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Synthesis and characterization of low molecular weight hyaluronic acid-based cationic micelles for efficient siRNA delivery

机译:低分子量透明质酸基阳离子胶束的合成和表征,可有效递送siRNA

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摘要

The aim of this work was to design a new non-viral carrier for gene delivery. This carrier was equipped with low molecular weight hyaluronic acid (LMHA) as ligand, which was conjugated by covalent attachment of hydrophobic amines (fatty amines) with different chain lengths and spermine as cationic segments. Their chemical structure and self-association behavior of the LMHA conjugates were investigated using 'H NMR, dynamic light scattering, fluorescence spectroscopy, and TEM. From the results, it was observed that polymeric micelles were spherical in shape. The micellar particle sizes and CMCs of the conjugates were significantly dependent on the degree of substitution of hydrophobic groups and the chain length. The CMCs of the conjugates were as low as 40-140 mg/L. The zeta potentials and agarose gel electrophoresis assays suggest that LMHA micelles encapsulating siRNA can be used as novel gene carriers for biomedical applications.
机译:这项工作的目的是设计一种用于基因传递的新型非病毒载体。该载体配备有低分子量的透明质酸(LMHA)作为配体,通过具有不同链长的疏水性胺(脂肪胺)和精胺作为阳离子链段的共价连接进行缀合。使用1 H NMR,动态光散射,荧光光谱和TEM研究了LMHA共轭物的化学结构和自缔合行为。从结果可以看出,聚合物胶束是球形的。缀合物的胶束粒度和CMCs显着取决于疏水基团的取代程度和链长。结合物的CMCs低至40-140 mg / L。 ζ电势和琼脂糖凝胶电泳分析表明,封装siR​​NA的LMHA胶束可用作生物医学应用的新型基因载体。

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