상세 보기
Highly efficient CRISPR-mediated genome editing through microfluidic droplet cell mechanoporation
- Kim, You-Jeong;
- Yun, Dayoung;
- Lee, Jungjoon K.;
- Jung, Cheulhee;
- Chung, Aram J.
WEB OF SCIENCE
40SCOPUS
40초록
Clustered regularly interspaced short palindromic repeats (CRISPR)-based editing tools have transformed the landscape of genome editing. However, the absence of a robust and safe CRISPR delivery method continues to limit its potential for therapeutic applications. Despite the emergence of various methodologies aimed at addressing this challenge, issues regarding efficiency and editing operations persist. We introduce a microfluidic gene delivery system, called droplet cell pincher (DCP), designed for highly efficient and safe genome editing. This approach combines droplet microfluidics with cell mechanoporation, enabling encapsulation and controlled passage of cells and CRISPR systems through a microscale constriction. Discontinuities created in cell and nuclear membranes upon passage facilitate the rapid CRISPR-system internalization into the nucleus. We demonstrate the successful delivery of various macromolecules, including mRNAs (similar to 98%) and plasmid DNAs (similar to 91%), using this platform, underscoring the versatility of the DCP and leveraging it to achieve successful genome engineering through CRISPR-Cas9 delivery. Our platform outperforms electroporation, the current state-of-the-art method, in three key areas: single knockouts (similar to 6.5-fold), double knockouts (similar to 3.8-fold), and knock-ins (similar to 3.8-fold). These results highlight the potential of our platform as a next-generation tool for CRISPR engineering, with implications for clinical and biological cell-based research.
키워드
- 제목
- Highly efficient CRISPR-mediated genome editing through microfluidic droplet cell mechanoporation
- 저자
- Kim, You-Jeong; Yun, Dayoung; Lee, Jungjoon K.; Jung, Cheulhee; Chung, Aram J.
- 발행일
- 2024-09-16
- 유형
- Article
- 권
- 15
- 호
- 1