The ferroimmunomodulatory role of ectopic endometriotic stromal cells in ovarian endometriosis

间质细胞 子宫内膜异位症 异位表达 癌症研究 生物 内分泌学 内科学 医学 细胞培养 遗传学
作者
Hiroharu Kobayashi,Yoshihisa Yamashita,Akira Iwase,Yutaka Yoshikawa,Hiroyuki Yasui,Yoshichika Kawai,Koji Uchida,Nozomi Uno,Shinya Akatsuka,Takashi Takahashi,Fumitaka Kikkawa,Shinya Toyokuni
出处
期刊:Fertility and Sterility [Elsevier BV]
卷期号:98 (2): 415-422.e12 被引量:32
标识
DOI:10.1016/j.fertnstert.2012.04.047
摘要

ObjectiveTo understand the role of ectopic endometriotic stromal cells in ovarian endometriosis (OEM) and the associated risks for infertility and carcinogenesis.DesignAnalyses of secreted proteins and gene expression using immortalized eutopic/ectopic endometrial(-otic) stromal cells from OEM.SettingUniversity.Patient(s)Women with and without OEM.Intervention(s)Samples of endometrial(-otic) tissue from women with or without OEM.Main Outcome Measure(s)Immunohistochemical analysis of oxidative stress in OEM, gene expression profiles, and the identification of secreted proteins by mass spectrometry in immortalized endometrial(-otic) stromal cells.Result(s)4-Hydroxy-2-nonenal–modified proteins and carboxymethyllysine were abundant in the stroma, rather than epithelia, of OEM patients, indicating the presence of oxidative stress. Immortalized ectopic endometriotic stromal cells exhibited high IRP1/IRP2/HIF-1β expression and contained lower amounts of iron and copper than their eutopic counterparts. Expression profiles, in combination with protein identification, revealed that complement component 3 (C3) and pentraxin-3 (PTX3) are the major proteins secreted from immortalized ectopic endometriotic stromal cells. Complement-3/PTX3 promoted the secretion of various cytokines by THP1 macrophage cells and thus supported M1 differentiation.Conclusion(s)Immortalized ectopic endometriotic stromal cells in OEM predominantly secrete C3 and PTX3 and exhibit a differential regulation of iron metabolism. To understand the role of ectopic endometriotic stromal cells in ovarian endometriosis (OEM) and the associated risks for infertility and carcinogenesis. Analyses of secreted proteins and gene expression using immortalized eutopic/ectopic endometrial(-otic) stromal cells from OEM. University. Women with and without OEM. Samples of endometrial(-otic) tissue from women with or without OEM. Immunohistochemical analysis of oxidative stress in OEM, gene expression profiles, and the identification of secreted proteins by mass spectrometry in immortalized endometrial(-otic) stromal cells. 4-Hydroxy-2-nonenal–modified proteins and carboxymethyllysine were abundant in the stroma, rather than epithelia, of OEM patients, indicating the presence of oxidative stress. Immortalized ectopic endometriotic stromal cells exhibited high IRP1/IRP2/HIF-1β expression and contained lower amounts of iron and copper than their eutopic counterparts. Expression profiles, in combination with protein identification, revealed that complement component 3 (C3) and pentraxin-3 (PTX3) are the major proteins secreted from immortalized ectopic endometriotic stromal cells. Complement-3/PTX3 promoted the secretion of various cytokines by THP1 macrophage cells and thus supported M1 differentiation. Immortalized ectopic endometriotic stromal cells in OEM predominantly secrete C3 and PTX3 and exhibit a differential regulation of iron metabolism.

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