Phillips Tasha K, Lawson Kelsey, Ozment Tammy R, Scherer Allison, Hopke Alex
Department of Biomedical Sciences, East Tennessee State University Quillen College of Medicine, PO Box 70577, Johnson City, TN 37614, United States.
Department of Natural Sciences, University of Virginia's College at Wise, 1 College Ave, Wise, VA 24293, United States.
J Leukoc Biol. 2025 Jul 9;117(7). doi: 10.1093/jleuko/qiaf082.
Neutrophils utilize many mechanisms to restrict fungal growth. When phagocytosis occurs, neutrophils can create many toxic antimicrobials including reactive oxygen species and the products of myeloperoxidase. If a pathogen is too large to phagocytose, neutrophils can also resort to the release of neutrophil extracellular traps or it can engage in the behavior of "swarming," in which the recruitment and antimicrobial action of many neutrophils are coordinated against a single target. Here we optimized an assay to study the behavior of swarming directly against live Candida albicans hyphae. We find that hyphae are highly potent targets for inducing swarming behavior and that swarming is very effective at restricting hyphal growth. We provide insight into the initial interactions between the pioneer neutrophil and the hyphae, including information on how fast signaling is initiated following neutrophil binding, how far neutrophils stretch before signaling occurs, and how the calcium signaling waves are unique in response to hyphal targets. We also find distinct and important roles for myeloperoxidase, spleen tyrosine kinase, Bruton's tyrosine Kinase, and CD18 in an effective neutrophil swarming response.
中性粒细胞利用多种机制来限制真菌生长。当发生吞噬作用时,中性粒细胞可产生许多有毒的抗菌物质,包括活性氧和髓过氧化物酶的产物。如果病原体太大而无法吞噬,中性粒细胞还可释放中性粒细胞胞外陷阱,或者采取“群聚”行为,即许多中性粒细胞的募集和抗菌作用针对单个靶标进行协调。在此,我们优化了一种检测方法,以直接研究针对活白色念珠菌菌丝的群聚行为。我们发现,菌丝是诱导群聚行为的高效靶标,并且群聚在限制菌丝生长方面非常有效。我们深入了解了先锋中性粒细胞与菌丝之间的初始相互作用,包括中性粒细胞结合后信号传导启动的速度、信号传导发生前中性粒细胞伸展的距离,以及钙信号波对菌丝靶标的独特反应方式。我们还发现髓过氧化物酶、脾酪氨酸激酶、布鲁顿酪氨酸激酶和CD18在有效的中性粒细胞群聚反应中发挥着独特且重要的作用。