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The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation

Kaempferol, a flavonoid compound, is derived from the rhizome of Kaempferia galanga L., which is used in traditional medicine in Asia. Autophagy has pleiotropic functions that are involved in cell growth, survival, nutrient supply under starvation, defense against pathogens, and antigen presentation...

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Autores principales: Kim, Chang-Ju, Shin, Sang-Hun, Kim, Bok-Joo, Kim, Chul-Hoon, Kim, Jung-Han, Kang, Hae-Mi, Park, Bong-Soo, Kim, In-Ryoung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5796074/
https://www.ncbi.nlm.nih.gov/pubmed/29301320
http://dx.doi.org/10.3390/ijms19010125
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author Kim, Chang-Ju
Shin, Sang-Hun
Kim, Bok-Joo
Kim, Chul-Hoon
Kim, Jung-Han
Kang, Hae-Mi
Park, Bong-Soo
Kim, In-Ryoung
author_facet Kim, Chang-Ju
Shin, Sang-Hun
Kim, Bok-Joo
Kim, Chul-Hoon
Kim, Jung-Han
Kang, Hae-Mi
Park, Bong-Soo
Kim, In-Ryoung
author_sort Kim, Chang-Ju
collection PubMed
description Kaempferol, a flavonoid compound, is derived from the rhizome of Kaempferia galanga L., which is used in traditional medicine in Asia. Autophagy has pleiotropic functions that are involved in cell growth, survival, nutrient supply under starvation, defense against pathogens, and antigen presentation. There are many studies dealing with the inhibitory effects of natural flavonoids in bone resorption. However, no studies have explained the relationship between the autophagic and inhibitory processes of osteoclastogenesis by natural flavonoids. The present study was undertaken to investigate the inhibitory effects of osteoclastogenesis through the autophagy inhibition process stimulated by kaempferol in murin macrophage (RAW 264.7) cells. The cytotoxic effect of Kaempferol was investigated by MTT assay. The osteoclast differentiation and autophagic process were confirmed via tartrate-resistant acid phosphatase (TRAP) staining, pit formation assay, western blot, and real-time PCR. Kaempferol controlled the expression of autophagy-related factors and in particular, it strongly inhibited the expression of p62/SQSTM1. In the western blot and real time-PCR analysis, when autophagy was suppressed with the application of 3-Methyladenine (3-MA) only, osteoclast and apoptosis related factors were not significantly affected. However, we found that after cells were treated with kaempferol, these factors inhibited autophagy and activated apoptosis. Therefore, we presume that kaempferol-inhibited autophagy activated apoptosis by degradation of p62/SQSTM1. Further study of the p62/SQSTM1 gene as a target in the autophagy mechanism, may help to delineate the potential role of kaempferol in the treatment of bone metabolism disorders.
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spelling pubmed-57960742018-02-09 The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation Kim, Chang-Ju Shin, Sang-Hun Kim, Bok-Joo Kim, Chul-Hoon Kim, Jung-Han Kang, Hae-Mi Park, Bong-Soo Kim, In-Ryoung Int J Mol Sci Article Kaempferol, a flavonoid compound, is derived from the rhizome of Kaempferia galanga L., which is used in traditional medicine in Asia. Autophagy has pleiotropic functions that are involved in cell growth, survival, nutrient supply under starvation, defense against pathogens, and antigen presentation. There are many studies dealing with the inhibitory effects of natural flavonoids in bone resorption. However, no studies have explained the relationship between the autophagic and inhibitory processes of osteoclastogenesis by natural flavonoids. The present study was undertaken to investigate the inhibitory effects of osteoclastogenesis through the autophagy inhibition process stimulated by kaempferol in murin macrophage (RAW 264.7) cells. The cytotoxic effect of Kaempferol was investigated by MTT assay. The osteoclast differentiation and autophagic process were confirmed via tartrate-resistant acid phosphatase (TRAP) staining, pit formation assay, western blot, and real-time PCR. Kaempferol controlled the expression of autophagy-related factors and in particular, it strongly inhibited the expression of p62/SQSTM1. In the western blot and real time-PCR analysis, when autophagy was suppressed with the application of 3-Methyladenine (3-MA) only, osteoclast and apoptosis related factors were not significantly affected. However, we found that after cells were treated with kaempferol, these factors inhibited autophagy and activated apoptosis. Therefore, we presume that kaempferol-inhibited autophagy activated apoptosis by degradation of p62/SQSTM1. Further study of the p62/SQSTM1 gene as a target in the autophagy mechanism, may help to delineate the potential role of kaempferol in the treatment of bone metabolism disorders. MDPI 2018-01-02 /pmc/articles/PMC5796074/ /pubmed/29301320 http://dx.doi.org/10.3390/ijms19010125 Text en © 2018 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
Kim, Chang-Ju
Shin, Sang-Hun
Kim, Bok-Joo
Kim, Chul-Hoon
Kim, Jung-Han
Kang, Hae-Mi
Park, Bong-Soo
Kim, In-Ryoung
The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation
title The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation
title_full The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation
title_fullStr The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation
title_full_unstemmed The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation
title_short The Effects of Kaempferol-Inhibited Autophagy on Osteoclast Formation
title_sort effects of kaempferol-inhibited autophagy on osteoclast formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5796074/
https://www.ncbi.nlm.nih.gov/pubmed/29301320
http://dx.doi.org/10.3390/ijms19010125
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