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Updated: Jul 31, 2026

Quantification of Intracellular Growth Inside Macrophages is a Fast and Reliable Method for Assessing the Virulence of Leishmania Parasites
Published on: March 16, 2018
Periodate-oxidized ATP modulates macrophage functions during infection with Leishmania amazonensis
V R Figliuolo1, S P Chaves, G F Santoro
1Laboratório de Imunofisiologia, Instituto de Biofísica Carlos Chagas Filho-IBCCF, Universidade Federal do Rio de Janeiro, RJ, Brazil; Instituto Nacional para Pesquisa Translacional em Saúde e Ambiente na Região Amazônica, Conselho Nacional de Desenvolvimento Científico e Tecnológico/MCT, Brasil.
Abstract:
Previously, we showed that treating macrophages with ATP impairs the intracellular growth of Leishmania amazonensis, and that the P2X7 purinergic receptor is overexpressed during leishmaniasis. In the present study, we directly evaluated the effect of periodate-oxidized ATP (oATP) on parasite control in Leishmania-infected macrophages. We found that oATP impaired the attachment/entrance of L. amazonensis promastigotes to C57BL/6 mouse macrophages in a P2X7 receptor-independent manner, as macrophages from P2X7(-/-) mice were similarly affected. Although oATP directly inhibited the growth of axenic promastigotes in culture, promoted rapid ultrastructural alterations, and impaired Leishmania internalization by macrophages, it did not affect intracellular parasite multiplication. Upon infection, phagosomal acidification was diminished in oATP-treated macrophages, accompanied by reduced endosomal proteolysis. Likewise, MHC class II molecules expression and ectoATPase activity was decreased by oATP added to macrophages at the time of parasite infection. These inhibitory effects were not due to a cytotoxic effect, as no additional release of lactate dehydrogenase was detected in culture supernatants. Moreover, the capacity of macrophages to produce nitric oxide and reactive oxygen species was not affected by the presence of oATP during infection. We conclude that oATP directly affects extracellular parasite integrity and macrophage functioning.
Insights
Periodate-oxidized ATP (oATP) impairs Leishmania amazonensis attachment and extracellular growth but does not affect intracellular parasite multiplication in macrophages. This suggests oATP directly impacts parasite integrity and macrophage function.
Area of Science:
- Immunology
- Parasitology
- Cell Biology
Background:
- ATP treatment of macrophages inhibits Leishmania amazonensis intracellular growth.
- The P2X7 purinergic receptor is upregulated during leishmaniasis.
Purpose of the Study:
- To evaluate the effect of periodate-oxidized ATP (oATP) on Leishmania parasite control in infected macrophages.
- To investigate the P2X7 receptor-independent effects of oATP.
Main Methods:
- Macrophages from C57BL/6 and P2X7(-/-) mice were infected with L. amazonensis.
- The effects of oATP on parasite attachment, internalization, intracellular growth, and macrophage function were assessed.
- Parasite integrity, phagosomal acidification, proteolysis, MHC class II expression, and cytotoxicity were analyzed.
Main Results:
- oATP impaired L. amazonensis promastigote attachment and entry into macrophages independently of the P2X7 receptor.
- oATP inhibited axenic promastigote growth and reduced parasite internalization but did not affect intracellular multiplication.
- oATP diminished phagosomal acidification, reduced endosomal proteolysis, and decreased MHC class II expression and ectoATPase activity in infected macrophages without causing cytotoxicity.
Conclusions:
- oATP directly affects extracellular parasite integrity and macrophage functioning.
- oATP's effects on parasite control are mediated through mechanisms beyond P2X7 receptor activation.
- oATP influences key macrophage functions involved in host defense against Leishmania infection.
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