4.5 Article

Structural Requirements for Dihydrobenzoxazepinone Anthelmintics: Actions against Medically Important and Model Parasites: Trichuris muris, Brugia malayi, Heligmosomoides polygyrus, and Schistosoma mansoni

期刊

ACS INFECTIOUS DISEASES
卷 7, 期 5, 页码 1260-1274

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsinfecdis.1c00025

关键词

anthelmintic; Trichuris; whipworm; nematode; trematode; drug discovery

资金

  1. National Centre for Replacement, Refinement and Reduction of Animals in Research Studentship (NC3R) [NC/M00175X/1]
  2. Bill and Melinda Gates Foundation [BMGF OPP1054324]
  3. Medical Research Council [MR/N024842/1, MR/N022661/1]
  4. UCL/Wellcome Trust Translational Partnership Pilot Grant
  5. Welsh Government Life Sciences Research Network Wales
  6. Wellcome Trust Pathfinder schemes [201008/Z/16/Z]
  7. University of Manchester FBMH EM facility
  8. University of Manchester Facilitating Excellence Fund
  9. Wellcome Trust
  10. MRC [MR/N022661/1, MR/N024842/1] Funding Source: UKRI
  11. Wellcome Trust [201008/Z/16/Z] Funding Source: Wellcome Trust

向作者/读者索取更多资源

Nine hundred million people are infected with soil-transmitted helminths, but current benzimidazole drugs have low cure rates and face parasite drug resistance. Researchers are developing new anthelmintic drugs specifically targeting whipworm, with DHB and DBQ compounds showing potential as broad-spectrum anthelmintics.
Nine hundred million people are infected with the soil-transmitted helminths Ascaris lumbricoides (roundworm), hookworm, and Trichuris trichiura (whipworm). However, low single-dose cure rates of the benzimidazole drugs, the mainstay of preventative chemotherapy for whipworm, together with parasite drug resistance, mean that current approaches may not be able to eliminate morbidity from trichuriasis. We are seeking to develop new anthelmintic drugs specifically with activity against whipworm as a priority and previously identified a hit series of dihydrobenzoxazepinone (DHB) compounds that block motility of ex vivo Trichuris muris. Here, we report a systematic investigation of the structure-activity relationship of the anthelmintic activity of DHB compounds. We synthesized 47 analogues, which allowed us to define features of the molecules essential for anthelmintic action as well as broadening the chemotype by identification of dihydrobenzoquinolinones (DBQs) with anthelmintic activity. We investigated the activity of these compounds against other parasitic nematodes, identifying DHB compounds with activity against Brugia malayi and Heligmosomoides polygyrus. We also demonstrated activity of DHB compounds against the trematode Schistosoma mansoni, a parasite that causes schistosomiasis. These results demonstrate the potential of DHB and DBQ compounds for further development as broad-spectrum anthelmintics.

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