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Measuring Phagocytosis of Aspergillus fumigatus Conidia by Human Leukocytes using Flow Cytometry
Published on: December 7, 2019
LL37 Inhibits Aspergillus fumigatus Infection via Directly Binding to the Fungus and Preventing Excessive
Xiao-Li Luo1, Jian-Xiong Li1, Hua-Rong Huang1
1Department of Respiratory and Critical Care Medicine, Shanghai Pulmonary Hospital, Tongji University School of Medicine, Shanghai, China.
Abstract:
The incidence of Aspergillus fumigatus infection and the rate of resistance to antifungal drugs have sharply increased in recent years. LL37 has been reported as a host defense peptide with broad-spectrum antibacterial activities. However, the role of LL37 during A. fumigatus infection remains unclear. Here, we examined the interaction between LL37 and A. fumigatus and found that synthetic LL37 could directly bind to the surface of A. fumigatus, disrupting the integrity of the cell wall in vitro. LL37 inhibited mycelial growth in a concentration-dependent manner, rather than fungicidal effect even at high concentration (e.g., 20 μM). Interestingly, low concentrations of LL37 (e.g., 4 μM) significantly attenuated mycelial adhesion and prevented the invasion and destruction of epithelial cells. Following LL37 treatment, the levels of proinflammatory cytokines released by A. fumigatus-stimulated macrophages decreased significantly, accompanied by downregulation of M1 type markers. In a mouse model of pulmonary A. fumigatus infection, LL37-treated mice showed lower amounts of fungi load, moderate pathological damage, and reduced proinflammatory cytokines. Further, LL37 transgenic mice (LL37+/+) were examined to investigate the effects of endogenous LL37 in an A. fumigatus infection model and showed lower susceptibility to A. fumigatus infection in comparison with wild-type mice. In addition, LL37 also played a protective role in an immunosuppressed mouse model of A. fumigatus infection. Thus, LL37 inhibits A. fumigatus infection via directly binding to mycelia and reducing excessive inflammation. LL37 or its analogs may therefore constitute potential drug components for A. fumigatus infection.
Insights
Host defense peptide LL37 inhibits Aspergillus fumigatus infection by disrupting cell walls and reducing inflammation. LL37 demonstrates protective effects in mouse models, suggesting potential therapeutic applications.
Area of Science:
- Immunology
- Mycology
- Antimicrobial Peptides
Background:
- Rising incidence of Aspergillus fumigatus infections and antifungal resistance.
- LL37, a host defense peptide, exhibits broad-spectrum antibacterial activity.
- The role of LL37 in A. fumigatus infection is currently unclear.
Purpose of the Study:
- To investigate the interaction between LL37 and Aspergillus fumigatus.
- To evaluate the therapeutic potential of LL37 against A. fumigatus infections.
Main Methods:
- In vitro studies using synthetic LL37 and A. fumigatus.
- Assessment of mycelial growth, adhesion, and epithelial cell invasion.
- Analysis of cytokine release from stimulated macrophages.
- In vivo studies using mouse models of pulmonary and immunosuppressed A. fumigatus infection.
- Evaluation of LL37 transgenic mice.
Main Results:
- LL37 directly binds to A. fumigatus, disrupting cell wall integrity and inhibiting mycelial growth.
- Low LL37 concentrations reduce fungal adhesion and prevent epithelial cell invasion.
- LL37 treatment decreases proinflammatory cytokines and M1 marker expression.
- LL37 reduces fungal load, pathological damage, and inflammation in mouse models.
- LL37 transgenic mice exhibit lower susceptibility to A. fumigatus infection.
Conclusions:
- LL37 inhibits A. fumigatus infection by direct binding to mycelia and mitigating excessive inflammation.
- LL37 demonstrates protective effects in both immunocompetent and immunosuppressed models.
- LL37 and its analogs hold promise as potential therapeutic agents for A. fumigatus infections.
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