PACAP38 Suppresses Cortical Damage in Mice with Traumatic Brain Injury by Enhancing Antioxidant Activity

被引:26
|
作者
Miyamoto, Kazuyuki [1 ,2 ]
Tsumuraya, Tomomi [1 ]
Ohtaki, Hirokazu [1 ]
Dohi, Kenji [1 ]
Satoh, Kazue [1 ]
Xu, Zhifang [1 ]
Tanaka, Sachiko [3 ]
Murai, Norimitsu [1 ]
Watanabe, Jun [1 ]
Sugiyama, Koichi [1 ]
Aruga, Tohru [2 ]
Shioda, Seiji [1 ]
机构
[1] Showa Univ, Sch Med, Dept Anat, Shinagawa Ku, Tokyo 1428555, Japan
[2] Showa Univ, Dept Emergency & Crit Care Med, Sch Med, Tokyo 1428555, Japan
[3] Showa Univ, Dept Pharmacol Toxicol & Therapeut, Div Toxicol, Sch Pharm, Tokyo 1428555, Japan
关键词
PACAP38; Traumatic brain injury (TBI); Antioxidant enzyme; Superoxide dismutase-2 (SOD-2; Mn-SOD); Glutathione peroxidase 1 (GPx-1); CYCLASE-ACTIVATING POLYPEPTIDE; STRESS-INDUCED APOPTOSIS; VASOACTIVE-INTESTINAL-PEPTIDE; NEURONAL CELL-DEATH; ADENYLATE-CYCLASE; IN-VITRO; ISCHEMIA/REPERFUSION INJURY; DEFICIENT MICE; INFARCT SIZE; RAT MODEL;
D O I
10.1007/s12031-014-0309-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The production of reactive oxygen species (ROS) and the resulting oxidative stress in mice in response to a controlled cortical impact (CCI) are typical exacerbating factors associated with traumatic brain injury (TBI). Pituitary adenylate cyclase-activating polypeptide 38 (PACAP38) is a multifunctional peptide that has been shown to exhibit neuroprotective effects in response to a diverse range of injuries to neuronal cells. We recently reported that PACAP38 might regulate oxidative stress in mice. The aim of the present study was to determine whether PACAP38 exerts neuroprotective effects by regulating oxidative stress in mice with TBI. Reactive oxidative metabolites (ROMs) and biological antioxidant potential (BAP) were measured in male C57Bl/6 mice before and 3, 4, and 24 h after CCI. PACAP38 was administered intravenously immediately following CCI, and immunostaining for the oxidative stress indicator nitrotyrosine (NT), and for neuronal death as an indicator of the area affected by TBI, was measured 24 h later. Western blot experiments to determine antioxidant activity [as indicated by superoxide dismutase-2 (SOD-2) and glutathione peroxidase 1 (GPx-1)] in the neocortical region were also performed 3 h post-CCI. Results showed that plasma BAP and ROM levels were dramatically increased 3 h after CCI. PACAP38 suppressed the extent of TBI and NT-positive regions 24 h after CCI, and increased SOD-2 and GPx-1 levels in both hemispheres. Taken together, these results suggest that increasing antioxidant might be involving in the neuroprotective effect of PACAP38 in mice subjected to a CCI.
引用
收藏
页码:370 / 379
页数:10
相关论文
共 50 条
  • [31] Aloin Protects Against Blood-Brain Barrier Damage After Traumatic Brain Injury in Mice
    Yao Jing
    Dian-Xu Yang
    Wei Wang
    Fang Yuan
    Hao Chen
    Jun Ding
    Zhi Geng
    Heng-Li Tian
    Neuroscience Bulletin, 2020, 36 (06) : 625 - 638
  • [32] Aloin Protects Against Blood-Brain Barrier Damage After Traumatic Brain Injury in Mice
    Jing, Yao
    Yang, Dian-Xu
    Wang, Wei
    Yuan, Fang
    Chen, Hao
    Ding, Jun
    Geng, Zhi
    Tian, Heng-Li
    NEUROSCIENCE BULLETIN, 2020, 36 (06) : 625 - 638
  • [33] Temporal patterns of cortical proliferation of glial cell populations after traumatic brain injury in mice
    Susarla, Bala T. S.
    Villapol, Sonia
    Yi, Jae-Hyuk
    Geller, Herbert M.
    Symes, Aviva J.
    ASN NEURO, 2014, 6 (03): : 159 - 170
  • [34] Web Application for Quantification of Traumatic Brain Injury-Induced Cortical Lesions in Adult Mice
    Ciszek, Robert
    Andrade, Pedro
    Tapiala, Jesse
    Pitkanen, Asla
    Ndode-Ekane, Xavier Ekolle
    NEUROINFORMATICS, 2020, 18 (02) : 307 - 317
  • [35] A modified controlled cortical impact technique to model mild traumatic brain injury mechanics in mice
    Chen, Yung Chia
    Mao, Haojie
    Yang, King H.
    Abel, Ted
    Meaney, David F.
    FRONTIERS IN NEUROLOGY, 2014, 5
  • [36] Neuroendocrine Gene Expression Alterations in Traumatic Brain Injury Mice Model with Controlled Cortical Impact
    Salihoglu, Arif Kamil
    ACTA PHYSIOLOGICA, 2023, 240 : 61 - 61
  • [37] Web Application for Quantification of Traumatic Brain Injury-Induced Cortical Lesions in Adult Mice
    Robert Ciszek
    Pedro Andrade
    Jesse Tapiala
    Asla Pitkänen
    Xavier Ekolle Ndode-Ekane
    Neuroinformatics, 2020, 18 : 307 - 317
  • [38] Impact of traumatic brain injury on sleep structure, electrocorticographic activity and transcriptome in mice
    Sabir, Meriem
    Gaudreault, Pierre-Olivier
    Freyburger, Marlene
    Massart, Renaud
    Blanchet-Cohen, Alexis
    Jaber, Manar
    Gosselin, Nadia
    Mongrain, Valerie
    BRAIN BEHAVIOR AND IMMUNITY, 2015, 47 : 118 - 130
  • [39] An Antioxidant and Anti-ER Stress Combo Therapy Decreases Inflammation, Secondary Brain Damage and Promotes Neurological Recovery following Traumatic Brain Injury in Mice
    Davis, Charles K.
    Bathula, Saivenkateshkomal
    Hsu, Martin
    Morris-Blanco, Kahlilia C.
    Chokkalla, Anil K.
    Jeong, Soomin
    Choi, Jeongwoo
    Subramanian, Shruti
    Park, Jin Soo
    Fabry, Zsuzsanna
    Vemuganti, Raghu
    JOURNAL OF NEUROSCIENCE, 2022, 42 (35): : 6810 - 6821
  • [40] PACAP38 Differentially Effects Genes and CRMP2 Protein Expression in Ischemic Core and Penumbra Regions of Permanent Middle Cerebral Artery Occlusion Model Mice Brain
    Hori, Motohide
    Nakamachi, Tomoya
    Shibato, Junko
    Rakwal, Randeep
    Tsuchida, Masachi
    Shioda, Seiji
    Numazawa, Satoshi
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2014, 15 (09) : 17014 - 17034