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Multifunctional nanomaterials of dna block copolymers: Synthesis, self-assembly, thermodynamic studies and biomedical applications.

机译:dna嵌段共聚物的多功能纳米材料:合成,自组装,热力学研究和生物医学应用。

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摘要

Oligonucleotide-conjugated bio-hybrid nanomaterials with a dense DNA layer on the surface have been shown to possess extraordinary selectivity and sensitivity for DNA detection as well as promising results as delivery agents, as demonstrated with the exceptional example of polyvalent oligonucleotide-conjugated gold nanoparticles. However, progress in this field has been slowed, since achieving high DNA density functionalization on the nanoparticle surface for materials other than gold is a major challenge. In this body of work, we have developed a general system to conjugate a dense layer of DNA on the surface of nanoparticles by the self-assembly of DNA block copolymer. These hybrid nanostructures demonstrated enhanced DNA binding, where the DNA strands on the surface of the nanoparticles can recognize and bind to complementary DNA strands without the addition of salt, a condition where free DNA strands do not form duplex. These assemblies are also selective in DNA recognition; they can distinguish different number base mismatches of the complementary DNA. It was determined that these assemblies possess a surface DNA density that is four times higher than that of DNA-conjugated gold nanoparticles of the same size, the highest DNA functionalization reported in the literature in this size range. These assemblies were also effectively taken up by cells without the use of a co-transfecting agent. The high DNA density also protects the degradation of the DNA, making them ideal candidates for DNA delivery and antisensing applications. Lastly, these assemblies have been tested for their antisensing capability, and found that they can effectively down regulate a targeted protein.
机译:表面上具有致密的DNA层的寡核苷酸缀合的生物杂交纳米材料已显示出对DNA检测具有非凡的选择性和灵敏度,以及作为递送剂的有希望的结果,如多价寡核苷酸缀合的金纳米颗粒的特殊示例所证明的那样。然而,该领域的进展已经放慢,因为对于金以外的材料,在纳米颗粒表面上实现高DNA密度功能化是一个重大挑战。在这项工作中,我们已经开发了一种通用系统,可以通过DNA嵌段共聚物的自组装在纳米颗粒表面上缀合致密的DNA层。这些杂合的纳米结构显示出增强的DNA结合,其中纳米颗粒表面上的DNA链无需添加盐即可识别并结合互补的DNA链,而游离DNA链不会形成双链体。这些组装在DNA识别中也具有选择性。它们可以区分互补DNA的不同数量碱基错配。已确定这些组件的表面DNA密度是相同大小的DNA偶联金纳米颗粒的四倍,这是文献中报道的在该大小范围内最高的DNA功能。这些组件也可以有效地被细胞吸收,而无需使用共转染剂。高的DNA密度还可以保护DNA的降解,使其成为DNA递送和反感应用的理想候选者。最后,对这些组件的抗敏能力进行了测试,发现它们可以有效地下调目标蛋白质。

著录项

  • 作者

    Chen, Xi-Jun.;

  • 作者单位

    University of Pennsylvania.;

  • 授予单位 University of Pennsylvania.;
  • 学科 Chemistry General.;Engineering Materials Science.;Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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