Related Experiment Video
Updated: Jun 8, 2026

Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 9, 2014
Extracellular Paracoccidioides brasiliensis phospholipase B involvement in alveolar macrophage interaction
Deyze Alencar Soares1, Rosângela Vieira de Andrade, Simoneide Sousa Silva
1Instituto de Ciências Biológicas, Universidade Federal de Goiás, Goiânia, Brazil.
Background:
Phospholipase B (PLB) has been reported to be one of the virulence factors for human pathogenic fungi and has also been described as necessary for the early events in infection. Based on these data, we investigated the role of PLB in virulence and modulation of the alveolar pulmonary immune response during infection using an in-vitro model of host-pathogen interaction, i.e. Paracoccidioides brasiliensis yeast cells infecting alveolar macrophage (MH-S) cells.
Results:
The effect of PLB was analyzed using the specific inhibitor alexidine dihydrochloride (0.25 μM), and pulmonary surfactant (100 μg mL-1), during 6 hours of co-cultivation of P. brasiliensis and MH-S cells. Alexidine dihydrochloride inhibited PLB activity by 66% and significantly decreased the adhesion and internalization of yeast cells by MH-S cells. Genes involved in phagocytosis (trl2, cd14) and the inflammatory response (nfkb, tnf-α, il-1β) were down-regulated in the presence of this PLB inhibitor. In contrast, PLB activity and internalization of yeast cells significantly increased in the presence of pulmonary surfactant; under this condition, genes such as clec2 and the pro-inflammatory inhibitor (nkrf) were up-regulated. Also, the pulmonary surfactant did not alter cytokine production, while alexidine dihydrochloride decreased the levels of interleukin-10 (IL-10) and increased the levels of IL-12 and tumor necrosis factor-α (TNF-α). In addition, gene expression analysis of plb1, sod3 and icl1 suggests that P. brasiliensis gene re-programming is effective in facilitating adaptation to this inhospitable environment, which mimics the lung-environment interaction.
Conclusion:
P. brasiliensis PLB activity is involved in the process of adhesion and internalization of yeast cells at the MH-S cell surface and may enhance virulence and subsequent down-regulation of macrophage activation.
Insights
Phospholipase B (PLB) from Paracoccidioides brasiliensis aids yeast cell adhesion and internalization by macrophages, potentially increasing fungal virulence. Inhibiting PLB reduces these effects and alters immune responses.
Area of Science:
- Mycology
- Immunology
- Infectious Diseases
Background:
- Phospholipase B (PLB) is a known virulence factor in human pathogenic fungi.
- PLB is essential for the early stages of fungal infection.
- The role of PLB in Paracoccidioides brasiliensis virulence and immune response modulation requires further investigation.
Purpose of the Study:
- To investigate the role of PLB in the virulence of Paracoccidioides brasiliensis.
- To analyze the modulation of the alveolar pulmonary immune response by PLB.
- To utilize an in-vitro model of host-pathogen interaction using P. brasiliensis yeast and alveolar macrophage (MH-S) cells.
Main Methods:
- Co-cultivation of P. brasiliensis and MH-S cells for 6 hours.
- Analysis of PLB activity using the specific inhibitor alexidine dihydrochloride and pulmonary surfactant.
- Gene expression analysis of key virulence and immune response genes.
Main Results:
- Alexidine dihydrochloride inhibited PLB activity by 66%, decreasing yeast cell adhesion and internalization by MH-S cells.
- PLB inhibition down-regulated phagocytosis and inflammatory response genes (trl2, cd14, nfkb, tnf-α, il-1β).
- Pulmonary surfactant increased PLB activity and yeast cell internalization, up-regulating clec2 and nkrf genes, while altering cytokine profiles (decreased IL-10, increased IL-12 and TNF-α).
Conclusions:
- P. brasiliensis PLB activity is crucial for yeast cell adhesion and internalization by MH-S cells.
- PLB may enhance fungal virulence by down-regulating macrophage activation.
- P. brasiliensis exhibits gene reprogramming to adapt to the lung environment, facilitated by genes like plb1, sod3, and icl1.
Related Concept Videos
Tuberculosis
Leishmaniasis
