Freezing of sheep faeces invalidates Haemonchus contortus faecal egg counts by the McMaster technique

J A Van Wyk1, Laetitia Van Wyk

  • 1Department of Veterinary Tropical Diseases, Faculty of Veterinary Science, University of Pretoria, Private Bag X04, Onderstepoort, 0110 South Africa. janvwyk@op.up.ac.za

Insights

Freezing Haemonchus contortus eggs in sheep faeces significantly reduces egg counts, damaging egg shells. Refrigeration at 4°C for short-term preservation is viable, but cryopreserved samples may yield inaccurate nematode egg counts.

Area of Science:

  • Veterinary Parasitology
  • Diagnostic Helminthology

Background:

  • Accurate fecal worm egg counts (FEC) are crucial for diagnosing parasitic infections in livestock.
  • Haemonchus contortus is a significant gastrointestinal nematode affecting sheep globally.
  • Standardization of sample handling and storage is essential for reliable FEC results.

Purpose of the Study:

  • To evaluate the impact of different short-term storage temperatures on the viability and count of Haemonchus contortus eggs in sheep faeces.
  • To determine the suitability of refrigeration and freezing for preserving faecal samples for accurate FEC.

Main Methods:

  • Faecal pellets from a sheep infected with Haemonchus contortus were collected.
  • Aliquots were stored at 4°C, -10°C, or -170°C for varying durations (2 hours to 7 days).
  • Faecal worm egg counts (FEC) were performed using the McMaster technique before and after storage.

Main Results:

  • Freezing at -170°C and -10°C (7 days) caused a dramatic reduction in H. contortus egg numbers.
  • Microscopic examination revealed damaged and empty egg shells in frozen samples.
  • Storage at 4°C for 7 days showed no significant reduction in egg counts compared to day 0.

Conclusions:

  • Cryopreservation (freezing) of faeces significantly damages Haemonchus contortus eggs, leading to inaccurate FEC.
  • Refrigeration at 4°C is a suitable method for short-term preservation of faecal samples for FEC.
  • Caution is advised when interpreting FEC from cryopreserved samples for most nematode genera, with exceptions for more robust ova like Ascarids and Trichuris spp.

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