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Bioelectrical understanding and engineering of cell biology
File | Description | Size | Format | |
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Bioelectrical understanding and engineering of cell biology.pdf | Published version | 1.49 MB | Adobe PDF | View/Open |
Title: | Bioelectrical understanding and engineering of cell biology |
Authors: | Schofield, Z Meloni, GN Tran, P Zerfass, C Sena, G Hayashi, Y Grant, M Contera, SA Minteer, SD Kim, M Prindle, A Rocha, P Djamgoz, MBA Pilizota, T Unwin, PR Asally, M Soyer, OS |
Item Type: | Journal Article |
Abstract: | The last five decades of molecular and systems biology research have provided unprecedented insights into the molecular and genetic basis of many cellular processes. Despite these insights, however, it is arguable that there is still only limited predictive understanding of cell behaviours. In particular, the basis of heterogeneity in single-cell behaviour and the initiation of many different metabolic, transcriptional or mechanical responses to environmental stimuli remain largely unexplained. To go beyond the status quo, the understanding of cell behaviours emerging from molecular genetics must be complemented with physical and physiological ones, focusing on the intracellular and extracellular conditions within and around cells. Here, we argue that such a combination of genetics, physics and physiology can be grounded on a bioelectrical conceptualization of cells. We motivate the reasoning behind such a proposal and describe examples where a bioelectrical view has been shown to, or can, provide predictive biological understanding. In addition, we discuss how this view opens up novel ways to control cell behaviours by electrical and electrochemical means, setting the stage for the emergence of bioelectrical engineering. |
Issue Date: | 27-May-2020 |
Date of Acceptance: | 17-Apr-2020 |
URI: | http://hdl.handle.net/10044/1/80529 |
DOI: | 10.1098/rsif.2020.0013 |
ISSN: | 1742-5662 |
Publisher: | Royal Society, The |
Start Page: | 1 |
End Page: | 8 |
Journal / Book Title: | Journal of the Royal Society Interface |
Volume: | 17 |
Issue: | 166 |
Copyright Statement: | © 2020 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited. |
Sponsor/Funder: | Paul G Allen Family Foundation Paul G Allen Family Foundation |
Funder's Grant Number: | EP0173197 n/a |
Keywords: | Science & Technology Multidisciplinary Sciences Science & Technology - Other Topics bioelectricity bioelectrical cell biology cell physiology cell biophysics electrochemistry ESCHERICHIA-COLI OVERFLOW METABOLISM QUANTITATIVE VISUALIZATION MEMBRANE-POTENTIALS ELECTRICAL SIGNALS LONG-DISTANCE LIVING CELLS GROWTH PROLIFERATION OSCILLATIONS bioelectrical cell biology bioelectricity cell biophysics cell physiology electrochemistry Science & Technology Multidisciplinary Sciences Science & Technology - Other Topics bioelectricity bioelectrical cell biology cell physiology cell biophysics electrochemistry ESCHERICHIA-COLI OVERFLOW METABOLISM QUANTITATIVE VISUALIZATION MEMBRANE-POTENTIALS ELECTRICAL SIGNALS LONG-DISTANCE LIVING CELLS GROWTH PROLIFERATION OSCILLATIONS General Science & Technology |
Publication Status: | Published |
Article Number: | ARTN 20200013 |
Online Publication Date: | 2020-05-20 |
Appears in Collections: | Faculty of Natural Sciences |