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Updated: Jan 29, 2026

Investigating the Phagocytosis of Leishmania using Confocal Microscopy
Published on: July 29, 2021
An Overview of the Factors Related to Leishmania Vaccine Development
Luiz Felipe Domingues Passero1,2, Italo Novais Cavallone1,2,3, Gabriela Venicia Araújo Flores1,2,3
1Institute of Biosciences, São Paulo State University (UNESP), Praça Infante Dom Henrique, s/n, São Vicente 11330-900, Brazil.
Abstract:
Leishmaniasis is an infectious disease caused by several species of Leishmania parasites that preferentially infect macrophages as host cells. These intracellular parasites can evade the main microbicidal effector mechanisms of phagocytic cells and, in turn, are able to stimulate marked Th2 or regulatory T cell immune responses, which are not protective for the host. The presence of a non-protective immune response, together with the multiplication and spread of Leishmania parasites throughout the tissues, leads to the main clinical forms of leishmaniasis, such as cutaneous and visceral leishmaniasis. Although some clinical forms can be reproduced in experimental hosts such as mice and hamsters, these models do not fully mimic natural infection, which, in fact, impacts experimental vaccine development. For example, BALB/c mice are generally infected with around one million parasites, whereas humans are not infected with more than 1000 parasites, together with vector saliva. This excessive number of parasites in experimental models may affect the efficacy of vaccines in preclinical studies. Indeed, many experimental studies conducted over the past 20 years have shown only partial protection, regardless of the vaccine generation, host species employed, or the use of adjuvants. This review aims to summarize the main aspects associated with Leishmania vaccine development, including parasite diversity, host factors, immune responses, adjuvants, and antigens. Although many elegant studies have been conducted, it is possible that some essential step is still missing for the development of an effective vaccine for human use.
Insights
Developing effective leishmaniasis vaccines is challenging due to parasite evasion, non-protective immune responses, and limitations in experimental models. Further research into parasite diversity, host factors, and immune responses is crucial for successful vaccine development.
Area of Science:
- Immunology
- Parasitology
- Vaccinology
Background:
- Leishmaniasis is an infectious disease caused by Leishmania parasites that infect macrophages.
- Parasites evade host defenses and induce non-protective immune responses, leading to cutaneous and visceral leishmaniasis.
- Current experimental models do not fully replicate natural infection, impacting vaccine development.
Purpose of the Study:
- To review key aspects of Leishmania vaccine development.
- To highlight challenges including parasite diversity, host factors, immune responses, adjuvants, and antigens.
- To identify potential missing elements for effective human vaccines.
Main Methods:
- Literature review of Leishmania vaccine development studies.
- Analysis of factors influencing vaccine efficacy in preclinical and clinical settings.
- Synthesis of information on parasite biology, host immunity, and vaccine components.
Main Results:
- Experimental models often use higher parasite loads than natural human infections, potentially skewing efficacy results.
- Numerous vaccine strategies have shown only partial protection across different hosts, adjuvants, and antigens.
- A significant gap exists in understanding the essential components for a fully protective human vaccine.
Conclusions:
- Developing effective Leishmania vaccines requires addressing the limitations of current experimental models.
- A comprehensive understanding of parasite-host interactions and immune responses is essential.
- Further research is needed to identify critical factors for a successful human leishmaniasis vaccine.
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