2021
DOI: 10.1007/978-981-15-8763-4_23
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Application of Optogenetics for Muscle Cells and Stem Cells

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Cited by 6 publications
(5 citation statements)
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“…Initially, optogenetic research focused primarily on brain or spinal cord neurons. However, the scope of research has gradually expanded to include the peripheral nervous system and non-neuronal systems, such as skeletal, smooth or cardiac muscles, glial, stem cells, endocrine cells, et al ( Jia et al, 2011 ; Bruegmann et al, 2015 ; Park et al, 2017 ; Xie et al, 2020 ; Asano et al, 2021 ; Yang et al, 2022 ). Optogenetics has also led to many new discoveries about the neural circuitry underlying disease-related symptoms.…”
Section: Discussionmentioning
confidence: 99%
“…Initially, optogenetic research focused primarily on brain or spinal cord neurons. However, the scope of research has gradually expanded to include the peripheral nervous system and non-neuronal systems, such as skeletal, smooth or cardiac muscles, glial, stem cells, endocrine cells, et al ( Jia et al, 2011 ; Bruegmann et al, 2015 ; Park et al, 2017 ; Xie et al, 2020 ; Asano et al, 2021 ; Yang et al, 2022 ). Optogenetics has also led to many new discoveries about the neural circuitry underlying disease-related symptoms.…”
Section: Discussionmentioning
confidence: 99%
“…Recent advances in the field of optogenetics have provided a unique opportunity to visualize or modify the activity of distinct populations of cells within intact preparations using light stimulation and genetic manipulation (Asano et al., 2021). Optogenetic techniques can be split into activators/inactivators (such as light activated rhodopsins) and reporters (such as genetically encoded Ca 2+ indicators (GECIs)).…”
Section: The Sip (Smooth Muscle Cells Interstitial Cells Of Cajal And...mentioning
confidence: 99%
“…Targeting neurogenesis with drugs and compounds affecting some of the above-mentioned regulatory mechanisms is in the focus of neurobiologists and neuropharmacologists. At the same time, given the rapid development of optogenetics, it is not surprising that this method has already been repeatedly tested to modulate the adult neurogenesis with higher precision either in vivo or in vitro [128,129]. Indeed, neural stem or progenitor cells could be transfected with light-sensitive channelrhodopsin2 (ChR2) or other variants of chimeric opsins, for the induction of large photocurrents, either with viral vectors (i.e., lentivirus) or via a non-viral transfection system (i.e., piggy-Bac transposons).…”
Section: Adult Neurogenesis As a Target For Therapy And Optogenetic Controlmentioning
confidence: 99%