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首页> 外文期刊>Current Nanoscience >Alkylcarboxylate Polyethylenimine-grafted Chitosans as Efficient Gene Vectors with Improved Gene Delivery Activity
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Alkylcarboxylate Polyethylenimine-grafted Chitosans as Efficient Gene Vectors with Improved Gene Delivery Activity

机译:烷基羧酸聚乙烯亚胺接枝的壳聚糖作为具有改进的基因传递活性的高效基因载体。

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Chitosan as a copious natural polysaccharide has been proposed for a wide range of biomedical applications such as non-viral gene delivery due to its biodegradable and non-toxic nature. The presence of primary amines in the chitosan structure enables derivatization with different functional moieties to improve its properties such as solubility and transfection efficiency. In the current study, we prepared a series of hydrophobic chitosan-based constructs which was decorated with alkylcarboxylate polyethylenimine as an approach to overcome the drawbacks of chitosan in gene transfer while developing a potential safe vector. Physicochemical and biological characteristics of the synthesized vectors were investigated in terms of condensation ability, buffering capacity, size and zeta potential measurements, cytotoxicity and efficiency of the transgene expression in Neuro-2a cells. Modified chitosans led to nanocarriers with suitable mean diameter and slightly positive surface charge which showed significantly higher transfection efficiencies than that of unmodified chitosan. The most probable reasons for the higher efficacy of the synthesized vectors could be their optimal buffering capacity and hydrophobicity by incorporating PEI and alkanoate segments, respectively. Moreover, the new derivatives showed favorable solubility at physiological pH which may help their in vivo application to be more feasible.
机译:由于其生物可降解和无毒的性质,壳聚糖作为一种丰富的天然多糖已被提议用于广泛的生物医学应用,例如非病毒基因递送。壳聚糖结构中伯胺的存在使得具有不同功能部分的衍生化能够改善其性质,例如溶解度和转染效率。在当前的研究中,我们制备了一系列基于壳聚糖的疏水构建体,该构建体用烷基羧酸盐聚乙烯亚胺修饰,以克服壳聚糖在基因转移中的缺点,同时开发一种潜在的安全载体。从缩合能力,缓冲能力,大小和ζ电位测量,细胞毒性和Neuro-2a细胞中转基因表达的效率方面研究了合成载体的理化和生物学特性。修饰的壳聚糖导致纳米载体具有合适的平均直径和略带正电荷的表面电荷,与未修饰的壳聚糖相比,纳米载体的转染效率明显更高。合成载体更高功效的最可能原因可能是通过分别掺入PEI和链烷酸酯片段实现的最佳缓冲能力和疏水性。而且,新衍生物在生理pH下显示出有利的溶解性,这可能有助于它们的体内应用更加可行。

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