In vivo hematopoietic stem cell modification by mRNA delivery
Модификация гемопоэтических стволовых клеток in vivo посредством доставки мРНК
2023-07-27
SCID: 54.1/zxupytep
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hematopoietic stem cellsin vivo genome editinglipid nanoparticlesmRNA deliverynongenotoxic conditioning
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Abstract (AI)
Hematopoietic stem cells (HSCs) are the source of all blood cells over an individual's lifetime. Diseased HSCs can be replaced with gene-engineered or healthy HSCs through HSC transplantation (HSCT). However, current protocols carry major side effects and have limited access. We developed CD117/LNP-messenger RNA (mRNA), a lipid nanoparticle (LNP) that encapsulates mRNA and is targeted to the stem cell factor receptor (CD117) on HSCs. Delivery of the anti-human CD117/LNP-based editing system yielded near-complete correction of hematopoietic sickle cells. Furthermore, in vivo delivery of pro-apoptotic PUMA (p53 up-regulated modulator of apoptosis) mRNA with CD117/LNP affected HSC function and permitted nongenotoxic conditioning for HSCT. The ability to target HSCs in vivo offers a nongenotoxic conditioning regimen for HSCT, and this platform could be the basis of in vivo genome editing to cure genetic disorders, which would abrogate the need for HSCT.
Key Findings
1
A CD117-targeted lipid nanoparticle was developed to deliver mRNA selectively to hematopoietic stem cells in vivo.
2
An anti-human CD117/LNP-based editing system achieved near-complete correction of hematopoietic sickle cells.
3
In vivo delivery of pro-apoptotic PUMA mRNA altered hematopoietic stem-cell function and enabled nongenotoxic conditioning for transplantation.
4
Targeting hematopoietic stem cells in vivo could support less toxic hematopoietic stem-cell transplantation and potentially enable genome editing without transplantation.
Research Object
In vivo hematopoietic stem cells (HSCs) targeted by CD117/LNP mRNA delivery
Research Subject
Targeted mRNA-mediated editing and functional modulation of HSCs, including sickle-cell correction and nongenotoxic conditioning for HSCT
Publication Details
Publication Date
2023-07-27
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