Human neural stem cell secretome relieves endoplasmic reticulum stress-induced apoptosis and improves neuronal functions after traumatic brain injury in a rat model

Author:

Ling Yating1,Ramalingam Murugan2,Lv Xiaorui1,Niu Dongdong1,Zeng Yu1,Qiu Yun1,Si Yu1,Guo Tao1,Ni Yinying1,Zhang jingwen1,Wang Ziyu3,Hu Jiabo1

Affiliation:

1. Jiangsu University

2. Dankook University

3. Health BioMed Co., Ltd. Ningbo

Abstract

Abstract Neural stem cell secretome (NSC-S) plays an important role in neuroprotection and recovery. Studies have shown that endoplasmic reticulum stress (ER stress) is involved in the progression of traumatic brain injury (TBI) and is a crucial cause of secondary damage and neuronal death after brain injury. Whether NSC-S is engaged in ER stress and ER stress-mediated neuronal apoptosis post-TBI has not been investigated. In the study, the Feeney SD male rat model was established. The results indicated that NSC-S treatment could significantly improve the behavior of TBI rats and reduce the area of brain contusion in rats. In addition, NSC-S relieved ER stress in TBI rats and was observed by transmission electron microscopy and western blot. The specific mechanism was further elucidated that restoration was achieved by alleviating the PERK-eIF2α pathway and thus protecting neurons from apoptosis. Notably, the discovery of calumenin (CALU) in NSC-S by liquid chromatography-tandem mass spectrometry (LC-MS/MS/MS) may be related to the protective effect of NSC-S on ER stress in neurons. Also, the mechanism by which it functions may be related to ubiquitination. In summary, NSC-S improved prognosis and ER stress in TBI rats and might be a promising treatment for relieving TBI.

Publisher

Research Square Platform LLC

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