首页> 外文会议>NSTI Nanotechnology Conference and Trade Show(NSTI Nanotech 2005) vol.1; 20050508-12; Anaheim,CA(US) >pH-sensitive nano-crystals of carbonate apatite regulate delivery and release kinetics of DNA for efficient expression in mammalian cells
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pH-sensitive nano-crystals of carbonate apatite regulate delivery and release kinetics of DNA for efficient expression in mammalian cells

机译:pH敏感的碳酸盐磷灰石纳米晶体调节DNA的传递和释放动力学,以便在哺乳动物细胞中有效表达

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摘要

Due to some major limitations of viral-mediated delivery, non-viral synthetic systems have become increasingly desirable. However, synthetic systems are notably inefficient compared to the viral ones in gene delivery and expression. Here we report on the development of the simplest, but highly efficient gene delivery device based on generated nano-apatite crystals having high affinity to DNA but fast dissolution kinetics in acidic vesicles, following efficient endocytosis, for effective release of DNA and thus result in 5 to 100-fold higher transgene expression than the existing ones. Fluoride (F~-) or strontium (Sr~(2+)) which is known to decrease the solubility of carbonate apatite, dramatically reduced the transfection efficiency, suggesting that DNA release through particle dissolution, is a crucial factor in gene delivery pathway. Additionally, flexibility in modulating' crystal dissolution kinetics enabled to control intracellular DNA release and an intermediate rate of DNA release enhanced survival of DNA and subsequent expression.
机译:由于病毒介导的递送的一些主要限制,非病毒合成系统已变得越来越令人期望。但是,与病毒系统相比,合成系统在基因传递和表达上效率低下。在这里,我们报告了基于产生的纳米磷灰石晶体的最简单但高效的基因传递装置的开发情况,该晶体对DNA具有高亲和力,但在有效的内吞作用之后,在酸性囊泡中具有快速的溶解动力学,可以有效释放DNA,从而导致5比现有的转基因表达高100倍氟化物(F〜-)或锶(Sr〜(2+))已知会降低碳酸盐磷灰石的溶解度,显着降低转染效率,这表明通过颗粒溶解释放的DNA是基因传递途径中的关键因素。另外,调节晶体溶解动力学的灵活性使之能够控制细胞内DNA的释放,而DNA释放的中间速率提高了DNA的存活率和随后的表达。

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