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等离子体氢化阳离子爆炸纳米金刚石能够有效地将针对尤文肉瘤连接点致癌基因的功能性 siRNA 递送至培养的人类细胞中。

Plasma hydrogenated cationic detonation nanodiamonds efficiently deliver to human cells in culture functional siRNA targeting the Ewing sarcoma junction oncogene.

机构信息

Laboratoire de Vectorologie et Thérapeutiques Anticancéreuses, UMR 8203 CNRS, Université Paris Sud, Institut Gustave Roussy, 94805 Villejuif, France.

Signalisation, Noyaux et Innovations en Cancérologie, UMR 8126 CNRS, Université Paris Sud, Institut Gustave Roussy, 94805 Villejuif, France.

出版信息

Biomaterials. 2015 Mar;45:93-8. doi: 10.1016/j.biomaterials.2014.12.007. Epub 2015 Jan 16.

DOI:10.1016/j.biomaterials.2014.12.007
PMID:25662499
Abstract

The expression of a defective gene can lead to major cell dysfunctions among which cell proliferation and tumor formation. One promising therapeutic strategy consists in silencing the defective gene using small interfering RNA (siRNA). In previous publications we showed that diamond nanocrystals (ND) of primary size 35 nm, rendered cationic by polyethyleneimine-coating, can efficiently deliver siRNA into cell, which further block the expression of EWS/FLI-1 oncogene in a Ewing sarcoma disease model. However, a therapeutic application of such nanodiamonds requires their elimination by the organism, particularly in urine, which is impossible for 35 nm particles. Here, we report that hydrogenated cationic nanodiamonds of primary size 7 nm (ND-H) have also a high affinity for siRNA and are capable of delivering them in cells. With siRNA/ND-H complexes, we measured a high inhibition efficacy of EWS/FLI-1 gene expression in Ewing sarcoma cell line. Electron microscopy investigations showed ND-H in endocytosis compartments, and especially in macropinosomes from which they can escape before siRNA degradation occurred. In addition, the association of EWS/FLI-1 silencing by the siRNA/ND-H complex with a vincristine treatment yielded a potentiation of the toxic effect of this chemotherapeutic drug. Therefore ND-H appears as a promising delivery agent in anti-tumoral gene therapy.

摘要

缺陷基因的表达可导致细胞功能严重失调,包括细胞增殖和肿瘤形成。一种有前途的治疗策略是使用小干扰 RNA(siRNA)沉默缺陷基因。在之前的出版物中,我们表明,经过聚乙烯亚胺涂层处理的原始尺寸为 35nm 的金刚石纳米晶体(ND)可以有效地将 siRNA 递送入细胞,从而进一步阻断尤文肉瘤疾病模型中 EWS/FLI-1 癌基因的表达。然而,这种纳米金刚石的治疗应用需要它们被机体消除,特别是在尿液中,而 35nm 的颗粒无法排出。在这里,我们报告说,原始尺寸为 7nm 的氢化阳离子纳米金刚石(ND-H)也对 siRNA 具有高亲和力,并能够将其递送至细胞内。通过 siRNA/ND-H 复合物,我们测量了 EWS/FLI-1 基因在尤文肉瘤细胞系中的表达的高抑制效果。电子显微镜研究表明 ND-H 存在于内吞小泡中,特别是在巨胞饮体中,在 siRNA 降解之前,它们可以从巨胞饮体中逃逸。此外,siRNA/ND-H 复合物对 EWS/FLI-1 的沉默与长春新碱治疗的联合使用增强了这种化疗药物的毒性作用。因此,ND-H 作为一种有前途的抗肿瘤基因治疗的递药载体。

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Plasma hydrogenated cationic detonation nanodiamonds efficiently deliver to human cells in culture functional siRNA targeting the Ewing sarcoma junction oncogene.等离子体氢化阳离子爆炸纳米金刚石能够有效地将针对尤文肉瘤连接点致癌基因的功能性 siRNA 递送至培养的人类细胞中。
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