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Published on: January 9, 2013
Immune Recognition of Fungal Polysaccharides
Brendan D Snarr1,2, Salman T Qureshi3,4, Donald C Sheppard5,6
1Department of Microbiology and Immunology, McGill University, Montreal, QC H3A 2B4, Canada. brendan.snarr@mail.mcgill.ca.
Abstract:
The incidence of fungal infections has dramatically increased in recent years, in large part due to increased use of immunosuppressive medications, as well as aggressive medical and surgical interventions that compromise natural skin and mucosal barriers. There are relatively few currently licensed antifungal drugs, and rising resistance to these agents has led to interest in the development of novel preventative and therapeutic strategies targeting these devastating infections. One approach to combat fungal infections is to augment the host immune response towards these organisms. The polysaccharide-rich cell wall is the initial point of contact between fungi and the host immune system, and therefore, represents an important target for immunotherapeutic approaches. This review highlights the advances made in our understanding of the mechanisms by which the immune system recognizes and interacts with exopolysaccharides produced by four of the most common fungal pathogens: Aspergillus fumigatus, Candida albicans, Cryptococcus neoformans, and Histoplasma capsulatum. Work to date suggests that inner cell wall polysaccharides that play an important structural role are the most conserved across diverse members of the fungal kingdom, and elicit the strongest innate immune responses. The immune system senses these carbohydrates through receptors, such as lectins and complement proteins. In contrast, a greater diversity of polysaccharides is found within the outer cell walls of pathogenic fungi. These glycans play an important role in immune evasion, and can even induce anti-inflammatory host responses. Further study of the complex interactions between the host immune system and the fungal polysaccharides will be necessary to develop more effective therapeutic strategies, as well as to explore the use of immunosuppressive polysaccharides as therapeutic agents to modulate inflammation.
Insights
Fungal infections are rising due to weakened immunity and drug resistance. Understanding fungal cell wall polysaccharides is key to developing new antifungal immunotherapies and treatments.
Area of Science:
- Immunology
- Mycology
- Microbiology
Background:
- Rising incidence of fungal infections globally.
- Limited antifungal drug options and increasing drug resistance.
- Need for novel preventative and therapeutic strategies.
Purpose of the Study:
- Review advances in understanding host immune interactions with fungal exopolysaccharides.
- Highlight key fungal pathogens: Aspergillus fumigatus, Candida albicans, Cryptococcus neoformans, and Histoplasma capsulatum.
- Explore therapeutic potential of fungal polysaccharides.
Main Methods:
- Literature review of immunological mechanisms.
- Focus on host recognition of fungal cell wall polysaccharides.
- Analysis of conserved and diverse polysaccharide structures.
Main Results:
- Inner cell wall polysaccharides are conserved and elicit strong innate immune responses.
- Outer cell wall polysaccharides show diversity and contribute to immune evasion.
- Immune system recognizes fungal carbohydrates via lectins and complement proteins.
Conclusions:
- Fungal polysaccharides are critical targets for immunotherapeutic development.
- Further research needed to harness fungal polysaccharides for effective antifungal strategies.
- Potential to use immunosuppressive polysaccharides to modulate inflammation.
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