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Microplastics (MPs) pose a growing environmental and health threat. Polyethylene (PE), a common plastic, is increasingly accumulating in the environment and organisms, raising concerns about its potential impact on human health. This study investigated PE-MPs’ impact on biochemical and molecular markers in adult male albino mice. Three groups of mice were utilized: one group received distilled water as a control. In contrast, the other groups were administered oral gavage treatments of PE-MPs at dosages of 1.3 mg/kg or 0.6 mg/kg every other day for 45 days. PE-MPs significantly increased malondialdehyde (MDA) levels with exposure time, especially at higher doses, inducing significant oxidative stress (P < 0.021) compared to the control group. Glutathione peroxidase (GPx) levels increased with exposure time (P < 0.0393), especially at lower doses. thus adversely affecting oxidants/antioxidants balance. Moreover, PE-MPs increased T3 and TSH levels significantly elevated in the high-dose group (G1, 1.3 mg/kg) compared to both the low-dose group (G2, 0.6 mg/kg) and the control group. The comet assay confirmed the genotoxic effects on DNA, which were evident through increased DNA damage. This highlights the necessity for more research to examine the health risks associated with environmental microplastics. We can have concluded that, the toxicity of microplastics is dose-dependent, indicating that increased exposure leads to heightened harm.
Czasopismo
Rocznik
Tom
Strony
274--282
Opis fizyczny
Bibliogr. 36 poz., rys.
Twórcy
autor
- Department of Biology, College of Science, University of Baghdad, Baghdad, Iraq
autor
- Department of Biology, College of Science, University of Baghdad, Baghdad, Iraq
Bibliografia
- 1. Abdel-Zaher, S., Mohamed, M. S., & Sayed, A. E.-D. H. (2023). Hemotoxic effects of polyethylene microplastics on mice. Frontiers in Physiology, 14, 1072797. https://doi.org/10.3389/fphys.2023.1072797
- 2. Abdullah, M. M., & AL-Rubaii, B. A. L. (2024). Effect of Lactobacillus supernatant on swarming-related gene expression in Proteus mirabilis isolated from urinary tract infections. Ukrainian Journal of Nephrology and Dialysis, 4(84), 39-48. https://doi.org/10.31450/ukrjnd.4(84).2024.05
- 3. Ahmed, A. K., & Yenzeel, J. H. (2017). Determination of some oxidative stress parameters and antioxidants in sample of Iraqi beta thalassemia major patients. Iraqi Journal of Science, 1–3.
- 4. Alam, M. N., Bristi, N. J., & Rafiquzzaman, M. (2013). Review on in vivo and in vitro methods evaluation of antioxidant activity. Saudi Pharmaceutical Journal, 21(2), 143–152.
- 5. Ali, I., Cheng, Q., Ding, T., Yiguang, Q., Yuechao, Z., Sun, H., Peng, C., Naz, I., Li, J., & Liu, J. (2021). Micro-and nanoplastics in the environment: Occurrence, detection, characterization and toxicity–A critical review. Journal of Cleaner Production, 313, 127863. https://doi.org/10.1016/j.jclepro.2021.127863
- 6. Ballesteros, S., Domenech, J., Barguilla, I., Cortés, C., Marcos, R., & Hernández, A. (2020). Genotoxic and immunomodulatory effects in human white blood cells after ex vivo exposure to polystyrene nanoplastics. Environmental Science: Nano, 7(11), 3431–3446.
- 7. Buege, J., & SD, A. (1978). Microsomal lipid peroxidation methods,. Enzymol., 52, 302–310. In: ed.
- 8. Çobanoğlu, H., Belivermiş, M., Sıkdokur, E., Kılıç, Ö., & Çayır, A. (2021). Genotoxic and cytotoxic effects of polyethylene microplastics on human peripheral blood lymphocytes. Chemosphere, 272, 129805.
- 9. da Silva Brito, W. A., Mutter, F., Wende, K., Cecchini, A. L., Schmidt, A., & Bekeschus, S. (2022). Consequences of nano and microplastic exposure in rodent models: the known and unknown. Particle and Fibre Toxicology, 19(1), 28. https://doi.org/10.1186/s12989-022-00473-y
- 10. Deng, Y., Zhang, Y., Lemos, B., & Ren, H. (2017). Tissue accumulation of microplastics in mice and biomarker responses suggest widespread health risks of exposure. Scientific Reports, 7(1), 46687. https://doi.org/10.1038/srep46687
- 11. Djouina, M., Waxin, C., Dubuquoy, L., Launay, D., Vignal, C., & Body-Malapel, M. (2023). Oral exposure to polyethylene microplastics induces inflammatory and metabolic changes and promotes fibrosis in mouse liver. Ecotoxicology and Environmental Safety, 264, 115417.
- 12. Falah, Z., & Rabee, A. M. (2022). The effects of combined toxicity of silver and silicon nanoparticles on hematological and biochemical parameters in male albino mice. Iraqi Journal of Science, 4195–4204.
- 13. Farag, A. A., Youssef, H. S., Sliem, R. E., El Gazzar, W. B., Nabil, N., Mokhtar, M. M., Marei, Y. M., Ismail, N. S., Radwaan, S. E., & Badr, A. M. (2023). Hematological consequences of polyethylene microplastics toxicity in male rats: Oxidative stress, genetic, and epigenetic links. Toxicology, 492, 153545. https://doi.org/10.1016/j.tox.2023.153545
- 14. Gharb, L. A., Ismael, M. K., & Qaddoori, Y. B. (2024). Evaluation of the activity of olibanum oil as an immune booster in rats. Iraqi Journal of Science. https://doi.org/
- 15. Haindongo, N. N., Breen, C. J., & Neretin, L. (2023). Emerging contaminants related to plastic and microplastic pollution. In: Present Knowledge in Food Safety, Elsevier, 270–280.
- 16. Hu, M., & Palić, D. (2020). Micro-and nano-plastics activation of oxidative and inflammatory adverse outcome pathways. Redox Biology, 37, 101620.
- 17. Ibrahim, G. J., & Laftaah, B. A. (2024). The efficiency of certain amino acids in regulating chABCI gene expression in proteus mirabilis. Iraqi Journal of Science, 65(9), 4983-4992. https://doi.org/10.24996/ijs.2024.65.9.15
- 18. Ismael, M. K., Qaddoori, Y. B., Shaban, M. N., & Laftaah AL-Rubaii, B. A. (2023). The immunohistochemical staining of vimentin and E-cadherin in bladder cancer patients infected with hepatitis C virus. Journal of Pure & Applied Microbiology, 17(2), 1009–1016. https://doi.org/10.22207/JPAM.17.2.30
- 19. Jaffer, N. S., & Rabee, A. M. (2024). Combined effects of cypermethrin and lead on biochemical and molecular parameters in albino mice. Iraqi Journal of Science, 4912–4920. https://doi.org/10.24996/ijs.2024.65.9.8
- 20. Jin, H., Ma, T., Sha, X., Liu, Z., Zhou, Y., Meng, X., Chen, Y., Han, X., & Ding, J. (2021). Polystyrene microplastics induced male reproductive toxicity in mice. Journal of Hazardous Materials, 401, 123430. https://doi.org/10.1016/j.jhazmat.2020.123430
- 21. Kim, J.-H., Yu, Y.-B., & Choi, J.-H. (2021). Toxic effects on bioaccumulation, hematological parameters, oxidative stress, immune responses and neurotoxicity in fish exposed to microplastics: A review. Journal of Hazardous Materials, 413, 125423. https://doi.org/10.1016/j.jhazmat.2021.125423
- 22. Li, Z., Chang, X., Hu, M., Fang, J. K.-H., Sokolova, I. M., Huang, W., Xu, E. G., & Wang, Y. (2022). Is microplastic an oxidative stressor? Evidence from a meta-analysis on bivalves. Journal of Hazardous Materials, 423, 127211.
- 23. Liu, L., Xu, K., Zhang, B., Ye, Y., Zhang, Q., & Jiang, W. (2021). Cellular internalization and release of polystyrene microplastics and nanoplastics. Science of the Total Environment, 779, 146523.
- 24. Llorca, M., & Farré, M. (2021). Current insights into potential effects of micro-nanoplastics on human health by in-vitro tests. Frontiers in Toxicology, 3, 752140. https://doi.org/10.3389/ftox.2021.752140
- 25. Malinowska, K., Bukowska, B., Piwoński, I., Foksiński, M., Kisielewska, A., Zarakowska, E., Gackowski, D., & Sicińska, P. (2022). Polystyrene nanoparticles: the mechanism of their genotoxicity in human peripheral blood mononuclear cells. Nanotoxicology, 16(6–8), 791–811. https://doi.org/10.1080/17435390.2022.2149360
- 26. Pagano, M., Gauvreau, K., & Mattie, H. (2022). Principles of biostatistics. Chapman and Hall/CRC. https://doi.org/10.1201/9780429340512
- 27. Pathak, D. (2025). Enemies of the hormones: microplastics and endocrine disruptors impacting public health. Health and Climate Change, Elsevier, 119–150.
- 28. Roursgaard, M., Hezareh Rothmann, M., Schulte, J., Karadimou, I., Marinelli, E., & Møller, P. (2022). Genotoxicity of particles from grinded plastic items in Caco-2 and HepG2 cells. Frontiers in Public Health, 10, 906430. https://doi.org/10.3389/fpubh.2022.906430
- 29. Salman, S. A., & AL-Jumaily, R. M. K. (2024). Evaluation of Some Immunological and DNA Damage Parameters among Patients with Rheumatoid Arthritis. Iraqi Journal of Science. https://doi.org/0009-0001-0686-4825
- 30. Santacruz-Juárez, E., Buendia-Corona, R. E., Ramírez, R. E., & Sánchez, C. (2021). Fungal enzymes for the degradation of polyethylene: Molecular docking simulation and biodegradation pathway proposal. Journal of Hazardous Materials, 411, 125118. https://doi.org/10.1016/j.jhazmat.2021.125118
- 31. Sultan, R. S., Al Khayali, B. D. H., Abdulmajeed, G. M., & Al-Rubaii, B. A. L. (2023). Exploring small nucleolar RNA host gene 3 as a therapeutic target in breast cancer through metabolic reprogramming. Opera Medica et Physiologica, 10(4), 36-47. https://doi.org/10.24412/2500-2295-2023-4-36-47
- 32. Sun, A., & Wang, W.-X. (2023). Human exposure to microplastics and its associated health risks. Environment & Health, 1(3), 139–149. https://doi.org/10.1021/envhealth.3c00053
- 33. Sun, H., Chen, N., Yang, X., Xia, Y., & Wu, D. (2021). Effects induced by polyethylene microplastics oral exposure on colon mucin release, inflammation, gut microflora composition and metabolism in mice. Ecotoxicology and Environmental Safety, 220, 112340.
- 34. Tang, K. H. D., Li, R., Li, Z., & Wang, D. (2024). Health risk of human exposure to microplastics: a review. Environmental Chemistry Letters, 22(3), 1155–1183.
- 35. Wei, Y., Zhou, Y., Long, C., Wu, H., Hong, Y., Fu, Y., Wang, J., Wu, Y., Shen, L., & Wei, G. (2021). Polystyrene microplastics disrupt the blood-testis barrier integrity through ROS-Mediated imbalance of mTORC1 and mTORC2. Environmental Pollution, 289, 117904. https://doi.org/10.1016/j.envpol.2021.117904
- 36. Yao, Z., Seong, H. J., & Jang, Y.-S. (2022). Environmental toxicity and decomposition of polyethylene. Ecotoxicology and Environmental Safety, 242, 113933. https://doi.org/10.1016/j.ecoenv.2022.113933
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fa20a8c4-e14e-4ee4-8619-f1a88821b644
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