4‐Quinolinylhydrazone analogues kill Leishmania (Leishmania) amazonensis by inducing apoptosis and mitochondria‐dependent pathway cell death

Author:

Granato Juliana da Trindade1,Silva Emerson Teixeira da2,Lemos Ari Sérgio de Oliveira1,Machado Patrícia de Almeida3,Midlej Victor do Valle3,Antinarelli Luciana Maria Ribeiro1,Silva Neto Adolfo Firmino da4,Souza Marcus Vinícius Nora2,Coimbra Elaine Soares1

Affiliation:

1. Departamento de Parasitologia, Microbiologia e Imunologia Instituto de Ciências Biológicas, Universidade Federal de Juiz de Fora Juiz de Fora Minas Gerais Brazil

2. Fundação Oswaldo Cruz (Fiocruz) Instituto de Tecnologia em Fármacos Farmanguinhos Rio de Janeiro Brazil

3. Laboratório de Biologia Estrutural Instituto Oswaldo Cruz, Fundação Oswaldo Cruz (Fiocruz) Rio de Janeiro Brazil

4. Departamento de Medicina Veterinária, Faculdade de Medicina Universidade Federal de Juiz de Fora Juiz de Fora Minas Gerais Brazil

Abstract

AbstractDespite efforts, available alternatives for the treatment of leishmaniasis are still scarce. In this work we tested a class of 15 quinolinylhydrazone analogues and presented data that support the use of the most active compound in cutaneous leishmaniasis caused by Leishmania amazonensis. In general, the compounds showed activity at low concentrations for both parasitic forms (5.33–37.04 μM to promastigotes, and 14.31–61.98 μM to amastigotes). In addition, the best compound (MHZ15) is highly selective for the parasite. Biochemical studies indicate that the treatment of promastigotes with MHZ15 leads the loss of mitochondrial potential and increase in ROS levels as the primary effects, which triggers accumulation of lipid droplets, loss of plasma membrane integrity and apoptosis hallmarks, including DNA fragmentation and phosphatidylserine exposure. These effects were similar in the intracellular form of the parasite. However, in this parasitic form there is no change in plasma membrane integrity in the observed treatment time, which can be attributed to metabolic differences and the resilience of the amastigote. Also, ultrastructural changes such as vacuolization suggesting autophagy were observed. The in vivo effectiveness of MHZ15 in the experimental model of cutaneous leishmaniasis was carried out in mice of the BALB/c strain infected with L. amazonensis. The treatment by intralesional route showed that MHZ15 acted with great efficiency with significantly reduction in the parasite load in the injured paws and draining lymph nodes, without clinical signs of distress or compromise of animal welfare. In vivo toxicity was also evaluated and null alterations in the levels of hepatic enzymes aspartate aminotransferase, and alanine aminotransferase was observed. The data presented herein demonstrates that MHZ15 exhibits a range of favorable characteristics conducive to the development of an antileishmanial agent.

Funder

Fundação de Amparo à Pesquisa do Estado de Minas Gerais

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Wiley

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