STUDY OF THE EFFECT OF TAURINE AND ZINCUM COMBINATION DRUG ON SLEEP DURATION IN MODELS OF ACUTE TOXIC HEPATITIS

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Аннотация:

Currently, hepatitis is the second most dangerous infectious disease in the world. Despite the rapid development of modern medicine and the use of new modern methods of treating liver diseases, most patients suffer from chronic hepatitis and liver fibrosis, which leads to a deterioration in the socio-economic situation. Despite improvements in the diagnosis and treatment of hepatitis, mortality rates among the population are growing. The article presents the results of a study of the effect of a new combination of taurine and zinc on the antitoxic function of the liver.

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Amonova , Z. (2024). STUDY OF THE EFFECT OF TAURINE AND ZINCUM COMBINATION DRUG ON SLEEP DURATION IN MODELS OF ACUTE TOXIC HEPATITIS. Евразийский журнал медицинских и естественных наук, 4(12 Part 2), 74–76. извлечено от https://in-academy.uz/index.php/EJMNS/article/view/47000

Библиографические ссылки:

Vafai SB, Mootha VK. Mitochondrial disorders as windows into an ancient organelle. Nature. 2012 Nov 15;491(7424):374-83. doi: 10.1038/nature11707. PMID: 23151580.

Shetewy A, Shimada-Takaura K, Warner D, Jong CJ, Mehdi AB, Alexeyev M, Takahashi K, Schaffer SW. Mitochondrial defects associated with β-alanine toxicity: relevance to hyper-beta-alaninemia. Mol Cell Biochem. 2016 May;416(1-2):11-22. doi: 10.1007/s11010-016-2688-z. Epub 2016 Mar 29. PMID: 27023909; PMCID: PMC5097872.

Чуракаев М. В. Влияние таурина в комплексной терапии экземы на клинические и электромиографические показатели больных //Ульяновский медико-биологический журнал. – 2016. – №. 2. – С. 78-84.

Lin CJ, Chiu CC, Chen YC, Chen ML, Hsu TC, Tzang BS. Taurine Attenuates Hepatic Inflammation in Chronic Alcohol-Fed Rats Through Inhibition of TLR4/MyD88 Signaling. J Med Food. 2015 Dec;18(12):1291-8. doi: 10.1089/jmf.2014.3408. Epub 2015 Jun 19. PMID: 26090712; PMCID: PMC4685501.

Ullah M. I. et al. Biological role of zinc in liver cirrhosis: an updated review //Biomedicines. – 2023. – Т. 11. – №. 4. – С. 1094.

Millward D. J. Nutrition, infection and stunting: the roles of deficiencies of individual nutrients and foods, and of inflammation, as determinants of reduced linear growth of children //Nutrition research reviews. – 2017. – Т. 30. – №. 1. – С. 50-72..

Wessels I, Maywald M, Rink L. Zinc as a Gatekeeper of Immune Function. Nutrients. 2017 Nov 25;9(12):1286. doi: 10.3390/nu9121286. PMID: 29186856; PMCID: PMC5748737.

Kermani A. et al. Effect of zinc on the growth of two pistachio (Pistacia vera L.) rootstocks under drought stress //Journal of Nuts. – 2022. – Т. 13. – №. 3. – С. 167-181.

Faizan M. et al. Zinc oxide nanoparticles (ZnO-NPs) induce salt tolerance by improving the antioxidant system and photosynthetic machinery in tomato //Plant Physiology and Biochemistry. – 2021. – Т. 161. – С. 122-130.

Pei X. et al. Lethality of zinc oxide nanoparticles surpasses conventional zinc oxide via oxidative stress, mitochondrial damage and calcium overload: A comparative hepatotoxicity study //International Journal of Molecular Sciences. – 2022. – Т. 23. – №. 12. – С. 6724.

Perez de la Lastra J. M. et al. Impact of zinc, glutathione, and polyphenols as antioxidants in the immune response against SARS-CoV-2 //Processes. – 2021. – Т. 9. – №. 3. – С. 506.

Zhang Q. et al. Zinc deficiency aggravates oxidative stress leading to inflammation and fibrosis in lung of mice //Biological Trace Element Research. – 2022. – Т. 200. – №. 9. – С. 4045-4057.