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Published on: October 18, 2019
Evaluation of CP Chromo Select Agar for the enumeration of Clostridium perfringens from water
Mammad Manafi1, Kerstin Waldherr, Michael Kundi
1The Institute for Hygiene and Applied Immunology, Medical University of Vienna, Austria.
Abstract:
The European Directive on drinking water quality has included mCP agar as the reference method for recovering Clostridium perfringens from drinking waters. In the present study, three media (mCP, TSCF and CP Chromo Select Agar) were evaluated for recovery of C. perfringens in different surface water samples. Out of 139 water samples, using a membrane filtration technique, 131 samples (94.2%) were found to be presumptively positive for C. perfringens in at least one of the culture media. Green colored colonies on CP Chromo Select Agar (CCP agar) were counted as presumptive C. perfringens isolates. Out of 483 green colonies on CCP agar, 96.3% (465 strains, indole negative) were identified as C. perfringens, and 15 strains (3.1%) were indole positive and were identified as Clostridium sordellii, Clostridium bifermentans or Clostridium tetani. Only 3 strains (0.6%) gave false positive results and were identified as Clostridium fallax, Clostridium botulinum, and Clostridium tertium. Variance analysis of the data obtained shows statistically no significant differences in the counts obtained between media employed in this work. The mCP method is very onerous for routine screening and bacterial colonies could not be used for further biochemical testing. The colonies on CCP and TSCF were easy to count and subculture for confirmation tests. TSCF detects sulfite-reducing clostridia, including species other than C. perfringens, and in some cases excessive blackening of the agar frustrated counting of the colonies. If the contamination was too high, TSCF did not consistently produce black colonies and as a consequence, the colonies were white and gave false negative results. On the other hand, the identification of typical and atypical colonies isolated from all media demonstrated that CCP agar was the most useful medium for C. perfringens recovery in water samples.
Insights
CP Chromo Select Agar (CCP agar) is the most effective medium for detecting Clostridium perfringens in surface water. This method offers superior recovery and easier colony identification compared to mCP and TSCF media.
Area of Science:
- Microbiology
- Environmental Science
- Water Quality Analysis
Background:
- The European Directive mandates mCP agar for Clostridium perfringens detection in drinking water.
- Assessing alternative media for C. perfringens recovery in surface water is crucial for effective monitoring.
Purpose of the Study:
- To evaluate the efficacy of three culture media (mCP, TSCF, and CP Chromo Select Agar) for recovering C. perfringens from surface water samples.
- To compare the performance of these media in terms of colony identification and suitability for routine screening.
Main Methods:
- A membrane filtration technique was employed to analyze 139 surface water samples.
- Three different culture media, including mCP agar, TSCF agar, and CP Chromo Select Agar (CCP agar), were used for bacterial recovery.
- Presumptive C. perfringens colonies were identified through indole testing and further biochemical analysis.
Main Results:
- Out of 139 samples, 131 (94.2%) tested presumptively positive for C. perfringens across the tested media.
- CCP agar demonstrated high accuracy, with 96.3% of green colonies confirmed as C. perfringens (indole negative).
- While statistically no significant differences in counts were found between media, mCP agar proved difficult for routine use, and TSCF agar presented challenges with colony counting and false negatives.
Conclusions:
- CP Chromo Select Agar (CCP agar) is the most suitable medium for C. perfringens recovery from water samples due to its ease of use and accurate identification.
- The mCP method is considered too onerous for routine screening, and TSCF agar has limitations regarding colony visibility and false negatives.
- CCP agar offers a reliable and practical alternative for monitoring C. perfringens in environmental water sources.
