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Establishment of a method forLutzomyia longipalpis sand fly egg microinjection: The first step towards potential novel control strategies for leishmaniasis

机译:建立一种方法Lutzomyia longipalpis沙蝇卵显微注射:迈向利什曼病潜在新控制策略的第一步

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摘要

Leishmaniases is a group of vector-borne parasitic diseases transmitted by sand flies that affects 1.3 million people across 98 countries, with limited control strategies due to the lack of an available vaccine and the emergence of insecticide resistance.  Novel control strategies that are being explored for mosquito-borne diseases, such as  Wolbachia bacterial inhibition of pathogens and genetically modified insects (e.g. using CRISPR-Cas9 editing), rely on the ability to consistently inject eggs of the target species.  Here we present a novel method to obtain and inject preblastoderm sand fly eggs of the genus  Lutzomyia (Lu.)  longipalpis, the principle vector of zoonotic visceral leishmaniasis in South America. The procedures required to obtain sufficiently young  Lu. longipalpis colony eggs are described alongside a microinjection technique that permits rapid injection and minimal handling of small sand fly eggs post-injection. Using a strain of  Wolbachia as a ‘marker’ for successful injection, our protocol produced early generation  Wolbachia transinfected  Lu. longipalpis lines, demonstrating its potential as the first step for use in novel applied strategies for sand fly control.
机译:利什曼病是由沙蝇传播的一组媒介传播的寄生虫病,覆盖98个国家的130万人,由于缺乏可用的疫苗和对杀虫剂的耐药性,其控制策略有限。正在探索针对蚊媒疾病的新型控制策略,例如对病原体和转基因昆虫的Wolbachia细菌抑制(例如使用CRISPR-Cas9编辑),依赖于始终如一地注入目标物种卵的能力。在这里,我们提出了一种新的方法来获取和注射长鞭毛虫(Lutzomyia(Lu。)longipalpis)的胚前卵沙蝇卵,这是南美人畜共患内脏利什曼病的主要载体。获得足够年轻的Lu所需的程序。人们介绍了长爪鱼集落卵以及显微注射技术,该技术允许快速注射并在注射后最小限度地处理小型沙蝇卵。我们将Wolbachia菌株用作成功注射的“标记”,我们的方案产生了早期Wolbachia转染的Lu。 longipalpis系,证明了其潜力,可用于控制沙蝇的新应用策略。

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