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利用 siRNA 和反义 RNA 载体经静脉直接注射纠正β654 地中海贫血小鼠。

Correction of β654-thalassaemia mice using direct intravenous injection of siRNA and antisense RNA vectors.

机构信息

Shanghai Institute of Medical Genetics, Shanghai Children's Hospital, Shanghai Jiao Tong University School of Medicine, 24/1400 West Beijing Road, Shanghai, 200040, People's Republic of China.

Key Lab of Medical Embryo Molecular Biology, Ministry of Health, China, Shanghai Lab of Embryo and Reproduction Engineering, Shanghai, People's Republic of China.

出版信息

Int J Hematol. 2011 Mar;93(3):301-310. doi: 10.1007/s12185-010-0727-1. Epub 2011 Mar 4.

Abstract

Although the therapeutic efficacy of β(654)-thalassaemia treatment using a combination of RNAi and antisense RNA to balance the synthesis of α- and β-globin chains has been demonstrated previously, and the safety of lentiviral delivery remains unclear. Herein, we used the same β(654)-thalassaemia mouse model to develop a therapy involving direct delivery of siRNA and antisense RNA plasmids via intravenous injection to simultaneously knock down α-globin transcript levels and restore correct β-globin splicing. The amount of α-globin mRNAs in siRNA-treated MEL cells decreased significantly, and the properly spliced β-globin mRNA was restored in HeLaβ(654) cells transfected with pcDNA-antisense plasmid. Furthermore, treatment of β(654)-thalassaemic mice with siRNA and antisense RNA plasmids resulted in significant reduction of poikilocytosis and reticulocyte counts in blood samples, decreased nucleated cell populations in bone marrow, and reduced intrasinusoidal extramedullary haematopoiesis loci and iron accumulation in liver. RT-PCR analysis revealed that treatment resulted in down-regulation of α-globin mRNA synthesis by ~50% along with an increase in the presence of normally spliced β-globin transcripts, indicating that the phenotypic changes observed in β(654)-thalassaemic mice following treatment resulted from restoration of the balance of α/β-globin biosynthesis.

摘要

虽然先前已经证明了使用 RNAi 和反义 RNA 联合治疗β(654)-地中海贫血以平衡α-和β-珠蛋白链的合成具有治疗效果,但是慢病毒递送的安全性仍不清楚。在此,我们使用相同的β(654)-地中海贫血小鼠模型,开发了一种治疗方法,通过静脉注射直接递送 siRNA 和反义 RNA 质粒,从而同时敲低α-珠蛋白转录本水平并恢复正确的β-珠蛋白剪接。用 siRNA 处理的 MEL 细胞中的α-珠蛋白 mRNAs 数量明显减少,并且用 pcDNA-反义质粒转染的 HeLaβ(654)细胞中恢复了正确剪接的β-珠蛋白 mRNA。此外,用 siRNA 和反义 RNA 质粒处理β(654)-地中海贫血小鼠导致血液样本中的异形红细胞计数和网织红细胞计数显著减少,骨髓中的有核细胞群减少,以及肝脏中的窦内骨髓外造血部位和铁积累减少。RT-PCR 分析显示,治疗导致α-珠蛋白 mRNA 合成下调约 50%,同时正常剪接的β-珠蛋白转录本的存在增加,表明治疗后β(654)-地中海贫血小鼠观察到的表型变化是由于α/β-珠蛋白生物合成平衡的恢复所致。

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