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Carcinogenesis of β-Propiolactone: A Computational Study.

Eva ŠpaningerUrban Bren
Published in: Chemical research in toxicology (2020)
The discovery that β-propiolactone (BPL), once a commercially important chemical, causes various tumors in experimental animals has led to a significant decrease in its use. However, owing to its efficacy this possible human carcinogen remains to be utilized in vaccines for inactivation of viruses. The focus of the current study was to uncover the mechanisms of β-propiolactone reactions with both nucleobases and glutathione (GSH) through computer simulations based on quantum chemical methods. Our results, in accordance with in vitro studies, show that among all nucleobases guanine most readily forms adducts with BPL through SN2 reaction mechanism. Acquired activation energies with incorporated solvent effects reveal that alkylation represents an energetically more favorable reaction than acylation for all nucleobases. Comparison of activation free energies of glutathione and guanine reactions with BPL suggest that glutathione may represent an efficient natural scavenger of BPL. Therefore, glutathione present in the organism may provide protection to the DNA and thus prevent BPL's genotoxicity, mutagenicity, and possibly even carcinogenicity.
Keyphrases
  • molecular dynamics
  • density functional theory
  • endothelial cells
  • deep learning
  • ionic liquid
  • gene expression
  • machine learning
  • induced pluripotent stem cells
  • monte carlo
  • fluorescent probe
  • quantum dots