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Depletion and Reconstitution of Macrophages in Mice
Published on: August 1, 2012
Phlebotomus perniciosus Recombinant Salivary Proteins Polarize Murine Macrophages Toward the Anti-Inflammatory
Petra Sumova1, Nikola Polanska1, Tereza Lestinova1
1Laboratory of Vector Biology, Department of Parasitology, Faculty of Science, Charles University, Prague, Czechia.
Abstract:
Phlebotomus perniciosus (Diptera: Phlebotominae) is a medically and veterinary important insect vector. It transmits the unicellular parasite Leishmania infantum that multiplies intracellularly in macrophages causing life-threatening visceral diseases. Leishmania establishment in the vertebrate host is substantially influenced by immunomodulatory properties of vector saliva that are obligatorily co-injected into the feeding site. The repertoire of P. perniciosus salivary molecules has already been revealed and, subsequently, several salivary proteins have been expressed. However, their immunogenic properties have never been studied. In our study, we tested three P. perniciosus recombinant salivary proteins-an apyrase rSP01 and yellow-related proteins rSP03 and rSP03B-and showed their anti-inflammatory nature on the murine bone-marrow derived macrophages. Even in the presence of pro-inflammatory stimuli (IFN-γ and bacterial lipopolysaccharide, LPS), all three recombinant proteins inhibited nitric oxide production. Moreover, rSP03 seems to have a very strong anti-inflammatory effect since it enhanced arginase activity, increased the production of IL-10, and inhibited the production of TNF-α even in macrophages stimulated with IFN-γ and LPS. These results suggest that P. perniciosus apyrase and yellow-related proteins may serve as enhancing factors in sand fly saliva, facilitating the development of Leishmania infection along with their anti-haemostatic properties. Additionally, rSP03 and rSP03B did not elicit the delayed-type hypersensitivity response in mice pre-exposed to P. perniciosus bites (measured as visible skin reaction). The results of our study may help to understand the potential function of recombinant's native counterparts and their role in Leishmania transmission and establishment within the host.
Insights
Three Phlebotomus perniciosus sand fly salivary proteins, including an apyrase and two yellow-related proteins, exhibit anti-inflammatory properties. These proteins may facilitate Leishmania infantum transmission and establishment in hosts.
Area of Science:
- Vector biology
- Immunology
- Parasitology
Background:
- Phlebotomus perniciosus sand flies transmit Leishmania infantum, causing visceral leishmaniasis.
- Sand fly saliva modulates host immune responses, influencing parasite establishment.
- The immunogenic properties of P. perniciosus salivary proteins remain largely uncharacterized.
Purpose of the Study:
- To investigate the immunomodulatory and immunogenic effects of three recombinant P. perniciosus salivary proteins: rSP01 (apyrase), rSP03, and rSP03B (yellow-related proteins).
- To assess the potential role of these proteins in facilitating Leishmania infection.
Main Methods:
- Recombinant P. perniciosus salivary proteins (rSP01, rSP03, rSP03B) were tested on murine bone-marrow derived macrophages.
- Nitric oxide, arginase, IL-10, and TNF-α production were measured under pro-inflammatory stimuli (IFN-γ and LPS).
- Delayed-type hypersensitivity response was assessed in mice pre-exposed to sand fly bites.
Main Results:
- All three recombinant proteins inhibited nitric oxide production.
- rSP03 demonstrated potent anti-inflammatory effects, increasing arginase and IL-10, and decreasing TNF-α production.
- rSP03 and rSP03B did not elicit a delayed-type hypersensitivity response.
Conclusions:
- P. perniciosus salivary proteins rSP01, rSP03, and rSP03B possess anti-inflammatory properties.
- These salivary proteins may enhance Leishmania transmission and establishment by modulating the host immune response.
- Understanding these salivary components is crucial for developing strategies against leishmaniasis.
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