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Natural Killer Cells in Antifungal Immunity
Stanislaw Schmidt1, Lars Tramsen1, Thomas Lehrnbecher1
1Division for Pediatric Hematology and Oncology, Hospital for Children and Adolescents, Johann Wolfgang Goethe-University, Frankfurt, Germany.
Abstract:
Invasive fungal infections are still an important cause of morbidity and mortality in immunocompromised patients such as patients suffering from hematological malignancies or patients undergoing hematopoietic stem cell transplantion. In addition, other populations such as human immunodeficiency virus-patients are at higher risk for invasive fungal infection. Despite the availability of new antifungal compounds and better supportive care measures, the fatality rate of invasive fungal infection remained unacceptably high. It is therefore of major interest to improve our understanding of the host-pathogen interaction to develop new therapeutic approaches such as adoptive immunotherapy. As experimental methodologies have improved and we now better understand the complex network of the immune system, the insight in the interaction of the host with the fungus has significantly increased. It has become clear that host resistance to fungal infections is not only associated with strong innate immunity but that adaptive immunity (e.g., T cells) also plays an important role. The antifungal activity of natural killer (NK) cells has been underestimated for a long time. In vitro studies demonstrated that NK cells from murine and human origin are able to attack fungi of different genera and species. NK cells exhibit not only a direct antifungal activity via cytotoxic molecules but also an indirect antifungal activity via cytokines. However, it has been show that fungi exert immunosuppressive effects on NK cells. Whereas clinical data are scarce, animal models have clearly demonstrated that NK cells play an important role in the host response against invasive fungal infections. In this review, we summarize clinical data as well as results from in vitro and animal studies on the impact of NK cells on fungal pathogens.
Insights
Natural killer (NK) cells play a crucial role in fighting invasive fungal infections, offering direct and indirect antifungal activities. Understanding NK cell interactions with fungi is key to developing new immunotherapies for high-risk patients.
Area of Science:
- Immunology
- Mycology
- Infectious Diseases
Background:
- Invasive fungal infections (IFIs) are a significant cause of mortality in immunocompromised individuals, including those with hematological malignancies or undergoing stem cell transplantation.
- Despite advances in antifungal treatments and supportive care, IFIs continue to have high fatality rates.
- A deeper understanding of host-pathogen interactions is crucial for developing novel therapeutic strategies, such as adoptive immunotherapy.
Purpose of the Study:
- To review the current understanding of the role of natural killer (NK) cells in host defense against invasive fungal infections.
- To explore both the direct and indirect antifungal mechanisms of NK cells.
- To discuss the impact of fungal pathogens on NK cell function and the clinical relevance of NK cells in IFIs.
Main Methods:
- Review of existing clinical data on NK cells and IFIs.
- Analysis of in vitro studies investigating NK cell antifungal activity.
- Examination of animal model studies demonstrating the role of NK cells in fungal infections.
Main Results:
- NK cells exhibit direct antifungal activity through cytotoxic molecules and indirect activity via cytokine production.
- Fungal pathogens can exert immunosuppressive effects on NK cells.
- Animal models strongly support the critical role of NK cells in controlling invasive fungal infections, although clinical data are limited.
Conclusions:
- NK cells are important components of the immune system's defense against fungal pathogens.
- Further research into NK cell-fungal interactions may lead to new immunotherapeutic approaches for IFIs.
- Targeting NK cell function could enhance host resistance against invasive fungal infections in vulnerable populations.
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