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首页> 外文期刊>Biomaterials >DNA encapsulated magnesium and manganous phosphate nanoparticles: potential non-viral vectors for gene delivery.
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DNA encapsulated magnesium and manganous phosphate nanoparticles: potential non-viral vectors for gene delivery.

机译:DNA包裹的镁和磷酸锰锰纳米颗粒:潜在的非病毒载体,用于基因传递。

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摘要

Nanoparticles of Mg and Mn (II) phosphates encapsulating pDNA were prepared. The sizes of these DNA loaded particles in aqueous dispersion were about 100-130nm diameter, and they aggregated with the progression of time. Although magnesium phosphate nanoparticles were crystalline, the manganous phosphate nanoparticles were found to be amorphous in nature. Nanoparticle dissolution and pDNA release were studied using atomic absorption spectroscopy and gel electrophoresis experiments. These inorganic phosphate nanoparticles dissolved in mild acidic pH ( approximately 5) releasing pDNA indicating that DNA release in the endosomal compartment is possible. In vitro transfection in HeLa cells demonstrated that while magnesium phosphate nanoparticles showed 100% efficiency, manganous phosphate nanoparticles exhibited about 85% transfection efficiency compared to that of 'polyfect', as control.
机译:制备了包裹pDNA的Mg和Mn(II)磷酸盐的纳米颗粒。这些分散于DNA中的颗粒在水分散液中的大小约为100-130nm,并且随着时间的推移而聚集。尽管磷酸镁纳米颗粒是结晶的,但是发现磷酸锰锰颗粒实际上是无定形的。使用原子吸收光谱法和凝胶电泳实验研究了纳米粒子的溶解和pDNA的释放。这些无机磷酸盐纳米颗粒溶解在弱酸性pH(约5)中,释放出pDNA,表明DNA可能在内体区室中释放。在HeLa细胞中进行体外转染表明,虽然磷酸镁纳米颗粒显示出100%的效率,但与之相比,作为对照的磷酸锰锰纳米颗粒则显示出约85%的转染效率。

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