Calcitonin Gene Related Peptide Gene Polymorphism in Migraine Patients
CANADIAN JOURNAL OF NEUROLOGICAL SCIENCES
Authors: Guldiken, Baburhan; Sipahi, Tammam; Tekinarslan, Remziye; Kabayel, Levent; Ozkan, Hulya; Unlu, Ayhan; Yamasan, Bilge Eren; Okman-Kilic, Tulay; Turgut, Nilda
Abstract
Objective: Calcitonin gene related peptide (CGRP), which has a vasodilator effect, is held responsible for neurogenic inflammation and vasodilatation of the cranial vessels in migraine pathophysiology. In this study, we investigated the association between alpha CGRP gene polymorphism (CALCA T-692C) and migraine. Material and Methods: One hundred and thirty-four female migraineurs and 96 healthy female cases were enrolled in the study. The patient group was further subdivided into migraine with and without aura groups. The CALCA T-692C gene polymorphism was identified using polymerase chain reaction (PCR) technique and restriction fragment length polymorphism (RFLP). Results: The genotype and allele frequencies of CALCA T-692C gene polymorphism did not differ between the migraine and control groups. Between the migraine with and without aura subgroups, there was no difference. No association was seen between the CALCA T-692C gene polymorphisms and migraine attack severity and frequency. Conclusion: Our study did not show any association between CALCA T-692C gene polymorphism and migraine.
Endogenous calcitonin regulates lipid and glucose metabolism in diet-induced obesity mice
SCIENTIFIC REPORTS
Authors: Nakamura, Misa; Nomura, Sachiko; Yamakawa, Tadashi; Kono, Ryohei; Maeno, Akihiro; Ozaki, Takashi; Ito, Akitoshi; Uzawa, Toyonobu; Utsunomiya, Hirotoshi; Kakudo, Kennichi
Abstract
Calcitonin (CT) plays an important role in calcium homeostasis, and its precursor, proCT, is positively associated with the body mass index in the general human population. However, the physiological role of endogenous CT in the regulation of metabolism remains unclear. Knockout mice with gene-targeted deletion of exon 4 of Calca (CT KO) were generated by targeted modification in embryonic stem cells. Male mice were used in all experiments and were fed a slightly higher fat diet than the standard diet. The CT KO mice did not exhibit any abnormal findings in appearance, but exhibited weight loss from 15 months old, i.e., significantly decreased liver, adipose tissue, and kidney weights, compared with wild-type control mice. Furthermore, CT KO mice exhibited significantly decreased fat contents in the liver, lipid droplets in adipose tissues, serum glucose, and lipid levels, and significantly increased insulin sensitivity and serum adiponectin levels. CT significantly promoted 3T3-L1l adipocyte differentiation and suppressed adiponectin release. These results suggested that CT gene deletion prevents obesity, hyperglycemia, and hyperlipidemia in aged male mice. This is the first definitive evidence that CT may contribute to glucose and lipid metabolism in aged male mice, possibly via decreased adiponectin secretion from adipocytes.