遗传增强
胎儿血红蛋白
造血
不利影响
病毒载体
免疫学
医学
生物
载体(分子生物学)
基因沉默
镰状细胞性贫血
细胞
转导(生物物理学)
疾病
外周血单个核细胞
细胞疗法
血红蛋白
细胞生长
血液学
干细胞
贫血
内科学
癌症研究
临床研究阶段
临床试验
血细胞
急性胸部综合征
溶血性贫血
慢病毒
细胞周期
小RNA
红细胞
小发夹RNA
基因传递
药理学
鲁索利替尼
作者
Erica B. Esrick,Leslie Lehmann,Amy Federico,Helene Vincon,Boya Liu,Heather Daley,Colleen Dansereau,Satiro De Oliveira,John K. Everett,Pei‐Chi Kao,Theodore B. Moore,Emily Morris,Hélène Trebeden‐Negre,Kit L. Shaw,Gavin D. Roach,Jerome Ritz,Aoife M. Roche,Olivia Silva,Patricia Ellen Grant,Frederic D Bushman
出处
期刊:Blood
[Elsevier BV]
日期:2026-06-02
标识
DOI:10.1182/blood.2026033871
摘要
Sickle cell disease (SCD) is characterized by chronic hemolysis, painful vaso-occlusive episodes (VOE) and end organ damage. High levels of fetal hemoglobin (HbF) attenuate the disease phenotype. We used a lentivirus vector (LVV) expressing an shRNA embedded in a microRNA (shmiR) targeting BCL11A in erythrocytes to induce HbF in a first-in-human pilot study in SCD. The purpose of the study was to assess hematopoietic stem/progenitor cells (HSPCs) collection, transduction parameters, safety, HbF induction and durability. Eleven eligible patients with SCD had HSC collection. Plerixafor-mobilized peripheral blood HSCs required for manufacturing were obtained in one mobilization cycle for 10/11 subjects and 11/11 patient products were successfully manufactured with a median time to release of product of 39 days. Ten patients were infused with autologous HSCs transduced with the shmiR vector. Engraftment occurred in all 10 patients. With a median follow-up of 58 months (range: 35-82) after infusion, no adverse events attributed to the gene vector have occurred. Transduction efficiency was 93.1%. One patient demonstrated low engraftment of transduced cells and had suboptimal HbF induction. In the remaining 9 patients, at 2 years post-treatment peripheral blood demonstrated 71% F cells with 11.9 pg HbF/F cells, both stable in 9 patients with ≥48 months follow-up. All patients who had VOEs prior to gene therapy demonstrated sustained mitigation of pain events. These data demonstrate excellent manufacturing efficiency and safety, with efficacy of targeting BCL11A using a shmiR LVV, and long-term durability of the shmiR vector, leading to a pivotal multi-site phase 2 trial currently underway (NCT05353647).
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