Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes

Multiplexed imaging of synaptic proteins can provide useful information on the heterogeneity of synaptic architecture and plasticity. Here the authors use high affinity locked nucleic acid probes and low affinity DNA imaging probes to achieve multiplexed confocal and super-resolution imaging of syna...

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Autores principales: Syuan-Ming Guo, Remi Veneziano, Simon Gordonov, Li Li, Eric Danielson, Karen Perez de Arce, Demian Park, Anthony B. Kulesa, Eike-Christian Wamhoff, Paul C. Blainey, Edward S. Boyden, Jeffrey R. Cottrell, Mark Bathe
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/789abbb5bbe64affabf5dc217e63e1f9
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spelling oai:doaj.org-article:789abbb5bbe64affabf5dc217e63e1f92021-12-02T15:36:18ZMultiplexed and high-throughput neuronal fluorescence imaging with diffusible probes10.1038/s41467-019-12372-62041-1723https://doaj.org/article/789abbb5bbe64affabf5dc217e63e1f92019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12372-6https://doaj.org/toc/2041-1723Multiplexed imaging of synaptic proteins can provide useful information on the heterogeneity of synaptic architecture and plasticity. Here the authors use high affinity locked nucleic acid probes and low affinity DNA imaging probes to achieve multiplexed confocal and super-resolution imaging of synaptic and cytoskeletal proteins.Syuan-Ming GuoRemi VenezianoSimon GordonovLi LiEric DanielsonKaren Perez de ArceDemian ParkAnthony B. KulesaEike-Christian WamhoffPaul C. BlaineyEdward S. BoydenJeffrey R. CottrellMark BatheNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Syuan-Ming Guo
Remi Veneziano
Simon Gordonov
Li Li
Eric Danielson
Karen Perez de Arce
Demian Park
Anthony B. Kulesa
Eike-Christian Wamhoff
Paul C. Blainey
Edward S. Boyden
Jeffrey R. Cottrell
Mark Bathe
Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
description Multiplexed imaging of synaptic proteins can provide useful information on the heterogeneity of synaptic architecture and plasticity. Here the authors use high affinity locked nucleic acid probes and low affinity DNA imaging probes to achieve multiplexed confocal and super-resolution imaging of synaptic and cytoskeletal proteins.
format article
author Syuan-Ming Guo
Remi Veneziano
Simon Gordonov
Li Li
Eric Danielson
Karen Perez de Arce
Demian Park
Anthony B. Kulesa
Eike-Christian Wamhoff
Paul C. Blainey
Edward S. Boyden
Jeffrey R. Cottrell
Mark Bathe
author_facet Syuan-Ming Guo
Remi Veneziano
Simon Gordonov
Li Li
Eric Danielson
Karen Perez de Arce
Demian Park
Anthony B. Kulesa
Eike-Christian Wamhoff
Paul C. Blainey
Edward S. Boyden
Jeffrey R. Cottrell
Mark Bathe
author_sort Syuan-Ming Guo
title Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
title_short Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
title_full Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
title_fullStr Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
title_full_unstemmed Multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
title_sort multiplexed and high-throughput neuronal fluorescence imaging with diffusible probes
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/789abbb5bbe64affabf5dc217e63e1f9
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