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Highly Sensitive In Vivo Imaging of Trypanosoma brucei Expressing Red-Shifted Luciferase

机译:表达红移荧光素酶的布鲁氏锥虫的高灵敏度体内成像

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摘要

BackgroundHuman African trypanosomiasis is caused by infection with parasites of the Trypanosoma brucei species complex, and threatens over 70 million people in sub-Saharan Africa. Development of new drugs is hampered by the limitations of current rodent models, particularly for stage II infections, which occur once parasites have accessed the CNS. Bioluminescence imaging of pathogens expressing firefly luciferase (emission maximum 562 nm) has been adopted in a number of in vivo models of disease to monitor dissemination, drug-treatment and the role of immune responses. However, lack of sensitivity in detecting deep tissue bioluminescence at wavelengths below 600 nm has restricted the wide-spread use of in vivo imaging to investigate infections with T. brucei and other trypanosomatids.
机译:背景人类非洲锥虫病是由布鲁氏锥虫物种复合体的寄生虫感染引起的,并威胁着撒哈拉以南非洲超过7000万人。当前啮齿动物模型的局限性阻碍了新药的开发,特别是对于II期感染,后者在寄生虫进入中枢神经系统后才发生。表达萤火虫荧光素酶(最大发射562 nm)的病原体的生物发光成像已被用于许多疾病的体内模型中,以监测其传播,药物治疗和免疫应答的作用。但是,在检测波长低于600 nm的深部组织生物发光时缺乏灵敏度,限制了体内成像技术广泛用于调查布鲁氏杆菌和其他锥虫的感染。

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