首页> 外文期刊>Cancer biology & therapy >Targeted delivery of RNA-cleaving DNA enzyme (DNAzyme) to tumor tissue by transferrin-modified, cyclodextrin-based particles.
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Targeted delivery of RNA-cleaving DNA enzyme (DNAzyme) to tumor tissue by transferrin-modified, cyclodextrin-based particles.

机译:通过转铁蛋白修饰的,基于环糊精的颗粒靶向性地将裂解RNA的DNA酶(DNAzyme)递送至肿瘤组织。

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摘要

Short nucleic acid sequences specific to oncogene targets such as bcl-2, bcr-abl, and c-myc have been shown to exhibit specific anti-cancer activity in vitro through antigene or antisense activity. Efficient in vivo delivery of oligonucleotides remains a major limitation for the therapeutic application of these molecules. We report herein on the preparation of transferrin-modified nanoparticles containing DNAzymes (short catalytic single-stranded DNA molecules) for tumor targeting as well as their biodistribution using various methods of administration in the mouse. Linear, beta-cyclodextrin-based polymers are complexed with DNAyzme molecules to form sub-50 nm particles termed "polyplexes". The surface properties of the cyclodextrin-containing polyplexes are modified by exploiting the ability of the beta-cyclodextrin substructure and adamantane to form inclusion complexes. Accordingly, conjugates of adamantane with poly(ethylene glycol) (PEG) are prepared and combined with the polyplexes. The adamantane form inclusion complexes with the surface cyclodextrins of the polyplexes to provide a sterically stabilizing layer of PEG. The stabilized polyplexes are also modified with transferrin for increasing targeting to tumor cells expressing transferrin receptors. The preparation, characterization, and in vitro application of these nanoparticles are discussed. The transferrin-polyplexes containing fluorescently-labeled DNAzyme molecules are administered to tumor-bearing nude mice and their biodistribution and clearance kinetics are monitored using a fluorescence imaging system. Four methods of administration are studied: intraperitoneal bolus and infusion, intravenous bolus, and subcutaneous injection. DNAzymes packaged in polyplex formulations are concentrated and retained in tumor tissue and other organs, whereas unformulated DNAzyme is eliminated from the body within 24 hours post-injection. Intravenous and intraperitoneal bolus injections result in the highest fluorescent signal (DNAzyme) at the tumor site. Tumor cell uptake is observed with intravenous bolus injection only, and intracellular delivery requires transferrin targeting.
机译:对癌基因靶标如bcl-2,bcr-abl和c-myc特异的短核酸序列已显示出通过抗原或反义活性在体外表现出特定的抗癌活性。寡核苷酸的有效体内递送仍然是这些分子的治疗应用的主要限制。我们在这里报告了转铁蛋白修饰的纳米颗粒的制备,该纳米颗粒包含用于肿瘤靶向的DNA酶(短催化单链DNA分子)及其在小鼠中的多种给药方法的生物分布。线性的,基于β-环糊精的聚合物与DNAyzme分子复合形成低于50 nm的颗粒,称为“多聚体”。通过利用β-环糊精亚结构和金刚烷形成包合物的能力,可以改变含环糊精的多聚物的表面性质。因此,制备了金刚烷与聚(乙二醇)(PEG)的共轭物,并与该复合物结合。金刚烷与多聚体的表面环糊精形成包合物,以提供PEG的空间稳定层。还用转铁蛋白修饰了稳定的多链体,以增加对表达转铁蛋白受体的肿瘤细胞的靶向性。讨论了这些纳米粒子的制备,表征和体外应用。将含有荧光标记的DNAzyme分子的运铁蛋白多聚体施用于荷瘤裸鼠,并使用荧光成像系统监测其生物分布和清除动力学。研究了四种给药方法:腹腔推注和输注,静脉推注和皮下注射。包装成多聚体制剂的DNAzyme被浓缩并保留在肿瘤组织和其他器官中,而未配制的DNAzyme则在注射后24小时内从体内清除。静脉内和腹膜内推注在肿瘤部位产生最高的荧光信号(DNAzyme)。仅通过静脉推注观察到肿瘤细胞摄取,并且细胞内递送需要转铁蛋白靶向。

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