Intraperitoneal Administration of 17-DMAG as an Effective Treatment against Leishmania braziliensis Infection in BALB/c Mice: A Preclinical Study

Author:

Cruz Kercia P.1ORCID,Petersen Antonio L. O. A.12,Amorim Marina F.1,Pinho Alan G. S. F.1ORCID,Palma Luana C.1,Dantas Diana A. S.1,Silveira Mariana R. G.1,Silva Carine S. A.1,Cordeiro Ana Luiza J.1ORCID,Oliveira Izabella G.1,Pita Gabriella B.1,Souza Bianca C. A.3,Bomfim Gilberto C.4,Brodskyn Cláudia I.1,Fraga Deborah B. M.156ORCID,Lima Isadora S.3ORCID,de_Santana Maria B. R.1,Teixeira Helena M. P.1,de_Menezes Juliana P. B.1ORCID,Santos Washington L. C.37ORCID,Veras Patrícia S. T.16ORCID

Affiliation:

1. Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador 40296-710, Bahia, Brazil

2. Baiano Federal Institute of Education, Science and Technology—Santa Inês Campus, BR 420, Santa Inês Road, Rural Zone, Ubaíra 45320-000, Bahia, Brazil

3. Laboratory of Structural and Molecular Pathology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador 40296-710, Bahia, Brazil

4. Laboratory of Population Genetics and Molecular Evolution, Biology Institute, Federal University of Bahia, Salvador 40170-110, Bahia, Brazil

5. Department of Preventive Veterinary Medicine and Animal Production, School of Veterinary Medicine and Animal Science, Federal University of Bahia, Salvador 40170-110, Bahia, Brazil

6. National Institute of Science and Technology of Tropical Diseases (INCT-DT), National Council for Scientific Research and Development (CNPq)

7. Department of Pathology and Forensic Medicine, Bahia Medical School, Federal University of Bahia, Salvador 40110-906, Bahia, Brazil

Abstract

Background: Leishmaniasis is a significant global public health issue that is caused by parasites from Leishmania genus. With limited treatment options and rising drug resistance, there is a pressing need for new therapeutic approaches. Molecular chaperones, particularly Hsp90, play a crucial role in parasite biology and are emerging as promising targets for drug development. Objective: This study evaluates the efficacy of 17-DMAG in treating BALB/c mice from cutaneous leishmaniasis through in vitro and in vivo approaches. Materials and Methods: We assessed 17-DMAG’s cytotoxic effect on bone marrow-derived macrophages (BMMΦ) and its effects against L. braziliensis promastigotes and intracellular amastigotes. Additionally, we tested the compound’s efficacy in BALB/c mice infected with L. braziliensis via intraperitoneal administration to evaluate the reduction in lesion size and the decrease in parasite load in the ears and lymph nodes of infected animals. Results: 17-DMAG showed selective toxicity [selective index = 432) towards Leishmania amastigotes, causing minimal damage to host cells. The treatment significantly reduced lesion sizes in mice and resulted in parasite clearance from ears and lymph nodes. It also diminished inflammatory responses and reduced the release of pro-inflammatory cytokines (IL-6, IFN-γ, TNF) and the regulatory cytokine IL-10, underscoring its dual leishmanicidal and anti-inflammatory properties. Conclusions: Our findings confirm the potential of 17-DMAG as a viable treatment for cutaneous leishmaniasis and support further research into its mechanisms and potential applications against other infectious diseases.

Funder

National Council for Scientific Research and Development

Foundation for the Support of Research in the State of Bahia

Innovative Products, 2nd Round-Fiocruz

National Institute of Science and Technology in Tropical Diseases

CAPES

PDJ Inova Fiocruz

Fiotec—Fiocruz

Publisher

MDPI AG

Reference33 articles.

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