Institute of Parasitology, Biomedical Research Center Seltersberg, Justus Liebig University Giessen, Schubertstr., 81, 35392, Giessen, Germany.
Parasitol Res. 2022 Apr;121(4):1169-1177. doi: 10.1007/s00436-021-07260-2. Epub 2021 Aug 13.
Neospora caninum represents an obligate intracellular parasite that belongs to the phylum Apicomplexa and is a major abortive agent in bovines. During merogony, N. caninum tachyzoites invade and proliferate in host cells in vivo, including endothelial cells of lymphatic and blood vessels. The egress at the end of the lytic cycle is tightly regulated in apicomplexans. Evidence in Toxoplasma gondii shows that Ca signalling governs tachyzoite egress. Much less is known on egress mechanisms of N. caninum. Here, we show, using 3D live cell holotomographic microscopy in fluo-4 AM-loaded N. caninum-infected BUVEC, that treatments with the calcium ionophore A23187 at 24- and 42-h post-infection (h p. i.) induced a fast and sustained increase in Ca signals in parallel to tachyzoite egress. A23187 treatments exclusively triggered tachyzoite release at 42-h p. i. but failed to do so at 24-h p. i. indicating a role for meront maturation in calcium-induced tachyzoite egress. Overall, we show that live cell 3D holotomographic analysis in combination with epifluorescence is a suitable tool to study calcium dynamics related to coccidian egress or other important cell functions.
刚地弓形虫属于顶复门的专性细胞内寄生原虫,是牛的主要流产病原体。在裂殖生殖过程中,刚地弓形虫速殖子在体内宿主细胞中入侵和增殖,包括淋巴管和血管的内皮细胞。在顶复门生物中,裂解周期结束时的逸出受到严格调控。在弓形虫中的证据表明,钙信号控制速殖子的逸出。对于刚地弓形虫逸出机制的了解要少得多。在这里,我们使用感染 BUVEC 的刚地弓形虫负载的 fluo-4 AM 的 3D 活细胞全层析显微镜显示,在用钙离子载体 A23187 在感染后 24 和 42 小时(h p. i.)处理时,平行于速殖子逸出,会引起快速和持续的钙信号增加。A23187 处理仅在 42-h p. i. 时触发速殖子释放,但在 24-h p. i. 时未能触发,表明在钙诱导的速殖子逸出中,裂殖体成熟起作用。总的来说,我们表明,结合荧光的活细胞 3D 全层析分析是研究与球虫逸出或其他重要细胞功能相关的钙动力学的合适工具。