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Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging

In spinal cord injury (SCI) there is damage to the nervous tissue, due to the initial damage and pathophysiological processes that are triggered subsequently. There is no effective therapeutic strategy for motor functional recovery derived from the injury. Several studies have demonstrated neurons g...

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Autores principales: Morales-Guadarrama, Axayacatl, Salgado-Ceballos, Hermelinda, Grijalva, Israel, Morales-Corona, Juan, Hernández-Godínez, Braulio, Ibáñez-Contreras, Alejandra, Ríos, Camilo, Diaz-Ruiz, Araceli, Cruz, Guillermo Jesus, Olayo, María Guadalupe, Sánchez-Torres, Stephanie, Mondragón-Lozano, Rodrigo, Alvarez-Mejia, Laura, Fabela-Sánchez, Omar, Olayo, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912689/
https://www.ncbi.nlm.nih.gov/pubmed/35267785
http://dx.doi.org/10.3390/polym14050962
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author Morales-Guadarrama, Axayacatl
Salgado-Ceballos, Hermelinda
Grijalva, Israel
Morales-Corona, Juan
Hernández-Godínez, Braulio
Ibáñez-Contreras, Alejandra
Ríos, Camilo
Diaz-Ruiz, Araceli
Cruz, Guillermo Jesus
Olayo, María Guadalupe
Sánchez-Torres, Stephanie
Mondragón-Lozano, Rodrigo
Alvarez-Mejia, Laura
Fabela-Sánchez, Omar
Olayo, Roberto
author_facet Morales-Guadarrama, Axayacatl
Salgado-Ceballos, Hermelinda
Grijalva, Israel
Morales-Corona, Juan
Hernández-Godínez, Braulio
Ibáñez-Contreras, Alejandra
Ríos, Camilo
Diaz-Ruiz, Araceli
Cruz, Guillermo Jesus
Olayo, María Guadalupe
Sánchez-Torres, Stephanie
Mondragón-Lozano, Rodrigo
Alvarez-Mejia, Laura
Fabela-Sánchez, Omar
Olayo, Roberto
author_sort Morales-Guadarrama, Axayacatl
collection PubMed
description In spinal cord injury (SCI) there is damage to the nervous tissue, due to the initial damage and pathophysiological processes that are triggered subsequently. There is no effective therapeutic strategy for motor functional recovery derived from the injury. Several studies have demonstrated neurons growth in cell cultures on polymers synthesized by plasma derived from pyrrole, and the increased recovery of motor function in rats by implanting the polymer in acute states of the SCI in contusion and transection models. In the process of transferring these advances towards humans it is recommended to test in mayor species, such as nonhuman primates, prioritizing the use of non-invasive techniques to evaluate the injury progression with the applied treatments. This work shows the ability of diffusion tensor imaging (DTI) to evaluate the evolution of the SCI in nonhuman primates through the fraction of anisotropy (FA) analysis and the diffusion tensor tractography (DTT) calculus. The injury progression was analysed up to 3 months after the injury day by FA and DTT. The FA recovery and the DTT re-stabilization were observed in the experimental implanted subject with the polymer, in contrast with the non-implanted subject. The parameters derived from DTI are concordant with the histology and the motor functional behaviour.
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spelling pubmed-89126892022-03-11 Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging Morales-Guadarrama, Axayacatl Salgado-Ceballos, Hermelinda Grijalva, Israel Morales-Corona, Juan Hernández-Godínez, Braulio Ibáñez-Contreras, Alejandra Ríos, Camilo Diaz-Ruiz, Araceli Cruz, Guillermo Jesus Olayo, María Guadalupe Sánchez-Torres, Stephanie Mondragón-Lozano, Rodrigo Alvarez-Mejia, Laura Fabela-Sánchez, Omar Olayo, Roberto Polymers (Basel) Article In spinal cord injury (SCI) there is damage to the nervous tissue, due to the initial damage and pathophysiological processes that are triggered subsequently. There is no effective therapeutic strategy for motor functional recovery derived from the injury. Several studies have demonstrated neurons growth in cell cultures on polymers synthesized by plasma derived from pyrrole, and the increased recovery of motor function in rats by implanting the polymer in acute states of the SCI in contusion and transection models. In the process of transferring these advances towards humans it is recommended to test in mayor species, such as nonhuman primates, prioritizing the use of non-invasive techniques to evaluate the injury progression with the applied treatments. This work shows the ability of diffusion tensor imaging (DTI) to evaluate the evolution of the SCI in nonhuman primates through the fraction of anisotropy (FA) analysis and the diffusion tensor tractography (DTT) calculus. The injury progression was analysed up to 3 months after the injury day by FA and DTT. The FA recovery and the DTT re-stabilization were observed in the experimental implanted subject with the polymer, in contrast with the non-implanted subject. The parameters derived from DTI are concordant with the histology and the motor functional behaviour. MDPI 2022-02-28 /pmc/articles/PMC8912689/ /pubmed/35267785 http://dx.doi.org/10.3390/polym14050962 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
Morales-Guadarrama, Axayacatl
Salgado-Ceballos, Hermelinda
Grijalva, Israel
Morales-Corona, Juan
Hernández-Godínez, Braulio
Ibáñez-Contreras, Alejandra
Ríos, Camilo
Diaz-Ruiz, Araceli
Cruz, Guillermo Jesus
Olayo, María Guadalupe
Sánchez-Torres, Stephanie
Mondragón-Lozano, Rodrigo
Alvarez-Mejia, Laura
Fabela-Sánchez, Omar
Olayo, Roberto
Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging
title Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging
title_full Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging
title_fullStr Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging
title_full_unstemmed Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging
title_short Evolution of Spinal Cord Transection of Rhesus Monkey Implanted with Polymer Synthesized by Plasma Evaluated by Diffusion Tensor Imaging
title_sort evolution of spinal cord transection of rhesus monkey implanted with polymer synthesized by plasma evaluated by diffusion tensor imaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912689/
https://www.ncbi.nlm.nih.gov/pubmed/35267785
http://dx.doi.org/10.3390/polym14050962
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