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Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI

[Image: see text] Sleep deprivation leads to hippocampal injury. Proteostasis disturbance is an important mechanism linking sleep deprivation and hippocampal injury. However, identifying noninvasive imaging biomarkers for hippocampal proteostasis disturbance remains challenging. Amide proton transfe...

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Autores principales: Zhao, Zhihong, Zhang, Xiaojun, Zhang, Xiaolei, Cheng, Yan, Chen, Lihua, Shen, Zhiwei, Chen, Beibei, Wang, Hongzhi, Chen, Yue, Xuan, Wentao, Zhuang, Zerui, Zheng, Xinhui, Geng, Yiqun, Dong, Geng, Guan, Jitian, Lin, Yan, Wu, Renhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785040/
https://www.ncbi.nlm.nih.gov/pubmed/36469930
http://dx.doi.org/10.1021/acschemneuro.2c00494
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author Zhao, Zhihong
Zhang, Xiaojun
Zhang, Xiaolei
Cheng, Yan
Chen, Lihua
Shen, Zhiwei
Chen, Beibei
Wang, Hongzhi
Chen, Yue
Xuan, Wentao
Zhuang, Zerui
Zheng, Xinhui
Geng, Yiqun
Dong, Geng
Guan, Jitian
Lin, Yan
Wu, Renhua
author_facet Zhao, Zhihong
Zhang, Xiaojun
Zhang, Xiaolei
Cheng, Yan
Chen, Lihua
Shen, Zhiwei
Chen, Beibei
Wang, Hongzhi
Chen, Yue
Xuan, Wentao
Zhuang, Zerui
Zheng, Xinhui
Geng, Yiqun
Dong, Geng
Guan, Jitian
Lin, Yan
Wu, Renhua
author_sort Zhao, Zhihong
collection PubMed
description [Image: see text] Sleep deprivation leads to hippocampal injury. Proteostasis disturbance is an important mechanism linking sleep deprivation and hippocampal injury. However, identifying noninvasive imaging biomarkers for hippocampal proteostasis disturbance remains challenging. Amide proton transfer-weighted (APTw) imaging is a chemical exchange saturation transfer technique based on the amide protons in proteins and peptides. We aimed to explore the ability of APTw imaging in detecting sleep deprivation-induced hippocampal proteostasis disturbance and its biological significance, as well as its biological basis. In vitro, the feasibility of APTw imaging in detecting changes of the protein state was evaluated, demonstrating that APTw imaging can detect alterations in the protein concentration, conformation, and aggregation state. In vivo, the hippocampal APTw signal declined with increased sleep deprivation time and was significantly lower in sleep-deprived rats than that in normal rats. This signal was positively correlated with the number of surviving neurons counted in Nissl staining and negatively correlated with the expression of glucose-regulated protein 78 evaluated in immunohistochemistry. Differentially expressed proteins in proteostasis network pathways were identified in the hippocampi of normal rats and sleep-deprived rats via mass spectrometry proteomics analysis, providing the biological basis for the change of the hippocampal APTw signal in sleep-deprived rats. These findings demonstrate that APTw imaging can detect hippocampal proteostasis disturbance induced by sleep deprivation and reflect the extent of neuronal injury and endoplasmic reticulum stress.
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spelling pubmed-97850402023-12-05 Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI Zhao, Zhihong Zhang, Xiaojun Zhang, Xiaolei Cheng, Yan Chen, Lihua Shen, Zhiwei Chen, Beibei Wang, Hongzhi Chen, Yue Xuan, Wentao Zhuang, Zerui Zheng, Xinhui Geng, Yiqun Dong, Geng Guan, Jitian Lin, Yan Wu, Renhua ACS Chem Neurosci [Image: see text] Sleep deprivation leads to hippocampal injury. Proteostasis disturbance is an important mechanism linking sleep deprivation and hippocampal injury. However, identifying noninvasive imaging biomarkers for hippocampal proteostasis disturbance remains challenging. Amide proton transfer-weighted (APTw) imaging is a chemical exchange saturation transfer technique based on the amide protons in proteins and peptides. We aimed to explore the ability of APTw imaging in detecting sleep deprivation-induced hippocampal proteostasis disturbance and its biological significance, as well as its biological basis. In vitro, the feasibility of APTw imaging in detecting changes of the protein state was evaluated, demonstrating that APTw imaging can detect alterations in the protein concentration, conformation, and aggregation state. In vivo, the hippocampal APTw signal declined with increased sleep deprivation time and was significantly lower in sleep-deprived rats than that in normal rats. This signal was positively correlated with the number of surviving neurons counted in Nissl staining and negatively correlated with the expression of glucose-regulated protein 78 evaluated in immunohistochemistry. Differentially expressed proteins in proteostasis network pathways were identified in the hippocampi of normal rats and sleep-deprived rats via mass spectrometry proteomics analysis, providing the biological basis for the change of the hippocampal APTw signal in sleep-deprived rats. These findings demonstrate that APTw imaging can detect hippocampal proteostasis disturbance induced by sleep deprivation and reflect the extent of neuronal injury and endoplasmic reticulum stress. American Chemical Society 2022-12-05 /pmc/articles/PMC9785040/ /pubmed/36469930 http://dx.doi.org/10.1021/acschemneuro.2c00494 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Zhao, Zhihong
Zhang, Xiaojun
Zhang, Xiaolei
Cheng, Yan
Chen, Lihua
Shen, Zhiwei
Chen, Beibei
Wang, Hongzhi
Chen, Yue
Xuan, Wentao
Zhuang, Zerui
Zheng, Xinhui
Geng, Yiqun
Dong, Geng
Guan, Jitian
Lin, Yan
Wu, Renhua
Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI
title Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI
title_full Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI
title_fullStr Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI
title_full_unstemmed Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI
title_short Amide Proton Transfer-Weighted Imaging Detects Hippocampal Proteostasis Disturbance Induced by Sleep Deprivation at 7.0 T MRI
title_sort amide proton transfer-weighted imaging detects hippocampal proteostasis disturbance induced by sleep deprivation at 7.0 t mri
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785040/
https://www.ncbi.nlm.nih.gov/pubmed/36469930
http://dx.doi.org/10.1021/acschemneuro.2c00494
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