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Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility

Supporting cells of oocytes, i.e., cumulus cells, control oocyte quality, which determines fertilization success. Therefore, the transformation of mature and immature cumulus cells (MCCs and ICCs, respectively) into dysmature cumulus cells (DCCs) with dead characteristics deteriorates oocyte quality...

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Autores principales: Kang, Woojin, Ishida, Eri, Amita, Mitsuyoshi, Tatsumi, Kuniko, Yonezawa, Hitomi, Yohtsu, Miku, Katano, Daiki, Onozawa, Kae, Kaneko, Erika, Iwasaki, Wakako, Naito, Natsuko, Yamada, Mitsutoshi, Kawano, Natsuko, Miyado, Mami, Sato, Ban, Saito, Hidekazu, Saito, Takakazu, Miyado, Kenji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9148094/
https://www.ncbi.nlm.nih.gov/pubmed/35631296
http://dx.doi.org/10.3390/nu14102156
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author Kang, Woojin
Ishida, Eri
Amita, Mitsuyoshi
Tatsumi, Kuniko
Yonezawa, Hitomi
Yohtsu, Miku
Katano, Daiki
Onozawa, Kae
Kaneko, Erika
Iwasaki, Wakako
Naito, Natsuko
Yamada, Mitsutoshi
Kawano, Natsuko
Miyado, Mami
Sato, Ban
Saito, Hidekazu
Saito, Takakazu
Miyado, Kenji
author_facet Kang, Woojin
Ishida, Eri
Amita, Mitsuyoshi
Tatsumi, Kuniko
Yonezawa, Hitomi
Yohtsu, Miku
Katano, Daiki
Onozawa, Kae
Kaneko, Erika
Iwasaki, Wakako
Naito, Natsuko
Yamada, Mitsutoshi
Kawano, Natsuko
Miyado, Mami
Sato, Ban
Saito, Hidekazu
Saito, Takakazu
Miyado, Kenji
author_sort Kang, Woojin
collection PubMed
description Supporting cells of oocytes, i.e., cumulus cells, control oocyte quality, which determines fertilization success. Therefore, the transformation of mature and immature cumulus cells (MCCs and ICCs, respectively) into dysmature cumulus cells (DCCs) with dead characteristics deteriorates oocyte quality. However, the molecular basis for this transformation remains unclear. Here, we explored the link between autophagic decline and cumulus transformation using cumulus cells from patients with infertility, female mice, and human granulosa cell-derived KGN cell lines. When human cumulus cells were labeled with LysoTracker probes, fluorescence corresponding to lysosomes was enhanced in DCCs compared to that in MCCs and ICCs. Similarly, treatment with the autophagy inhibitor chloroquine elevated LysoTracker fluorescence in both mouse cumulus cells and KGN cells, subsequently suppressing ovulation in female mice. Electron microscopy analysis revealed the proliferation of abnormal lysosomes in chloroquine-treated KGN cells. Conversely, the addition of an autophagy inducer, trehalose, suppressed chloroquine-driven problematic lysosomal anomalies and ameliorated ovulation problems. Our results suggest that autophagy maintains the healthy state of the supporting cells of human oocytes by suppressing the formation of lysosomes. Thus, our results provide insights into the therapeutic effects of trehalose on female fertility.
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spelling pubmed-91480942022-05-29 Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility Kang, Woojin Ishida, Eri Amita, Mitsuyoshi Tatsumi, Kuniko Yonezawa, Hitomi Yohtsu, Miku Katano, Daiki Onozawa, Kae Kaneko, Erika Iwasaki, Wakako Naito, Natsuko Yamada, Mitsutoshi Kawano, Natsuko Miyado, Mami Sato, Ban Saito, Hidekazu Saito, Takakazu Miyado, Kenji Nutrients Article Supporting cells of oocytes, i.e., cumulus cells, control oocyte quality, which determines fertilization success. Therefore, the transformation of mature and immature cumulus cells (MCCs and ICCs, respectively) into dysmature cumulus cells (DCCs) with dead characteristics deteriorates oocyte quality. However, the molecular basis for this transformation remains unclear. Here, we explored the link between autophagic decline and cumulus transformation using cumulus cells from patients with infertility, female mice, and human granulosa cell-derived KGN cell lines. When human cumulus cells were labeled with LysoTracker probes, fluorescence corresponding to lysosomes was enhanced in DCCs compared to that in MCCs and ICCs. Similarly, treatment with the autophagy inhibitor chloroquine elevated LysoTracker fluorescence in both mouse cumulus cells and KGN cells, subsequently suppressing ovulation in female mice. Electron microscopy analysis revealed the proliferation of abnormal lysosomes in chloroquine-treated KGN cells. Conversely, the addition of an autophagy inducer, trehalose, suppressed chloroquine-driven problematic lysosomal anomalies and ameliorated ovulation problems. Our results suggest that autophagy maintains the healthy state of the supporting cells of human oocytes by suppressing the formation of lysosomes. Thus, our results provide insights into the therapeutic effects of trehalose on female fertility. MDPI 2022-05-22 /pmc/articles/PMC9148094/ /pubmed/35631296 http://dx.doi.org/10.3390/nu14102156 Text en © 2022 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
Kang, Woojin
Ishida, Eri
Amita, Mitsuyoshi
Tatsumi, Kuniko
Yonezawa, Hitomi
Yohtsu, Miku
Katano, Daiki
Onozawa, Kae
Kaneko, Erika
Iwasaki, Wakako
Naito, Natsuko
Yamada, Mitsutoshi
Kawano, Natsuko
Miyado, Mami
Sato, Ban
Saito, Hidekazu
Saito, Takakazu
Miyado, Kenji
Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility
title Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility
title_full Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility
title_fullStr Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility
title_full_unstemmed Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility
title_short Trehalose Suppresses Lysosomal Anomalies in Supporting Cells of Oocytes and Maintains Female Fertility
title_sort trehalose suppresses lysosomal anomalies in supporting cells of oocytes and maintains female fertility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9148094/
https://www.ncbi.nlm.nih.gov/pubmed/35631296
http://dx.doi.org/10.3390/nu14102156
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