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Assessment of DNA complexation onto polyelectrolyte-coated magnetic silica nanoparticles

机译:评估的DNA上络合polyelectrolyte-coated磁性二氧化硅纳米粒子

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摘要

The polyelectrolyte-DNA complexation method to form magnetoplexes using silica-coated iron oxide magnetic nanoparticles as inorganic substrates is an attractive and promising process in view of the potential applications including magnetofection, DNA extraction and purification, and directed assembly of nanostructures. Herein, we present a systematic physico-chemical study that provides clear evidence of the type of interactions established, reflects the importance of the DNA length, the nanoparticle size and the ionic strength, and permits the identification of the parameters controlling both the stability and the type of magnetoplexes formed. This information can be used to develop targeted systems with properties optimized for the various proposed applications of magnetoplexes.
机译:polyelectrolyte-DNA络合的方法形式magnetoplexes使用silica-coated氧化铁磁性纳米颗粒作为无机基质一个有吸引力的和有前途的过程的观点潜在的应用包括magnetofection, DNA的提取和纯化,和定向组装的纳米结构。我们提出一个系统的物理化学研究提供明确的证据的类型相互作用,反映了重要性DNA的长度,纳米颗粒大小和离子强度和允许的识别稳定和控制的参数magnetoplexes形成的类型。信息可以用来开发目标系统优化的各种属性magnetoplexes提出的应用。

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