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March 1, 2000Bioconjugate Chemistry152 citations

Use of a Steroid Cyclic Disulfide Anchor in Constructing Gold Nanoparticle−Oligonucleotide Conjugates

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RLRobert L. LetsingerRERobert ElghanianGVG. Viswanadham

Key Points

  • To develop and evaluate a steroid cyclic disulfide anchoring group for binding oligonucleotides to gold nanoparticle surfaces with improved chemical stability.
  • Synthesized a novel cyclic disulfide anchor derived from 4,5-dihydroxy-1,2-dithiane and epiandrosterone and linked it to oligonucleotides.
  • Prepared gold nanoparticle conjugates and assessed sequence-specific oligonucleotide detection alongside stability against dithiothreitol (DTT) exposure relative to mercaptohexyl and acyclic disulfide controls.
  • Gold nanoparticle conjugates prepared with the steroid cyclic disulfide anchor functioned effectively as probes for recognizing specific oligonucleotide sequences.
  • The cyclic disulfide conjugates exhibited substantially higher resistance to DTT-induced thiol displacement compared to conventional mercaptohexyl or acyclic disulfide conjugates due to dual-sulfur gold anchoring.

Abstract

A new anchoring group is described for binding oligonucleotides to gold surfaces. On the basis of a ketal derived from 4,5-dihydroxy-1, 2 dithiane and epiandrosterone, it is easy to prepare and to link to oligonucleotides. Gold nanoparticle-oligonucleotide conjugates made using this cyclic disulfide linker serve as effective probes for detecting specific oligonucleotide sequences, and they exhibit much greater stability toward dithiothreitol than corresponding conjugates prepared with the conventional mercaptohexyl group or an acyclic disulfide unit. The high stability toward thiol deactivation likely results, in part at least, from anchoring each oligonucleotide to gold through two sulfur atoms.

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Cite This Study

Letsinger et al. (2000) studied this question.

synapsesocial.com/papers/6a0ff0e5fa36b6e053fd0fcbhttps://doi.org/10.1021/bc990152n
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