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Comprehensive expression analysis of prostanoid enzymes and receptors in the human endometrium across the menstrual cycle.

机译:整个月经周期中人类子宫内膜中类前列腺素酶和受体的全面表达分析。

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Prostanoids are well-described primary mediators of inflammatory processes and are essential for the normal physiological function of the female reproductive system. The aim of this study was to determine the temporal expression of the prostanoid biosynthetic enzymes (PTGS1, PTGS2, PTGES, PTGES2, PTGES3, AKR1B1, AKR1C3, CBR1, HPGDS, PTGDS, PTGIS, TBXAS1 and HPGD) and the prostanoid receptors (PTGER1, PTGER2, PTGER3, PTGER4, PTGFR, PTGDR, GPR44, PTGIR and TBXA2R) in the human endometrium throughout the menstrual cycle. The analysis identified PTGFR to have a distinct expression profile compared with other components of the prostanoid system, as expression is maximal during the proliferative phase. Immunohistochemical analysis for PTGER1 suggests a dual function for this receptor depending on its temporal (proliferative versus secretory) and spatial (nuclear versus cell membrane) expression. The expression profiles of the PGF(2alpha) synthases identified AKR1B1 and CBR1 as the likely regulators of PGF(2alpha) production during the menstrual phase. Immunohistochemical analysis for AKR1B1, CBR1 and AKR1C3 suggest expression to be in the glandular epithelium and vasculature. This study represents the first comprehensive analysis of the components of prostanoid biosynthetic and signalling pathway in the human endometrium. The expression profiles described have the potential to identify specific prostanoid components that may be dysregulated in inflammatory-associated disorders of the endometrium.
机译:前列腺素是炎症过程的主要描述介质,对于女性生殖系统的正常生理功能至关重要。这项研究的目的是确定前列腺素类生物合成酶(PTGS1,PTGS2,PTGES,PTGES2,PTGES3,AKR1B1,AKR1C3,CBR1,HPGDS,PTGDS,PTGIS,TBXAS1和HPGD)和前列腺素受体(PTGER1)的时间表达在整个月经周期中,子宫内膜中的PTGER2,PTGER3,PTGER4,PTGFR,PTGDR,GPR44,PTGIR和TBXA2R)。分析确定PTGFR与类前列腺素系统的其他成分相比具有独特的表达谱,因为在增殖期表达最大。 PTGER1的免疫组织化学分析表明该受体具有双重功能,这取决于其时间(增殖与分泌)和空间(核与细胞膜)表达。 PGF(2alpha)合成酶的表达谱将AKR1B1和CBR1确定为月经期PGF(2alpha)生产的可能调节剂。 AKR1B1,CBR1和AKR1C3的免疫组织化学分析表明表达在腺上皮和脉管系统中。这项研究代表了人类子宫内膜中类前列腺素生物合成和信号传导途径的成分的首次综合分析。所描述的表达谱具有识别可能在子宫内膜炎性相关疾病中失调的特定前列腺素成分的潜力。

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