Identification of specific reversal agents for Leishmania ABCI4-mediated antimony resistance by flavonoid and trolox derivative screening

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Abstract

Objectives: To identify reversal agents for the Leishmania ABCI4 transporter that confers resistance to antimony. Methods: Selective ABCI4 inhibitors among a series of 15 flavonoid and trolox derivatives or analogues were investigated by evaluating their ability to reverse antimony resistance in Leishmania parasites overexpressing ABCI4. Among the compounds screened,N-ethyltrolox carboxamide (compound D2) produced the highest reversal activity. In order to optimize the activity of D2, we synthesized a series of 10 derivatives by condensation of various amines with trolox. Results: Analysis of antimonyresistance reversal activityshowedthatN-propyltroloxcarboxamide(compoundD4) was the most potent ABCI4 inhibitor, with reversal activity being maintained in the intracellular amastigote stage. In addition, trolox derivatives significantly reverted the resistance to zinc protoporphyrin. The mechanism of action of these active derivativeswas found to be related to significant reversion of SbIII and zinc protoporphyrin accumulation and to a decrease in drug efflux. Conclusions: Our findings suggest that trolox derivatives D2 and D4 could be considered to be specific reversal agents targeting the Leishmania ABCI4 transporter. The structure-activity relationship obtained in the present study highlights the importance of the size and length of the alkyl substituent linked to trolox. Furthermore, the structural data obtained provide valuable information for the further development of new, even more specific and potent Leishmania ABCI4 reversal agents. © The Author 2013. Published by Oxford University Press on behalf of the British Society for Antimicrobial Chemotherapy. All rights reserved.

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Manzano, J. I., Lecerf-schmidt, F., Lespinasse, M. A., Di Pietro, A., Castanys, S., Boumendjel, A., & Gamarro, F. (2014). Identification of specific reversal agents for Leishmania ABCI4-mediated antimony resistance by flavonoid and trolox derivative screening. Journal of Antimicrobial Chemotherapy, 69(3), 664–672. https://doi.org/10.1093/jac/dkt407

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