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http://dspace.zsmu.edu.ua/handle/123456789/22997
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Название: | Molecular and Biochemical Mechanisms of Cardiomyopathy Development Following Prenatal Hypoxia-Focus on the NO System |
Авторы: | Popazova, O. O. Belenichev, I. F. Bukhtiyarova, N. V. Ryzhenko, V. P. Gorchakova, N. Oksenych, V. Kamyshnyi, O. Попазова, Олена Олександрівна Бєленічев, Ігор Федорович Бухтіярова, Ніна Вікторівна Риженко, Віктор Павлович |
Ключевые слова: | prenatal hypoxia cardiomyopathy endothelial dysfunction mitochondrial dysfunction oxidative stress nitrosative stress cardiomyocyte apoptosis NOmodulators HSP70 |
Дата публикации: | 2025 |
Библиографическое описание: | Molecular and Biochemical Mechanisms of Cardiomyopathy Development Following Prenatal Hypoxia-Focus on the NO System / O. Popazova, I. Belenichev, N. Bukhtiyarova, V. Ryzhenko, N. Gorchakova, V. Oksenych, O. Kamyshnyi // Antioxidants. - 2025. - Vol. 14, N 6. - Art. 743. - https://doi.org/10.3390/antiox14060743. |
Аннотация: | Abstract: Prenatal hypoxia (PH) adversely affects the development of the fetal heart, contributing
to persistent cardiovascular impairments in postnatal life. A key component in
regulating cardiac physiology is the nitric oxide (NO) system, which influences vascular
tone, myocardial contractility, and endothelial integrity during development. Exposure to
PH disrupts NO-related signaling pathways, leading to endothelial dysfunction, mitochondrial
damage, and an escalation of oxidative stress—all of which exacerbate cardiac injury
and trigger cardiomyocyte apoptosis. The excessive generation of reactive nitrogen species
drives nitrosative stress, thereby intensifying inflammatory processes and cellular injury.
In addition, the interplay between NO and hypoxia-inducible factor (HIF) shapes adaptive
responses to PH. NO also modulates the synthesis of heat shock protein 70 (HSP70), a
critical factor in cellular defense against stress. This review emphasizes the involvement
of NO in cardiovascular injury caused by PH and examines the cardioprotective potential
of NO modulators—Angiolin, Thiotriazoline, Mildronate, and L-arginine—as prospective
therapeutic agents. These agents reduce oxidative stress, enhance endothelial performance,
and alleviate the detrimental effects of PH on the heart, offering potential new strategies to
prevent cardiovascular disorders in offspring subjected to prenatal hypoxia. |
URI: | http://dspace.zsmu.edu.ua/handle/123456789/22997 |
Располагается в коллекциях: | Наукові праці. (Фармакологія та МР) Наукові праці. (Медична інформатика) Наукові праці. (Лабораторна діагностика) Наукові праці. (Гістологія, цитологія)
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