Journal of Cytology (Jan 2024)

Exploratory study on micronuclei and metanuclear abnormalities in exfoliated buccal cells of COVID-19 suspected patients

  • B Vishnu,
  • Senthil Murugan,
  • Vinoth K Kalidoss,
  • Kishore Sesham,
  • Sarah Ramamurthy,
  • Satvinder S Bakshi,
  • Yuvaraj M Francis,
  • Sankaran Ponnusamy Kasirajan

DOI
https://doi.org/10.4103/joc.joc_53_23
Journal volume & issue
Vol. 41, no. 1
pp. 28 – 33

Abstract

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Context: SARS-CoV-2 virus causes COVID-19 by infecting nasal and oral cavities primarily by attaching its spike proteins to ACE 2 receptors expressed in epithelial cells. Aim: This study was done to evaluate the micronucleated cell count, metanuclear abnormalities, and genotoxic factor in exfoliated buccal mucosal cell among the COVID-19 suspected patients. Settings and Design: This cross-sectional study was conducted at AIIMS, Mangalagiri, between August and October 2022. Methods: One hundred COVID-19 suspected patients were recruited for this study after obtaining informed and written consent; buccal smear was obtained and stained for papanicolaou test (PAP). The PAP-stained slides were analyzed for micronuclei (MN), pyknotic, karyolytic, and karyorrhexic cell count, respectively. Based on their reverse transcription-polymerase chain reaction (RT-PCR) report, the patients were grouped into COVID-19 positive and negative groups. Statistical Analysis: The genotoxicity factor was calculated using the micronucleated cell count from both the groups using mean and standard deviation. Results: The MN, micronucleated cell, pyknotic, karyolitic, and karyorrhexic cell count in COVID-19 positive patients were 24.12, 15.24, 3.08, 2.88 and 4.40, respectively, than COVID-19 negative patients 5.69, 8.17, 1.08, 1.00 and 2.43, respectively. The genotoxicity factor for SARS-CoV-2 was 2.68 which is a positive genotoxic effect on buccal mucosal cells. Conclusion: SARS-CoV-2 increases the expression of micronucleated cells, pyknotic cells, karyolytic cells, and karyorhexic cells and concludes SARS-CoV-2 is having cytogenotoxic effect on the buccal mucosal cells. This can be used as a reliable marker in identifying the early carcinogenic effects of virus causing COVID-19.

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