Related Experiment Video
Updated: Jan 19, 2026

Generating Transgenics and Knockouts in Strongyloides Species by Microinjection
Published on: October 7, 2021
Bacillus thuringiensis Cry5B is Active against Strongyloides stercoralis in vitro
Sarit Charuchaibovorn1,2, Vivornpun Sanprasert3,2, Nataya Sutthanont2
1Siriraj Center of Excellence for Stem Cell Research (SiSCR), Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.
Abstract:
Strongyloidiasis, caused by Strongyloides stercoralis infection, is an important neglected tropical disease that causes significant public health problems in the tropics and subtropics. The disease can persist in hosts for decades and may be life-threatening because of hyperinfection and dissemination. Ivermectin (mostly) and albendazole are the most common anthelmintics used for treatment. Albendazole is suboptimal for this parasite, and although ivermectin is quite effective in immunocompromised patients, a multiple-course regimen is required. Furthermore, reliance on a single drug class for treating intestinal nematodes is a recipe for future failure. Therefore, it is important to discover new anthelmintics to treat or prevent human strongyloidiasis. One promising candidate is the Bacillus thuringiensis crystal protein Cry5B. Cry5B is highly potent against parasitic nematodes, for example, hookworms and Ascaris suum. Here, we investigated the potential of Cry5B against S. stercoralis. Multiple stages of S. stercoralis, including the first larval stage (L1s), infective stage (iL3s), free-living adult stage, and parasitic female stage, were all susceptible to Cry5B as indicated by impairment of motility and decreased viability in vitro. In summary, Cry5B demonstrated strong potential as an effective anthelmintic for treatment and transmission control of human strongyloidiasis, justifying further experiments to investigate in vivo therapeutic efficacy.
Related Concept Videos
09:42Generating Transgenics and Knockouts in Strongyloides Species by Microinjection
10:12Experimental Infection of Mice with the Parasitic Nematode Strongyloides ratti
08:41Identification of Fatty Acids in Bacillus cereus
09:25In vitro Reconstitution of the Active T. castaneum Telomerase
05:46Isolation and In vitro Activation of Caenorhabditis elegans Sperm
Generating Protoplasts from the Gram-Positive Bacterium Bacillus megaterium

