Dna Tiles

DNA tiles are short, designed DNA structures that act as modular building blocks for assembling nanoscale materials, making them important in nanotechnology and molecular chemistry. Each tile contains complementary nucleotide sequences that form a defined shape, while exposed single-stranded “sticky ends” recognize matching sequences on neighboring tiles and guide their hybridization into ordered arrays under suitable solution conditions. By changing tile sequences, researchers can control assembly patterns, dimensions, and functional groups. DNA tiles support the construction of molecular circuits, nanoscale patterns, and programmable materials, providing a chemically addressable platform for studying self-assembly and developing applications in sensing, molecular computation, and nanofabrication.

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Research

JoVE Journal - Chemistry

Self-assembly of Complex Two-dimensional Shapes from Single-stranded DNA Tiles

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Cited by 5 •

2015

DNA tiling is an effective approach to make programmable nanostructures. We describe the protocols to construct complex two-dimensional shapes by the self-assembly of single-stranded DNA tiles.

Rapid Setup of Tissue Microarray and Tiled Area Imaging on the Multiplexed Ion Beam Imaging Microscope Using the Tile/SED/Array Interface

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Cited by 2 •

2023

Multiplexed ion beam imaging (MIBI) is often used to image tissue microarrays and tiled, contiguous tissue areas, but current software for setting up these experiments is cumbersome. The tile/SED/array interface is an intuitive, interactive graphical tool developed to dramatically simplify and accelerate MIBI run setup.

Analysis of Astrocyte Territory Volume and Tiling in Thick Free-Floating Tissue Sections

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Cited by 4 •

2022

This protocol describes methods for sectioning, staining, and imaging free-floating tissue sections of the mouse brain, followed by a detailed description of the analysis of astrocyte territory volume and astrocyte territory overlap or tiling.

Amplification, Next-generation Sequencing, and Genomic DNA Mapping of Retroviral Integration Sites

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Cited by 56 •

2016

We describe a protocol for amplifying retroviral integration sites from the genomic DNA of infected cells, sequencing the amplified virus-host junctions, and then mapping these sequences to a reference genome. We also describe techniques to quantify the distribution of integration sites relative to various genomic annotations using BEDTools.

DNA Stable-Isotope Probing (DNA-SIP)

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Cited by 70 •

2010

DNA stable-isotope probing is a cultivation-independent method to identify and characterize active communities of microorganisms that are capable of utilizing specific substrates. Assimilation of substrate enriched in heavy isotope leads to incorporation of labelled atoms into microbial biomass. Density gradient ultracentrifugation retrieves labelled DNA for downstream molecular analyses.

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