首页> 外文OA文献 >Biodegradable charged polyester-based vectors (BCPVs) as an efficient non-viral transfection nanoagent for gene knockdown of the BCR-ABL hybrid oncogene in a human chronic myeloid leukemia cell line
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Biodegradable charged polyester-based vectors (BCPVs) as an efficient non-viral transfection nanoagent for gene knockdown of the BCR-ABL hybrid oncogene in a human chronic myeloid leukemia cell line

机译:可生物降解的带电聚酯基载体(BCPV),作为一种有效的非病毒转染纳米试剂,用于人类慢性粒细胞白血病细胞系中BCR-ABL杂种癌基因的基因敲低

摘要

First-line therapy of chronic myelogenous leukemia (CML) has always involved the use of BCR-ABL tyrosine-kinase inhibitors which is associated with an abnormal chromosome called Philadelphia chromosome. Although the overall survival rate has been improved by the current therapeutic regime, the presence of resistance has resulted in limited efficacy. In this study, an RNA interference (RNAi)-based therapeutic regime is proposed with the aim to knockdown the BCR-ABL hybrid oncogene using small interfering RNA (siRNA). The siRNA transfection rates have usually been limited due to the declining contact probability among polyplexes and the non-adherent nature of leukemic cells. Our work aims at addressing this limitation by using a biodegradable charged polyester-based vector (BCPV) as a nanocarrier for the delivery of BCR-ABL-specific siRNA to the suspension culture of a K562 CML cell line. BCR-ABL siRNAs were encapsulated in the BCPVs by electrostatic force. Cell internalization was facilitated by the BCPV and assessed by confocal microscopy and flow cytometry. The regulation of the BCR-ABL level in K562 cells as a result of RNAi was analyzed by real-time polymerase chain reaction (RT-PCR). We observed that BCPV was able to form stable nanoplexes with siRNA molecules, even in the presence of fetal bovine serum (FBS), and successfully assisted in vitro siRNA transfection in the non-adherent K562 cells. As a consequence of downregulation of BCR-ABL, BCPV-siRNA nanoplexes inhibited cell proliferation and promoted cell apoptosis. All results were compared with a commercial transfection reagent, Lipofectamine2000™, which served as a positive control. More importantly, this class of non-viral vector exhibits biodegradable features and negligible cytotoxicity, thus providing a versatile platform to deliver siRNA to non-adherent leukemia cells with high transfection efficiency by effectively overcoming extra- and intra-cellular barriers. Due to the excellent in vitro transfection results from BCPV-siRNA, a newly developed biodegradable transfection agent, BCPV, is being probed for transfection performance in an animal model.
机译:慢性骨髓性白血病(CML)的一线治疗一直涉及使用BCR-ABL酪氨酸激酶抑制剂,该抑制剂与称为费城染色体的异常染色体有关。尽管当前的治疗方案已经提高了总生存率,但是耐药性的存在导致了有限的功效。在这项研究中,提出了一种基于RNA干扰(RNAi)的治疗方案,目的是使用小干扰RNA(siRNA)敲除BCR-ABL杂交癌基因。 siRNA转染率通常由于多聚体之间的接触概率下降和白血病细胞的非粘附特性而受到限制。我们的工作旨在通过使用可生物降解的带电聚酯基载体(BCPV)作为纳米载体,将BCR-ABL特异性siRNA递送到K562 CML细胞系的悬浮培养物中来解决这一局限。 BCR-ABL siRNA通过静电力封装在BCPV中。 BCPV促进细胞内在化,并通过共聚焦显微镜和流式细胞术进行评估。通过实时聚合酶链反应(RT-PCR)分析了RNAi对K562细胞中BCR-ABL水平的调节。我们观察到,即使在胎牛血清(FBS)存在的情况下,BCPV仍能够与siRNA分子形成稳定的纳米复合物,并成功地协助了非粘附性K562细胞的体外siRNA转染。由于BCR-ABL的下调,BCPV-siRNA纳米复合物抑制细胞增殖并促进细胞凋亡。将所有结果与用作阳性对照的商业转染试剂Lipofectamine2000™进行比较。更重要的是,这类非病毒载体表现出可生物降解的特性且细胞毒性可忽略不计,因此提供了一个通用平台,可通过有效克服细胞外和细胞内屏障,以高转染效率将siRNA传递至非粘附性白血病细胞。由于BCPV-siRNA具有出色的体外转染效果,因此正在研究一种新开发的可生物降解的转染剂BCPV在动物模型中的转染性能。

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