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Expression of H2S in Gestational Diabetes Mellitus and Correlation Analysis with Inflammatory Markers IL-6 and TNF-α

机译:H2S在妊娠期糖尿病中的表达及炎症标志物IL-6和TNF-α的相关分析

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Background. Gestational diabetes mellitus (GDM) is a severe threat to the health of both mother and child. The pathogenesis of GDM remains unclear, although much research has found that the levels of hydrogen sulfide (H2S) play an important role in complications of pregnancy. Methods. We collected venous blood samples from parturient women and umbilical vein blood (UVB) and peripheral venous blood (PVB) samples one hour after childbirth in the control, GDM-, and GDM+ groups in order to determine the concentration of glucose and H2S in plasma; to measure levels of TNF-α, IL-1β, IL-6, TGF-β1, and ADP in parturient women and the UVB of newborns; and to find the correlation of H2S with regression. Results. We found that, with the elevation of glucose, the level of H2S was decreased in GDM pregnant women and newborns and the concentrations of IL-6 and TNF-α were upregulated. With regression, IL-6 and TNF-α concentrations were positively correlated with the level of blood glucose and negatively correlated with H2S concentration. Conclusion. This study shows that downregulation of H2S participates in the pathogenesis of GDM and is of great significance in understanding the difference of H2S between normal and GDM pregnant women and newborns. This study suggests that IL-6 and TNF-α are correlated with gestational diabetes mellitus. The current study expands the knowledge base regarding H2S and provides new avenues for exploring further the pathogenesis of GDM.
机译:背景。妊娠糖尿病Mellitus(GDM)对母亲和孩子的健康是严重的威胁。 GDM的发病机制仍不清楚,虽然很多研究发现已经发现硫化氢水平(H2S)在怀孕并发症中起重要作用。方法。在对照,GDM-和GDM +组中,我们将来自父母和脐血(UVB)和外周静脉血液(PVB)样品的静脉血液样本和外周静脉血(PVB)样品。以确定血浆中葡萄糖和H2S的浓度;测量父母和新生儿的父母和UVB的TNF-α,IL-1β,IL-6,TGF-β1和ADP的水平;并找到H2S与回归的相关性。结果。我们发现,随着葡萄糖的升高,GDM孕妇和新生儿中H2S的水平降低,并且上调了IL-6和TNF-α的浓度。随着回归,IL-6和TNF-α浓度与血糖水平正相关,并与H 2 S浓度负相关。结论。本研究表明,H2S的下调参与GDM的发病机制,并且在理解正常和GDM孕妇和新生儿之间的H2S差异方面具有重要意义。该研究表明IL-6和TNF-α与妊娠糖尿病相关。目前的研究扩展了关于H2S的知识库,并为进一步探索GDM的发病机制提供了新的途径。

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