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Identification of potential oxidative stress biomarkers for spinal cord injury in erythrocytes using mass spectrometry

摘要Oxidative stress is a hallmark of secondary injury associated with spinal cord injury. Identifying stable and specific oxidative biomarkers is of important significance for studying spinal cord injury-associated secondary injury. Mature erythrocytes do not contain nuclei and mitochondria and cannot be transcribed and translated. Therefore, mature erythrocytes are highly sensitive to oxidative stress and may become a valuable biomarker. In the present study, we revealed the proteome dynamics of protein expression in erythrocytes of beagle dogs in the acute and subacute phases of spinal cord injury using mass spectrometry-based approaches. We found 26 proteins that were differentially expressed in the acute (0–3 days) and subacute (7–21 days) phases of spinal cord injury. Bioinformatics analysis revealed that these differentially expressed proteins were involved in glutathione metabolism, lipid metabolism, and pentose phosphate and other oxidative stress pathways. Western blot assays validated the differential expression of glutathione synthetase, transaldolase, and myeloperoxidase. This result was consistent with mass spectrometry results, suggesting that erythrocytes can be used as a novel sample source of biological markers of oxidative stress in spinal cord injury. Glutathione synthetase, transaldolase, and myeloperoxidase sourced from erythrocytes are potential biomarkers of oxidative stress after spinal cord injury. This study was approved by the Experimental Animal Centre of Ningxia Medical University, China (approval No. 2017-073) on February 13, 2017.

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作者 Li-Jian Zhang [1] Yao Chen [1] Lu-Xuan Wang [2] Xiao-Qing Zhuang [3] He-Chun Xia [4] 学术成果认领
作者单位 School of Clinical Medicine,Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China;Department of Neurosurgery,General Hospital of Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China;Ningxia Human Stem Cell Research Institute,General Hospital of Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China [1] School of Clinical Medicine,Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China [2] Department of Nuclear Medicine,General Hospital of Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China [3] Department of Neurosurgery,General Hospital of Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China;Ningxia Human Stem Cell Research Institute,General Hospital of Ningxia Medical University,Yinchuan,Ningxia Hui Autonomous Region,China [4]
分类号 R446R741R331.1+41
栏目名称 Spinal Cord Injury and Neural Regeneration
发布时间 2020-12-15
基金项目
This work was supported by the Key Research Projects of the Ningxia Hui Autonomous Region of China,No.2018BCG01002(to HCX) and the Plan of Postgraduate Education Innovation,Discipline Construction Project of Ningxia,China(2017),No.YXW2017014
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中国神经再生研究(英文版)

中国神经再生研究(英文版)

2021年16卷7期

1294-1301页

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