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Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria

Bisphosphonates (BPs) are classified into two groups, according to their side chain structures, as nitrogen-containing BPs (NBPs) and non-nitrogen-containing BPs (non-NBPs). In this study, we examined the effects of NBPs and non-NBPs on inflammatory responses, by quantifying the inflammatory mediato...

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Autores principales: Suzuki, Keiko, Takeyama, Sadaaki, Murakami, Shinobu, Nagaoka, Masahiro, Chiba, Mirei, Igarashi, Kaoru, Shinoda, Hisashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7346192/
https://www.ncbi.nlm.nih.gov/pubmed/32526922
http://dx.doi.org/10.3390/antiox9060503
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author Suzuki, Keiko
Takeyama, Sadaaki
Murakami, Shinobu
Nagaoka, Masahiro
Chiba, Mirei
Igarashi, Kaoru
Shinoda, Hisashi
author_facet Suzuki, Keiko
Takeyama, Sadaaki
Murakami, Shinobu
Nagaoka, Masahiro
Chiba, Mirei
Igarashi, Kaoru
Shinoda, Hisashi
author_sort Suzuki, Keiko
collection PubMed
description Bisphosphonates (BPs) are classified into two groups, according to their side chain structures, as nitrogen-containing BPs (NBPs) and non-nitrogen-containing BPs (non-NBPs). In this study, we examined the effects of NBPs and non-NBPs on inflammatory responses, by quantifying the inflammatory mediators, prostaglandin E(2) (PGE(2)) and nitric oxide (NO), in cultured neonatal mouse calvaria. All examined NBPs (pamidronate, alendronate, incadronate, risedronate, zoledronate) stimulated lipopolysaccharide (LPS)-induced PGE(2) and NO production by upregulating COX-2 and iNOS mRNA expression, whereas non-NBPs (etidronate, clodronate, tiludronate) suppressed PGE(2) and NO production, by downregulating gene expression. Additionally, [4-(methylthio) phenylthio] methane bisphosphonate (MPMBP), a novel non-NBP with an antioxidant methylthio phenylthio group in its side chain, exhibited the most potent anti-inflammatory activity among non-NBPs. Furthermore, results of immunohistochemistry showed that the nuclear translocation of NF-κB/p65 and tyrosine nitration of cytoplasmic protein were stimulated by zoledronate, while MPMBP inhibited these phenomena, by acting as a superoxide anion (O(2)(−)) scavenger. These findings indicate that MPMBP can act as an efficacious agent that causes fewer adverse effects in patients with inflammatory bone diseases, including periodontitis and rheumatoid arthritis.
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spelling pubmed-73461922020-07-14 Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria Suzuki, Keiko Takeyama, Sadaaki Murakami, Shinobu Nagaoka, Masahiro Chiba, Mirei Igarashi, Kaoru Shinoda, Hisashi Antioxidants (Basel) Article Bisphosphonates (BPs) are classified into two groups, according to their side chain structures, as nitrogen-containing BPs (NBPs) and non-nitrogen-containing BPs (non-NBPs). In this study, we examined the effects of NBPs and non-NBPs on inflammatory responses, by quantifying the inflammatory mediators, prostaglandin E(2) (PGE(2)) and nitric oxide (NO), in cultured neonatal mouse calvaria. All examined NBPs (pamidronate, alendronate, incadronate, risedronate, zoledronate) stimulated lipopolysaccharide (LPS)-induced PGE(2) and NO production by upregulating COX-2 and iNOS mRNA expression, whereas non-NBPs (etidronate, clodronate, tiludronate) suppressed PGE(2) and NO production, by downregulating gene expression. Additionally, [4-(methylthio) phenylthio] methane bisphosphonate (MPMBP), a novel non-NBP with an antioxidant methylthio phenylthio group in its side chain, exhibited the most potent anti-inflammatory activity among non-NBPs. Furthermore, results of immunohistochemistry showed that the nuclear translocation of NF-κB/p65 and tyrosine nitration of cytoplasmic protein were stimulated by zoledronate, while MPMBP inhibited these phenomena, by acting as a superoxide anion (O(2)(−)) scavenger. These findings indicate that MPMBP can act as an efficacious agent that causes fewer adverse effects in patients with inflammatory bone diseases, including periodontitis and rheumatoid arthritis. MDPI 2020-06-09 /pmc/articles/PMC7346192/ /pubmed/32526922 http://dx.doi.org/10.3390/antiox9060503 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
Suzuki, Keiko
Takeyama, Sadaaki
Murakami, Shinobu
Nagaoka, Masahiro
Chiba, Mirei
Igarashi, Kaoru
Shinoda, Hisashi
Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria
title Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria
title_full Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria
title_fullStr Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria
title_full_unstemmed Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria
title_short Structure-Dependent Effects of Bisphosphonates on Inflammatory Responses in Cultured Neonatal Mouse Calvaria
title_sort structure-dependent effects of bisphosphonates on inflammatory responses in cultured neonatal mouse calvaria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7346192/
https://www.ncbi.nlm.nih.gov/pubmed/32526922
http://dx.doi.org/10.3390/antiox9060503
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