4.7 Article

Toxicological impacts of nanopolystyrene on zebrafish oocyte with insight into the mechanism of action: An expression-based analysis

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 830, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.scitotenv.2022.154796

Keywords

Nanopolystyrene; Oxidative-stress; Gene expression; Zebrafish; Oocyte; Immunotoxicity; Apoptosis

Funding

  1. Govt. of West Bengal for providing the Swami Vivekananda Merit Cum Means Scholarship
  2. DST-SERB, Govt. of India [EEQ/2018/000275]
  3. DBT-BUILDER [BT/INF/22/SP45088/2022]
  4. DSTFIST, Govt. of India [SR/FST/LSI-560/2013(C)]

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This study investigated the toxicity of nanopolystyrene on zebrafish oocyte and found that it induced oxidative stress and impaired reproductive functions.
Many studies have investigated the negative impacts of microplastics on teleost fishes with very little or no evidence of their mechanism of action. This scenario entreats us to investigate the toxicities of nanopolystyrene in zebrafish oocyte with emphasis on the mechanism of action. In the present study, the cellular levels of mRNA transcripts of different genetic markers (such as: sod, gpx, nrf2, inos, ucp2, and atp6 (redox-sensitive markers); nfk beta, tnf alpha, il-10, ik beta, gdf9, and bmp15 (immune markers); gadd45, rad51, p53 and bcl2 (DNA damage and apoptotic)) have been quantified by real-time PCR after 6 h of incubation of isolated oocyte with different doses of nanopolystyrene viz. P0 (control i.e. no polystyrene in culture medium), P1 (100 ng/ml), and P2 (400 ng/ml). Results showed that both the treatment concentrations of nanopolystyrene induce oxidative stress with % DPPH = 30.75, 31.61, and 32.43% for P0, P1, and P2, respectively. Increase in oxidative stress in oocytes with increasing doses of nanopolystyrene was also observed in TBARS assay with MDA content 0.12 and 0.21 mu M for P1 and P2, respectively as compaired to the control 0.08 mu M. This increased oxidative stress can regulate the expression pattern (upregulation/downregulation) of selected genes leading to different toxic effects like - oxidative stress, immunotoxicity, and apoptosis in oocytes, which suggests the impairment of reproductive functions by nanopolystyrene.

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