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首页> 外文期刊>Russian journal of bioorganic chemistry >Composites of Peptide Nucleic Acids with Titanium Dioxide Nanoparticles. II. Dissociation of DNA/PNA Duplexes within TiO2 ? Polylysine ? DNA/PNA Nanocomposites and in Solution. Effect of Polylysine
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Composites of Peptide Nucleic Acids with Titanium Dioxide Nanoparticles. II. Dissociation of DNA/PNA Duplexes within TiO2 ? Polylysine ? DNA/PNA Nanocomposites and in Solution. Effect of Polylysine

机译:肽核酸与二氧化钛纳米粒子的复合材料。二。 TiO2中DNA / PNA双链体的解离?聚赖氨酸? DNA / PNA纳米复合材料和溶液中。聚赖氨酸的作用

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摘要

When creating effective drugs, it is important not only to transport them into cells, but also allow them to be released from the “transporter” after the delivery. It was shown that the dissociation of peptide nucleic acids (PNA) from TiO_2 ? PL ? DNA/PNA nanocomposites occurred according to a typical thermal denaturation, and polylysine (PL) in the nanocomposite has almost no effect on the dissociation. These data suggest that the immobilization of PNA in the TiO_2 ? PL ? DNA/PNA nanocomposite is reversible and PNA can be easily released from TiO_2 carrier into solution. In contrast to that, the dissociation of DNA/DNA and DNA/PNA duplexes in physiological solution in the presence of PL was not observed. PL in solution dramatically influences the dependence of the optical density on temperature and time for DNA/DNA duplexes and to a lesser degree for DNA/PNA duplexes. It has been assumed that PL and DNA/DNA duplexes in physiological solutions form triple polycomplexes (DNA/DNA ? PL)m, which can aggregate and precipitate. PL in solution can also interact with DNA/PNA duplexes to form monocomplexes PL ? (DNA/PNA)n con-sisting of one PL chain and one or more (n) DNA/PNA duplexes. Although these monocomplexes do not precipitate, the dissociation of DNA/PNA duplexes from them is complicated.
机译:当创造有效的药物时,重要的是不仅要将其运输到细胞中,而且还要使它们在交付后从“转运蛋白”中释放出来。结果表明,肽核酸(PNA)从TiO_2上解离。 PL? DNA / PNA纳米复合材料是根据典型的热变性发生的,纳米复合材料中的聚赖氨酸(PL)对解离几乎没有影响。这些数据表明,将PNA固定在TiO_2中。 PL? DNA / PNA纳米复合材料是可逆的,并且PNA可以轻松地从TiO_2载体释放到溶液中。与此相反,在PL存在下未观察到在生理溶液中DNA / DNA和DNA / PNA双链体的解离。溶液中的PL显着影响DNA / DNA双链体的光密度对温度和时间的依赖性,而对DNA / PNA双链体的依赖性较小。据推测,生理溶液中的PL和DNA / DNA双链体形成了三重复合体(DNA / DNA→PL)m,它们可以聚集并沉淀。溶液中的PL也可以与DNA / PNA双链体相互作用形成单复合体。 (DNA / PNA)n由一条PL链和一个或多个(n)DNA / PNA双链体组成。尽管这些单复合物不沉淀,但是DNA / PNA双链体从它们的解离是复杂的。

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