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Highlighting the Role of Polymer Length Carbohydrate Size and Nucleic Acid Type in Potency of Glycopolycation Agents for pDNA and siRNA Delivery

机译:突出了聚合物长度碳水化合物大小和核酸类型在糖聚阳离子试剂对pDNA和siRNA传递的效力中的作用

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摘要

While nucleic acids such as small interfering RNA (siRNA) and plasmid DNA (pDNA) are promising research tools and therapeutic modalities, their potential in medical applications is limited by a fundamental mechanistic understanding and inadequate efficiency. Herein, two series of carbohydrate-based polycations were synthesized and examined that varied in the degree of polymerization (n)—one containing trehalose [Tr4(n) series: Tr4(23), Tr4(55), Tr4(77)] and the other containing beta-cyclodextrin [CD4(n) series: CD4(10), CD4(26), CD4(39), CD4(143), CD4(239)]. In addition, two monosaccharide models were examined for comparison that contain tartaramidoamine (T4) and galactaramidoamine (G4 or Glycofect) repeats. Delivery profiles for pDNA were compared with those obtained for siRNA delivery and reveal that efficacy differs significantly as a function of carbohydrate type, nucleic acid type and dose, polymer length, and presence of excess polymer in the formulation. The Tr4 polymers yielded higher efficacy for pDNA delivery, yet, the CD4 polymers achieved higher siRNA delivery and gene down regulation. The T4 and Glycofect derivatives, while efficient for pDNA delivery, were completely ineffective for siRNA delivery. A strong polymer length and dose dependence on target gene knockdown was observed for all polymers tested. Also, free polymer in solution (uncomplexed) was demonstrated to be a key factor in promoting siRNA uptake and gene down regulation.
机译:尽管诸如小干扰RNA(siRNA)和质粒DNA(pDNA)等核酸是有前途的研究工具和治疗方式,但其在医学应用中的潜力受到基本的机械理解和效率不足的限制。在此,合成并检查了两个基于碳水化合物的聚阳离子系列,它们的聚合度(n)有所不同-一个包含海藻糖[Tr4(n)系列:Tr4(23),Tr4(55),Tr4(77)]和另一个含有β-环糊精[CD4(n)系列:CD4(10),CD4(26),CD4(39),CD4(143),CD4(239)]。此外,检查了两个单糖模型进行比较,这些模型包含酒石酰胺(T4)和半乳糖胺(G4或Glycofect)重复序列。将pDNA的传递曲线与siRNA传递的传递曲线进行了比较,发现功效随碳水化合物类型,核酸类型和剂量,聚合物长度以及制剂中过量聚合物的存在而显着不同。 Tr4聚合物产生更高的pDNA传递功效,而CD4聚合物实现了更高的siRNA传递和基因下调。 T4和Glycofect衍生物虽然对pDNA传递有效,但对siRNA传递则完全无效。对于所有测试的聚合物,观察到强烈的聚合物长度和对靶基因敲低的剂量依赖性。同样,溶液中的游离聚合物(未复合)被证明是促进siRNA摄取和基因下调的关键因素。

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