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Leptin receptors are down-regulated in uterine implantation sites compared to interimplantation sites.

机译:与子宫内植入部位相比,瘦素受体在子宫植入部位被下调。

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Leptin is a circulating hormone that plays an important role in the regulation of metabolism, obesity, and reproduction. Leptin binds to its receptors on the cell membrane and is involved in the activation of STAT3. Recently, endometrium was suggested to be a novel target for leptin recently. We, therefore, examined the expression of leptin, leptin receptors, and STAT3 in the mouse uterus (implantation and interimplantation sites) to investigate the role of the leptin system during the early implantation period. Leptin mRNA was not detected in mouse uterine tissues or blastocysts, although adipose tissue, the positive control, showed a strong signal. Both of the receptor splice variants were expressed in the uterus and blastocysts, but the mRNA level was much lower in implantation sites compared to interimplantation sites. The mRNA expression of leptin receptors was determined to be higher in stromal cells than in the luminal epithelium using laser capture microdissection (LCM) analysis. Using immunohistochemistry, leptin was detected as a strong signal in the luminal epithelium and embryo, whereas the receptor was detected in subepithelial stromal cells rather than the luminal epithelium. As leptin itself was not detected by RT-PCR, the immunohistologically detected leptin may originate elsewhere, such as in adipose tissue. The differential expression of leptin receptors in implantation sites compared to interimplantation sites suggests that the leptin/leptin receptor system may be a delicate regulator of the implantation process.
机译:瘦素是一种循环激素,在代谢,肥胖和生殖的调节中起着重要作用。瘦蛋白与其在细胞膜上的受体结合,并参与STAT3的激活。最近,子宫内膜被认为是瘦素的新型靶标。因此,我们研究了瘦素,瘦素受体和STAT3在小鼠子宫(植入和植入间部位)中的表达,以研究瘦素系统在植入初期的作用。在小鼠子宫组织或胚泡中未检测到瘦素mRNA,尽管作为阳性对照的脂肪组织显示出强信号。两种受体剪接变体均在子宫和胚泡中表达,但与植入间位点相比,植入位点的mRNA水平要低得多。使用激光捕获显微切割(LCM)分析,确定间质细胞中瘦素受体的mRNA表达高于腔上皮。使用免疫组织化学,瘦素在腔上皮和胚胎中被检测为强信号,而受体在上皮下基质细胞而不是腔上皮中被检测到。由于未通过RT-PCR检测到瘦素本身,因此免疫组织学检测到的瘦素可能起源于其他地方,例如脂肪组织。与植入间部位相比,瘦素受体在植入部位的差异表达表明,瘦素/瘦素受体系统可能是植入过程的精密调节剂。

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