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首页> 外文期刊>Biomacromolecules >siRNA Delivery with Chitosan: Influence of Chitosan Molecular Weight, Degree of Deacetylation, and Amine to Phosphate Ratio on in Vitro Silencing Efficiency, Hemocompatibility, Biodistribution, and in Vivo Efficacy
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siRNA Delivery with Chitosan: Influence of Chitosan Molecular Weight, Degree of Deacetylation, and Amine to Phosphate Ratio on in Vitro Silencing Efficiency, Hemocompatibility, Biodistribution, and in Vivo Efficacy

机译:用壳聚糖递送siRNA:壳聚糖分子量,脱乙酰化程度和胺对磷酸盐比在体外沉默效率,血液相位力,生物分布和体内疗效的影响

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摘要

Chitosan (CS) shows in vitro and in vivo efficacy for siRNA delivery but with contradictory findings for incompletely characterized systems. For understanding which parameters produce effective delivery, a library of precisely characterized chitosans was produced at different degrees of deacetylation (DDAs) and average molecular weights (M-n). Encapsulation and transfection efficiencies were characterized in vitro. Formulations were selected to examine the influence of M-n and N:P ratio on nanoparticle uptake, metabolic activity, genotoxicity, and in vitro transfection. Hemocompatibility and in vivo biodistribution were then investigated for different M-n, N:P ratios, and doses. Nanoparticle uptake and gene silencing correlated with increased surface charge, which was obtained at high DDA and high M-n. A minimum polymer length of similar to 60-70 monomers (similar to 10 kDa) was required for stability and knockdown. In vitro knockdown was equivalent to lipid control with no metabolic or genotoxicity. An inhibitory effect of serum on biological performance was dependent on DDA, M-n, and N:P. In vivo biodistribution in mice show accumulation of nanoparticles in kidney with 40-50% functional knockdown.
机译:壳聚糖(CS)在体外显示siRNA递送的体外疗效,但具有对未完全特征的系统的矛盾结果。为了理解哪些参数产生有效递送,在不同程度的脱乙酰化(DDA)和平均分子量(M-N)中产生了精确表征的壳聚糖库。封装和转染效率在体外表征。选择制剂以检查M-N和N:P比对纳米粒子摄取,代谢活性,遗传毒性和体外转染的影响。然后研究血液相位力和体内生物分布,针对不同的M-N,N:P比和剂量​​进行研究。纳米粒子摄取和基因沉默与高达DDA和高M-N的高度表面电荷相关的相关性。稳定性和敲低所需的最小聚合物长度与60-70单体(类似于10kDa)。体外敲低相当于脂质对照,没有代谢或基因毒性。血清对生物学性能的抑制作用取决于DDA,M-N和N:p。小鼠体内生物分布显示肾脏纳米颗粒的积累,具有40-50%的功能敲低。

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