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Efficient generation of Knock-in/Knock-out marmoset embryo via CRISPR/Cas9 gene editing

机译:通过CRISPR / CAS9基因编辑有效地产生敲入/敲除的MARMOSET胚胎

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Genetically modified nonhuman primates (NHP) are useful models for biomedical research. Gene editing technologies have enabled production of target-gene knock-out (KO) NHP models. Target-gene-KO/knock-in (KI) efficiency of CRISPR/Cas9 has not been extensively investigated in marmosets. In this study, optimum conditions for target gene modification efficacies of CRISPR/mRNA and CRISPR/nuclease in marmoset embryos were examined. CRISPR/nuclease was more effective than CRISPR/mRNA in avoiding mosaic genetic alteration. Furthermore, optimal conditions to generate KI marmoset embryos were investigated using CRISPR/Cas9 and 2 different lengths (36 nt and 100 nt) each of a sense or anti-sense single-strand oligonucleotide (ssODN). KIs were observed when CRISPR/nuclease and 36 nt sense or anti-sense ssODNs were injected into embryos. All embryos exhibited mosaic mutations with KI and KO, or imprecise KI, of c-kit. Although further improvement of KI strategies is required, these results indicated that CRISPR/Cas9 may be utilized to produce KO/KI marmosets via gene editing.
机译:基因改性的非人印象(NHP)是生物医学研究的有用模型。基因编辑技术使得能够产生靶基因敲除(KO)NHP模型。 Target-Gene-Ko / kngress-in(ki)Craspr / Cas9的效率尚未在Marmosets中进行广泛调查。在这项研究中,研究了Marmoset胚胎中Crispr / mRNA和CRISPR /核酸酶的靶基因改性效果的最佳条件。在避免马赛克遗传改变时,Crispr /核酸酶比CRISPR / mRNA更有效。此外,使用CRISPR / CAS9和2种不同的长度(36nt和100nt)来研究生成Ki marmoset胚胎的最佳条件,每个感觉或反向义单链寡核苷酸(SSODN)。当Crispr / Nuclease和36nt感觉或反向SSODN注入胚胎时,观察到KIS。所有胚胎都与C-kit的Ki和Ko,或不精确的Ki表现出了马赛克突变。尽管需要进一步提高KI策略,但这些结果表明CRISPR / CAS9可用于通过基因编辑生产KO / Ki Marmosets。

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