Association between interleukin-1 receptor antagonist (IL-1ra) VNTR, gene polymorphism and breast cancer susceptibility in Iranian population: Experimental and web-based analysis
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引用次数: 5
Abstract
Breast cancer is one of the leading causes of cancer mortality. Growing evidence indicates that interleukins and its polymorphisms are involved in the pathogenesis of breast cancer. Variable number of tandem repeat (VNTR) polymorphism can affect transcription rate, mRNA stability and also the resulting protein expression and activity. Hence, present study aimed to assess the possible association between interleukin-1 receptor antagonist (IL-1Ra) VNTR polymorphism, and breast cancer susceptibility in Iranian population. A total of 300 Iranian individuals, 150 breast cancer patients and 150 age-matched healthy women, were included in this study. DNA extracted by salting out method and genotyping was done using the polymerase chain reaction. The frequency of the allele 2(5% vs. 22%) and the 2/2 genotype (22% vs. 46%) of IL-1Ra VNTR polymorphism was significantly higher in healthy control compared to breast cancer patient: therefore, A2 allele may play a protective role against breast cancer and its progression (p = .0001 and OR = 0.105, 95% CI: [0.044–0.248]). The allele 2 and 2/2 genotype of the IL-Ra VNTR polymorphism can be a protective factor against breast cancer susceptibility.
乳腺癌是导致癌症死亡的主要原因之一。越来越多的证据表明,白细胞介素及其多态性参与了乳腺癌的发病机制。可变数目串联重复序列(VNTR)多态性可以影响转录率、mRNA的稳定性以及由此产生的蛋白的表达和活性。因此,本研究旨在评估白细胞介素-1受体拮抗剂(IL-1Ra) VNTR多态性与伊朗人群乳腺癌易感性之间的可能关联。这项研究共包括300名伊朗人、150名乳腺癌患者和150名年龄匹配的健康妇女。用盐析法提取DNA,用聚合酶链反应进行基因分型。与乳腺癌患者相比,健康对照组IL-1Ra VNTR多态性等位基因2(5% vs 22%)和2/2基因型(22% vs 46%)的频率显著高于乳腺癌患者,因此A2等位基因可能对乳腺癌及其进展具有保护作用(p = 0.0001, OR = 0.105, 95% CI:[0.044-0.248])。IL-Ra VNTR多态性的等位基因2和2/2基因型可能是乳腺癌易感性的保护因素。
期刊介绍:
The International Journal of Immunogenetics (formerly European Journal of Immunogenetics) publishes original contributions on the genetic control of components of the immune system and their interactions in both humans and experimental animals. The term ''genetic'' is taken in its broadest sense to include studies at the evolutionary, molecular, chromosomal functional and population levels in both health and disease. Examples are:
-studies of blood groups and other surface antigens-
cell interactions and immune response-
receptors, antibodies, complement components and cytokines-
polymorphism-
evolution of the organisation, control and function of immune system components-
anthropology and disease associations-
the genetics of immune-related disease: allergy, autoimmunity, immunodeficiency and other immune pathologies-
All papers are seen by at least two independent referees and only papers of the highest quality are accepted.