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Published in: Lasers in Medical Science 9/2018

01-12-2018 | Original Article

Gold nanorod-assisted near-infrared stimulation of bullfrog sciatic nerve

Authors: Zongxia Mou, Mengxian You, Wei Xue

Published in: Lasers in Medical Science | Issue 9/2018

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Abstract

Infrared neural stimulation (INS) is a new and developing approach for neural repair, with the advantages of being non-contact, spatially precise, and artifact-free. However, the disadvantage of infrared light is that it is difficult to stimulate deep tissue because of its weak penetrating power. Therefore, this paper introduces an improved method using near-infrared laser to stimulate bullfrog sciatic nerves because of its strong penetrating power. Meanwhile, gold nanorods (Au NRs) are injected into the nerve to increase the absorption of light. The mechanism is the instantaneous temperature rise caused by the absorption of infrared light by Au NRs. The compound muscle action potential (CMAP) associated with the irradiated sciatic nerve is recorded by a multi-channel physiological signal instrument. The peak to peak amplitude (Vpp) of CMAP for sciatic nerves injected with Au NRs increases significantly compared to the CMAP for control nerves without Au NRs. These results demonstrate INS by labeling nerves with nanoparticle exhibiting latent capacity to increase the efficiency, spatial resolution, and the neural responsivity, and especially, can increase the penetration depth and reduce the requisite radiant exposure level.
Literature
1.
go back to reference Hassler C, Boretius T, Stieglitz T (2010) Polymers for neural implants. J Polym Sci B Polym Phys 49(3):18–33 Hassler C, Boretius T, Stieglitz T (2010) Polymers for neural implants. J Polym Sci B Polym Phys 49(3):18–33
3.
go back to reference Ackermann DM, Foleds EL, Bhadra N et al (2010) Conduction block of peripheral nerve using high frequency alternating currents delivered through an intrafascicular electrode. Muscle Nerve 41(1):117–119CrossRef Ackermann DM, Foleds EL, Bhadra N et al (2010) Conduction block of peripheral nerve using high frequency alternating currents delivered through an intrafascicular electrode. Muscle Nerve 41(1):117–119CrossRef
4.
go back to reference Yong J, Needham K, Brown WGA et al (2014) Gold-nanorod-assisted near-infrared stimulation of primary auditory neurons. Adv Healthc Mater 3(11):1862–1868CrossRef Yong J, Needham K, Brown WGA et al (2014) Gold-nanorod-assisted near-infrared stimulation of primary auditory neurons. Adv Healthc Mater 3(11):1862–1868CrossRef
5.
go back to reference Eom K, Kim J, Choi JM et al (2014) Kang T, Chang JW, Byun KM, et al., Enhanced infrared neural stimulation using localized surface plasmon resonance of gold nanorods, Small 10(19):3853–3857CrossRef Eom K, Kim J, Choi JM et al (2014) Kang T, Chang JW, Byun KM, et al., Enhanced infrared neural stimulation using localized surface plasmon resonance of gold nanorods, Small 10(19):3853–3857CrossRef
6.
go back to reference Packer AM, Roska B, Häusser M et al (2013) Targeting neurons and photons for optogenetics. Nat Neurosci 16(7):805–815CrossRef Packer AM, Roska B, Häusser M et al (2013) Targeting neurons and photons for optogenetics. Nat Neurosci 16(7):805–815CrossRef
7.
go back to reference Zhang F, Wang L, Boyden ES et al (2006) Channelrhodopsin-2 and optical control of excitable cells. Nat Methods 3(10):785–792CrossRef Zhang F, Wang L, Boyden ES et al (2006) Channelrhodopsin-2 and optical control of excitable cells. Nat Methods 3(10):785–792CrossRef
8.
go back to reference Carvalho-de-Souza JL, Treger JS, Dang B et al (2015) Photosensitivity of neurons enabled by cell-targeted gold nanoparticles. Neuron 86(1):207–217CrossRef Carvalho-de-Souza JL, Treger JS, Dang B et al (2015) Photosensitivity of neurons enabled by cell-targeted gold nanoparticles. Neuron 86(1):207–217CrossRef
9.
go back to reference Ginn SL, Alexander IE, Edelstein ML et al (2013) Gene therapy clinical trials worldwide to 2012—an update. J Gene Med 15(2):65–77CrossRef Ginn SL, Alexander IE, Edelstein ML et al (2013) Gene therapy clinical trials worldwide to 2012—an update. J Gene Med 15(2):65–77CrossRef
10.
go back to reference Yoo S, Hong S, Choi Y et al (2014) Photothermal inhibition of neural activity with near infrared sensitive nanotransducers. ACS Nano 8(8):8040–8049CrossRef Yoo S, Hong S, Choi Y et al (2014) Photothermal inhibition of neural activity with near infrared sensitive nanotransducers. ACS Nano 8(8):8040–8049CrossRef
11.
go back to reference Wells J, Kao C, Konrad P et al (2007) Biophysical mechanisms of transient optical stimulation of peripheral nerve. J Biophys 93(7):2567–2580CrossRef Wells J, Kao C, Konrad P et al (2007) Biophysical mechanisms of transient optical stimulation of peripheral nerve. J Biophys 93(7):2567–2580CrossRef
12.
go back to reference Richter CP, Matic AI, Wells JD et al (2011) Neural stimulation with optical radiation. Laser Photonics Rev 5(1):68–80CrossRef Richter CP, Matic AI, Wells JD et al (2011) Neural stimulation with optical radiation. Laser Photonics Rev 5(1):68–80CrossRef
13.
go back to reference Shapiro MG, Homma K, Villarreal S et al (2012) Infrared light excites cells by changing their electrical capacitance. Nat Commun 3(2):736CrossRef Shapiro MG, Homma K, Villarreal S et al (2012) Infrared light excites cells by changing their electrical capacitance. Nat Commun 3(2):736CrossRef
14.
go back to reference Thompson AC, Stoddart PR, Jansen ED (2014) Optical stimulation of neurons. Curr Mol Imaging 3(2):162–177CrossRef Thompson AC, Stoddart PR, Jansen ED (2014) Optical stimulation of neurons. Curr Mol Imaging 3(2):162–177CrossRef
15.
go back to reference Wang X, Tian F, Soni SS et al (2016) Interplay between up-regulation of cytochrome-c-oxidase and hemoglobin oxygenation induced by near-infrared laser. Sci Rep 6:30540CrossRef Wang X, Tian F, Soni SS et al (2016) Interplay between up-regulation of cytochrome-c-oxidase and hemoglobin oxygenation induced by near-infrared laser. Sci Rep 6:30540CrossRef
16.
go back to reference Wang X, Reddy DD, Nalawade SS et al (2018) Impact of heat on metabolic and hemodynamic changes in transcranial infrared laser stimulation measured by broadband near-infrared spectroscopy. Neurophotonics 5:011004PubMed Wang X, Reddy DD, Nalawade SS et al (2018) Impact of heat on metabolic and hemodynamic changes in transcranial infrared laser stimulation measured by broadband near-infrared spectroscopy. Neurophotonics 5:011004PubMed
17.
go back to reference Peterson EJ, Tyler DJ (2014) Motor neuron activation in peripheral nerves using infrared neural stimulation. J Neural Eng 11(1):016001CrossRef Peterson EJ, Tyler DJ (2014) Motor neuron activation in peripheral nerves using infrared neural stimulation. J Neural Eng 11(1):016001CrossRef
18.
go back to reference Paviolo C, Haycock JW, Yong J et al (2013) Laser exposure of gold nanorods can increase neuronal cell outgrowth. Biotechnol Bioeng 110(8):2277–2291CrossRef Paviolo C, Haycock JW, Yong J et al (2013) Laser exposure of gold nanorods can increase neuronal cell outgrowth. Biotechnol Bioeng 110(8):2277–2291CrossRef
19.
go back to reference Paviolo C, Haycock JW, Cadusch PJ et al (2014) Laser exposure of gold nanorods can induce intracellular calcium transients. J Biophotonics 7(10):761–765CrossRef Paviolo C, Haycock JW, Cadusch PJ et al (2014) Laser exposure of gold nanorods can induce intracellular calcium transients. J Biophotonics 7(10):761–765CrossRef
20.
go back to reference Paviolo C, McArthur SL, Stoddart PR (2015) Gold nanorod-assisted optical stimulation of neuronal cells. J Vis Exp 98(98):e52566 Paviolo C, McArthur SL, Stoddart PR (2015) Gold nanorod-assisted optical stimulation of neuronal cells. J Vis Exp 98(98):e52566
21.
go back to reference Hale GM, Querry MR (1973) Optical constants of water in the 200-nm to 200-mm wavelength region. Appl Opt 12(3):555–563CrossRef Hale GM, Querry MR (1973) Optical constants of water in the 200-nm to 200-mm wavelength region. Appl Opt 12(3):555–563CrossRef
22.
go back to reference Zhang K, Katz E, Kim DH et al (2010) Common-path optical coherence tomography guided fibre probe for spatially precise optical nerve stimulation. Electron Lett 46(2):118–120CrossRef Zhang K, Katz E, Kim DH et al (2010) Common-path optical coherence tomography guided fibre probe for spatially precise optical nerve stimulation. Electron Lett 46(2):118–120CrossRef
23.
go back to reference Farah N, Zoubi A, Matar S et al (2013) Holographically patterned activation using photo-absorber induced neural-thermal stimulation. J Neural Eng 10(5):056004CrossRef Farah N, Zoubi A, Matar S et al (2013) Holographically patterned activation using photo-absorber induced neural-thermal stimulation. J Neural Eng 10(5):056004CrossRef
24.
go back to reference Huang H, Delikanli S, Zeng H et al (2010) Remote control of ion channels and neurons through magnetic-field heating of nanoparticles. Nat Nanotechnol 5(8):602−606CrossRef Huang H, Delikanli S, Zeng H et al (2010) Remote control of ion channels and neurons through magnetic-field heating of nanoparticles. Nat Nanotechnol 5(8):602−606CrossRef
Metadata
Title
Gold nanorod-assisted near-infrared stimulation of bullfrog sciatic nerve
Authors
Zongxia Mou
Mengxian You
Wei Xue
Publication date
01-12-2018
Publisher
Springer London
Published in
Lasers in Medical Science / Issue 9/2018
Print ISSN: 0268-8921
Electronic ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-018-2554-1

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