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Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands

Xerostomia, also known as dry mouth, is caused by a reduction in salivary secretion and by changes in the composition of saliva associated with the malfunction of salivary glands. Xerostomia decreases quality of life. In the present study, we investigated the effects of peptides derived from β-lacto...

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Autores principales: Ishikawa, Yasuko, Pieczonka, Tomasz D, Bragiel-Pieczonka, Aneta M, Seta, Harumichi, Ohkuri, Tadahiro, Sasanuma, Yumi, Nonaka, Yuji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7168239/
https://www.ncbi.nlm.nih.gov/pubmed/32093221
http://dx.doi.org/10.3390/biomedicines8020038
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author Ishikawa, Yasuko
Pieczonka, Tomasz D
Bragiel-Pieczonka, Aneta M
Seta, Harumichi
Ohkuri, Tadahiro
Sasanuma, Yumi
Nonaka, Yuji
author_facet Ishikawa, Yasuko
Pieczonka, Tomasz D
Bragiel-Pieczonka, Aneta M
Seta, Harumichi
Ohkuri, Tadahiro
Sasanuma, Yumi
Nonaka, Yuji
author_sort Ishikawa, Yasuko
collection PubMed
description Xerostomia, also known as dry mouth, is caused by a reduction in salivary secretion and by changes in the composition of saliva associated with the malfunction of salivary glands. Xerostomia decreases quality of life. In the present study, we investigated the effects of peptides derived from β-lactoglobulin C on age-dependent atrophy, gene expression profiles, and the dysfunction of salivary glands. Long-term oral administration of Leu(57)-Leu(58)-His(59)-Lys(60) (LLHK), Leu(58)-His(59)-Lys(60) (LHK) and His(59)-Lys(60) (HK) peptides induced salivary secretion and prevented and/or reversed the age-dependent atrophy of salivary glands in older rats. The transcripts of 78 genes were upregulated and those of 81 genes were downregulated by more than 2.0-fold (p ≤ 0.05) after LHK treatment. LHK upregulated major salivary protein genes such as proline-rich proteins (Prpmp5, Prb3, Prp2, Prb1, Prp15), cystatins (Cst5, Cyss, Vegp2), amylases (Amy1a, Amy2a3), and lysozyme (Lyzl1), suggesting that LLHK, LHK, and HK restored normal salivary function. The AP-2 transcription factor gene (Tcfap2b) was also induced significantly by LHK treatment. These results suggest that LLHK, LHK, and HK-administration may prevent and/or reverse the age-dependent atrophy and functional decline of salivary glands by affecting gene expression.
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spelling pubmed-71682392020-04-22 Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands Ishikawa, Yasuko Pieczonka, Tomasz D Bragiel-Pieczonka, Aneta M Seta, Harumichi Ohkuri, Tadahiro Sasanuma, Yumi Nonaka, Yuji Biomedicines Article Xerostomia, also known as dry mouth, is caused by a reduction in salivary secretion and by changes in the composition of saliva associated with the malfunction of salivary glands. Xerostomia decreases quality of life. In the present study, we investigated the effects of peptides derived from β-lactoglobulin C on age-dependent atrophy, gene expression profiles, and the dysfunction of salivary glands. Long-term oral administration of Leu(57)-Leu(58)-His(59)-Lys(60) (LLHK), Leu(58)-His(59)-Lys(60) (LHK) and His(59)-Lys(60) (HK) peptides induced salivary secretion and prevented and/or reversed the age-dependent atrophy of salivary glands in older rats. The transcripts of 78 genes were upregulated and those of 81 genes were downregulated by more than 2.0-fold (p ≤ 0.05) after LHK treatment. LHK upregulated major salivary protein genes such as proline-rich proteins (Prpmp5, Prb3, Prp2, Prb1, Prp15), cystatins (Cst5, Cyss, Vegp2), amylases (Amy1a, Amy2a3), and lysozyme (Lyzl1), suggesting that LLHK, LHK, and HK restored normal salivary function. The AP-2 transcription factor gene (Tcfap2b) was also induced significantly by LHK treatment. These results suggest that LLHK, LHK, and HK-administration may prevent and/or reverse the age-dependent atrophy and functional decline of salivary glands by affecting gene expression. MDPI 2020-02-20 /pmc/articles/PMC7168239/ /pubmed/32093221 http://dx.doi.org/10.3390/biomedicines8020038 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
Ishikawa, Yasuko
Pieczonka, Tomasz D
Bragiel-Pieczonka, Aneta M
Seta, Harumichi
Ohkuri, Tadahiro
Sasanuma, Yumi
Nonaka, Yuji
Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands
title Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands
title_full Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands
title_fullStr Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands
title_full_unstemmed Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands
title_short Long-Term Oral Administration of LLHK, LHK, and HK Alters Gene Expression Profile and Restores Age-Dependent Atrophy and Dysfunction of Rat Salivary Glands
title_sort long-term oral administration of llhk, lhk, and hk alters gene expression profile and restores age-dependent atrophy and dysfunction of rat salivary glands
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7168239/
https://www.ncbi.nlm.nih.gov/pubmed/32093221
http://dx.doi.org/10.3390/biomedicines8020038
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