Division of Hygiene and Medical Microbiology, Medical University of Innsbruck, Innsbruck, Austria.
Division of Hygiene and Medical Microbiology, Medical University of Innsbruck, Innsbruck,
J Innate Immun. 2019;11(1):52-62. doi: 10.1159/000491030. Epub 2018 Sep 3.
Over the last 2 decades, platelets have been recognized as versatile players of innate immunity. The interaction of platelets with fungal pathogens and subsequent processes may critically influence the clinical outcome of invasive mycoses. Since the role of platelets in Candida infections is poorly characterized and controversially discussed, we studied interactions of human platelets with yeast cells, (pseudo-)hyphae, biofilms and secretory products of human pathogenic Candida species applying platelet rich plasma and a whole blood model. Incubation of Candida with platelets resulted in moderate mutual interaction with some variation between different species. The rate of platelets binding to -Candida (pseudo-) hyphae and candidal biofilm was comparably low as that to the yeast form. Candida-derived secretory products did not affect platelet activity - neither stimulatory nor inhibitory. The small subset of platelets that bound to Candida morphotypes was consequently activated. However, this did not result in reduced growth or viability of the different Candida species. A whole blood model simulating in vivo conditions confirmed platelet activation in the subpopulation of Candida-bound platelets. Thus, the inability of platelets to efficiently react on Candida presence might favor fungal survival in the blood and contribute to high morbidity of Candida sepsis.
在过去的 20 年中,血小板已被公认为先天免疫的多功能参与者。血小板与真菌病原体的相互作用以及随后的过程可能会严重影响侵袭性真菌感染的临床结果。由于血小板在念珠菌感染中的作用尚未得到充分描述并且存在争议,因此我们使用富含血小板的血浆和全血模型研究了人类血小板与酵母细胞、(假)菌丝、生物膜和人类致病性念珠菌物种的分泌产物的相互作用。将念珠菌与血小板孵育会导致中度的相互作用,不同物种之间存在一些差异。血小板与 -念珠菌(假)菌丝和念珠菌生物膜的结合率与酵母形式相当低。念珠菌来源的分泌产物既不会刺激也不会抑制血小板活性。与念珠菌形态结合的血小板的一小部分随后被激活。然而,这并没有导致不同念珠菌物种的生长或活力降低。模拟体内条件的全血模型证实了在与念珠菌结合的血小板亚群中血小板的激活。因此,血小板不能有效地对念珠菌的存在作出反应,可能有利于真菌在血液中的存活,并导致念珠菌败血症的高发病率。