AI Article Synopsis

  • Caseous lymphadenitis, caused by Corynebacterium pseudotuberculosis, primarily affects small ruminants and has limited zoonotic potential, making treatment options limited and often ineffective due to complications.
  • Researchers tested the antibacterial effects of 2',3'-dideoxiadenosine (ddATP) on C. pseudotuberculosis, determining its minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) which showed some effectiveness, particularly with the ATCC® 19,410 strain.
  • The study suggests that combining ddATP with penicillin may offer a new treatment strategy for infections caused by C. pseudotuberculosis, providing insights into alternative therapeutic approaches.

Article Abstract

Caseous lymphadenitis is a well-known disease caused by Corynebacterium pseudotuberculosis affecting small ruminants with small significance to human health because of its minor zoonotic potential. In both cases, few treatment options are available and conventional antimicrobial therapy is commonly refractory due to development of pyogranulomatous reactions, bringing great interest in discovering novel therapeutics for more suitable approaches. Dideoxynucleotides presented antibacterial action against various bacteria but were never described for C. pseudotuberculosis. Hypothesizing the antimicrobial action of 2',3'-dideoxiadenosine (ddATP) against C. pseudotuberculosis, we performed for the first time an investigation of its minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) in the ATCC® 19,410 strain and a well-characterized clinical isolate of C. pseudotuberculosis. We also assessed potential synergism with penicillin. ddATP showed a growth delay effect for C. pseudotuberculosis at 2 µmol/mL and a MIC and MBC of 4 µmol/mL against the ATCC® 19,410 strain, but not for the clinical strain. An antimicrobial effect was observed when using concentrations lower than the MIC of ddATP associated with penicillin for both strains tested. Our data suggest the potential of nucleotide analogs, especially adenosine, and its combination with penicillin, as a possible novel treatment for C. pseudotuberculosis-induced infections, and contributes with knowledge regarding alternative drugs to treat C. pseudotuberculosis infections.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9944597PMC
http://dx.doi.org/10.1007/s42770-022-00885-0DOI Listing

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