The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis

The radioprotective effect of amitriptyline, an inhibitor of acid sphingomyelinase (ASMase), on radiation-induced impairment of hippocampal neurogenesis, loss of interneuron, and animal weight changes was investigated in BALB/c mice by immunostaining of biomarkers for cell division (Ki67), immature...

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Main Authors: Yu Rong Guo, Zi Wei Liu, Shuang Peng, Meng Yun Duan, Jing Wei Feng, Wei Feng Wang, Yan Hua Xu, Xi Tang, Xiang Zhi Zhang, Bo Xu Ren, Feng Ru Tang
Format: Article
Language:English
Published: SAGE Publishing 2019-12-01
Series:Dose-Response
Online Access:https://doi.org/10.1177/1559325819895912
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spelling doaj-a74152fdcd53499cb1d6fe5ab1f1a6fb2020-11-25T03:21:33ZengSAGE PublishingDose-Response1559-32582019-12-011710.1177/1559325819895912The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal NeurogenesisYu Rong Guo0Zi Wei Liu1Shuang Peng2Meng Yun Duan3Jing Wei Feng4Wei Feng Wang5Yan Hua Xu6Xi Tang7Xiang Zhi Zhang8Bo Xu Ren9Feng Ru Tang10 Health Center of Yangtze University, Jingzhou, Hubei, China Department of Medical Imaging Center, Peking University Shenzhen Hospital, Shenzhen, Guangdong, China Health Center of Yangtze University, Jingzhou, Hubei, China Health Center of Yangtze University, Jingzhou, Hubei, China Faculty of Clinical Medicine, Harbin Medical University, Harbin, Heilongjiang, China Department of Oncology, Central Hospital, Jingzhou, Hubei, China Department of Oncology, Central Hospital, Jingzhou, Hubei, China Department of Oncology, Central Hospital, Jingzhou, Hubei, China Health Center of Yangtze University, Jingzhou, Hubei, China Health Center of Yangtze University, Jingzhou, Hubei, China Radiation Physiology Laboratory, Singapore Nuclear Research and Safety Initiative, National University of Singapore, SingaporeThe radioprotective effect of amitriptyline, an inhibitor of acid sphingomyelinase (ASMase), on radiation-induced impairment of hippocampal neurogenesis, loss of interneuron, and animal weight changes was investigated in BALB/c mice by immunostaining of biomarkers for cell division (Ki67), immature neurons (doublecortin or DCX), and interneurons (parvalbumin or PV) in the dentate gyrus (DG) of hippocampus. The results indicated that preirradiation (with 10 mg/kg, 2 times per day, for 7 consecutive days) or postirradiation (with 10 mg/kg, 2 times per day, for 14 consecutive days) treatment (pretreatment or posttreatment) with intraperitoneal injection of amitriptyline prevented the loss of newly generated neurons, proliferating cells, and interneurons in the subgranular zone of the DG. At the molecular level, pretreatment or posttreatment inhibited the expression of sphingomyelin phosphodiesterase 1 ( SMPD1 ) gene which codes for ASMase. The pretreatment for 7 days also prevented radiation-induced weight loss from 2 to 3 weeks, but not within 1 week after irradiation. On the other hand, the posttreatment with amitriptyline for 14 days could improve animal weight gain from 4 to 6 weeks after irradiation. The present study suggests that amitriptyline may be a promising candidate radio-neuroprotective drug to improve radiation-induced impairment of hippocampal neurogenesis and relevant neurological and neuropsychological disorders.https://doi.org/10.1177/1559325819895912
collection DOAJ
language English
format Article
sources DOAJ
author Yu Rong Guo
Zi Wei Liu
Shuang Peng
Meng Yun Duan
Jing Wei Feng
Wei Feng Wang
Yan Hua Xu
Xi Tang
Xiang Zhi Zhang
Bo Xu Ren
Feng Ru Tang
spellingShingle Yu Rong Guo
Zi Wei Liu
Shuang Peng
Meng Yun Duan
Jing Wei Feng
Wei Feng Wang
Yan Hua Xu
Xi Tang
Xiang Zhi Zhang
Bo Xu Ren
Feng Ru Tang
The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis
Dose-Response
author_facet Yu Rong Guo
Zi Wei Liu
Shuang Peng
Meng Yun Duan
Jing Wei Feng
Wei Feng Wang
Yan Hua Xu
Xi Tang
Xiang Zhi Zhang
Bo Xu Ren
Feng Ru Tang
author_sort Yu Rong Guo
title The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis
title_short The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis
title_full The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis
title_fullStr The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis
title_full_unstemmed The Neuroprotective Effect of Amitriptyline on Radiation-Induced Impairment of Hippocampal Neurogenesis
title_sort neuroprotective effect of amitriptyline on radiation-induced impairment of hippocampal neurogenesis
publisher SAGE Publishing
series Dose-Response
issn 1559-3258
publishDate 2019-12-01
description The radioprotective effect of amitriptyline, an inhibitor of acid sphingomyelinase (ASMase), on radiation-induced impairment of hippocampal neurogenesis, loss of interneuron, and animal weight changes was investigated in BALB/c mice by immunostaining of biomarkers for cell division (Ki67), immature neurons (doublecortin or DCX), and interneurons (parvalbumin or PV) in the dentate gyrus (DG) of hippocampus. The results indicated that preirradiation (with 10 mg/kg, 2 times per day, for 7 consecutive days) or postirradiation (with 10 mg/kg, 2 times per day, for 14 consecutive days) treatment (pretreatment or posttreatment) with intraperitoneal injection of amitriptyline prevented the loss of newly generated neurons, proliferating cells, and interneurons in the subgranular zone of the DG. At the molecular level, pretreatment or posttreatment inhibited the expression of sphingomyelin phosphodiesterase 1 ( SMPD1 ) gene which codes for ASMase. The pretreatment for 7 days also prevented radiation-induced weight loss from 2 to 3 weeks, but not within 1 week after irradiation. On the other hand, the posttreatment with amitriptyline for 14 days could improve animal weight gain from 4 to 6 weeks after irradiation. The present study suggests that amitriptyline may be a promising candidate radio-neuroprotective drug to improve radiation-induced impairment of hippocampal neurogenesis and relevant neurological and neuropsychological disorders.
url https://doi.org/10.1177/1559325819895912
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