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Differential expression of extracellular matrix components in the Fallopian tubes throughout the menstrual cycle

机译:在整个月经周期中,输卵管中细胞外基质成分的差异表达

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Background One of the unique characteristics of the female genital tract is the extensive tissue remodeling observed throughout the menstrual cycle. Multiple components of the extracellular matrix take part in this tissue rebuilding; however, the individual components involved have not been identified. Methods In the present study, the expression of extracellular matrix proteins and selected matrix metalloproteinase (MMP) activities in Fallopian tubes (FT) throughout the menstrual cycle were examined by PCR array, immunocytochemistry, zymography and bioinformatics. Results Of the eighty-four genes analyzed, eighty-three were expressed in the FT during at least one stage of the menstrual cycle. We observed a significant increase (>/=2-fold) in ADAMTS1, ADAMTS13, COL7A1, MMP3, MMP9, PECAM1, and THBS3 in the periovulatory phase compared to the follicular phase. Meanwhile, we observed a significant decrease (>/= 2-fold) in COL7A1, ICAM1, ITGA8, MMP16, MMP9, CLEC3B, SELE and TIMP2 in the lutheal phase compared to the periovulatory phase. Immunocytochemistry showed that MMP-3 and MMP-9 were localized in the endosalpinx during all phases of the menstrual cycle. Gelatin zymograms detected non-cycle-dependent protease activity. Conclusions Several extracellular matrix components were regulated throughout the menstrual cycle in a cyclic pattern, suggesting a possible steroid regulation and a role in tissue remodeling and FT functions.
机译:背景技术女性生殖道的独特特征之一是在整个月经周期中观察到的广泛的组织重塑。细胞外基质的多种成分参与了该组织的重建。但是,所涉及的各个组件尚未确定。方法采用PCR芯片,免疫细胞化学,酶谱法和生物信息学技术,检测整个月经周期输卵管(FT)中细胞外基质蛋白的表达和某些基质金属蛋白酶(MMP)的活性。结果在分析的八十四个基因中,至少在月经周期的一个阶段中八十三个基因在FT中表达。与卵泡期相比,我们发现在排卵期,ADAMTS1,ADAMTS13,COL7A1,MMP3,MMP9,PECAM1和THBS3显着增加(> / = 2倍)。同时,我们观察到,与周围排卵期相比,在顺滑期的COL7A1,ICAM1,ITGA8,MMP16,MMP9,CLEC3B,SELE和TIMP2明显降低(> / = 2倍)。免疫细胞化学表明,在月经周期的所有阶段,MMP-3和MMP-9都位于内吞皮中。明胶酶谱图检测到非周期依赖性蛋白酶活性。结论在整个月经周期中,几种细胞外基质成分均以周期性模式被调节,表明可能存在类固醇调节作用,并且在组织重塑和FT功能中起作用。

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