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Nanometer distance measurements between multicolor quantum dots.


ABSTRACT: Quantum dot dimers made of short double-stranded DNA molecules labeled with different color quantum dots at each end were imaged using multicolor stage-scanning confocal microscopy. This approach eliminates chromatic aberration and color registration issues usually encountered in other multicolor imaging techniques. We demonstrate nanometer accuracy in individual distance measurement by suppression of quantum dot blinking and thoroughly characterize the contribution of different effects to the variability observed between measurements. Our analysis opens the way to accurate structural studies of biomolecules and biomolecular complexes using multicolor quantum labeling.

SUBMITTER: Antelman J 

PROVIDER: S-EPMC2748936 | biostudies-other | 2009 May

REPOSITORIES: biostudies-other

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Nanometer distance measurements between multicolor quantum dots.

Antelman Josh J   Wilking-Chang Connie C   Weiss Shimon S   Michalet Xavier X  

Nano letters 20090501 5


Quantum dot dimers made of short double-stranded DNA molecules labeled with different color quantum dots at each end were imaged using multicolor stage-scanning confocal microscopy. This approach eliminates chromatic aberration and color registration issues usually encountered in other multicolor imaging techniques. We demonstrate nanometer accuracy in individual distance measurement by suppression of quantum dot blinking and thoroughly characterize the contribution of different effects to the v  ...[more]

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