Co-encapsulation of Cas9 mRNA and guide RNA in polyplex micelles enables genome editing in mouse brain

被引:74
作者
Abbasi, Saed [1 ]
Uchida, Satoshi [1 ,2 ]
Toh, Kazuko [1 ]
Tockary, Theofilus A. [1 ]
Dirisala, Anjaneyulu [1 ]
Hayashi, Kotaro [1 ]
Fukushima, Shigeto [1 ]
Kataoka, Kazunori [1 ,3 ]
机构
[1] Kawasaki Inst Ind Promot, Innovat Ctr NanoMed, Kawasaki Ku, 3-25-14 Tonomachi, Kawasaki, Kanagawa 2100821, Japan
[2] Kyoto Prefectural Univ Med, Grad Sch Med Sci, Med Chem, Sakyo Ku, 1-5 Shimogamohangi Cho, Kyoto 6060823, Japan
[3] Univ Tokyo, Inst Future Initiat, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1131709, Japan
基金
日本学术振兴会; 日本科学技术振兴机构;
关键词
CRISPR; Cas9; Polymeric micelle; mRNA delivery; Genome editing; Brain; POLYASPARTAMIDE DERIVATIVES; NANOPARTICLE DELIVERY; PEGYLATED POLYPLEX; GENE-THERAPY; CRISPR; MODEL; EXPRESSION; DISEASE;
D O I
10.1016/j.jconrel.2021.02.026
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Genome editing using CRISPR/Cas9 has attracted considerable attention for the treatment of genetic disorders and viral infections. Co-delivery of Cas9 mRNA and single guide (sg)RNA is a promising strategy to efficiently edit the genome of various cell types, including non-dividing cells, with minimal safety concerns. However, codelivery of two RNA species with significantly different sizes, such as Cas9 mRNA (4.5 kb) and sgRNA (0.1 kb), is still challenging, especially in vivo. Here, we addressed this issue by using a PEGylated polyplex micelle (PM) condensing the RNA in its core. PM loading sgRNA alone released sgRNA at minimal dilution in buffer, while PM loading Cas9 mRNA alone was stable even at higher dilutions. Interestingly, co-encapsulating sgRNA with Cas9 mRNA in a single PM prevented sgRNA release upon dilution, which led to the enhanced tolerability of sgRNA against enzymatic degradation. Subsequently, PM with co-encapsulated RNA widely induced genome editing in parenchymal cells in the mouse brain, including neurons, astrocytes, and microglia, following intraparenchymal injection, at higher efficiency than that by co-delivery of PMs loaded with either Cas9 mRNA or sgRNA separately. To the best of our knowledge, this is the first report demonstrating the utility of RNA-based delivery of CRISPR/Cas9 in inducing genome editing in the brain parenchymal cells. Furthermore, the efficiency of genome editing using PMs was higher than using a non-PEGylated polyplex, due to the enhanced diffusion of PMs in the brain tissue. The results reported herein demonstrate the potential of using PMs to co-encapsulate Cas9 mRNA and sgRNA for in vivo genome editing.
引用
收藏
页码:260 / 268
页数:9
相关论文
共 50 条
[21]   Biolistic-delivery-based transient CRISPR/Cas9 expression enables in planta genome editing in wheat [J].
Haruyasu Hamada ;
Yuelin Liu ;
Yozo Nagira ;
Ryuji Miki ;
Naoaki Taoka ;
Ryozo Imai .
Scientific Reports, 8
[22]   Lipid nanoparticle-mediated codelivery of Cas9 mRNA and single-guide RNA achieves liver-specific in vivo genome editing of Angptl3 [J].
Qiu, Min ;
Glass, Zachary ;
Chen, Jinjin ;
Haas, Mary ;
Jin, Xin ;
Zhao, Xuewei ;
Rui, Xuehui ;
Ye, Zhongfeng ;
Li, Yamin ;
Zhang, Feng ;
Xu, Qiaobing .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (10)
[23]   Lentiviral delivery of co-packaged Cas9 mRNA and a Vegfa-targeting guide RNA prevents wet age-related macular degeneration in mice [J].
Ling, Sikai ;
Yang, Shiqi ;
Hu, Xinde ;
Yin, Di ;
Dai, Yao ;
Qian, Xiaoqing ;
Wang, Dawei ;
Pan, Xiaoyong ;
Hong, Jiaxu ;
Sun, Xiaodong ;
Yang, Hui ;
Paludan, Soren Riis ;
Cai, Yujia .
NATURE BIOMEDICAL ENGINEERING, 2021, 5 (02) :144-156
[24]   Dramatic Improvement of CRISPR/Cas9 Editing in Candida albicans by Increased Single Guide RNA Expression [J].
Ng, Henry ;
Dean, Neta .
MSPHERE, 2017, 2 (02)
[25]   CRISPR/Cas9: An RNA-guided highly precise synthetic tool for plant genome editing [J].
Demirci, Yeliz ;
Zhang, Baohong ;
Unver, Turgay .
JOURNAL OF CELLULAR PHYSIOLOGY, 2018, 233 (03) :1844-1859
[26]   One-step genome editing of porcine zygotes through the electroporation of a CRISPR/Cas9 system with two guide RNAs [J].
Hirata, Maki ;
Wittayarat, Manita ;
Tanihara, Fuminori ;
Sato, Yoko ;
Namula, Zhao ;
Le, Quynh Anh ;
Lin, Qingyi ;
Takebayashi, Koki ;
Otoi, Takeshige .
IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL, 2020, 56 (08) :614-621
[27]   5S rRNA Promoter for Guide RNA Expression Enabled Highly Efficient CRISPR/Cas9 Genome Editing in Aspergillus niger [J].
Zheng, Xiaomei ;
Zheng, Ping ;
Zhang, Kun ;
Cairns, Timothy C. ;
Meyer, Vera ;
Sun, Jibin ;
Ma, Yanhe .
ACS SYNTHETIC BIOLOGY, 2019, 8 (07) :1568-1574
[28]   CRISPR/Cas9 nuclease cleavage enables marker-free genome editing in Escherichia coli: A sequential study [J].
Ng, I-Son ;
Hung, Ying-Hsin ;
Kao, Pei-Hsun ;
Zhou, Yunli ;
Zhang, Xia .
JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2016, 68 :31-39
[29]   Protocol for editing fibroblasts with in vitro transcribed Cas9 mRNA and profile off-target editing by optimized GUIDE-seq [J].
Li, Zhuokun ;
Reint, Ganna ;
Haapaniemi, Emma Maria .
STAR PROTOCOLS, 2023, 4 (04)
[30]   Genome editing of porcine zygotes via lipofection of two guide RNAs using a CRISPR/Cas9 system [J].
Lin, Qingyi ;
Takebayashi, Koki ;
Torigoe, Nanaka ;
Liu, Bin ;
Namula, Zhao ;
Hirata, Maki ;
Tanihara, Fuminori ;
Nagahara, Megumi ;
Otoi, Takeshige .
JOURNAL OF REPRODUCTION AND DEVELOPMENT, 2024, 70 (06) :356-361