IAD Index of Academic Documents
  • Home Page
  • About
    • About Izmir Academy Association
    • About IAD Index
    • IAD Team
    • IAD Logos and Links
    • Policies
    • Contact
  • Submit A Journal
  • Submit A Conference
  • Submit Paper/Book
    • Submit a Preprint
    • Submit a Book
  • Contact
  • Celal Bayar Üniversitesi Fen Bilimleri Dergisi
  • Volume:19 Issue:2
  • Epigenetic alterations in mouse muscle cells after in vitro treatments with COVID-19 and influenza v...

Epigenetic alterations in mouse muscle cells after in vitro treatments with COVID-19 and influenza vaccines

Authors : Selcen ÇELİK UZUNER
Pages : 121-130
View : 41 | Download : 21
Publication Date : 2023-06-29
Article Type : Research Paper
Abstract :The importance of vaccination has come up again with a new form of coronavirus disease, COVID-19, which appeared in late 2019. This virus spread very fast around the globe, and it has numerous variants determined so far. Many studies focus on the effects of COVID-19 in humans and clinical-follow up after vaccination for the understanding whether the disease has been taken under control. Other studies mostly focus on omics analyses and molecular characteristics of COVID-19 itself. However, this is not clear whether COVID-19 vaccines induce epigenetic differences in the host tissues. This study aimed to reveal whether in vitro treatment of muscle cells with mRNA-based vaccine for COVID-19 and/or attenuated vaccines insert ignore into journalissuearticles values(whole virus attenuated for COVID-19 or split virion for quadrivalent influenza); can result in the changes in the global levels of DNA methylation insert ignore into journalissuearticles values(5meC); and/or DNA hydroxymethylation insert ignore into journalissuearticles values(5hmC);. DNA methylation and DNA hydroxymethylation were individually detected by immunofluorescence and global patterns of epigenetic marks were analysed by fluorescence microscopy in rat muscle cells after the incubation with vaccines for 24h or 48h. Results showed that each type of attenuated vaccine induced epigenetic changes by different patterns, but the mRNA-based vaccine affected both global levels of 5meC and 5hmC in a similar manner. Findings indicate that vaccines can affect epigenome. These preliminary results suggest that epigenetic profiles of specific genes across different human tissues after vaccination may add further information, therefore, reveal biological significance in detail.
Keywords : COVID 19, coronavirus, influenza, vaccine, epigenetics, DNA methylation, DNA hydroxymethylation

ORIGINAL ARTICLE URL

* There may have been changes in the journal, article,conference, book, preprint etc. informations. Therefore, it would be appropriate to follow the information on the official page of the source. The information here is shared for informational purposes. IAD is not responsible for incorrect or missing information.


Index of Academic Documents
İzmir Academy Association
CopyRight © 2023-2026