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P-MAPA, a Fungi-Derived Immunomodulatory Compound, Induces a Proinflammatory Response in a Human Whole Blood Model
Mariana Torrente Gonçalves1, Carla Cristina Squaiella-Baptistão1, Giselle Pidde1
1Immunochemistry Laboratory, Instituto Butantan, São Paulo, Brazil.
Abstract:
P-MAPA is a complex compound, derived from Aspergillus oryzae cultures, that has shown immunomodulatory properties in infection and cancer animal models. Despite promising results in these models, the mechanisms of cellular activation by P-MAPA, suggested to be Toll-like receptor- (TLR-) dependent, and its effect on human immune cells, remain unclear. Using an ex vivo model of human whole blood, the effects of P-MAPA on complement system activation, production of cytokines, and the expression of complement receptors (CD11b, C5aR, and C3aR), TLR2, TLR4, and the coreceptor CD14 were analyzed in neutrophils and monocytes. P-MAPA induced complement activation in human blood, detected by increased levels of C3a, C5a, and SC5b-9 in plasma. As a consequence, CD11b expression increased and C5aR decreased upon activation, while C3aR expression remained unchanged in leukocytes. TLR2 and TLR4 expressions were not modulated by P-MAPA treatment on neutrophils, but TLR4 expression was reduced in monocytes, while CD14 expression increased in both cell types. P-MAPA also induced the production of TNF-α, IL-8, and IL-12 and oxidative burst, measured by peroxynitrite levels, in human leukocytes. Complement inhibition with compstatin showed that P-MAPA-induced complement activation drives modulation of C5aR, but not of CD11b, suggesting that P-MAPA acts through both complement-dependent and complement-independent mechanisms. Compstatin also significantly reduced the peroxynitrite generation. Altogether, our results show that P-MAPA induced proinflammatory response in human leukocytes, which is partially mediated by complement activation. Our data contribute to elucidate the complement-dependent and complement-independent mechanisms of P-MAPA, which ultimately result in immune cell activation and in its immunomodulatory properties in infection and cancer animal models.
Insights
P-MAPA activates human immune cells, inducing a proinflammatory response partly via complement activation. This compound utilizes both complement-dependent and independent pathways, clarifying its immunomodulatory effects in infection and cancer models.
Area of Science:
- Immunology
- Pharmacology
Background:
- P-MAPA, derived from *Aspergillus oryzae*, exhibits immunomodulatory effects in animal models of infection and cancer.
- The precise mechanisms of P-MAPA's cellular activation, particularly its interaction with human immune cells and Toll-like receptors (TLRs), remain incompletely understood.
Purpose of the Study:
- To investigate the effects of P-MAPA on human whole blood, focusing on complement system activation, cytokine production, and immune cell receptor expression.
- To elucidate the complement-dependent and independent pathways involved in P-MAPA-induced immune cell activation.
Main Methods:
- Ex vivo human whole blood model was used to analyze complement activation (C3a, C5a, SC5b-9), cytokine production (TNF-α, IL-8, IL-12), and expression of complement receptors (CD11b, C5aR, C3aR), TLRs (TLR2, TLR4), and CD14 on neutrophils and monocytes.
- Oxidative burst was measured by peroxynitrite levels.
- Complement inhibition was achieved using compstatin to differentiate between complement-dependent and independent mechanisms.
Main Results:
- P-MAPA induced significant complement activation and subsequent upregulation of CD11b and downregulation of C5aR on leukocytes.
- P-MAPA modulated TLR4 and CD14 expression on monocytes and neutrophils, respectively.
- P-MAPA stimulated the production of pro-inflammatory cytokines (TNF-α, IL-8, IL-12) and induced oxidative burst.
- Compstatin treatment revealed that complement activation is crucial for P-MAPA-induced C5aR modulation and peroxynitrite generation, but not CD11b modulation.
Conclusions:
- P-MAPA elicits a pro-inflammatory response in human leukocytes through both complement-dependent and independent mechanisms.
- These findings provide a deeper understanding of P-MAPA's immunomodulatory properties relevant to its therapeutic potential in infection and cancer.
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