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In Vivo Fate of Carbon Nanotubes with Different Physicochemical Properties for Gene Delivery Applications

机译:碳纳米管的体内命运,具有不同理化性能的基因递送应用

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Gene therapy has arisen as a pioneering technique to treat diseases by direct employment of nucleic acids as medicine. The major historical problem is to develop efficient and safe systems for the delivery of therapeutic genes into the target cells. Carbon nanotubes (CNTs) have demonstrated considerable promise as delivery vectors due to their (i) high aspect ratio and (ii) capacity to translocate through plasma membranes, known as the nanoneedle effect. To leverage these advantages, close attention needs to be paid to the physicochemical characteristics of the CNTs used. CNTs with different diameters (thinner and thicker) were treated by chemical oxidation to produce shorter fragments. Rigid (thick) and flexible (thin) CNTs, and their shortened versions, were coated with polyallylamine (ppAA) by plasma-enhanced chemical vapor deposition. The ppAA coating leads to a positively charged CNT surface that is able to electrostatically bind the green fluorescent protein plasmid reporter. This study shows how rigidity and length can affect their (i) behavior in biological media, (ii) ability to transfect in vitro, and (iii) biodistribution in vivo. This study also generates a set of basic design rules for the development of more efficient CNT-based gene-delivery vectors.
机译:基因治疗作为一种通过直接就业核酸作为药物治疗疾病的先锋技术。主要的历史问题是开发有效和安全的系统,用于将治疗基因递送到靶细胞中。由于它们的(i)高纵横比和(ii)通过质膜(I)易于纳米膜,称为碳纳米管(I)的能力,碳纳米管(CNT)作为递送载体表现为递送载体。为了利用这些优点,需要对所用CNT的物理化学特性进行密切关注。通过化学氧化处理具有不同直径(更薄和更厚)的CNT,以产生较短的碎片。通过等离子体增强的化学气相沉积,刚性(厚)和柔性(薄)CNT和它们的缩短版本用聚烯丙胺(PPAA)涂覆。 PPAA涂层导致带正电荷的CNT表面,能够静电结合绿色荧光蛋白质质粒报告器。本研究表明,刚性和长度如何影响生物培养基中的(I)行为,(ii)在体外转染的能力,和(iii)体内生物分布。本研究还为开发更高效的基于CNT的基因递送载体产生了一组基本设计规则。

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