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Journal ArticleDOI

A general approach to DNA-programmable atom equivalents

TLDR
By coating nanoparticles protected with aliphatic ligands with an azide-bearing amphiphilic polymer, followed by the coupling of DNA to the polymer using strain-promoted azide -alkyne cycloaddition, nanoparticles bearing a high-density shell of nucleic acids can be created regardless of nanoparticle composition.
Abstract
Nanoparticles can be combined with nucleic acids to programme the formation of three-dimensional colloidal crystals where the particles' size, shape, composition and position can be independently controlled. However, the diversity of the types of material that can be used is limited by the lack of a general method for preparing the basic DNA-functionalized building blocks needed to bond nanoparticles of different chemical compositions into lattices in a controllable manner. Here we show that by coating nanoparticles protected with aliphatic ligands with an azide-bearing amphiphilic polymer, followed by the coupling of DNA to the polymer using strain-promoted azide-alkyne cycloaddition (also known as copper-free azide-alkyne click chemistry), nanoparticles bearing a high-density shell of nucleic acids can be created regardless of nanoparticle composition. This method provides a route to a virtually endless class of programmable atom equivalents for DNA-based colloidal crystallization.

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Citations
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Journal ArticleDOI

DNA-programmable particle superlattices: Assembly, phases, and dynamic control

TL;DR: In this paper, the most significant achievements and challenges in assembly of DNA-programmable particle superlattices are discussed, and a wide variety of structures have been assembled by tuning the interactions, sizes, and shapes of NPs.
Journal ArticleDOI

Programming colloidal bonding using DNA strand-displacement circuitry.

TL;DR: An enthalpy-mediated strategy to control dynamic pathways in colloidal assembly by working at constant temperature is developed, which provides a different option to circumvent metastability that normally causes disordered structures.
Journal ArticleDOI

Combining the incompatible: Block copolymers consecutively displaying activated esters and amines and their use as protein-repellent surface modifiers with multivalent biorecognition

TL;DR: This strategy demonstrates a viable approach for orthogonal combination of widely needed, but mutually incompatible, functional groups into complex polymer architectures and tight adhesion and enhanced protein-repellent characteristics combined with specific and multivalent biorecognition of avidin as a function of block ratios.
Journal ArticleDOI

Self-Assembly of DNA Functionalized Gold Nanoparticles at the Liquid-Vapor Interface

TL;DR: In this paper, the spontaneous formation of 2D Gibbs monolayers of thiolated single-stranded DNA-functionalized gold nanoparticles (ssDNA-AuNPs) at the vapor-solution interface by manipulating salt concentrations was investigated.
Patent

Multivalent delivery of immune modulators by liposomal spherical nucleic acids for prophylactic or therapeutic applications

TL;DR: The liposomal spherical nucleic acids of the invention are useful prophylactic and therapeutic applications as well as research and diagnostic indications as discussed by the authors, and they function as multivalent immune modulators.
References
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Journal ArticleDOI

Gold nanoparticles: assembly, supramolecular chemistry, quantum-size-related properties, and applications toward biology, catalysis, and nanotechnology.

TL;DR: A review of gold nanoparticles can be found in this article, where the most stable metal nanoparticles, called gold colloids (AuNPs), have been used for catalysis and biology applications.
Journal ArticleDOI

Semiconductor Clusters, Nanocrystals, and Quantum Dots

TL;DR: In this article, the authors focus on the properties of quantum dots and their ability to join the dots into complex assemblies creates many opportunities for scientific discovery, such as the ability of joining the dots to complex assemblies.
Journal ArticleDOI

A DNA-based Method for Rationally Assembling Nanoparticles Into Macroscopic Materials

TL;DR: A method for assembling colloidal gold nanoparticles rationally and reversibly into macroscopic aggregates by using the specificity of DNA interactions to direct the interactions between particles of different size and composition is described.
Journal ArticleDOI

In vivo cancer targeting and imaging with semiconductor quantum dots

TL;DR: Sensitive and multicolor fluorescence imaging of cancer cells under in vivo conditions are achieved and a whole-body macro-illumination system with wavelength-resolved spectral imaging is integrated for efficient background removal and precise delineation of weak spectral signatures.
Journal ArticleDOI

Selective Colorimetric Detection of Polynucleotides Based on the Distance-Dependent Optical Properties of Gold Nanoparticles

TL;DR: A highly selective, colorimetric polynucleotide detection method based on mercaptoalkyloligonucleotide-modified gold nanoparticle probes is reported, which can detect about 10 femtomoles of an oligonucleotide.
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