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Synthesis of New Uracil-5-Sulfonamide Derivatives and Immuno-Stimulatory Effect of a Chemically Modified Hemolymph of Biomphalaria alexandrina on Schistosoma mansoni Infected Mice  

Fathalla, O.A. (Department of Therapeutical Chemistry, National Research Centre)
Haiba, M.E. (Department of Therapeutical Chemistry, National Research Centre)
Maghraby, A.S. (Department of Therapeutical Chemistry, National Research Centre)
Publication Information
Archives of Pharmacal Research / v.26, no.5, 2003 , pp. 358-366 More about this Journal
Abstract
Some N-p-substituted phenyl uracil-5-sulphonamide derivatives have been synthesized to be evaluated as molluscicides against Biomphalaria alexandrina snails, the intermediate host of Schistosoma mansoni. Schistosoma mansoni infected mice were treated with hemolymph obtained from pre-treated Biomphalaria alexandrina snails with the products 4a, 10a, 10b and 4b or obtained from non-treated snails. The selection of the concentration based on the predetermined dose which caused mortality of less than 50% of snails/24 h. $LC_{50}$ of compounds 4a, 10a, 10b and 4b was 50, 100, 200 and 50 ppm respectively. The result showed that immuno-stimulatory effect of treated hemolymph with compounds 4a, 10a and 4b was related to significant protective effects (44.4, 34.6 and 50.4% reduction in worm burden respectively). In addition, mean total worm burdens were significantly reduced in non treated hemolymph by 33.8%. The effect of hemolymph obtained from treated or non treated snails on S. mansoni adult worms antigens was studied by indirect immunofluorescence technique using chronic mouse sera (CMS). The results indicated that there was a strong reaction with epitopes in gut epithelium, tubercles, teigument and subtegumental musculature of untreated and treated S. mansoni adult worms antigens. Therefore, treatment of hemolymph obtained from pre-treated snails with compounds 4a, 10a, and 4b can stimulate specific immune response and induce protective effects against S. mansoni infection.
Keywords
Uracil-5-sulphonamide derivatives; Schistosoma mansoni; Biomphalaria alexandrina; Haemolymph; Immunofluorescence technique;
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