Department of Biomedical Engineering, Tufts University, Medford, MA 02155, USA.
Biomater Sci. 2019 Jan 29;7(2):596-606. doi: 10.1039/c8bm00637g.
CRISPR/Cas9 ribonucleoprotein (RNP) complexes with transient therapeutic activity and minimum off-target effects have attracted tremendous attention in recent years for genome editing and have been successfully employed in diverse targets. One ongoing challenge is how to transport structurally and functionally intact Cas9 protein and guide RNA molecules into cells efficiently and safely. Here we report a combinatorial library of disulfide bond-containing cationic lipidoid nanoparticles (LNPs) as carrier systems for intracellular Cas9/sgRNA delivery and subsequent genome editing. Nanoparticles with high efficacies of targeted gene knockout as well as relatively low cytotoxicities have been identified through in vitro screening. The in vivo biodistribution profiles were studied utilizing fluorescent dye labeled and RNP complexed LNPs. Results from this study may shed some light on the design of effective cationic lipidoids for intracellular delivery of genome editing platforms, as well as optimizing the nanoparticle formulations for further disease modeling and therapeutic applications.
近年来,具有瞬时治疗活性和最小脱靶效应的 CRISPR/Cas9 核糖核蛋白 (RNP) 复合物在基因组编辑方面引起了极大关注,并已成功应用于多种靶标。目前面临的一个挑战是如何有效地将结构和功能完整的 Cas9 蛋白和向导 RNA 分子递送到细胞内。在这里,我们报告了一种包含二硫键的阳离子脂质纳米颗粒 (LNP) 的组合文库,作为细胞内 Cas9/sgRNA 递送和随后的基因组编辑的载体系统。通过体外筛选,已经鉴定出具有高效靶向基因敲除和相对低细胞毒性的纳米颗粒。通过荧光染料标记和 RNP 复合 LNP 研究了体内的生物分布情况。这项研究的结果可能为有效阳离子脂质体的设计提供一些启示,用于细胞内递送基因组编辑平台,以及优化纳米颗粒配方,用于进一步的疾病建模和治疗应用。