María Eugenia Ancarola, Lucía Celia Abril García, Gustavo Mourglia-Ettlin, Marcela Alejandra Cucher
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引用次数: 0
Abstract
Taenia solium is the aetiological agent of taeniasis/cysticercosis, one of the most severe neglected tropical diseases (NTD) according to the World Health Organization (WHO). The life cycle of T. solium alternates between pigs (intermediate host) and humans (definitive host). In addition, humans can act as accidental intermediate hosts if they ingest infective eggs. In this case, the most severe condition of the disease occurs when parasites invade the central nervous system, causing neurocysticercosis (NCC). The complexity of the life cycle of T. solium imposes a barrier to study this pathogen thoroughly. Thus, related species, such as T. crassiceps are commonly used. Due to its capacity to multiply asexually, T. crassiceps can be maintained by serial passage in laboratory mice in standard biosecurity level facilities. In addition, an in vitro system to generate cysticerci in the presence of feeder cells has been recently developed. Despite model species display biological differences with their zoonotic counterparts, they have historically helped to understand the biology of the related pathogenic species and hence, generate improvements in NTD detection and control. In this chapter, we describe the procedures to carry out both in vivo and in vitro systems for T. crassiceps in the laboratory.
根据世界卫生组织(WHO)的定义,疟原虫是疟原虫病/囊尾蚴病的病原体,而疟原虫病是最严重的被忽视热带疾病(NTD)之一。疟原虫的生命周期在猪(中间宿主)和人(最终宿主)之间交替进行。此外,如果人类摄入了有传染性的虫卵,也可能成为意外的中间宿主。在这种情况下,最严重的疾病是寄生虫侵入中枢神经系统,引起神经囊尾蚴病(NCC)。蛔虫生命周期的复杂性给深入研究这种病原体造成了障碍。因此,通常使用相关的物种,如 T. crassiceps。由于 T. crassiceps 具有无性繁殖能力,因此可以在标准生物安全级别的设施中,通过在实验室小鼠体内连续传代来维持其繁殖。此外,最近还开发了一种体外系统,可在饲养细胞存在的情况下生成囊尾蚴。尽管模式物种与人畜共患物种在生物学上存在差异,但它们历来有助于了解相关致病物种的生物学特性,从而改进对非淋菌性鼻炎的检测和控制。在本章中,我们将介绍在实验室中对 T. crassiceps 进行体内和体外系统研究的程序。
期刊介绍:
For over fifty years, Methods in Cell Biology has helped researchers answer the question "What method should I use to study this cell biology problem?" Edited by leaders in the field, each thematic volume provides proven, state-of-art techniques, along with relevant historical background and theory, to aid researchers in efficient design and effective implementation of experimental methodologies. Over its many years of publication, Methods in Cell Biology has built up a deep library of biological methods to study model developmental organisms, organelles and cell systems, as well as comprehensive coverage of microscopy and other analytical approaches.