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Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite

Hydroxyapatite adsorbs various substances, but little is known about the effects on oral bacteria of adsorption onto hydroxyapatite derived from scallop shells. In the present study, we analyzed the effects of adsorption of Streptococcus mutans onto scallop-derived hydroxyapatite. When scallop-deriv...

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Autores principales: Usuda, Momoko, Kametani, Mariko, Hamada, Masakazu, Suehiro, Yuto, Matayoshi, Saaya, Okawa, Rena, Naka, Shuhei, Matsumoto-Nakano, Michiyo, Akitomo, Tatsuya, Mitsuhata, Chieko, Koumoto, Kazuya, Kawauchi, Keiko, Nishikata, Takahito, Yagi, Masatoshi, Mizoguchi, Toshiro, Fujikawa, Koki, Taniguchi, Taizo, Nakano, Kazuhiko, Nomura, Ryota
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10379008/
https://www.ncbi.nlm.nih.gov/pubmed/37511130
http://dx.doi.org/10.3390/ijms241411371
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author Usuda, Momoko
Kametani, Mariko
Hamada, Masakazu
Suehiro, Yuto
Matayoshi, Saaya
Okawa, Rena
Naka, Shuhei
Matsumoto-Nakano, Michiyo
Akitomo, Tatsuya
Mitsuhata, Chieko
Koumoto, Kazuya
Kawauchi, Keiko
Nishikata, Takahito
Yagi, Masatoshi
Mizoguchi, Toshiro
Fujikawa, Koki
Taniguchi, Taizo
Nakano, Kazuhiko
Nomura, Ryota
author_facet Usuda, Momoko
Kametani, Mariko
Hamada, Masakazu
Suehiro, Yuto
Matayoshi, Saaya
Okawa, Rena
Naka, Shuhei
Matsumoto-Nakano, Michiyo
Akitomo, Tatsuya
Mitsuhata, Chieko
Koumoto, Kazuya
Kawauchi, Keiko
Nishikata, Takahito
Yagi, Masatoshi
Mizoguchi, Toshiro
Fujikawa, Koki
Taniguchi, Taizo
Nakano, Kazuhiko
Nomura, Ryota
author_sort Usuda, Momoko
collection PubMed
description Hydroxyapatite adsorbs various substances, but little is known about the effects on oral bacteria of adsorption onto hydroxyapatite derived from scallop shells. In the present study, we analyzed the effects of adsorption of Streptococcus mutans onto scallop-derived hydroxyapatite. When scallop-derived hydroxyapatite was mixed with S. mutans, a high proportion of the bacterial cells adsorbed onto the hydroxyapatite in a time-dependent manner. An RNA sequencing analysis of S. mutans adsorbed onto hydroxyapatite showed that the upregulation of genes resulted in abnormalities in pathways involved in glycogen and histidine metabolism and biosynthesis compared with cells in the absence of hydroxyapatite. S. mutans adsorbed onto hydroxyapatite was not killed, but the growth of the bacteria was inhibited. Electron microscopy showed morphological changes in S. mutans cells adsorbed onto hydroxyapatite. Our results suggest that hydroxyapatite derived from scallop shells showed a high adsorption ability for S. mutans. This hydroxyapatite also caused changes in gene expression related to the metabolic and biosynthetic processes, including the glycogen and histidine of S. mutans, which may result in a morphological change in the surface layer and the inhibition of the growth of the bacteria.
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spelling pubmed-103790082023-07-29 Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite Usuda, Momoko Kametani, Mariko Hamada, Masakazu Suehiro, Yuto Matayoshi, Saaya Okawa, Rena Naka, Shuhei Matsumoto-Nakano, Michiyo Akitomo, Tatsuya Mitsuhata, Chieko Koumoto, Kazuya Kawauchi, Keiko Nishikata, Takahito Yagi, Masatoshi Mizoguchi, Toshiro Fujikawa, Koki Taniguchi, Taizo Nakano, Kazuhiko Nomura, Ryota Int J Mol Sci Article Hydroxyapatite adsorbs various substances, but little is known about the effects on oral bacteria of adsorption onto hydroxyapatite derived from scallop shells. In the present study, we analyzed the effects of adsorption of Streptococcus mutans onto scallop-derived hydroxyapatite. When scallop-derived hydroxyapatite was mixed with S. mutans, a high proportion of the bacterial cells adsorbed onto the hydroxyapatite in a time-dependent manner. An RNA sequencing analysis of S. mutans adsorbed onto hydroxyapatite showed that the upregulation of genes resulted in abnormalities in pathways involved in glycogen and histidine metabolism and biosynthesis compared with cells in the absence of hydroxyapatite. S. mutans adsorbed onto hydroxyapatite was not killed, but the growth of the bacteria was inhibited. Electron microscopy showed morphological changes in S. mutans cells adsorbed onto hydroxyapatite. Our results suggest that hydroxyapatite derived from scallop shells showed a high adsorption ability for S. mutans. This hydroxyapatite also caused changes in gene expression related to the metabolic and biosynthetic processes, including the glycogen and histidine of S. mutans, which may result in a morphological change in the surface layer and the inhibition of the growth of the bacteria. MDPI 2023-07-12 /pmc/articles/PMC10379008/ /pubmed/37511130 http://dx.doi.org/10.3390/ijms241411371 Text en © 2023 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
Usuda, Momoko
Kametani, Mariko
Hamada, Masakazu
Suehiro, Yuto
Matayoshi, Saaya
Okawa, Rena
Naka, Shuhei
Matsumoto-Nakano, Michiyo
Akitomo, Tatsuya
Mitsuhata, Chieko
Koumoto, Kazuya
Kawauchi, Keiko
Nishikata, Takahito
Yagi, Masatoshi
Mizoguchi, Toshiro
Fujikawa, Koki
Taniguchi, Taizo
Nakano, Kazuhiko
Nomura, Ryota
Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite
title Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite
title_full Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite
title_fullStr Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite
title_full_unstemmed Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite
title_short Inhibitory Effect of Adsorption of Streptococcus mutans onto Scallop-Derived Hydroxyapatite
title_sort inhibitory effect of adsorption of streptococcus mutans onto scallop-derived hydroxyapatite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10379008/
https://www.ncbi.nlm.nih.gov/pubmed/37511130
http://dx.doi.org/10.3390/ijms241411371
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