RRC ID 90101
Author Xu S, Liang D, Wang Q, Cheng Y, Xie D, Gui Y, Zhang H, Feng C, Zhao F, Ren W, Sun G, Yang Y, Li L, Lai Y, Fu B, Lu Y, Wang ZJ, Wu Y.
Title In vivo genome editing of human haematopoietic stem cells for treatment of blood disorders using mRNA delivery.
Journal Nat Biomed Eng
Abstract Ex vivo autologous haematopoietic stem cell (HSC) gene therapy provides a promising treatment option for haematological disorders. However, current methods involve complex processes and chemotherapeutic conditioning, leading to limited accessibility for treatment and major side effects. Here we develop antibody-free targeted lipid nanoparticles (LNPs) for mRNA delivery to HSCs in vivo, enabling efficient base editing of the γ-globin gene (HBG1/2) promoter target in human HSCs to reactivate fetal haemoglobin in derived erythroid cells. Delivery of ABE8e/sgRNA mRNA with optimized LNPs achieves efficient in vivo base editing of HBG1/2 in transfusion-dependent β-thalassaemia (TDT) patient-derived HSCs engrafted in immunodeficient NCG-X mice, showing restored globin chain balance in erythroid cells. Our research indicates that using LNPs for genome editor delivery achieves efficient editing of endogenous genes of human HSCs. This non-viral delivery system eliminates the need for collecting or mobilizing HSCs, providing a potent and one-time treatment potential for blood disorders such as sickle cell disease and TDT.
Volume 10(3)
Pages 473-489
Published 2026-3-1
DOI 10.1038/s41551-025-01480-y
PII 10.1038/s41551-025-01480-y
PMID 40796944
MeSH Anemia, Sickle Cell / genetics Anemia, Sickle Cell / therapy Animals Fetal Hemoglobin / genetics Fetal Hemoglobin / metabolism Gene Editing* / methods Gene Transfer Techniques Genetic Therapy / methods Hematologic Diseases* / genetics Hematologic Diseases* / therapy Hematopoietic Stem Cell Transplantation Hematopoietic Stem Cells* / cytology Hematopoietic Stem Cells* / metabolism Humans Liposomes Mice Nanoparticles / chemistry RNA, Messenger* / administration & dosage RNA, Messenger* / genetics beta-Thalassemia* / genetics beta-Thalassemia* / therapy gamma-Globins / genetics
Resource
Human and Animal Cells HUDEP-2(RCB4557)