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Galectin fingerprinting in human endometrium and decidua during the menstrual cycle and in early gestation

机译:月经周期和妊娠早期人子宫内膜和蜕膜中半乳凝集素的指纹图谱

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The emerging functionality of the sugar code via cell surface glycans and endogenous lectins ascribes pertinent roles in cell physiology to the carbohydrate signals of cellular glycoconjugates. To initiate monitoring of endogenous lectins in human endometrium, we focused on a family of growth/adhesion-regulatory lectins, i.e. galectins. Comprehensive fingerprinting was performed on samples throughout the menstrual cycle and in decidua. The endometrium (n = 30) and decidua (n = 7) were collected from patients undergoing hysterectomy for benign reasons and from induced abortions. Measurements by RT-PCR and then by multiprobe RNase protection assay with total endometrial and decidual tissue and with epithelial cells, stromal cells and CD45-positive cell fractions (n = 16), isolated by the use of antibody-coated magnetic beads, revealed a predominant expression of galectins-1 and -3. Protein analysis was performed by immunocytochemistry with monoclonal and polyclonal antibodies (n = 40). Galectin-1 was localized mainly in stromal cells, whereas galectin-3 was predominantly found in epithelial cells. Expression of galectin-1 increased significantly in the late secretory phase endometrium and in the decidual tissue. Expression of galectin-3 increased significantly during the secretory phase of the menstrual cycle. Cycle-dependent expression of galectin-1 in stromal cells and galectin-3 in epithelial cells suggest these lectins to be involved in the regulation of different endometrial cellular functions.
机译:经由细胞表面聚糖和内源性凝集素的糖代码的新兴功能将细胞生理学中的相关作用归因于细胞糖缀合物的碳水化合物信号。为了启动对人子宫内膜中内源性凝集素的监测,我们集中于生长/粘附调节的凝集素家族,即半乳糖凝集素。在整个月经周期和蜕膜中对样品进行全面的指纹识别。子宫内膜(n = 30)和蜕膜(n = 7)来自因良性原因而接受子宫切除术的患者和人工流产。通过RT-PCR,然后通过多探针RNase保护测定法(使用子宫内膜和蜕膜组织以及上皮细胞,基质细胞和CD45阳性细胞级分(n = 16),通过使用抗体包被的磁珠分离)进行测量,结果显示galectins-1和-3的主要表达。用单克隆和多克隆抗体(n = 40)通过免疫细胞化学进行蛋白质分析。 Galectin-1主要位于基质细胞中,而Galectin-3主要位于上皮细胞中。分泌后期子宫内膜和蜕膜组织中galectin-1的表达明显增加。在月经周期的分泌阶段,galectin-3的表达显着增加。 galectin-1在基质细胞中的周期依赖性表达和galectin-3在上皮细胞中的表达表明这些凝集素参与不同子宫内膜细胞功能的调节。

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