Isothermal microcalorimetry (IMC) calscreener: automated peculiarities of antimicrobial therapy and metabolism depth of multidrug resistant bacteria

  • Bayode M
  • Alabi M
  • Babatunde O
  • et al.
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Abstract

The global development of innovative antimicrobial drugs and drug design techniques has been necessitated by the persistent increase of multidrug resistant infections. Regardless of advances in technology for detecting pathogenic bacteria and their resistance genes (DNA-based assays), most bacteriological studies of infections still use conventional cultural techniques and susceptibility testing as reference standards. Commonly used conventional assays such as the disc diffusion test and broth micro-dilution have been effective in defining pathogen susceptibility and determining the minimum inhibitory concentration of antimicrobial agents. However, they are still prone to error and time consuming, hence, not sufficient in the face of the urgent need for answers to sporadic worldwide disease maladies.

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Bayode, M. T., Alabi, M. A., Babatunde, O. J., Sadibo, M. E., Lawani, B. T., Okiti, A. F., … Lawrence, D. I. (2022). Isothermal microcalorimetry (IMC) calscreener: automated peculiarities of antimicrobial therapy and metabolism depth of multidrug resistant bacteria. Bulletin of the National Research Centre, 46(1). https://doi.org/10.1186/s42269-022-00841-w

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