Lipid nanoparticles allow efficient and harmless ex vivo gene editing of human hematopoietic cells

Author:

Vavassori Valentina1ORCID,Ferrari Samuele12ORCID,Beretta Stefano1ORCID,Asperti Claudia1ORCID,Albano Luisa1ORCID,Annoni Andrea1,Gaddoni Chiara1ORCID,Varesi Angelica1ORCID,Soldi Monica1,Cuomo Alessandro3,Bonaldi Tiziana34ORCID,Radrizzani Marina1ORCID,Merelli Ivan15,Naldini Luigi12

Affiliation:

1. 1San Raffaele Telethon Institute for Gene Therapy, IRCCS San Raffaele Scientific Institute, Milan, Italy

2. 2Vita-Salute San Raffaele University, Milan, Italy

3. 3Department of Molecular Oncology, IEO, European Institute of Oncology IRCCS, Milan, Italy

4. 4Department of Oncology and Haematology-Oncology, University of Milan, Milan, Italy

5. 5Institute for Biomedical Technologies, National Research Council, Segrate, Italy

Abstract

Abstract Ex vivo gene editing in T cells and hematopoietic stem/progenitor cells (HSPCs) holds promise for treating diseases. Gene editing encompasses the delivery of a programmable editor RNA or ribonucleoprotein, often achieved ex vivo via electroporation, and when aiming for homology-driven correction of a DNA template, often provided by viral vectors together with a nuclease editor. Although HSPCs activate a robust p53-dependent DNA damage response upon nuclease-based editing, the responses triggered in T cells remain poorly characterized. Here, we performed comprehensive multiomics analyses and found that electroporation is the main culprit of cytotoxicity in T cells, causing death and cell cycle delay, perturbing metabolism, and inducing an inflammatory response. Nuclease RNA delivery using lipid nanoparticles (LNPs) nearly abolished cell death and ameliorated cell growth, improving tolerance to the procedure and yielding a higher number of edited cells compared with using electroporation. Transient transcriptomic changes upon LNP treatment were mostly caused by cellular loading with exogenous cholesterol, whose potentially detrimental impact could be overcome by limiting exposure. Notably, LNP-based HSPC editing dampened p53 pathway induction and supported higher clonogenic activity and similar or higher reconstitution by long-term repopulating HSPCs compared with electroporation, reaching comparable editing efficiencies. Overall, LNPs may allow efficient and harmless ex vivo gene editing in hematopoietic cells for the treatment of human diseases.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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