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AAV2/8 Vectors Purified from Culture Medium with a Simple and Rapid Protocol Transduce Murine Liver, Muscle, and Retina Efficiently

机译:从AAV2 / 8载体中纯化并通过简单,快速的实验方案即可有效地转导鼠肝,肌肉和视网膜

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During the production of some adeno-associated virus (AAV) serotypes, a large amount of vectors is found in the medium of producing cells. For their purification, previous protocols used tangential flow filtration (TFF) of the medium followed by iodixanol gradient centrifugation. Taking advantage of the higher purity of the medium than the cell-derived material as the source of AAV, we tested a simple method that combines production of large culture medium volumes containing AAV from cell stacks with medium clarification + TFF without further time-consuming and nonscalable centrifugation. To test this, we selected AAV2/8, which is emerging as a favored serotype for transduction of liver, muscle, and retina and abundantly found in the extracellular medium. We show that yields and in vitro infectivity of AAV2/8 vectors produced from the culture medium using this method are higher than those of vectors purified from the same cell lysate using a conventional CsCl2 gradient ultracentrifugation-based method, although purity appears inferior. In addition, we found that the transduction efficiency of AAV2/8 purified from medium was similar to that of AAV2/8 purified from the same cell lysate in the murine liver, muscle, and retina. Considering that the purification protocol from the medium we describe requires 3 hr as opposed to the 63 hr of a conventional two-round CsCl2-gradient ultracentrifugation + desalting, we conclude that TFF of the medium containing AAV2/ 8 represents a quick and scalable method to purify research-grade vectors for use in animal models.
机译:在一些腺相关病毒(AAV)血清型的产生过程中,在产生细胞的培养基中发现了大量的载体。对于它们的纯化,以前的方案使用介质的切向流过滤(TFF),然后进行碘克沙醇梯度离心。利用比源于细胞的材料更高的培养基纯度作为AAV的来源,我们测试了一种简单的方法,该方法将细胞堆叠中含有AAV的大体积培养基的生产与培养基澄清+ TFF结合在一起,而无需花费更多的时间和精力不可缩放的离心。为了测试这一点,我们选择了AAV2 / 8,它是肝脏,肌肉和视网膜转导的首选血清型,并且在细胞外培养基中大量发现。我们表明,使用这种方法从培养基中产生的AAV2 / 8载体的产量和体外感染性要比使用常规CsCl2梯度超速离心法从同一细胞裂解物中纯化的载体的纯度高,但它们的产率和体外感染性更高。此外,我们发现从培养基中纯化的AAV2 / 8的转导效率与从鼠肝,肌肉和视网膜中相同细胞裂解物中纯化的AAV2 / 8的转导效率相似。考虑到我们描述的培养基纯化方案需要3个小时,而传统的两轮CsCl2梯度超速离心+脱盐需要63个小时,因此我们得出结论,含有AAV2 / 8的培养基的TFF代表了一种快速且可扩展的方法纯化用于动物模型的研究级载体。

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