Assessing Designed Model Membrane-Targeting Peptides Found as Potential Molecular Scaffolds against Cutaneous Leishmaniasis

Abstract Recent research has demonstrated therapeutic potential against visceral leishmaniasis, a neglected disease with high prevalence and severity in very populated low- and middle-income regions; however, effective treatments for the cutaneous or mucocutaneous forms remain limited, despite their higher incidence. The negatively charged composition of Leishmania membranes differentiates it from the zwitterionic nature of mammalian cells, providing a basis for selective targeting by cationic peptides. Here, designed peptides (DecP-9, DecP-17, and DecP-18), spanning a broad range of charge and hydrophobicity, were evaluated and displayed distinct antileishmanial activity and selectivity, including effects on amastigote-infected macrophages. Biophysical studies revealed their interaction profiles: (i) DecP-9, with helical structure and strong lytic activity, showed high activity but low selectivity; (ii) DecP-18, enriched in β-stranded structures, exhibited limited partitioning, low lytic activity, and membrane translocation, resulting in low antiparasitic activity and high mammalian cell survival; (iii) DecP-17 displayed intermediate behavior, reducing intracellular amastigotes without significant cytotoxicity. Although there is a scenario of valued and challenging features in the development of therapeutic peptides, it seems that to find drug peptides that will cutaneously act, but whose ultimate target is the amastigote form contained inside the macrophage, a deeper understanding of membrane processes is required.

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Publication Details

Journal
ACS Omega
Published
2026-09-16
DOI
https://doi.org/10.1021/acsomega.6c04342
Primary Topic
Research on Leishmaniasis Studies
Type
article
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article

Assessing Designed Model Membrane-Targeting Peptides Found as Potential Molecular Scaffolds against Cutaneous Leishmaniasis

Marcelo Dias‐Baruffi, Marcia Perez dos Santos Cabrera, Dayane S. Alvares, André G. Tempone et al.
ACS Omega
Research on Leishmaniasis Studies
article

Assessing Designed Model Membrane-Targeting Peptides Found as Potential Molecular Scaffolds against Cutaneous Leishmaniasis

Marcelo Dias‐Baruffi, Marcia Perez dos Santos Cabrera, Dayane S. Alvares, André G. Tempone, Vanessa Albuquerque, José Eduardo Ferraz Souza, Danúbia B. Martins, Thalita Riul, Viviane A. C. Santana, Anna Karoline Aguiar Fleuri Balbi
article en

Abstract

Abstract Recent research has demonstrated therapeutic potential against visceral leishmaniasis, a neglected disease with high prevalence and severity in very populated low- and middle-income regions; however, effective treatments for the cutaneous or mucocutaneous forms remain limited, despite their higher incidence. The negatively charged composition of Leishmania membranes differentiates it from the zwitterionic nature of mammalian cells, providing a basis for selective targeting by cationic peptides. Here, designed peptides (DecP-9, DecP-17, and DecP-18), spanning a broad range of charge and hydrophobicity, were evaluated and displayed distinct antileishmanial activity and selectivity, including effects on amastigote-infected macrophages. Biophysical studies revealed their interaction profiles: (i) DecP-9, with helical structure and strong lytic activity, showed high activity but low selectivity; (ii) DecP-18, enriched in β-stranded structures, exhibited limited partitioning, low lytic activity, and membrane translocation, resulting in low antiparasitic activity and high mammalian cell survival; (iii) DecP-17 displayed intermediate behavior, reducing intracellular amastigotes without significant cytotoxicity. Although there is a scenario of valued and challenging features in the development of therapeutic peptides, it seems that to find drug peptides that will cutaneously act, but whose ultimate target is the amastigote form contained inside the macrophage, a deeper understanding of membrane processes is required.

ACS Omega
Universidade Federal de Mato Grosso do Sul (BR), Universidade de São Paulo (BR), Instituto Butantan (BR), Universidade Brasil (BR), Universidade Paulista (BR), Universidade São Francisco (BR), Universidade Estadual Paulista (Unesp) (BR)
No poverty
Openalex Percentile: Top 8%
Research on Leishmaniasis Studies
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