Literature DB >> 30266321

Theoretical Study on Gold-Nanorod-Enhanced Near-Infrared Neural Stimulation.

Kyungsik Eom1, Kyung Min Byun2, Sang Beom Jun3, Sung June Kim4, Jonghwan Lee5.   

Abstract

Over the past decade, optical methods have emerged for modulating brain functions as an alternative to electrical stimulation. Among various optical techniques, infrared neural stimulation has been effective via a thermal mechanism enabling focused and noninvasive stimulation without any genetic manipulation, but it results in bulk heating of neural tissue. Recently, it has been shown that neural cells can be activated more efficiently by pulsed near-infrared (NIR) light delivered to gold nanorods (GNRs) near the neural cells. Despite its potential, however, the biophysical mechanism underlying this GNR-enhanced NIR stimulation has not been clearly explained yet. Here, we propose an integrative and quantitative model to elucidate the mechanism by modeling heat generated from interaction between NIR light and GNRs, the temperature-dependent ion channels (transient receptor potential vanilloid 1; TRPV1) in the neuronal membrane, and a heat-induced capacitive current through the membrane. Our results show that NIR pulses induce abrupt temperature elevation near the neuronal membrane and lead to both the TRPV1-channel and capacitive currents. Both current sources synergistically increase the membrane potential and elicit an action potential, and which mechanism is dominant depends on conditions such as the laser pulse duration and TRPV1 channel density. Although the TRPV1 mechanism dominates in most cases we tested, the capacitive current makes a larger contribution when a very short laser pulse is illuminated on neural cells with relatively low TRPV1 channel densities.
Copyright © 2018 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2018        PMID: 30266321      PMCID: PMC6372194          DOI: 10.1016/j.bpj.2018.09.004

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  34 in total

1.  A few comments on electrostatic interactions in cell physiology.

Authors:  S Genet; R Costalat; J Burger
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Review 2.  ThermoTRP channels and beyond: mechanisms of temperature sensation.

Authors:  Ardem Patapoutian; Andrea M Peier; Gina M Story; Veena Viswanath
Journal:  Nat Rev Neurosci       Date:  2003-07       Impact factor: 34.870

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Authors:  Edward S Boyden; Feng Zhang; Ernst Bamberg; Georg Nagel; Karl Deisseroth
Journal:  Nat Neurosci       Date:  2005-08-14       Impact factor: 24.884

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Authors:  Jonathon Wells; Chris Kao; Peter Konrad; Tom Milner; Jihoon Kim; Anita Mahadevan-Jansen; E Duco Jansen
Journal:  Biophys J       Date:  2007-05-25       Impact factor: 4.033

5.  Photothermal inhibition of neural activity with near-infrared-sensitive nanotransducers.

Authors:  Sangjin Yoo; Soonwoo Hong; Yeonho Choi; Ji-Ho Park; Yoonkey Nam
Journal:  ACS Nano       Date:  2014-08-26       Impact factor: 15.881

6.  Gold-nanorod-assisted near-infrared stimulation of primary auditory neurons.

Authors:  Jiawey Yong; Karina Needham; William G A Brown; Bryony A Nayagam; Sally L McArthur; Aimin Yu; Paul R Stoddart
Journal:  Adv Healthc Mater       Date:  2014-05-05       Impact factor: 9.933

7.  Expression and distribution of vanilloid receptor 1 (TRPV1) in the adult rat brain.

Authors:  Attila Tóth; Judit Boczán; Noémi Kedei; Erzsébet Lizanecz; Zsolt Bagi; Zoltán Papp; István Edes; László Csiba; Peter M Blumberg
Journal:  Brain Res Mol Brain Res       Date:  2005-01-22

8.  Axonal model for temperature stimulation.

Authors:  Sarah Fribance; Jicheng Wang; James R Roppolo; William C de Groat; Changfeng Tai
Journal:  J Comput Neurosci       Date:  2016-06-24       Impact factor: 1.621

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Authors:  Claus-Peter Richter; Agnella Izzo Matic; Jonathon D Wells; E Duco Jansen; Joseph T Walsh
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10.  Optocapacitive Generation of Action Potentials by Microsecond Laser Pulses of Nanojoule Energy.

Authors:  João L Carvalho-de-Souza; Bernardo I Pinto; David R Pepperberg; Francisco Bezanilla
Journal:  Biophys J       Date:  2017-12-19       Impact factor: 4.033

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Review 2.  Ultrasonic Retinal Neuromodulation and Acoustic Retinal Prosthesis.

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  2 in total

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