» Articles » PMID: 32357367

Efficient Gene Knockout in Primary Human and Murine Myeloid Cells by Non-viral Delivery of CRISPR-Cas9

Overview
Journal J Exp Med
Date 2020 May 2
PMID 32357367
Citations 42
Authors
Affiliations
Soon will be listed here.
Abstract

Myeloid cells play critical and diverse roles in mammalian physiology, including tissue development and repair, innate defense against pathogens, and generation of adaptive immunity. As cells that show prolonged recruitment to sites of injury or pathology, myeloid cells represent therapeutic targets for a broad range of diseases. However, few approaches have been developed for gene editing of these cell types, likely owing to their sensitivity to foreign genetic material or virus-based manipulation. Here we describe optimized strategies for gene disruption in primary myeloid cells of human and murine origin. Using nucleofection-based delivery of Cas9-ribonuclear proteins (RNPs), we achieved near population-level genetic knockout of single and multiple targets in a range of cell types without selection or enrichment. Importantly, we show that cellular fitness and response to immunological stimuli is not significantly impacted by the gene editing process. This provides a significant advance in the study of myeloid cell biology, thus enabling pathway discovery and drug target validation across species in the field of innate immunity.

Citing Articles

The SP140-RESIST pathway regulates interferon mRNA stability and antiviral immunity.

Witt K, Dziulko A, An J, Pekovic F, Cheng A, Liu G bioRxiv. 2025; .

PMID: 39974928 PMC: 11838211. DOI: 10.1101/2024.08.28.610186.


VPS18 contributes to phagosome membrane integrity in -infected macrophages.

Jani C, Jain N, Marsh A, Uchil P, Doan T, Hudspith M Sci Adv. 2025; 11(5):eadr6166.

PMID: 39888996 PMC: 11784855. DOI: 10.1126/sciadv.adr6166.


PTPN23-dependent ESCRT machinery functions as a cell death checkpoint.

Song D, Cen Y, Qian Z, Wu X, Rivera K, Wee T Nat Commun. 2024; 15(1):10364.

PMID: 39609437 PMC: 11604704. DOI: 10.1038/s41467-024-54749-2.


Identification of VISTA regulators in macrophages mediating cancer cell survival.

Abdrabou A, Ahmed S, Fan M, Duong B, Chen K, Lo P Sci Adv. 2024; 10(48):eadq8122.

PMID: 39602545 PMC: 11601207. DOI: 10.1126/sciadv.adq8122.


Synergy between pluripotent stem cell-derived macrophages and self-renewing macrophages: Envisioning a promising avenue for the modelling and cell therapy of infectious diseases.

Peng D, Li M, Yu Z, Yan T, Yao M, Li S Cell Prolif. 2024; 58(2):e13770.

PMID: 39537185 PMC: 11839195. DOI: 10.1111/cpr.13770.


References
1.
Ginhoux F, Guilliams M . Tissue-Resident Macrophage Ontogeny and Homeostasis. Immunity. 2016; 44(3):439-449. DOI: 10.1016/j.immuni.2016.02.024. View

2.
Seki A, Rutz S . Optimized RNP transfection for highly efficient CRISPR/Cas9-mediated gene knockout in primary T cells. J Exp Med. 2018; 215(3):985-997. PMC: 5839763. DOI: 10.1084/jem.20171626. View

3.
Gundry M, Brunetti L, Lin A, Mayle A, Kitano A, Wagner D . Highly Efficient Genome Editing of Murine and Human Hematopoietic Progenitor Cells by CRISPR/Cas9. Cell Rep. 2016; 17(5):1453-1461. PMC: 5087995. DOI: 10.1016/j.celrep.2016.09.092. View

4.
Varol C, Mildner A, Jung S . Macrophages: development and tissue specialization. Annu Rev Immunol. 2015; 33:643-75. DOI: 10.1146/annurev-immunol-032414-112220. View

5.
Chen J, Du Y, He X, Huang X, Shi Y . A Convenient Cas9-based Conditional Knockout Strategy for Simultaneously Targeting Multiple Genes in Mouse. Sci Rep. 2017; 7(1):517. PMC: 5428785. DOI: 10.1038/s41598-017-00654-2. View