Azimnasab-Sorkhabi Parviz, Soltani-Asl Maryam, Kfoury José Roberto, Algenstaedt Petra, Mehmetzade Hakan Farzin, Hashemi Aghdam Yashar
Department of Biology, Faculty of Science, Islamic Azad University, Iran.
Department of Surgery, School of Veterinary Medicine and Animal Sciences, University of Sao Paulo, Sao Paulo, Brazil.
Ann Hum Biol. 2022 Dec;49(7-8):317-322. doi: 10.1080/03014460.2022.2134453. Epub 2022 Oct 27.
Diabetes comprises a serious disease with significant growth in the number of cases in recent years. Here, we cover the gap in information between leptin (LEP) and type 1 diabetes in the Iranian population.
To recognise LEP G2548A and LEP receptor Q223R polymorphisms in Iranian people and their association with type 1 diabetes susceptibility.
Characteristics such as fasting blood sugar (FBS) were measured in 80 control non-diabetic individuals and 89 diabetic patients. Moreover, LEP G2548A and LEP receptor Q223R polymorphisms were genotyped using polymerase chain reaction-restriction fragment length polymorphism technique.
The frequency of the A allele was nearly three times greater in diabetes patients than in the control group. In addition, in the diabetes group, the AA genotype was five times greater than in the control group ( < 0.01). Furthermore, AA and AA + AG genotype models had higher FBS levels than the GG + AG and GG genotype models, respectively ( < 0.01).
The LEP G2548A polymorphism could be related to type 1 diabetes susceptibility, but not LEPR Q223R polymorphism in the Iranian population. Importantly, further studies are essential to examine the impact of LEP G2548A and LEPR Q223R polymorphisms in the endocrinology area.
糖尿病是一种严重疾病,近年来病例数量显著增长。在此,我们填补伊朗人群中瘦素(LEP)与1型糖尿病之间的信息空白。
识别伊朗人群中LEP G2548A和LEP受体Q223R多态性及其与1型糖尿病易感性的关联。
对80名非糖尿病对照个体和89名糖尿病患者测量空腹血糖(FBS)等特征。此外,采用聚合酶链反应-限制性片段长度多态性技术对LEP G2548A和LEP受体Q223R多态性进行基因分型。
糖尿病患者中A等位基因频率几乎是对照组的三倍。此外,糖尿病组中AA基因型是对照组的五倍(<0.01)。此外,AA和AA + AG基因型模型的FBS水平分别高于GG + AG和GG基因型模型(<0.01)。
在伊朗人群中,LEP G2548A多态性可能与1型糖尿病易感性有关,但LEPR Q223R多态性无关。重要的是,进一步研究对于检验LEP G2548A和LEPR Q223R多态性在内分泌学领域的影响至关重要。