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Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆

The fast and accurate identification of nerve tracts is critical for successful nerve anastomosis. Taking advantage of differences in acetylcholinesterase content between the spinal ventral and dorsal roots, we developed a novel quartz crystal microbalance method to distinguish between these nerves...

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Autores principales: Sui, Tao, Que, Jun, Kong, Dechao, Xie, Hao, Wang, Daode, Shi, Kun, Cao, Xiaojian, Li, Xiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4146075/
https://www.ncbi.nlm.nih.gov/pubmed/25206714
http://dx.doi.org/10.3969/j.issn.1673-5374.2013.08.002
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author Sui, Tao
Que, Jun
Kong, Dechao
Xie, Hao
Wang, Daode
Shi, Kun
Cao, Xiaojian
Li, Xiang
author_facet Sui, Tao
Que, Jun
Kong, Dechao
Xie, Hao
Wang, Daode
Shi, Kun
Cao, Xiaojian
Li, Xiang
author_sort Sui, Tao
collection PubMed
description The fast and accurate identification of nerve tracts is critical for successful nerve anastomosis. Taking advantage of differences in acetylcholinesterase content between the spinal ventral and dorsal roots, we developed a novel quartz crystal microbalance method to distinguish between these nerves based on acetylcholinesterase antibody reactivity. The acetylcholinesterase antibody was immobilized on the electrode surface of a quartz crystal microbalance and reacted with the acetylcholinesterase in sample solution. The formed antigen and antibody complexes added to the mass of the electrode inducing a change in frequency of the electrode. The spinal ventral and dorsal roots were distinguished by the change in frequency. The ventral and dorsal roots were cut into 1 to 2-mm long segments and then soaked in 250 μL PBS. Acetylcholinesterase antibody was immobilized on the quartz crystal microbalance gold electrode surface. The results revealed that in 10 minutes, both spinal ventral and dorsal roots induced a frequency change; however, the frequency change induced by the ventral roots was notably higher than that induced by the dorsal roots. No change was induced by bovine serum albumin or PBS. These results clearly demonstrate that a quartz crystal microbalance sensor can be used as a rapid, highly sensitive and accurate detection tool for the quick identification of spinal nerve roots intraoperatively.
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spelling pubmed-41460752014-09-09 Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆ Sui, Tao Que, Jun Kong, Dechao Xie, Hao Wang, Daode Shi, Kun Cao, Xiaojian Li, Xiang Neural Regen Res Peripheral Nerve Injury and Neural Regeneration The fast and accurate identification of nerve tracts is critical for successful nerve anastomosis. Taking advantage of differences in acetylcholinesterase content between the spinal ventral and dorsal roots, we developed a novel quartz crystal microbalance method to distinguish between these nerves based on acetylcholinesterase antibody reactivity. The acetylcholinesterase antibody was immobilized on the electrode surface of a quartz crystal microbalance and reacted with the acetylcholinesterase in sample solution. The formed antigen and antibody complexes added to the mass of the electrode inducing a change in frequency of the electrode. The spinal ventral and dorsal roots were distinguished by the change in frequency. The ventral and dorsal roots were cut into 1 to 2-mm long segments and then soaked in 250 μL PBS. Acetylcholinesterase antibody was immobilized on the quartz crystal microbalance gold electrode surface. The results revealed that in 10 minutes, both spinal ventral and dorsal roots induced a frequency change; however, the frequency change induced by the ventral roots was notably higher than that induced by the dorsal roots. No change was induced by bovine serum albumin or PBS. These results clearly demonstrate that a quartz crystal microbalance sensor can be used as a rapid, highly sensitive and accurate detection tool for the quick identification of spinal nerve roots intraoperatively. Medknow Publications & Media Pvt Ltd 2013-03-15 /pmc/articles/PMC4146075/ /pubmed/25206714 http://dx.doi.org/10.3969/j.issn.1673-5374.2013.08.002 Text en Copyright: © Neural Regeneration Research http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Peripheral Nerve Injury and Neural Regeneration
Sui, Tao
Que, Jun
Kong, Dechao
Xie, Hao
Wang, Daode
Shi, Kun
Cao, Xiaojian
Li, Xiang
Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
title Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
title_full Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
title_fullStr Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
title_full_unstemmed Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
title_short Rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
title_sort rapid identification of spinal ventral and dorsal roots using a quartz crystal microbalance☆
topic Peripheral Nerve Injury and Neural Regeneration
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4146075/
https://www.ncbi.nlm.nih.gov/pubmed/25206714
http://dx.doi.org/10.3969/j.issn.1673-5374.2013.08.002
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