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Mycobacterium marinum Produces Long-Term Chronic Infections in Medaka: A New Animal Model for Studying Human Tuberculosis

机译:马林分枝杆菌在Medaka中产生长期慢性感染:研究人类结核病的新动物模型

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摘要

Human infection by Mycobacterium tuberculosis is endemic, with approximately 2 billion infected and is the most common cause of adult death due to an infectious agent. Because of the slow growth rate of M. tuberculosis and risk to researchers, other species of Mycobacterium have been employed as alternative model systems to study human tuberculosis (TB). Mycobacterium marinum may be a good surrogate pathogen, conferring TB-like chronic infections in some fish. Medaka (Oryzias latipes) has been established for over five decades as a laboratory fish model for: toxicology, genotoxicity, teratogenesis, carcinogenesis, classical genetics and embryology. We are investigating if medaka might also serve as a host for M. marinum in order to model human TB. We show that both acute and chronic infections are inducible in a dose dependent manner. Colonization of target organs and systemic granuloma formation has been demonstrated through the use of histology. M. marinum expressing green fluorescent protein (Gfp) was used to monitor bacterial colonization of these organs in fresh tissues as well as in intact animals. Moreover, we have employed the See-Through fish line, a variety of medaka devoid of major pigments, to monitor real-time disease progression, in living animals. We have also compared the susceptibility of another prominent fish model, zebrafish (Danio rerio), to our medaka-M. marinum model. We determined the course of infections in zebrafish is significantly more severe than in medaka. Together, these results indicate that the medaka-M. marinum model provides unique advantages for studying chronic mycobacteriosis.
机译:结核分枝杆菌对人类的感染是地方性的,大约有20亿的感染,是由于感染因素导致成人死亡的最常见原因。由于结核分枝杆菌的缓慢生长和研究人员的风险,其他分枝杆菌已被用作研究人类结核病(TB)的替代模型系统。海水分枝杆菌可能是很好的替代病原体,在某些鱼类中会引起结核样慢性感染。 Medaka(Oryzias latipes)作为鱼类实验模型已经建立了五十多年,用于:毒理学,遗传毒性,致畸作用,致癌作用,经典遗传学和胚胎学。我们正在调查medaka是否也可以作为海藻分枝杆菌的宿主,以模拟人类结核病。我们显示急性和慢性感染均可以剂量依赖性方式诱导。通过使用组织学已证实靶器官的定植和系统性肉芽肿的形成。表达绿色荧光蛋白(Gfp)的海藻支原体被用于监测这些器官在新鲜组织以及完整动物中的细菌定植。此外,我们采用了透明鱼线(无主要色素的多种of叶)来监测活体动物的实时疾病进展。我们还比较了另一个著名的鱼类模型斑马鱼(斑马鱼)对我们的medaka-M的敏感性。 marinum模型。我们确定斑马鱼的感染过程比田高得多。这些结果加在一起表明medaka-M。 marinum模型为研究慢性分枝杆菌病提供了独特的优势。

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