Chronic low-grade inflammation and ovarian dysfunction in women with polycystic ovarian syndrome, endometriosis, and aging

The ovarian microenvironment is critical for follicular development and oocyte maturation. Maternal conditions, including polycystic ovary syndrome (PCOS), endometriosis, and aging, may compromise the ovarian microenvironment, follicular development, and oocyte quality. Chronic low-grade inflammatio...

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Published inFrontiers in endocrinology (Lausanne) Vol. 14; p. 1324429
Main Authors Orisaka, Makoto, Mizutani, Tetsuya, Miyazaki, Yumiko, Shirafuji, Aya, Tamamura, Chiyo, Fujita, Masayuki, Tsuyoshi, Hideaki, Yoshida, Yoshio
Format Journal Article
LanguageEnglish
Published Switzerland Frontiers Media S.A 13.12.2023
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Abstract The ovarian microenvironment is critical for follicular development and oocyte maturation. Maternal conditions, including polycystic ovary syndrome (PCOS), endometriosis, and aging, may compromise the ovarian microenvironment, follicular development, and oocyte quality. Chronic low-grade inflammation can induce oxidative stress and tissue fibrosis in the ovary. In PCOS, endometriosis, and aging, pro-inflammatory cytokine levels are often elevated in follicular fluids. In women with obesity and PCOS, hyperandrogenemia and insulin resistance induce ovarian chronic low-grade inflammation, thereby disrupting follicular development by increasing oxidative stress. In endometriosis, ovarian endometrioma-derived iron overload can induce chronic inflammation and oxidative stress, leading to ovarian ferroptosis and fibrosis. In inflammatory aging (inflammaging), senescent cells may secrete senescence-associated secretory phenotype factors, causing chronic inflammation and oxidative stress in the ovary. Therefore, controlling chronic low-grade inflammation and fibrosis in the ovary would present a novel therapeutic strategy for improving the follicular microenvironment and minimizing ovarian dysfunction.
AbstractList The ovarian microenvironment is critical for follicular development and oocyte maturation. Maternal conditions, including polycystic ovary syndrome (PCOS), endometriosis, and aging, may compromise the ovarian microenvironment, follicular development, and oocyte quality. Chronic low-grade inflammation can induce oxidative stress and tissue fibrosis in the ovary. In PCOS, endometriosis, and aging, pro-inflammatory cytokine levels are often elevated in follicular fluids. In women with obesity and PCOS, hyperandrogenemia and insulin resistance induce ovarian chronic low-grade inflammation, thereby disrupting follicular development by increasing oxidative stress. In endometriosis, ovarian endometrioma-derived iron overload can induce chronic inflammation and oxidative stress, leading to ovarian ferroptosis and fibrosis. In inflammatory aging (inflammaging), senescent cells may secrete senescence-associated secretory phenotype factors, causing chronic inflammation and oxidative stress in the ovary. Therefore, controlling chronic low-grade inflammation and fibrosis in the ovary would present a novel therapeutic strategy for improving the follicular microenvironment and minimizing ovarian dysfunction.
The ovarian microenvironment is critical for follicular development and oocyte maturation. Maternal conditions, including polycystic ovary syndrome (PCOS), endometriosis, and aging, may compromise the ovarian microenvironment, follicular development, and oocyte quality. Chronic low-grade inflammation can induce oxidative stress and tissue fibrosis in the ovary. In PCOS, endometriosis, and aging, pro-inflammatory cytokine levels are often elevated in follicular fluids. In women with obesity and PCOS, hyperandrogenemia and insulin resistance induce ovarian chronic low-grade inflammation, thereby disrupting follicular development by increasing oxidative stress. In endometriosis, ovarian endometrioma-derived iron overload can induce chronic inflammation and oxidative stress, leading to ovarian ferroptosis and fibrosis. In inflammatory aging (inflammaging), senescent cells may secrete senescence-associated secretory phenotype factors, causing chronic inflammation and oxidative stress in the ovary. Therefore, controlling chronic low-grade inflammation and fibrosis in the ovary would present a novel therapeutic strategy for improving the follicular microenvironment and minimizing ovarian dysfunction.The ovarian microenvironment is critical for follicular development and oocyte maturation. Maternal conditions, including polycystic ovary syndrome (PCOS), endometriosis, and aging, may compromise the ovarian microenvironment, follicular development, and oocyte quality. Chronic low-grade inflammation can induce oxidative stress and tissue fibrosis in the ovary. In PCOS, endometriosis, and aging, pro-inflammatory cytokine levels are often elevated in follicular fluids. In women with obesity and PCOS, hyperandrogenemia and insulin resistance induce ovarian chronic low-grade inflammation, thereby disrupting follicular development by increasing oxidative stress. In endometriosis, ovarian endometrioma-derived iron overload can induce chronic inflammation and oxidative stress, leading to ovarian ferroptosis and fibrosis. In inflammatory aging (inflammaging), senescent cells may secrete senescence-associated secretory phenotype factors, causing chronic inflammation and oxidative stress in the ovary. Therefore, controlling chronic low-grade inflammation and fibrosis in the ovary would present a novel therapeutic strategy for improving the follicular microenvironment and minimizing ovarian dysfunction.
Author Yoshida, Yoshio
Shirafuji, Aya
Tamamura, Chiyo
Miyazaki, Yumiko
Orisaka, Makoto
Mizutani, Tetsuya
Tsuyoshi, Hideaki
Fujita, Masayuki
AuthorAffiliation 2 Department of Nursing, Faculty of Nursing and Welfare Sciences, Fukui Prefectural University , Fukui , Japan
3 Department of Obstetrics and Gynecology, Ishikawa Prefectural Central Hospital , Ishikawa , Japan
1 Department of Obstetrics and Gynecology, Faculty of Medical Sciences, University of Fukui , Fukui , Japan
AuthorAffiliation_xml – name: 3 Department of Obstetrics and Gynecology, Ishikawa Prefectural Central Hospital , Ishikawa , Japan
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Copyright Copyright © 2023 Orisaka, Mizutani, Miyazaki, Shirafuji, Tamamura, Fujita, Tsuyoshi and Yoshida.
Copyright © 2023 Orisaka, Mizutani, Miyazaki, Shirafuji, Tamamura, Fujita, Tsuyoshi and Yoshida 2023 Orisaka, Mizutani, Miyazaki, Shirafuji, Tamamura, Fujita, Tsuyoshi and Yoshida
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Keywords endometriosis
aging
follicular microenvironment
inflammation
ovarian dysfunction
polycystic ovarian syndrome
Language English
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Fardin Amidi, Tehran University of Medical Sciences, Iran
Reviewed by: Miyuki Harada, The University of Tokyo, Japan
Edited by: Takashi Minegishi, Gunma University, Japan
Takashi Yazawa, Asahikawa Medical University, Japan
Akira Iwase, Gunma University, Japan
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Snippet The ovarian microenvironment is critical for follicular development and oocyte maturation. Maternal conditions, including polycystic ovary syndrome (PCOS),...
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SubjectTerms Aging
Endocrinology
Endometriosis
Female
Fibrosis
follicular microenvironment
Humans
inflammation
Inflammation - complications
ovarian dysfunction
polycystic ovarian syndrome
Polycystic Ovary Syndrome - complications
Tumor Microenvironment
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Title Chronic low-grade inflammation and ovarian dysfunction in women with polycystic ovarian syndrome, endometriosis, and aging
URI https://www.ncbi.nlm.nih.gov/pubmed/38192421
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