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Complete In Vitro Life Cycle of Trypanosoma congolense: Development of Genetic Tools

机译:锥虫的完整体外生命周期:遗传工具的开发

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摘要

BackgroundAnimal African trypanosomosis, a disease mainly caused by the protozoan parasite Trypanosoma congolense, is a major constraint to livestock productivity and has a significant impact in the developing countries of Africa. RNA interference (RNAi) has been used to study gene function and identify drug and vaccine targets in a variety of organisms including trypanosomes. However, trypanosome RNAi studies have mainly been conducted in T. brucei, as a model for human infection, largely ignoring livestock parasites of economical importance such as T. congolense, which displays different pathogenesis profiles. The whole T. congolense life cycle can be completed in vitro, but this attractive model displayed important limitations: (i) genetic tools were currently limited to insect forms and production of modified infectious BSF through differentiation was never achieved, (ii) in vitro differentiation techniques lasted several months, (iii) absence of long-term bloodstream forms (BSF) in vitro culture prevented genomic analyses.
机译:背景动物非洲锥虫病是一种主要由原生动物寄生虫锥虫锥虫引起的疾病,是畜牧业生产力的主要制约因素,对非洲发展中国家具有重大影响。 RNA干扰(RNAi)已用于研究基因功能并鉴定包括锥虫在内的多种生物体中的药物和疫苗靶标。然而,锥虫RNAi研究主要在布鲁氏锥虫中进行,作为人类感染的模型,很大程度上忽略了具有经济重要性的家畜寄生虫,例如锥虫,其显示出不同的发病机理。整个T. congolense生命周期可以在体外完成,但是这种有吸引力的模型显示出重要的局限性:(i)目前遗传工具仅限于昆虫形式,并且从未通过分化产生修饰的传染性BSF,(ii)体外分化技术持续了几个月,(iii)体外培养缺乏长期血型(BSF)妨碍了基因组分析。

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