Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics

Purpose The main treatment options of neurogenic bladder remains catheterization and long-term oral medications. Metabolic interventions have shown good therapeutic results in many diseases. To date, no studies have characterized the metabolites of the detrusor muscle during neurogenic bladder. Usin...

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Published in:International Neurourology Journal
Main Authors: Ying-Hao Liu, Qian Gong, Yi-Kai Wang, Wei-Bing Shuang
Format: Article
Language:English
Published: Korean Continence Society 2023-06-01
Subjects:
Online Access:http://einj.org/upload/pdf/inj-2346068-034.pdf
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author Ying-Hao Liu
Qian Gong
Yi-Kai Wang
Wei-Bing Shuang
author_facet Ying-Hao Liu
Qian Gong
Yi-Kai Wang
Wei-Bing Shuang
author_sort Ying-Hao Liu
collection DOAJ
container_title International Neurourology Journal
description Purpose The main treatment options of neurogenic bladder remains catheterization and long-term oral medications. Metabolic interventions have shown good therapeutic results in many diseases. To date, no studies have characterized the metabolites of the detrusor muscle during neurogenic bladder. Using metabolomics, new muscle metabolomic signatures were identified to reveal the temporal metabolic profile of muscle during disease progression. Methods We used 42 Sprague-Dawley rats (200±20 g, males) for T10 segmental spinal cord injury modeling and collected detrusor tissue and performed nontargeted metabolomics after sham surgery, 30-minute, 6-hour, 12-hour, 24-hour, 5-day, and 2-week postmodelling, to identify the dysregulated metabolic pathways and key metabolites. Results By comparing mzCloud, mzVault, MassList, we identified a total of 1,271 metabolites and enriched a total of 12 metabolism-related pathways with significant differences (P<0.05) based on Kyoto Encyclopedia of Genes and Genomes analysis. Metabolites in several differential metabolic pathways such as ascorbate and aldarate metabolism, Steroid hormone biosynthesis, and carbon metabolism are altered in a regular manner before and after ridge shock. Conclusions Our study is the first time-based metabolomic study of rat forced urinary muscle after traumatic spinal cord injury, and we identified multiple differential metabolic pathways during injury that may improve long-term management strategies for neurogenic bladder and reduce costs in long-term treatment.
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spelling doaj-art-5e6dbab0705e4e91bbaaaa16cbbed8212025-08-19T20:00:51ZengKorean Continence SocietyInternational Neurourology Journal2093-47772093-69312023-06-01272889810.5213/inj.2346068.0341057Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using MetabolomicsYing-Hao Liu0Qian Gong1Yi-Kai Wang2Wei-Bing Shuang3 First Clinical Medical College, Shanxi Medical University, Taiyuan, China First Clinical Medical College, Shanxi Medical University, Taiyuan, China First Clinical Medical College, Shanxi Medical University, Taiyuan, China First Clinical Medical College, Shanxi Medical University, Taiyuan, ChinaPurpose The main treatment options of neurogenic bladder remains catheterization and long-term oral medications. Metabolic interventions have shown good therapeutic results in many diseases. To date, no studies have characterized the metabolites of the detrusor muscle during neurogenic bladder. Using metabolomics, new muscle metabolomic signatures were identified to reveal the temporal metabolic profile of muscle during disease progression. Methods We used 42 Sprague-Dawley rats (200±20 g, males) for T10 segmental spinal cord injury modeling and collected detrusor tissue and performed nontargeted metabolomics after sham surgery, 30-minute, 6-hour, 12-hour, 24-hour, 5-day, and 2-week postmodelling, to identify the dysregulated metabolic pathways and key metabolites. Results By comparing mzCloud, mzVault, MassList, we identified a total of 1,271 metabolites and enriched a total of 12 metabolism-related pathways with significant differences (P<0.05) based on Kyoto Encyclopedia of Genes and Genomes analysis. Metabolites in several differential metabolic pathways such as ascorbate and aldarate metabolism, Steroid hormone biosynthesis, and carbon metabolism are altered in a regular manner before and after ridge shock. Conclusions Our study is the first time-based metabolomic study of rat forced urinary muscle after traumatic spinal cord injury, and we identified multiple differential metabolic pathways during injury that may improve long-term management strategies for neurogenic bladder and reduce costs in long-term treatment.http://einj.org/upload/pdf/inj-2346068-034.pdfspinal cord injuryneurogenic bladderurinary incontinencemetabolomics
spellingShingle Ying-Hao Liu
Qian Gong
Yi-Kai Wang
Wei-Bing Shuang
Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics
spinal cord injury
neurogenic bladder
urinary incontinence
metabolomics
title Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics
title_full Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics
title_fullStr Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics
title_full_unstemmed Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics
title_short Time-Dependent Changes in the Bladder Muscle Metabolome After Traumatic Spinal Cord Injury in Rats Using Metabolomics
title_sort time dependent changes in the bladder muscle metabolome after traumatic spinal cord injury in rats using metabolomics
topic spinal cord injury
neurogenic bladder
urinary incontinence
metabolomics
url http://einj.org/upload/pdf/inj-2346068-034.pdf
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AT yikaiwang timedependentchangesinthebladdermusclemetabolomeaftertraumaticspinalcordinjuryinratsusingmetabolomics
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