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Mapping Optimal Charge Density and Length of ROMP-Based PTDMs for siRNA Internalization

机译:用于siRNA内化的基于ROMP的PTDM的最佳电荷密度和长度图

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A fundamental understanding of how polymer structure impacts internalization and delivery of biologically relevant cargoes, particularly small interfering ribonucleic acid (siRNA), is of critical importance to the successful design of improved delivery reagents. Herein we report the use of ring-opening metathesis polymerization (ROMP) methods to synthesize two series of guanidinium-rich protein transduction domain mimics (PTDMs): one based on an imide scaffold that contains one guanidinium moiety per repeat unit, and another based on a diester scaffold that contains two guanidinium moieties per repeat unit. By varying both the degree of polymerization and, in effect, the relative number of cationic charges in each PTDM, the performances of the two ROMP backbones for siRNA internalization were evaluated and compared. Internalization of fluorescently labeled siRNA into Jurkat T cells demonstrated that fluorescein isothiocyanate (FITC)-siRNA internalization had a charge content dependence, with PTDMs containing approximately 40 to 60 cationic charges facilitating the most internalization. Despite this charge content dependence, the imide scaffold yielded much lower viabilities in Jurkat T cells than the corresponding diester PTDMs with similar numbers of cationic charges, suggesting that the diester scaffold is preferred for siRNA internalization and delivery applications. These developments will not only improve our understanding of the structural factors necessary for optimal siRNA internalization, but will also guide the future development of optimized PTDMs for siRNA internalization and delivery.
机译:对聚合物结构如何影响生物学相关货物(特别是小干扰核糖核酸(siRNA))的内在化和递送的基本理解,对于成功设计改进的递送试剂至关重要。在本文中,我们报道了使用开环复分解聚合(ROMP)方法来合成两个系列的富胍基蛋白转导域模拟物(PTDM):一个基于酰亚胺支架,每个重复单元包含一个胍基部分,另一个基于每个重复单元包含两个胍基部分的二酯支架。通过改变聚合度以及每个PTDM中阳离子电荷的相对数量,可以评估和比较两个ROMP主链用于siRNA内在化的性能。将荧光标记的siRNA内化到Jurkat T细胞中表明,异硫氰酸荧光素(FITC)-siRNA内化具有电荷含量依赖性,其中PTDM包含约40至60个阳离子电荷,从而促进了最大程度的内化。尽管存在这种电荷含量依赖性,但与具有相似数量阳离子电荷的相应二酯PTDM相比,酰亚胺支架在Jurkat T细胞中产生的活力要低得多,这表明该二酯支架是siRNA内在化和递送应用的首选。这些发展不仅将增进我们对最佳siRNA内在化所必需的结构因素的理解,而且还将指导用于siRNA内在化和递送的优化PTDM的未来发展。

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