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.

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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