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Optogenetic activation of the diaphragm
by
Sunshine, Michael D.
, Benevides, Ethan S.
, Fuller, David D.
, Rana, Sabhya
in
631/1647/1453/1451
/ 631/1647/2253
/ 631/443/1784
/ Animals
/ Channelrhodopsins - genetics
/ Dependovirus - genetics
/ Diaphragm
/ Electromyography
/ Humanities and Social Sciences
/ Mice
/ Microinjection
/ multidisciplinary
/ Neuromuscular diseases
/ Optogenetics
/ Photoreceptors
/ Respiration
/ Science
/ Science (multidisciplinary)
/ Trinucleotide repeats
2022
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Optogenetic activation of the diaphragm
by
Sunshine, Michael D.
, Benevides, Ethan S.
, Fuller, David D.
, Rana, Sabhya
in
631/1647/1453/1451
/ 631/1647/2253
/ 631/443/1784
/ Animals
/ Channelrhodopsins - genetics
/ Dependovirus - genetics
/ Diaphragm
/ Electromyography
/ Humanities and Social Sciences
/ Mice
/ Microinjection
/ multidisciplinary
/ Neuromuscular diseases
/ Optogenetics
/ Photoreceptors
/ Respiration
/ Science
/ Science (multidisciplinary)
/ Trinucleotide repeats
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Optogenetic activation of the diaphragm
by
Sunshine, Michael D.
, Benevides, Ethan S.
, Fuller, David D.
, Rana, Sabhya
in
631/1647/1453/1451
/ 631/1647/2253
/ 631/443/1784
/ Animals
/ Channelrhodopsins - genetics
/ Dependovirus - genetics
/ Diaphragm
/ Electromyography
/ Humanities and Social Sciences
/ Mice
/ Microinjection
/ multidisciplinary
/ Neuromuscular diseases
/ Optogenetics
/ Photoreceptors
/ Respiration
/ Science
/ Science (multidisciplinary)
/ Trinucleotide repeats
2022
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Journal Article
Optogenetic activation of the diaphragm
2022
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Overview
Impaired diaphragm activation is common in many neuromuscular diseases. We hypothesized that expressing photoreceptors in diaphragm myofibers would enable light stimulation to evoke functional diaphragm activity, similar to endogenous bursts. In a mouse model, adeno-associated virus (AAV) encoding channelrhodopsin-2 (AAV9-CAG-ChR2-mVenus, 6.12 × 10
11
vg dose) was delivered to the diaphragm using a minimally invasive method of microinjection to the intrapleural space. At 8–18 weeks following AAV injection, mice were anesthetized and studied during spontaneous breathing. We first showed that diaphragm electromyographic (EMG) potentials could be evoked with brief presentations of light, using a 473 nm high intensity LED. Evoked potential amplitude increased with intensity or duration of the light pulse. We next showed that in a paralyzed diaphragm, trains of light pulses evoked diaphragm EMG activity which resembled endogenous bursting, and this was sufficient to generate respiratory airflow. Light-evoked diaphragm EMG bursts showed no diminution after up to one hour of stimulation. Histological evaluation confirmed transgene expression in diaphragm myofibers. We conclude that intrapleural delivery of AAV9 can drive expression of ChR2 in the diaphragm and subsequent photostimulation can evoke graded compound diaphragm EMG activity similar to endogenous inspiratory bursting.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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