IRISIN AND CHEMERIN LEVELS IN PATIENTS WITH TYPE 2 DIABETES MELLITUS.

Y Akgul Balaban, N Yilmaz, M Kalayci, M Unal, T Turhan
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引用次数: 16

Abstract

Context: Changes in the secretion of signaling molecules that originates from adipose tissue and inflammation draw attention in the pathogenesis of type 2 DM. Chemerin, one of the signaling molecules of adipose origin, and irisin, defined as the Renaissance of the metabolism, are among these molecules.

Objectives: This cross-sectional study was planned in order to compare the values of serum irisin and chemerin levels in patients newly diagnosed with T2DM and in healthy subjects.

Subjects and methods: The study included 41 patients newly diagnosed with T2DM and 49 healthy individuals. The chemistry parameters were analyzed with a biochemistry autoanalyzer, and hormonal parameters were analyzed with an immunoassay analyzer. Plasma irisin and chemerin levels were measured using the enzyme-linked immunosorbent assay method.

Results: There was a significant difference between the groups in terms of glucose, HbA1C, Insulin, HOMA-IR and lipid panel results. Irisin levels in the group of patients newly diagnosed with T2DM were lower than in the control group. Chemerin levels in the group of patients newly diagnosed with T2DM were higher than in the control group.

Conclusion: Consequently, diabetes-dependent changes in chemerin and irisin concentrations suggest that these two hormones have a role in the pathophysiology of DM. Further studies are required to understand the complex structure of the signaling pathways of chemerin and irisin molecules as well as the physiological importance of these molecules as metabolism regulators especially in humans.

2型糖尿病患者鸢尾素和趋化素水平的变化。
背景:源于脂肪组织和炎症的信号分子分泌的变化引起了2型糖尿病发病机制的关注。脂肪来源的信号分子之一趋化素和被定义为新陈代谢复兴的鸢尾素就是这些分子之一。目的:本横断面研究旨在比较新诊断为T2DM的患者和健康受试者血清鸢尾素和趋化素的水平。研究对象和方法:研究对象包括41例新诊断为T2DM的患者和49例健康个体。化学参数用生化自动分析仪分析,激素参数用免疫分析仪分析。采用酶联免疫吸附法测定血浆鸢尾素和趋化素水平。结果:两组患者血糖、糖化血红蛋白、胰岛素、HOMA-IR、血脂等指标均有显著差异。新诊断T2DM患者组的鸢尾素水平低于对照组。新诊断T2DM患者组的Chemerin水平高于对照组。结论:因此,趋化素和鸢尾素浓度的糖尿病依赖性变化表明,这两种激素在糖尿病的病理生理中发挥作用。需要进一步研究趋化素和鸢尾素分子信号通路的复杂结构,以及这些分子作为代谢调节剂的生理重要性,特别是在人类中。
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