1. Academic Validation
  2. Design, synthesis and antiplasmodial evaluation of new amide-, carbamate-, and ureido-type harmicines

Design, synthesis and antiplasmodial evaluation of new amide-, carbamate-, and ureido-type harmicines

  • Bioorg Med Chem. 2023 Oct 30:94:117468. doi: 10.1016/j.bmc.2023.117468.
Marina Marinović 1 Hrvoje Rimac 1 Lais Pessanha de Carvalho 2 C Rôla 3 S Santana 3 Kristina Pavić 1 Jana Held 4 Miguel Prudêncio 3 Zrinka Rajić 5
Affiliations

Affiliations

  • 1 University of Zagreb, Faculty of Pharmacy and Biochemistry, A. Kovačića 1, 10 000 Zagreb, Croatia.
  • 2 University of Tübingen, Institute of Tropical Medicine, Wilhelmstraße 27, 72074 Tübingen, Germany.
  • 3 Instituto de Medicina Molecular João Lobo Antunes, Faculdade de Medicina, Universidade de Lisboa, Av. Prof. Egas Moniz, 1649-028 Lisboa, Portugal.
  • 4 University of Tübingen, Institute of Tropical Medicine, Wilhelmstraße 27, 72074 Tübingen, Germany; German Center for Infection Research (DZIF), Partner Site Tübingen, 72074 Tübingen, Germany.
  • 5 University of Zagreb, Faculty of Pharmacy and Biochemistry, A. Kovačića 1, 10 000 Zagreb, Croatia. Electronic address: [email protected].
Abstract

Malaria, one of the oldest parasitic diseases, remains a global health threat, and the increasing resistance of the malaria Parasite to current antimalarials is forcing the discovery of new, effective drugs. Harmicines, hybrid compounds in which harmine/β-carboline Alkaloids and cinnamic acid derivatives are linked via an amide bond or a triazole ring, represent new antiplasmodial agents. In this work, we used a multiple linear regression technique to build a linear quantitative structure-activity relationship (QSAR) model, based on a group of 40 previously prepared amide-type (AT) harmicines and their antiplasmodial activities against erythrocytic stage of chloroquine-sensitive strain of P. falciparum (Pf3D7). After analysing the QSAR model, new harmicines were designed and synthesized: six amide-type, eleven carbamate-type and two ureido-type harmicines at the N-9 position of the β-carboline core. Subsequently, we evaluated the antiplasmodial activity of the new harmicines against the erythrocytic and hepatic stages of the Plasmodium life cycle in vitro and their antiproliferative activity against HepG2 cells. UT harmicine (E)-1-(2-(7-methoxy-1-methyl-9H-pyrido[3,4-b]indol-9-yl)ethyl)-3-(3-(3-(trifluoromethyl)phenyl)allyl)urea at the N-9 position of the β-carboline ring exhibited pronounced antiplasmodial activity against both the erythrocytic and the hepatic stages of the Plasmodium life cycle, accompanied by good selectivity towards Plasmodium.

Keywords

Antiplasmodial activity; Cinnamic acid; Harmicines; Harmine; Malaria; QSAR.

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