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Original Article

Toxic effect of carpet dust on the biochemical indices and histological structure of the lung in rats: the potential role of cytochrome P450 2E1 and extracellular signal-regulated kinase/mitogen-activated protein kinase pathways

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Pages 289-301 | Received 16 Nov 2022, Accepted 30 Dec 2022, Published online: 12 Jan 2023

References

  • Albrecht, C., et al., 2001. Clara-cell hyperplasia after quartz and coal-dust instillation in rat lung. Inhalation toxicology, 13 (3), 191–205.
  • Ameen, M., et al., 2002. Pulmonary toxicity of dust generated during weaving of carpets. Human & experimental toxicology, 21 (12), 667–674.
  • Ameen, M., et al., 2003a. Differential responses of rat alveolar macrophages to carpet dust in vitro. Human & experimental toxicology, 22 (5), 263–270.
  • Ameen, M., et al., 2003b. Alteration in cellular and biochemical markers of pulmonary toxicity in rat lung exposed to carpet dusts. Inhalation toxicology, 15 (11), 1119–1131.
  • Ameen, M., et al., 2004. Cytotoxic effect and role of exogenous antioxidants in carpet dust mediated toxicity in rat hepatocytes in vitro. Toxicology in vitro: an international journal published in association with BIBRA, 18 (4), 419–425.
  • Basha, M., et al., 2020. Soluplus® based solid dispersion as fast disintegrating tablets: a combined experimental approach for enhancing the dissolution and antiulcer efficacy of famotidine. Drug development and industrial pharmacy, 46 (2), 253–263.
  • Bedford, J., et al., 2020. COVID-19: towards control‑ling of a pandemic. The lancet, 395 (10229), 1015–1018.
  • Ben-Neriah, Y., and Karin, M., 2011. Inflammation meets cancer, with NF-kappaB as the matchmaker. Nature immunology, 12 (8), 715–723.
  • Domej, W., et al., 2014. Oxidative stress and free radicals in COPD–implications and relevance for treatment. International journal of chronic obstructive pulmonary disease, 9, 1207–1224.
  • Duan, W., et al., 2004. Anti-inflammatory effects of mitogen-activated protein kinase kinase inhibitor U0126 in an Asthma Mouse Model. Journal of immunology (Baltimore, MD: 1950), 172 (11), 7053–7059.
  • Eblen, S.T., 2018. Extracellular-regulated kinases: Signaling from Ras to ERK substrates to control biological outcomes. Advances in cancer research, 138, 99–142. View Article: Google Scholar: PubMed/NCBI
  • El-Agamy, D.S., et al., 2014. Agmatine attenuates silica-induced pulmonary fibrosis. Human & experimental toxicology, 33 (6), 650–660.
  • El-Baz, F.K., et al., 2021. Haematococcus pluvialis carotenoids enrich fractions ameliorate liver fibrosis induced by thioacetamide in rats: modulation of metalloproteinase and its inhibitor. BioMed research international, 2021, 6631415.
  • El-Kashef, D.H., 2018. Nicorandil ameliorates pulmonary inflammation and fibrosis in a rat model of silicosis. International immunopharmacology, 64, 289–297.
  • Ellman, G.L., 1959. Tissue sulfhydryl groups. Archives of biochemistry and biophysics, 82 (1), 70–77.
  • Frey, A., et al., 2020. More than just a barrier: the immune functions of the airway epithelium in asthma pathogenesis. Frontiers in immunology, 11 (761), 761–768.
  • Gerald, C.L., et al., 2019. Sorrel extract reduces oxidant production in airway epithelial cells exposed to swine barn dust extract in vitro. Mediators of inflammation, 2019, 7420468.
  • Ghanayem, B.I., et al., 2000. Using cytochrome P450 gene knock-out mice to study chemical metabolism, toxicity, and carcinogenicity. Toxicologic pathology, 28 (6), 839–850.
  • Guo, Y., et al., 2020. ERK/MAPK signalling pathway and tumorigenesis (Review). Experimental and therapeutic medicine, 19 (3), 1997–2007.
  • Hukkanen, J., et al., 2001. Expression of xenobiotic-metabolizing enzymes in human pulmonary tissue: possible role in susceptibility for ILD. European respiratory journal, 18 (Suppl. 32), 122s–126s.
  • Kilburn, K., 1983. Recommended health-based occupational exposure limits for selected vegetable dusts. World health organization technical report series, 684, 1–78.
  • Lai, P.S., and Christiani, D.C., 2013. Long-term respiratory health effects in textile workers. Current opinion in pulmonary medicine, 19, 152–157.
  • Lawrence, T., 2009. The nuclear factor NF-kappaB pathway in inflammation. Cold spring harbor perspectives in biology, 1 (6), a001651.
  • Miranda, K.M., et al., 2001. A rapid, simple spectrophotometric method for simultaneous detection of nitrate and nitrite. Nitric oxide: biology and chemistry, 5 (1), 62–71.
  • Nair, R. P., 2004. The Kerala Construction Labour Welfare Fund. Geneva, Switzerland: International Labour Organization Office.
  • Neeraj, G., et al., 2021. Impact of COVID-19 on (Non-COVID) chronic respiratory disease outcome survey in India (CCROS study). Lung India, 38 (5), 454–459.
  • Nelson, D.R., et al., 1996. P450 superfamily: update on new sequences, gene mapping, accession numbers and nomenclature. Pharmacogenetics, 6 (1), 1–42.
  • Nemery, B., et al., 2001. Interstitial lung disease induced by exogenous agents: factors governing susceptibility. European respiratory journal, 18 (Suppl. 32), 30s–42s.
  • Oh, T.K., and Song, I., 2021. Impact of coronavirus disease-2019 on chronic respiratory disease in South Korea: an NHIS COVID-19 database cohort study. BMC pulmonary medicine, 21 (1), 12.
  • Park, H.S., et al., 2009. Impact of oxidative stress on lung diseases. Respirology (Carlton, Vic.), 14 (1), 27–38.
  • Rao, N.M., et al., 1992. Pulmonary function studies in 15 to 18 years age workers exposed to dust in industry. Indian journal of physiology and pharmacology, 36 (1), 51–54.
  • Salmani Nodoushan, M., et al., 2014. Evaluation of respiratory system in textile-dyeing workers. Medical journal of the islamic republic of Iran, 28, 88.
  • Sheller, J.R., et al., 2009. NF-kB induction in airway epithelium increases lung inflammation in allergen challenged mice. Experimental lung research, 35 (10), 883–895.
  • Thimmulappa, R. K., et al., 2020. Oxidative stress mechanisms in the pathogenesis of environmental lung diseases. In: Oxidative stress in lung diseases. Singapore: Springer, 103–137.
  • Uchiyama, M., and Mihara, M., 1978. Determination of malonaldehyde precursor in tissues by thiobarbituric acid test. Analytical biochemistry, 86 (1), 271–278.
  • Wang, H., et al., 2002. Effect of methacrylonitrile on cytochrome P-450 2E1 (CYP2E1) Expression in male F344 rats. Journal of toxicology and environmental health. Part A, 65 (7), 523–537.
  • Wang, J., et al., 2017. Urban particulate matter triggers lung inflammation via the ROS-MAPK-NF-κB signaling pathway. Journal of thoracic disease, 9 (11), 4398–4412.
  • Zerilli, A., et al., 1995. Cytochrome p-450 2E1 in rat liver, kidney and lung microsomes after chronic administration of ethanol either orally or by inhalation. Alcohol and alcoholism (Oxford, Oxfordshire), 30 (3), 357–365.

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