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. 2013 Dec 16;8(12):e82339.
doi: 10.1371/journal.pone.0082339. eCollection 2013.

Detrimental effect of water submersion of stools on development of Strongyloides stercoralis

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Detrimental effect of water submersion of stools on development of Strongyloides stercoralis

Witthaya Anamnart et al. PLoS One. .

Abstract

Strongyloidiasis is prevalent in Thailand, yet its prevalence in the south is lower than in other parts of the country. This might be due to the long rainy season in the south resulting in stool submersion in water inhibiting worm development. In this study, the effect of water submersion of fecal samples on development of Strongyloides stercoralis was investigated. Ten ml of a 1 ∶ 5 fecal suspension were placed in 15-ml tubes, 35-mm dishes, and 90-mm dishes producing the depths of 80 mm, 11 mm and 2 mm-suspensions, respectively. The worm development was followed at 1/6, 4, 6, 8, 10, 12, 14, 16, 24, and 36 h, by determining the number of filariform larva (FL) generated from agar-plate cultures (APC). Fecal suspensions kept in tubes and 35-mm dishes showed a decline in FL yield relative to incubation time and reached zero production 14 h after incubation. In contrast, the number of FL generated from the suspension kept in 90-mm dishes remained stable up to 36 h. Cumulatively, all tubes and 35-mm dishes became negative in APC after 14 h while 90-mm dishes remained APC-positive up to 36 h. Adding more water or stool suspension to dishes resulted in a decreased number of FL. Mechanical aeration of the suspensions in tubes restored an almost normal FL yield. It appears that the atmospheric air plays a significant role in growth and development of S. stercoralis in the environment and may be one of factors which contribute to a lower prevalence of human strongyloidiasis in the south of Thailand.

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Conflict of interest statement

Competing Interests: The authors have declared that no competing interests exist.

References

    1. Siddiqui AA, Berk SL (2001) Diagnosis of Strongyloides stercoralis infection. Clin Infect Dis 33: 1040–1047. - PubMed
    1. Nontasut P, Muennoo C, Sa-nguankiat S, Fongsri S, Vichit A (2005) Prevalence of strongyloides in Northern Thailand and treatment with ivermectin vs albendazole. Southeast Asian J Trop Med Public Health 36: 442–444. - PubMed
    1. Uparanukraw P, Phongsri S, Morakote N (1999) Fluctuations of larval excretion in Strongyloides stercoralis infection. Am J Trop Med Hyg 60: 967–973. - PubMed
    1. Jongsuksuntigul P, Intapan PM, Wongsaroj T, Nilpan S, Singthong S, et al. (2003) Prevalence of Strongyloides stercoralis infection in northeastern Thailand (agar plate culture detection). J Med Assoc Thai 86: 737–741. - PubMed
    1. Intapan PM, Maleewong W, Wongsaroj T, Singthong S, Morakote N (2005) Comparison of the quantitative formalin ethyl acetate concentration technique and agar plate culture for diagnosis of human strongyloidiasis. J Clin Microbiol 43: 1932–1933. - PMC - PubMed

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