Association between SOD1 Polymorphism(+35A/C) and Senile Cataract

Introduction: Senile cataract is the most prevalent cause of blindness in the world. Variety of causes are involved in the pathogenesis of senile cataract, the most important reason is oxidative stress. Oxidative stress occurs because of increased production of free radicals in the body and decrease...

Full description

Bibliographic Details
Main Authors: Maryam Sarvar Taherabadi, Alireza Nakhaee
Format: Article
Language:fas
Published: Alborz University of Medical Sciencs 2017-09-01
Series:Bihdād
Subjects:
Online Access:http://aums.abzums.ac.ir/browse.php?a_code=A-10-1-184&slc_lang=en&sid=1
id doaj-ce42ff046a0c40da890b8153775b158c
record_format Article
spelling doaj-ce42ff046a0c40da890b8153775b158c2020-11-24T21:13:46ZfasAlborz University of Medical SciencsBihdād1735-66792017-09-0163219226Association between SOD1 Polymorphism(+35A/C) and Senile CataractMaryam Sarvar Taherabadi0Alireza Nakhaee1 Department of Biochemistry, Faculty of Medicine, Zahedan University of Medical Sciences, Zahedan, Iran Department of Biochemistry, Faculty of Medicine, Zahedan University of Medical Sciences, Zahedan, Iran Introduction: Senile cataract is the most prevalent cause of blindness in the world. Variety of causes are involved in the pathogenesis of senile cataract, the most important reason is oxidative stress. Oxidative stress occurs because of increased production of free radicals in the body and decrease antioxidant capacity. One of the defense systems against free radicals is superoxide dismutase I (Cu/zn SOD). SOD enzyme catalyses the dismutation of superoxide anion to O2 and H2O2. Several polymorphisms have been found associated with SOD1 gene. Present study has been done to evaluation effects of genetic polymorphism, including SOD1+35A>C polymorphism in senile cataract patients and normal individuals. Materials and Methods: in this case – control study, there are 120 patients with senile cataract and 104 healthy people. We collected 2ml of whole blood in tubes containing EDTA, and then DNA extraction was performed. Polymorphisms were detected by PCR–RFLP technique. Results: The distribution of AA, AC genotypes of SOD1 gene in the patient with senile cataract were 99.2% and 0.8%. Similarly, distribution of AA, AC genotype in the healthy group were 99% and 1%, respectively. The genotype of CC was not seen in none of the patients and control subjects. Conclusion:  No significant differences in the distribution SOD1+35A>C polymorphism was observed between cases and controls. http://aums.abzums.ac.ir/browse.php?a_code=A-10-1-184&slc_lang=en&sid=1Free‌ radical Stress oxidative Senile cataract superoxide dismutase polymorphism
collection DOAJ
language fas
format Article
sources DOAJ
author Maryam Sarvar Taherabadi
Alireza Nakhaee
spellingShingle Maryam Sarvar Taherabadi
Alireza Nakhaee
Association between SOD1 Polymorphism(+35A/C) and Senile Cataract
Bihdād
Free‌ radical
Stress oxidative
Senile cataract
superoxide dismutase
polymorphism
author_facet Maryam Sarvar Taherabadi
Alireza Nakhaee
author_sort Maryam Sarvar Taherabadi
title Association between SOD1 Polymorphism(+35A/C) and Senile Cataract
title_short Association between SOD1 Polymorphism(+35A/C) and Senile Cataract
title_full Association between SOD1 Polymorphism(+35A/C) and Senile Cataract
title_fullStr Association between SOD1 Polymorphism(+35A/C) and Senile Cataract
title_full_unstemmed Association between SOD1 Polymorphism(+35A/C) and Senile Cataract
title_sort association between sod1 polymorphism(+35a/c) and senile cataract
publisher Alborz University of Medical Sciencs
series Bihdād
issn 1735-6679
publishDate 2017-09-01
description Introduction: Senile cataract is the most prevalent cause of blindness in the world. Variety of causes are involved in the pathogenesis of senile cataract, the most important reason is oxidative stress. Oxidative stress occurs because of increased production of free radicals in the body and decrease antioxidant capacity. One of the defense systems against free radicals is superoxide dismutase I (Cu/zn SOD). SOD enzyme catalyses the dismutation of superoxide anion to O2 and H2O2. Several polymorphisms have been found associated with SOD1 gene. Present study has been done to evaluation effects of genetic polymorphism, including SOD1+35A>C polymorphism in senile cataract patients and normal individuals. Materials and Methods: in this case – control study, there are 120 patients with senile cataract and 104 healthy people. We collected 2ml of whole blood in tubes containing EDTA, and then DNA extraction was performed. Polymorphisms were detected by PCR–RFLP technique. Results: The distribution of AA, AC genotypes of SOD1 gene in the patient with senile cataract were 99.2% and 0.8%. Similarly, distribution of AA, AC genotype in the healthy group were 99% and 1%, respectively. The genotype of CC was not seen in none of the patients and control subjects. Conclusion:  No significant differences in the distribution SOD1+35A>C polymorphism was observed between cases and controls. 
topic Free‌ radical
Stress oxidative
Senile cataract
superoxide dismutase
polymorphism
url http://aums.abzums.ac.ir/browse.php?a_code=A-10-1-184&slc_lang=en&sid=1
work_keys_str_mv AT maryamsarvartaherabadi associationbetweensod1polymorphism35acandsenilecataract
AT alirezanakhaee associationbetweensod1polymorphism35acandsenilecataract
_version_ 1716748235591122944