نتایج جستجو برای: dystrophin gene

تعداد نتایج: 1142885  

Mohsen Mahdinejad Kashani, Shadi Sarafan, Zahra Behrooznia,

Duchenne muscular dystrophy (BMD) is an inherited X-link disease. The incidence of this muscle-wasting disease is 1:5000 male live births. Mutation in the gene coding for dystrophin is the main cause of BMD. Most cases of this disease succumb to respiratory and cardiac failure in 3rd to 4th decades. The slow progression of BMD and recent achievement of gene therapies make it as an appropriate c...

Journal: :genetics in the 3rd millennium 0
محمد تقی اکبری mohammad taghi akbari no.98, akbari medical genetics laboratory, taleghani street, tehran, iranآزمایشگاه ژنتیک پزشکی دکتر اکبری، خیابان طالقانی، شماره 98، تهران، ایران./ تلفن: 8896868 شهره زارع کاریزی shohreh zare karizi akbari medical genetics laboratory, tehran, iran1- آزمایشگاه ژنتیک پزشکی دکتر اکبری، تهران، ایران شهریار نفیسی shahriai nafisi department of neurology, tehran university of medical science, tehran, iranبخش مغز و اعصاب، دانشگاه علوم پزشکی تهران، تهران، ایران زهرا بهمنی zahra bahmani akbari medical genetics laboratory, tehran, iran1- آزمایشگاه ژنتیک پزشکی دکتر اکبری، تهران، ایران

duchene and becker muscular dystrophy (dmd and bmd) are x-linked conditions that result from a defect in the dystrophin gene located on xp21. dmd is the most frequent neuromuscular disease in humans (1/3500 male newborns). in approximately 65% of dmd and bmd patients, deletions in the dystrophin gene have been identified as the molecular determinant. population-based variations in frequency and...

Mutation in the dystrophin gene results Duchenne Muscular Dystrophy (DMD), an X-linked fatal neuromuscular disorder. Dystrophin deficiency can be compensated by upregulation of utrophin, an autosomal homologue of dystrophin. But the expression of utrophin in adults is restricted to myotendinous and neuromuscular junctions. Therefore utrophin upregulation throughout the muscle fiber can only be ...

Journal: :iranian journal of public health 0
s kheradmand kia dd farhud s zeinali ar mowjoodi h najmabadi f pourfarzad

duchenne muscular dystrophy (dmd) and the milder allelic becker muscular dystrophy (bmd) are x-linked disorders. both dmd & bmd result from heterogenous mutation in the dystrophin gene and in about 65% of the cases one or more exons of the gene are deleted or duplicated. one third of cases arise from new mutation and the rest are familial. to analyze the prevalence of deletion in iranian patien...

Journal: :cell journal 0

introduction: duchene/ becker (dmd/bmd) muscular dystrophy is the most frequent neuromuscular disease in children which is inherited as an x-linked recessive trait. the disease is caused by partial deletion in dystrophin gene. we developed a rapid and robust method for direct identification of female carriers of deletions and duplications in the dystrophin gene, in order to prevent the affected...

Journal: : 2023

Duchenne muscular dystrophy is a genetic orphan neuromuscular disease caused by mutation in the DMD gene encoding protein dystrophin. As result of developing and progressive muscle damage atrophy, children lose ability to walk, develop respiratory cardiac disorders. The core elements good care standards are early diagnosis, prevention treatment osteoporosis, daily physical therapy, regular reha...

Journal: :genetics in the 3rd millennium 0
مینا حیات نو سعید mina hayat nosaeid molecular medicine department, biotechnology research center, pasteur institute of iran صادق فلاح محمد sadegh fallah mohammad kawsar genetics research center, tehran, iran رامک حیدری ramak heidari iran muscular dystrophy association tehran, iran سمانه فتحی آذر samaneh fathi azar 1- molecular medicine department, biotechnology research center, pasteur institute, tehran, ir سمیه جمالی somayeh jamali 1- molecular medicine department, biotechnology research center, pasteur institute, tehran, ir رضا مهدیان reza mahdian 1- molecular medicine department, biotechnology research center, pasteur institute, tehran, iran مرضیه رئیسی

duchenne muscular dystrophy (dmd) and becker muscular dystrophy (bmd) can be caused by deletions, duplications or point mutations in the dmd gene that encodes dystrophin. partial gene duplications account for up to 5-10 % of dmd and up to 5- 19% of bmd cases. cases with gene duplication in dmd/bmd are determined by quantitative methods such as maph, sothern blotting and q-pcr that are laborious...

Journal: :genetics in the 3rd millennium 0
مینا حیات نو سعید mina hayat nosaeid molecular medicine department, biotechnology research center, pasteur institute of iran صادق فلاح محمد sadegh fallah mohammad kawsar genetics research center, tehran, iran رامک حیدری ramak heidari iran muscular dystrophy association tehran, iran سمانه فتحی آذر samaneh fathi azar 1- molecular medicine department, biotechnology research center, pasteur institute, tehran, ir سمیه جمالی somayeh jamali 1- molecular medicine department, biotechnology research center, pasteur institute, tehran, ir رضا مهدیان reza mahdian 1- molecular medicine department, biotechnology research center, pasteur institute, tehran, iran مرضیه رئیسی

duchenne muscular dystrophy (dmd) and becker muscular dystrophy (bmd) can be caused by deletions, duplications or point mutations in the dmd gene that encodes dystrophin. partial gene duplications account for up to 5-10 % of dmd and up to 5- 19% of bmd cases. cases with gene duplication in dmd/bmd are determined by quantitative methods such as maph, sothern blotting and q-pcr that are laborious...

برزگر, محمد, جبارپور بنیادی, مرتضی, زینال زاده نیق, نرگش,

Background and Objective: Duchenne Muscular Dystrophy(DMD) is a neuromuscular disorder with progressive muscle wasting and weakness. This disease is the consequence of mutations in dystrophin gene located on X chromosome. Inheritance pattern of the disease is gene-dependent recessive with an incidence of one in 3500 alive male newborns. Due to the absence of efficient treatment, detection of fe...

2012
Saman Eghtesad Siddharth Jhunjhunwala Steven R. Little Paula R. Clemens

Duchenne muscular dystrophy (DMD) is caused by mutations in the dystrophin gene. Therapeutic gene replacement of a dystrophin cDNA into dystrophic muscle can provide functional dystrophin protein to the tissue. However, vector-mediated gene transfer is limited by anti-vector and anti-transgene host immunity that causes rejection of the therapeutic protein. We hypothesized that rapamycin (RAPA) ...

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