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Optimal pulse length of insonification for Piezo1 activation and intracellular calcium response
by
Hsiao, Ming-Yen
, Xiang, Gaoming
, Zhong, Pei
, Liao, Defei
in
631/57/2270
/ 631/80/2373
/ 631/80/86
/ 639/166/985
/ 639/166/988
/ 692/617
/ Calcium
/ Calcium (intracellular)
/ Calcium - metabolism
/ Calcium Signaling - radiation effects
/ Cell activation
/ Channel gating
/ Gene Knockout Techniques
/ HEK293 Cells
/ Humanities and Social Sciences
/ Humans
/ Intracellular
/ Ion Channels - antagonists & inhibitors
/ Ion Channels - metabolism
/ Ion Channels - radiation effects
/ Mechanical stimuli
/ Mechanotransduction, Cellular
/ multidisciplinary
/ Neurological diseases
/ Neuromodulation
/ Science
/ Science (multidisciplinary)
/ Shear stress
/ Streaming
/ Stress, Mechanical
/ Ultrasonic Waves
/ Ultrasound
2021
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Optimal pulse length of insonification for Piezo1 activation and intracellular calcium response
by
Hsiao, Ming-Yen
, Xiang, Gaoming
, Zhong, Pei
, Liao, Defei
in
631/57/2270
/ 631/80/2373
/ 631/80/86
/ 639/166/985
/ 639/166/988
/ 692/617
/ Calcium
/ Calcium (intracellular)
/ Calcium - metabolism
/ Calcium Signaling - radiation effects
/ Cell activation
/ Channel gating
/ Gene Knockout Techniques
/ HEK293 Cells
/ Humanities and Social Sciences
/ Humans
/ Intracellular
/ Ion Channels - antagonists & inhibitors
/ Ion Channels - metabolism
/ Ion Channels - radiation effects
/ Mechanical stimuli
/ Mechanotransduction, Cellular
/ multidisciplinary
/ Neurological diseases
/ Neuromodulation
/ Science
/ Science (multidisciplinary)
/ Shear stress
/ Streaming
/ Stress, Mechanical
/ Ultrasonic Waves
/ Ultrasound
2021
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Optimal pulse length of insonification for Piezo1 activation and intracellular calcium response
by
Hsiao, Ming-Yen
, Xiang, Gaoming
, Zhong, Pei
, Liao, Defei
in
631/57/2270
/ 631/80/2373
/ 631/80/86
/ 639/166/985
/ 639/166/988
/ 692/617
/ Calcium
/ Calcium (intracellular)
/ Calcium - metabolism
/ Calcium Signaling - radiation effects
/ Cell activation
/ Channel gating
/ Gene Knockout Techniques
/ HEK293 Cells
/ Humanities and Social Sciences
/ Humans
/ Intracellular
/ Ion Channels - antagonists & inhibitors
/ Ion Channels - metabolism
/ Ion Channels - radiation effects
/ Mechanical stimuli
/ Mechanotransduction, Cellular
/ multidisciplinary
/ Neurological diseases
/ Neuromodulation
/ Science
/ Science (multidisciplinary)
/ Shear stress
/ Streaming
/ Stress, Mechanical
/ Ultrasonic Waves
/ Ultrasound
2021
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Optimal pulse length of insonification for Piezo1 activation and intracellular calcium response
Journal Article
Optimal pulse length of insonification for Piezo1 activation and intracellular calcium response
2021
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Overview
Ultrasound (US) neuromodulation, especially sonogenetics, has been demonstrated with potential applications in noninvasive and targeted treatment of various neurological disorders. Despite the growing interest, the mechanism for US neuromodulation remains elusive, and the optimal condition for eliciting a neural response with minimal adverse effect has not been identified. Here, we investigate the Piezo1 activation and intracellular calcium response elicited by acoustical streaming induced shear stress under various US exposure conditions. We find that Piezo1 activation and resultant intracellular calcium response depend critically on shear stress amplitude and pulse length of the stimulation. Under the same insonification acoustic energy, we further identify an optical pulse length that leads to maximum cell deformation, Piezo1 activation, and calcium response with minimal injury, confirmed by numerical modeling of Piezo1 channel gating dynamics. Our results provide insight into the mechanism of ultrasonic activation of Piezo1 and highlight the importance of optimizing US exposure conditions in sonogenetics applications.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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