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Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study

Although intervertebral disc degeneration (IDD) can be described as different stages of change through biological methods, this long and complex process cannot be defined in stages by single or simple combination of biological techniques. Under the background of the development of nuclear magnetic r...

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Autores principales: Wu, Xiaolin, Liu, Chang, Yang, Shuai, Shen, Nana, Wang, Yan, Zhu, Youfu, Guo, Zhaoyang, Yang, Shang-you, Xing, Dongming, Li, Houxi, Guo, Zhu, Chen, Bohua, Xiang, Hongfei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8416401/
https://www.ncbi.nlm.nih.gov/pubmed/34484565
http://dx.doi.org/10.1155/2021/5579736
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author Wu, Xiaolin
Liu, Chang
Yang, Shuai
Shen, Nana
Wang, Yan
Zhu, Youfu
Guo, Zhaoyang
Yang, Shang-you
Xing, Dongming
Li, Houxi
Guo, Zhu
Chen, Bohua
Xiang, Hongfei
author_facet Wu, Xiaolin
Liu, Chang
Yang, Shuai
Shen, Nana
Wang, Yan
Zhu, Youfu
Guo, Zhaoyang
Yang, Shang-you
Xing, Dongming
Li, Houxi
Guo, Zhu
Chen, Bohua
Xiang, Hongfei
author_sort Wu, Xiaolin
collection PubMed
description Although intervertebral disc degeneration (IDD) can be described as different stages of change through biological methods, this long and complex process cannot be defined in stages by single or simple combination of biological techniques. Under the background of the development of nuclear magnetic resonance (NMR) technology and the emerging metabonomics, we based on animal models and expanded to the study of clinical human degeneration models. The characteristics of different stages of IDD were analyzed by omics. Omics imaging combined with histology, cytology, and proteomics was used for screening of the intervertebral disc (IVD) of research subjects. Furthermore, mass spectrometry nontargeted metabolomics was used to explore profile of metabolites at different stages of the IDD process, to determine differential metabolic pathways and metabolites. NMR spectroscopy was used to qualitatively and quantitatively identify markers of degeneration. NMR was combined with mass spectrometry metabolomics to explore metabolic pathways. Metabolic pathways were determined through protein molecular biology and histocytology of the different groups. Distinguishing advantages of magnetic resonance spectroscopy (MRS) for analysis of metabolites and effective reflection of structural integrity and water molecule metabolism through diffusion tensor imaging (DTI) were further used to verify the macrometabolism profile during degeneration. A corresponding model of in vitro metabolomics and in vivo omics imaging was established. The findings of this study show that a series of metabolic pathways associated with the glycine-serine-threonine (Gly-Ser-Thr) metabolic axis affects carbohydrate patterns and energy utilization efficiency and ultimately delays disc degeneration through antioxidant effects.
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spelling pubmed-84164012021-09-04 Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study Wu, Xiaolin Liu, Chang Yang, Shuai Shen, Nana Wang, Yan Zhu, Youfu Guo, Zhaoyang Yang, Shang-you Xing, Dongming Li, Houxi Guo, Zhu Chen, Bohua Xiang, Hongfei Oxid Med Cell Longev Research Article Although intervertebral disc degeneration (IDD) can be described as different stages of change through biological methods, this long and complex process cannot be defined in stages by single or simple combination of biological techniques. Under the background of the development of nuclear magnetic resonance (NMR) technology and the emerging metabonomics, we based on animal models and expanded to the study of clinical human degeneration models. The characteristics of different stages of IDD were analyzed by omics. Omics imaging combined with histology, cytology, and proteomics was used for screening of the intervertebral disc (IVD) of research subjects. Furthermore, mass spectrometry nontargeted metabolomics was used to explore profile of metabolites at different stages of the IDD process, to determine differential metabolic pathways and metabolites. NMR spectroscopy was used to qualitatively and quantitatively identify markers of degeneration. NMR was combined with mass spectrometry metabolomics to explore metabolic pathways. Metabolic pathways were determined through protein molecular biology and histocytology of the different groups. Distinguishing advantages of magnetic resonance spectroscopy (MRS) for analysis of metabolites and effective reflection of structural integrity and water molecule metabolism through diffusion tensor imaging (DTI) were further used to verify the macrometabolism profile during degeneration. A corresponding model of in vitro metabolomics and in vivo omics imaging was established. The findings of this study show that a series of metabolic pathways associated with the glycine-serine-threonine (Gly-Ser-Thr) metabolic axis affects carbohydrate patterns and energy utilization efficiency and ultimately delays disc degeneration through antioxidant effects. Hindawi 2021-08-25 /pmc/articles/PMC8416401/ /pubmed/34484565 http://dx.doi.org/10.1155/2021/5579736 Text en Copyright © 2021 Xiaolin Wu et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wu, Xiaolin
Liu, Chang
Yang, Shuai
Shen, Nana
Wang, Yan
Zhu, Youfu
Guo, Zhaoyang
Yang, Shang-you
Xing, Dongming
Li, Houxi
Guo, Zhu
Chen, Bohua
Xiang, Hongfei
Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study
title Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study
title_full Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study
title_fullStr Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study
title_full_unstemmed Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study
title_short Glycine-Serine-Threonine Metabolic Axis Delays Intervertebral Disc Degeneration through Antioxidant Effects: An Imaging and Metabonomics Study
title_sort glycine-serine-threonine metabolic axis delays intervertebral disc degeneration through antioxidant effects: an imaging and metabonomics study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8416401/
https://www.ncbi.nlm.nih.gov/pubmed/34484565
http://dx.doi.org/10.1155/2021/5579736
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