Modular microfluidics enables kinetic insight from time-resolved cryo-EM

There is a growing interest in performing time-resolved cryo-EM studies. Here, the authors present a time-resolved sample preparation method for cryo-EM called trEM, which uses a microfluidic device to initiate the biochemical reaction by rapid mixing of the components and then spraying the sample o...

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Autores principales: Märt-Erik Mäeots, Byungjin Lee, Andrea Nans, Seung-Geun Jeong, Mohammad M. N. Esfahani, Shan Ding, Daniel J. Smith, Chang-Soo Lee, Sung Sik Lee, Matthias Peter, Radoslav I. Enchev
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/4c520c72571f46d9942706a8ffffcd24
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spelling oai:doaj.org-article:4c520c72571f46d9942706a8ffffcd242021-12-02T18:34:21ZModular microfluidics enables kinetic insight from time-resolved cryo-EM10.1038/s41467-020-17230-42041-1723https://doaj.org/article/4c520c72571f46d9942706a8ffffcd242020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17230-4https://doaj.org/toc/2041-1723There is a growing interest in performing time-resolved cryo-EM studies. Here, the authors present a time-resolved sample preparation method for cryo-EM called trEM, which uses a microfluidic device to initiate the biochemical reaction by rapid mixing of the components and then spraying the sample onto a cryo-EM grid to snap-freeze it in a blot-free, automated manner within several milliseconds.Märt-Erik MäeotsByungjin LeeAndrea NansSeung-Geun JeongMohammad M. N. EsfahaniShan DingDaniel J. SmithChang-Soo LeeSung Sik LeeMatthias PeterRadoslav I. EnchevNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Märt-Erik Mäeots
Byungjin Lee
Andrea Nans
Seung-Geun Jeong
Mohammad M. N. Esfahani
Shan Ding
Daniel J. Smith
Chang-Soo Lee
Sung Sik Lee
Matthias Peter
Radoslav I. Enchev
Modular microfluidics enables kinetic insight from time-resolved cryo-EM
description There is a growing interest in performing time-resolved cryo-EM studies. Here, the authors present a time-resolved sample preparation method for cryo-EM called trEM, which uses a microfluidic device to initiate the biochemical reaction by rapid mixing of the components and then spraying the sample onto a cryo-EM grid to snap-freeze it in a blot-free, automated manner within several milliseconds.
format article
author Märt-Erik Mäeots
Byungjin Lee
Andrea Nans
Seung-Geun Jeong
Mohammad M. N. Esfahani
Shan Ding
Daniel J. Smith
Chang-Soo Lee
Sung Sik Lee
Matthias Peter
Radoslav I. Enchev
author_facet Märt-Erik Mäeots
Byungjin Lee
Andrea Nans
Seung-Geun Jeong
Mohammad M. N. Esfahani
Shan Ding
Daniel J. Smith
Chang-Soo Lee
Sung Sik Lee
Matthias Peter
Radoslav I. Enchev
author_sort Märt-Erik Mäeots
title Modular microfluidics enables kinetic insight from time-resolved cryo-EM
title_short Modular microfluidics enables kinetic insight from time-resolved cryo-EM
title_full Modular microfluidics enables kinetic insight from time-resolved cryo-EM
title_fullStr Modular microfluidics enables kinetic insight from time-resolved cryo-EM
title_full_unstemmed Modular microfluidics enables kinetic insight from time-resolved cryo-EM
title_sort modular microfluidics enables kinetic insight from time-resolved cryo-em
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/4c520c72571f46d9942706a8ffffcd24
work_keys_str_mv AT marterikmaeots modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
AT byungjinlee modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
AT andreanans modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
AT seunggeunjeong modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
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AT changsoolee modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
AT sungsiklee modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
AT matthiaspeter modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
AT radoslavienchev modularmicrofluidicsenableskineticinsightfromtimeresolvedcryoem
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