胎儿血红蛋白
微细胞增多
血红蛋白
珠蛋白
溶血
分子生物学
化学
生物
免疫学
胎儿
贫血
医学
遗传学
内科学
生物化学
怀孕
缺铁
作者
Bo-Ya Liu,Christian Brendel,Divya S. Vinjamur,Yu Zhou,Chad Harris,Meaghan McGuinness,John P. Manis,Daniel E. Bauer,Haiming Xu,David R. Williams
标识
DOI:10.1016/j.ymthe.2022.05.002
摘要
A promising treatment for β-hemoglobinopathies is the de-repression of γ-globin expression leading to increased fetal hemoglobin (HbF) by targeting BCL11A. Here, we aim to improve a lentivirus vector (LV) containing a single BCL11A shmiR (SS) to further increase γ-globin induction. We engineered a novel LV to express two shmiRs simultaneously targeting BCL11A and the γ-globin repressor ZNF410. Erythroid cells derived from human HSCs transduced with the double shmiR (DS) showed up to a 70% reduction of both BCL11A and ZNF410 proteins. There was a consistent and significant additional 10% increase in HbF compared to targeting BCL11A alone in erythroid cells. Erythrocytes differentiated from SCD HSCs transduced with the DS demonstrated significantly reduced in vitro sickling phenotype compared to the SS. Erythrocytes differentiated from transduced HSCs from β-thalassemia major patients demonstrated improved globin chain balance by increased γ-globin with reduced microcytosis. Reconstitution of DS-transduced cells from Berkeley SCD mice was associated with a statistically larger reduction in peripheral blood hemolysis markers compared with the SS vector. Overall, these results indicate that the DS LV targeting BCL11A and ZNF410 can enhance HbF induction for treating β-hemoglobinopathies and could be used as a model to simultaneously and efficiently target multiple gene products.
科研通智能强力驱动
Strongly Powered by AbleSci AI