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Effect of transport at ambient temperature on detection and isolation of Vibrio cholerae from environmental samples. | LitMetric

AI Article Synopsis

  • Prolonged holding of environmental samples at ambient temperatures (31-35 degrees C) for 20 hours improved the recovery and detection of Vibrio cholerae, contrary to previous assumptions about its negative impact.
  • Measurements like culture counts and PCR analyses indicated significant increases in culturable V. cholerae compared to samples processed within 1 hour.
  • This finding suggests that transporting samples at these temperatures can enhance the detection of toxigenic V. cholerae in freshwater ecosystems, impacting pathogen tracking in aquatic environments.

Article Abstract

It has long been assumed that prolonged holding of environmental samples at the ambient air temperature prior to bacteriological analysis is detrimental to isolation and detection of Vibrio cholerae, the causative agent of pandemic cholera. The present study was aimed at understanding the effect of transporting environmental samples at the ambient air temperature on isolation and enumeration of V. cholerae. For water and plankton samples held at ambient temperatures ranging from 31 degrees C to 35 degrees C for 20 h, the total counts did not increase significantly but the number of culturable V. cholerae increased significantly compared to samples processed within 1 h of collection, as measured by culture, acridine orange direct count, direct fluorescent-antibody-direct viable count (DFA-DVC), and multiplex PCR analyses. For total coliform counts, total bacterial counts, and DFA-DVC counts, the numbers did not increase significantly, but the culturable plate counts for V. cholerae increased significantly after samples were held at the ambient temperature during transport to the laboratory for analysis. An increase in the recovery of V. cholerae O1 and improved detection of V. cholerae O1 rfb and ctxA also occurred when samples were enriched after they were kept for 20 h at the ambient temperature during transport. Improved detection and isolation of toxigenic V. cholerae from freshwater ecosystems can be achieved by holding samples at the ambient temperature, an observation that has significant implications for tracking this pathogen in diverse aquatic environments.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1393186PMC
http://dx.doi.org/10.1128/AEM.72.3.2185-2190.2006DOI Listing

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