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Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region

Oral candidiasis is closely associated with changes in the oral fungal flora and is caused primarily by Candida albicans. Conventional methods of fungal culture are time-consuming and not always conclusive. However, molecular genetic analysis of internal transcribed spacer (ITS) regions of fungal rR...

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Autores principales: Ieda, Shinsuke, Moriyama, Masafumi, Takashita, Toru, Maehara, Takashi, Imabayashi, Yumi, Shinozaki, Shoichi, Tanaka, Akihiko, Hayashida, Jun-Nosuke, Furukawa, Sachiko, Ohta, Miho, Yamashita, Yoshihisa, Nakamura, Seiji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4076276/
https://www.ncbi.nlm.nih.gov/pubmed/24979710
http://dx.doi.org/10.1371/journal.pone.0101156
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author Ieda, Shinsuke
Moriyama, Masafumi
Takashita, Toru
Maehara, Takashi
Imabayashi, Yumi
Shinozaki, Shoichi
Tanaka, Akihiko
Hayashida, Jun-Nosuke
Furukawa, Sachiko
Ohta, Miho
Yamashita, Yoshihisa
Nakamura, Seiji
author_facet Ieda, Shinsuke
Moriyama, Masafumi
Takashita, Toru
Maehara, Takashi
Imabayashi, Yumi
Shinozaki, Shoichi
Tanaka, Akihiko
Hayashida, Jun-Nosuke
Furukawa, Sachiko
Ohta, Miho
Yamashita, Yoshihisa
Nakamura, Seiji
author_sort Ieda, Shinsuke
collection PubMed
description Oral candidiasis is closely associated with changes in the oral fungal flora and is caused primarily by Candida albicans. Conventional methods of fungal culture are time-consuming and not always conclusive. However, molecular genetic analysis of internal transcribed spacer (ITS) regions of fungal rRNA is rapid, reproducible and simple to perform. In this study we examined the fungal flora in patients with oral candidiasis and investigated changes in the flora after antifungal treatment using length heterogeneity-polymerization chain reaction (LH-PCR) analysis of ITS regions. Fifty-two patients with pseudomembranous oral candidiasis (POC) and 30 healthy controls were included in the study. Fungal DNA from oral rinse was examined for fungal species diversity by LH-PCR. Fungal populations were quantified by real-time PCR and previously-unidentified signals were confirmed by nucleotide sequencing. Relationships between the oral fungal flora and treatment-resistant factors were also examined. POC patients showed significantly more fungal species and a greater density of fungi than control individuals. Sixteen fungi were newly identified. The fungal populations from both groups were composed predominantly of C. albicans, though the ratio of C. dubliniensis was significantly higher in POC patients than in controls. The diversity and density of fungi were significantly reduced after treatment. Furthermore, fungal diversity and the proportion of C. dubliniensis were positively correlated with treatment duration. These results suggest that C. dubliniensis and high fungal flora diversity might be involved in the pathogenesis of oral candidiasis. We therefore conclude that LH-PCR is a useful technique for diagnosing and assessing the severity of oral candidal infection.
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spelling pubmed-40762762014-07-02 Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region Ieda, Shinsuke Moriyama, Masafumi Takashita, Toru Maehara, Takashi Imabayashi, Yumi Shinozaki, Shoichi Tanaka, Akihiko Hayashida, Jun-Nosuke Furukawa, Sachiko Ohta, Miho Yamashita, Yoshihisa Nakamura, Seiji PLoS One Research Article Oral candidiasis is closely associated with changes in the oral fungal flora and is caused primarily by Candida albicans. Conventional methods of fungal culture are time-consuming and not always conclusive. However, molecular genetic analysis of internal transcribed spacer (ITS) regions of fungal rRNA is rapid, reproducible and simple to perform. In this study we examined the fungal flora in patients with oral candidiasis and investigated changes in the flora after antifungal treatment using length heterogeneity-polymerization chain reaction (LH-PCR) analysis of ITS regions. Fifty-two patients with pseudomembranous oral candidiasis (POC) and 30 healthy controls were included in the study. Fungal DNA from oral rinse was examined for fungal species diversity by LH-PCR. Fungal populations were quantified by real-time PCR and previously-unidentified signals were confirmed by nucleotide sequencing. Relationships between the oral fungal flora and treatment-resistant factors were also examined. POC patients showed significantly more fungal species and a greater density of fungi than control individuals. Sixteen fungi were newly identified. The fungal populations from both groups were composed predominantly of C. albicans, though the ratio of C. dubliniensis was significantly higher in POC patients than in controls. The diversity and density of fungi were significantly reduced after treatment. Furthermore, fungal diversity and the proportion of C. dubliniensis were positively correlated with treatment duration. These results suggest that C. dubliniensis and high fungal flora diversity might be involved in the pathogenesis of oral candidiasis. We therefore conclude that LH-PCR is a useful technique for diagnosing and assessing the severity of oral candidal infection. Public Library of Science 2014-06-30 /pmc/articles/PMC4076276/ /pubmed/24979710 http://dx.doi.org/10.1371/journal.pone.0101156 Text en © 2014 Ieda et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ieda, Shinsuke
Moriyama, Masafumi
Takashita, Toru
Maehara, Takashi
Imabayashi, Yumi
Shinozaki, Shoichi
Tanaka, Akihiko
Hayashida, Jun-Nosuke
Furukawa, Sachiko
Ohta, Miho
Yamashita, Yoshihisa
Nakamura, Seiji
Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region
title Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region
title_full Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region
title_fullStr Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region
title_full_unstemmed Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region
title_short Molecular Analysis of Fungal Populations in Patients with Oral Candidiasis Using Internal Transcribed Spacer Region
title_sort molecular analysis of fungal populations in patients with oral candidiasis using internal transcribed spacer region
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4076276/
https://www.ncbi.nlm.nih.gov/pubmed/24979710
http://dx.doi.org/10.1371/journal.pone.0101156
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