European journal of medicinal chemistry | 2021

Palladium-mediated synthesis and biological evaluation of C-10b substituted Dihydropyrrolo[1,2-b]isoquinolines as antileishmanial agents.

 
 
 
 
 
 
 
 
 

Abstract


The development of new molecules for the treatment of leishmaniasis is, a neglected parasitic disease, is urgent as current anti-leishmanial therapeutics are hampered by drug toxicity and resistance. The pyrrolo[1,2-b]isoquinoline core was selected as starting point, and palladium-catalyzed Heck-initiated cascade reactions were developed for the synthesis of a series of C-10 substituted derivatives. Their in\xa0vitro leishmanicidal activity against visceral (L.\xa0donovani) and cutaneous (L.\xa0amazonensis) leishmaniasis was evaluated. The best activity was found, in general, for the 10-arylmethyl substituted pyrroloisoquinolines. In particular, 2ad (IC50\xa0=\xa03.30\xa0μM, SI\xa0>\xa077.01) and 2bb (IC50\xa0=\xa03.93\xa0μM, SI\xa0>\xa058.77) were approximately 10-fold more potent and selective than the drug of reference (miltefosine), against L.\xa0amazonensis on in\xa0vitro promastigote assays, while 2ae was the more active compound in the in\xa0vitro amastigote assays (IC50\xa0=\xa033.59\xa0μM, SI\xa0>\xa08.93). Notably, almost all compounds showed low cytotoxicity, CC50\xa0>\xa0100\xa0μg/mL in J774\xa0cells, highest tested dose. In addition, we have developed the first Perturbation Theory Machine Learning (PTML) algorithm able to predict simultaneously multiple biological activity parameters (IC50, Ki, etc.) vs. any Leishmania species and target protein, with high values of specificity (>98%) and sensitivity (>90%) in both training and validation series. Therefore, this model may be useful to reduce time and assay costs (material and human resources) in the drug discovery process.

Volume 220
Pages \n 113458\n
DOI 10.1016/j.ejmech.2021.113458
Language English
Journal European journal of medicinal chemistry

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