School of Life Sciences, Faculty of Science, Engineering and Computing, Kingston University, Kingston upon Thames, Surrey KT1 2EE, UK.
Parasit Vectors. 2011 Nov 22;4:219. doi: 10.1186/1756-3305-4-219.
Although widely used in medicine, the application of three-dimensional (3D) imaging to parasitology appears limited to date. In this study, developmental stages of a marine fish haemogregarine, Haemogregarina curvata (Apicomplexa: Adeleorina), were investigated in their leech vector, Zeylanicobdella arugamensis; this involved 3D visualisation of brightfield and confocal microscopy images of histological sections through infected leech salivary gland cells.
3D assessment demonstrated the morphology of the haemogregarine stages, their spatial layout, and their relationship with enlarged host cells showing reduced cellular content. Haemogregarine meronts, located marginally within leech salivary gland cells, had small tail-like connections to the host cell limiting membrane; this parasite-host cell interface was not visible in two-dimensional (2D) light micrographs and no records of a similar connection in apicomplexan development have been traced.
This is likely the first account of the use of 3D visualisation to study developmental stages of an apicomplexan parasite in its invertebrate vector. Elucidation of the extent of development of the haemogregarine within the leech salivary cells, together with the unusual connections between meronts and the host cell membrane, illustrates the future potential of 3D visualisation in parasite-vector biology.
尽管三维(3D)成像在医学中得到广泛应用,但迄今为止,其在寄生虫学中的应用似乎有限。在这项研究中,研究了海洋鱼类血孢子虫 Haemogregarina curvata(Adeleorina)的发育阶段,这些阶段存在于其水蛭载体 Zeylanicobdella arugamensis 中;这涉及通过感染的水蛭唾液腺细胞的组织学切片对明场和共聚焦显微镜图像进行 3D 可视化。
3D 评估显示了血孢子虫阶段的形态、它们的空间布局以及它们与宿主细胞的关系,这些宿主细胞显示出细胞内容物减少。位于水蛭唾液腺细胞边缘的血孢子虫 meronts 与宿主细胞限制膜有小的尾状连接;这种寄生虫-宿主细胞界面在二维(2D)光显微镜图像中不可见,也没有追踪到类似的连接在 Apicomplexa 发育中的记录。
这可能是首次使用 3D 可视化来研究无脊椎动物载体中 Apicomplexan 寄生虫发育阶段的报道。阐明血孢子虫在水蛭唾液细胞内的发育程度,以及 meronts 与宿主细胞膜之间的异常连接,说明了 3D 可视化在寄生虫-载体生物学中的未来潜力。