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GONAD: Genome-editing via Oviductal Nucleic Acids Delivery system: a novel microinjection independent genome engineering method in mice

机译:GONAD:通过 O 导管 N Nucleic A cids D 的 G 进行基因编辑系统:一种新的与小鼠无关的显微注射基因组工程方法

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Microinjection is considered the gold standard technique for delivery of nucleic acids (NAs; transgenes or genome editing tools such as CRISPR/Cas9 systems) into embryos, for creating genetically modified organisms. It requires sophisticated equipment as wel as well-trained and highly skilled personnel to perform the micro-injection technique. Here, we describe a novel and simple microinjection-independent technique, called Genome-editing via Oviductal Nucleic Acids Delivery (GONAD). Using GONAD, we show that NAs (e.g., eGFP mRNA or Cas9 mRNA/sgRNAs) can be effectively delivered to pre-implantation embryos within the intact mouse oviduct by a simple electroporation method, and result in the desired genetic modification in the embryos. Thus GONAD can bypass many complex steps in transgenic technology such as isolation of zygotes, microinjection of NAs into them, and their subsequent transfer to pseudo-pregnant animals. Furthermore, this method can potentially be used for genome editing in species other than mice.
机译:显微注射被认为是将核酸(NA;转基因或基因组编辑工具,如CRISPR / Cas9系统)输送到胚胎中以产生转基因生物的金标准技术。它需要复杂的设备以及训练有素的高技能人员来执行微注射技术。在这里,我们描述了一种新颖而简单的与微注射无关的技术,称为通过输卵管核酸输送(GONAD)进行基因组编辑。使用GONAD,我们显示可以通过简单的电穿孔方法将NAs(例如eGFP mRNA或Cas9 mRNA / sgRNAs)有效地传递至完整的小鼠输卵管内的植入前胚胎,并导致所需的基因修饰。因此,GONAD可以绕过转基因技术中的许多复杂步骤,例如分离受精卵,将NAs微注射到它们中,以及随后将它们转移到假孕动物中。此外,该方法可以潜在地用于除小鼠以外的物种中的基因组编辑。

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