Cargando…

A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model

Promising treatments for upper motor neuron disease are emerging in which motor function is restored by brain–computer interfaces and functional electrical stimulation. At present, such technologies and procedures are not applicable to lower motor neuron disease. We propose a novel therapeutic strat...

Descripción completa

Detalles Bibliográficos
Autores principales: Tokutake, Katsuhiro, Takeuchi, Masaru, Kurimoto, Shigeru, Saeki, Sota, Asami, Yuta, Onaka, Keiko, Saeki, Masaomi, Aoyama, Tadayoshi, Hasegawa, Yasuhisa, Hirata, Hitoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9368824/
https://www.ncbi.nlm.nih.gov/pubmed/35955890
http://dx.doi.org/10.3390/ijms23158760
_version_ 1784766261581840384
author Tokutake, Katsuhiro
Takeuchi, Masaru
Kurimoto, Shigeru
Saeki, Sota
Asami, Yuta
Onaka, Keiko
Saeki, Masaomi
Aoyama, Tadayoshi
Hasegawa, Yasuhisa
Hirata, Hitoshi
author_facet Tokutake, Katsuhiro
Takeuchi, Masaru
Kurimoto, Shigeru
Saeki, Sota
Asami, Yuta
Onaka, Keiko
Saeki, Masaomi
Aoyama, Tadayoshi
Hasegawa, Yasuhisa
Hirata, Hitoshi
author_sort Tokutake, Katsuhiro
collection PubMed
description Promising treatments for upper motor neuron disease are emerging in which motor function is restored by brain–computer interfaces and functional electrical stimulation. At present, such technologies and procedures are not applicable to lower motor neuron disease. We propose a novel therapeutic strategy for lower motor neuron disease and injury integrating neural stem cell transplantation with our new functional electrical stimulation control system. In a rat sciatic nerve transection model, we transplanted embryonic spinal neural stem cells into the distal stump of the peripheral nerve to reinnervate denervated muscle, and subsequently demonstrated that highly responsive limb movement similar to that of a healthy limb could be attained with a wirelessly powered two-channel neurostimulator that we developed. This unique technology, which can reinnervate and precisely move previously denervated muscles that were unresponsive to electrical stimulation, contributes to improving the condition of patients suffering from intractable diseases of paralysis and traumatic injury.
format Online
Article
Text
id pubmed-9368824
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93688242022-08-12 A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model Tokutake, Katsuhiro Takeuchi, Masaru Kurimoto, Shigeru Saeki, Sota Asami, Yuta Onaka, Keiko Saeki, Masaomi Aoyama, Tadayoshi Hasegawa, Yasuhisa Hirata, Hitoshi Int J Mol Sci Article Promising treatments for upper motor neuron disease are emerging in which motor function is restored by brain–computer interfaces and functional electrical stimulation. At present, such technologies and procedures are not applicable to lower motor neuron disease. We propose a novel therapeutic strategy for lower motor neuron disease and injury integrating neural stem cell transplantation with our new functional electrical stimulation control system. In a rat sciatic nerve transection model, we transplanted embryonic spinal neural stem cells into the distal stump of the peripheral nerve to reinnervate denervated muscle, and subsequently demonstrated that highly responsive limb movement similar to that of a healthy limb could be attained with a wirelessly powered two-channel neurostimulator that we developed. This unique technology, which can reinnervate and precisely move previously denervated muscles that were unresponsive to electrical stimulation, contributes to improving the condition of patients suffering from intractable diseases of paralysis and traumatic injury. MDPI 2022-08-06 /pmc/articles/PMC9368824/ /pubmed/35955890 http://dx.doi.org/10.3390/ijms23158760 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tokutake, Katsuhiro
Takeuchi, Masaru
Kurimoto, Shigeru
Saeki, Sota
Asami, Yuta
Onaka, Keiko
Saeki, Masaomi
Aoyama, Tadayoshi
Hasegawa, Yasuhisa
Hirata, Hitoshi
A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model
title A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model
title_full A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model
title_fullStr A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model
title_full_unstemmed A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model
title_short A Therapeutic Strategy for Lower Motor Neuron Disease and Injury Integrating Neural Stem Cell Transplantation and Functional Electrical Stimulation in a Rat Model
title_sort therapeutic strategy for lower motor neuron disease and injury integrating neural stem cell transplantation and functional electrical stimulation in a rat model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9368824/
https://www.ncbi.nlm.nih.gov/pubmed/35955890
http://dx.doi.org/10.3390/ijms23158760
work_keys_str_mv AT tokutakekatsuhiro atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT takeuchimasaru atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT kurimotoshigeru atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT saekisota atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT asamiyuta atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT onakakeiko atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT saekimasaomi atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT aoyamatadayoshi atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT hasegawayasuhisa atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT hiratahitoshi atherapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT tokutakekatsuhiro therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT takeuchimasaru therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT kurimotoshigeru therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT saekisota therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT asamiyuta therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT onakakeiko therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT saekimasaomi therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT aoyamatadayoshi therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT hasegawayasuhisa therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel
AT hiratahitoshi therapeuticstrategyforlowermotorneurondiseaseandinjuryintegratingneuralstemcelltransplantationandfunctionalelectricalstimulationinaratmodel