| Mursal Zubayil Dadashov | |
| Place of birth | Azerbaijan, Guba region, Alpan village. |
| Date of birth | 08.05.1964 |
| Education | Baku State University |
| Scientific degree | PhD in Biology |
| Academic rank | Associate Professor |
| Speciality code and title for PhD thesis | 03.00.04-biochemistry, 03.00.15-genetics. Human a1-antitrypsin: polymorphism in Azerbaijan, consequences of deficiency, relationship with antioxidant status. |
| Total number of printed scientific publications | 65 |
| Number of scientific publications printed abroad | 30 |
| Number of papers published in journals indexed and abstracted in international databases | 10 |
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| Staff training: - number of PhD |
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| Key scientific achievements | The main scientific works of Mursal Dadashov are in the field of human genetics, biochemistry and biophysics. He studied the human’s alpha-1-antitrypsin polymorphism in Azerbaijan, its association with the antioxidant status, as well as ways to detect and correct the deficiency of this protein. The results of the scientist's research in this direction were summarized in his PhD thesis, which he successfully defended in 2006. M. Dadashov deals with the problems of determining the mechanisms of changes in erythrocytes and blood proteins of healthy people, people with β-thalassemia and neurodegenerative pathology under the influence of external factors, including ultraviolet radiation, nitrites, low-frequency electromagnetic waves and metal nanoparticles, as well as determining the initial biochemical and biophysical markers of positive or negative states caused by these effects, and developing protective measures against their negative effects. He actively participates in various congresses and symposia held in the country and abroad to present and discuss his scientific results. |
| Titles of publications | 1. Fluorescent and Chemiluminescent Effects of Low-frequency (50 Hz) Electromagnetic Field on Blood Proteins. Journal of Electromagnetics, 2025, v.8, p.1-7 2. Intrinsic fluorescence of human blood serum under the influence of 50 Hz high tension electric field. International Journal "Technical and Physical Problems of Engineering" (IJTPE), Issue 46, Volume 13, Number 4, December 2021. 3. Evaluation of nitrite-induced oxidative modification of hemoglobin and the possibility of its regulation by sodium selenite by Raman microscopy. AJP Fizika, 2020, v. XXVI, № 4, p. 44-50. 4. Selenium saturation of hemoglobin as antioxidative factor at high tension electric fields action. International J. “Technical and Physical Problems of Engineering”, Iran, 2011, v.3, №2, p.22-25. 5. İnsan orqanizminə sənaye tezlikli (50 Hz) elektromaqnit sahəsinin təsiri. Ekoenergetika, Bakı, 2009, №1, s.62-66. 6. Селентрипсин возможный антиоксидант в воспалительных процессах. Доклады Академии Наук Азербайджана, Баку-Елм, 2009, т.64, №3, стр.52-55. 7. α1- антитрипсин человека: полиморфизм в Азербайджане, последствия дефицита, связь с антиокислительным статусом, автореферат дис. ... канд. биол. наук: 03.00.04, 03.00.15, Баку, 2007. 22 с. |
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| Place of work and its address | Institute of Molecular Biology, Ministry of Science and Education of the Republic of Azerbaijan, AZ1073, Baku, 11 Izzet Nabiev Street. |
| Position | Leading researcher |
| Office phone |
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| Mobile | 00994503776945 |
| Home |
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| Fax |
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| | mursald@mail.ru |