspase-1 in the epidermis. Bone density and the expression of various mRNAs in the femur were examined by micro CT and RT-PCR. The effects of minodronate and anti-RANKL antibody on bone structure, histology, and femur blood flow were studied. The mouse model of skin inflammation showed a marked decrease in bone density compared to wild-type littermates with abnormalities in both bone resorption and formation. Minodronate improved bone density by decreasing osteoclasts, but anti-RANKL antibody did not improve. In the dermatitis model, the blood flow in the bone marrow was decreased, and minodronate restored this parameter. A model of persistent dermatitis exhibited marked osteoporosis, but the impact of chronic dermatitis on osteoporosis has not been thoroughly investigated. We should explore the pathogenesis of osteoporosis in skin inflammatory diseases.
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spelling pubmed-72794172020-06-17 Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation Mizutani, Kento Isono, Kana Matsushima, Yoshiaki Okada, Karin Umaoka, Ai Iida, Shohei Habe, Koji Hagimori, Kohei Yamazaki, Hidetoshi Yamanaka, Keiichi Int J Mol Sci Article Secondary osteoporosis can also be caused by chronic inflammatory skin disease as well as rheumatoid arthritis or inflammatory bowel disease. However, the exact role of osteoporosis in inflammatory skin conditions has not been elucidated. Using a mouse model of dermatitis, we investigated the pathophysiology of osteoporosis in inflammatory skin conditions and the therapeutic impact of osteoporosis medication on inflammatory skin disease. We employed model mice of spontaneous skin inflammation, specifically overexpressing human caspase-1 in the epidermis. Bone density and the expression of various mRNAs in the femur were examined by micro CT and RT-PCR. The effects of minodronate and anti-RANKL antibody on bone structure, histology, and femur blood flow were studied. The mouse model of skin inflammation showed a marked decrease in bone density compared to wild-type littermates with abnormalities in both bone resorption and formation. Minodronate improved bone density by decreasing osteoclasts, but anti-RANKL antibody did not improve. In the dermatitis model, the blood flow in the bone marrow was decreased, and minodronate restored this parameter. A model of persistent dermatitis exhibited marked osteoporosis, but the impact of chronic dermatitis on osteoporosis has not been thoroughly investigated. We should explore the pathogenesis of osteoporosis in skin inflammatory diseases. MDPI 2020-05-20 /pmc/articles/PMC7279417/ /pubmed/32443893 http://dx.doi.org/10.3390/ijms21103620 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mizutani, Kento
Isono, Kana
Matsushima, Yoshiaki
Okada, Karin
Umaoka, Ai
Iida, Shohei
Habe, Koji
Hagimori, Kohei
Yamazaki, Hidetoshi
Yamanaka, Keiichi
Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation
title Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation
title_full Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation
title_fullStr Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation
title_full_unstemmed Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation
title_short Inflammatory Skin-Derived Cytokines Accelerate Osteoporosis in Mice with Persistent Skin Inflammation
title_sort inflammatory skin-derived cytokines accelerate osteoporosis in mice with persistent skin inflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7279417/
https://www.ncbi.nlm.nih.gov/pubmed/32443893
http://dx.doi.org/10.3390/ijms21103620
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