EFFECT OF THE COMPLEX PROBIOTIC ON LIPID METABOLISM AND OXIDATIVE STRESS AFTER POISONING WITH NICKEL AGAINST THE BACKGROUND OF EXPERIMENTAL ATHEROSCLEROSIS
Experemental medicine

EFFECT OF THE COMPLEX PROBIOTIC ON LIPID METABOLISM AND OXIDATIVE STRESS AFTER POISONING WITH NICKEL AGAINST THE BACKGROUND OF EXPERIMENTAL ATHEROSCLEROSIS

Published 2025-03-12

Authors:

R.I. Ibragimov

Abstract:
The work studied the effect of the complex probiotic on the state of lipid metabolism and oxidative stress in white male rats after poisoning with nickel nitrate against the background of experimental atherosclerosis. After modeling atherosclerosis, rats were exposed to nickel nitrate for 30 days. In the experimental group, a month after poisoning, the animals received the complex probiotic, which was added to the drinking water of the drinkers for a month. It was found that when male rats were chronically poisoned with nickel nitrate after modeling atherosclerosis, there was a progressive increase in lipid metabolism disorders and oxidative stress processes. The use of a complex probiotic after poisoning with nickel nitrate improved lipid metabolism and oxidative stress. The obtained data show the important practical significance of probiotics in the treatment of nickel poisoning, especially in patients with atherosclerotic vascular damage.
Keywords:
atherosclerosis lipid metabolism oxidative stress nickel complex probiotic
References:
  1. Barregard L, Sallsten G, Harari F, Andersson EM, Forsgard N, Hjelmgren O et al. Cadmium Exposure and Coronary Artery Atherosclerosis: A Cross-Sectional Population-Based Study of Swedish Middle-Aged Adults. Environ Health Perspect. 2021;129(6):67007. doi: 10.1289/EHP8523.
  2. Barrington WT, Lusis AJ. Atherosclerosis: Association between the gut microbiome and atherosclerosis. Nat Rev Cardiol. 2017;14(12):699-700. doi: 10.1038/nrcardio.2017.169.
  3. Bhattacharya S. An Insight into the Salutary Prospect of the Probiotic Microorganisms for the Remediation of Mercury Toxicity. J Environ Pathol Toxicol Oncol. 2023; 42(3):83-90. doi: 10.1615/JEnvironPatholToxicolOncol.2023047451.
  4. Bo TB, Wen J, Zhao YC, Tian SJ, Zhang XY, Wang DH. Bifidobacterium pseudolongum reduces triglycerides by modulating gut microbiota in mice fed high-fat food. J Steroid Biochem Mol Biol. 2020;198:105602. doi: 10.1016/j.jsbmb.2020.105602.
  5. Briffa J, Sinagra E, Blundell R. Heavy metal pollution in the environment and their toxicological effects on humans. Heliyon. 2020,8;6(9):e04691. doi: 10.1016/j.heliyon.2020.e04691.
  6. Genchi G, Carocci A, Lauria G, Sinicropi MS, Catalano A. Nickel: Human Health and Environmental Toxicology. Int J Environ Res Public Health. 2020;21;17(3):679. doi: 10.3390/ijerph17030679.
  7. Hu T, Song J, Zeng W, Li J, Wang H, Zhang Y, et al. Lactobacillus plantarum LP33 attenuates Pb-induced hepatic injury in rats by reducing oxidative stress and inflammation and promoting Pb excretion. Food Chem Toxicol. 2020;143:111533. doi: 10.1016/j.fct.2020.111533.
  8. Lamas GA, Anstrom KJ, Navas-Acien A, Boineau R, Nemeth H, Huang Z, et al. TACT2 Investigators. Edetate Disodium-Based Chelation for Patients with a Previous Myocardial Infarction and Diabetes: TACT2 Randomized Clinical Trial. JAMA. 2024;10;332(10):794-803. doi: 10.1001/jama.2024.11463.
  9. Liu S, Deng X, Li Z, Zhou W, Wang G, Zhan J, et al. Environmental cadmium exposure alters the internal microbiota and metabolome of Sprague-Dawley rats. Front Vet Sci. 2023; 26;10:1219729. doi: 10.3389/fvets.2023.1219729.
  10. Svoboda N, Kočí K, Seidlová A, Mandys V, Suttnar J, Hlaváčková A, et al. Oxidative Stress as a Reliable Biomarker of Carotid Plaque Instability: A Pilot Study. Antioxidants (Basel). 2023;17;12(2):506. doi: 10.3390/antiox12020506.
  11. Wan Ahmad WA, Rosman A, Bavanandan S, Mohamed M, Kader MASA, Muthusamy TS et al. Current Insights on Dyslipidaemia Management for Prevention of Atherosclerotic Cardiovascular Disease: A Malaysian Perspective. Malays J Med Sci. 2023;30(1):67-81. doi: 10.21315/mjms2023.30.1.6.
  12. Wang Y, Wu Y, Wang Y, Xu H, Mei X, Yu D, et al. Antioxidant Properties of Probiotic Bacteria. Nutrients. 2017;19;9(5):521. doi: 10.3390/nu9050521.
  13. Zhai T, Wang P, Hu X, Zheng L. Probiotics Bring New Hope for Atherosclerosis Prevention and Treatment. Oxid Med Cell Longev. 2022;24;2022:3900835. doi: 10.1155/2022/3900835.
Publication:
«World of Medicine and Biology» Vol. 21 No. 91 (2025) , с. 172-176
УДК 577.1