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10.3389/fmicb.2017.02098

http://scihub22266oqcxt.onion/10.3389/fmicb.2017.02098
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C5671533!5671533!29163395
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suck abstract from ncbi


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pmid29163395      Front+Microbiol 2017 ; 8 (ä): ä
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  • Role of Soluble Innate Effector Molecules in Pulmonary Defense against Fungal Pathogens #MMPMID29163395
  • Ordonez SR; Veldhuizen EJA; van Eijk M; Haagsman HP
  • Front Microbiol 2017[]; 8 (ä): ä PMID29163395show ga
  • Fungal infections of the lung are life-threatening but rarely occur in healthy, immunocompetent individuals, indicating efficient clearance by pulmonary defense mechanisms. Upon inhalation, fungi will first encounter the airway surface liquid which contains several soluble effector molecules that form the first barrier of defense against fungal infections. These include host defense peptides, like LL-37 and defensins that can neutralize fungi by direct killing of the pathogen, and collectins, such as surfactant protein A and D, that can aggregate fungi and stimulate phagocytosis. In addition, these molecules have immunomodulatory activities which can aid in fungal clearance from the lung. However, existing observations are based on in vitro studies which do not reflect the complexity of the lung and its airway surface liquid. Ionic strength, pH, and the presence of mucus can have strong detrimental effects on antifungal activity, while the potential synergistic interplay between soluble effector molecules is largely unknown. In this review, we describe the current knowledge on soluble effector molecules that contribute to antifungal activity, the importance of environmental factors and discuss the future directions required to understand the innate antifungal defense in the lung.
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