NADPH oxidase-derived reactive oxygen species mediate the cerebrovascular dysfunction induced by the amyloid β peptide

被引:214
|
作者
Park, L
Anrather, J
Zhou, P
Frys, K
Pitstick, R
Younkin, S
Carlson, GA
Iadecola, C
机构
[1] Cornell Univ, Div Neurobiol, Dept Neurol & Neurosci, New York, NY 10021 USA
[2] Mayo Clin Jacksonville, Jacksonville, FL 32224 USA
[3] McLaughlin Res Inst, Great Falls, MT 59405 USA
来源
JOURNAL OF NEUROSCIENCE | 2005年 / 25卷 / 07期
关键词
Alzheimer's disease; hydroethidine; gp91(phox); Tg2576; cerebral blood flow; reactive oxygen species;
D O I
10.1523/JNEUROSCI.5207-04.2005
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Overproduction of the amyloid beta (Abeta) peptide is a key factor in the pathogenesis of Alzheimer's disease (AD), but the mechanisms of its pathogenic effects have not been defined. Patients with AD have cerebrovascular alterations attributable to the deleterious effects of Abeta on cerebral blood vessels. We report here that NADPH oxidase, the major source of free radicals in blood vessels, is responsible for the cerebrovascular dysregulation induced by Abeta. Thus, the free-radical production and the associated alterations in vasoregulation induced by Abeta are abrogated by the NADPH oxidase peptide inhibitor gp91ds-tat and are not observed in mice lacking the catalytic subunit of NADPH oxidase (gp91(phox)). Furthermore, oxidative stress and cerebrovascular dysfunction do not occur in transgenic mice overexpressing the amyloid precursor protein but lacking gp91phox. The mechanisms by which NADPH oxidase-derived radicals mediate the cerebrovascular dysfunction involve reduced bioavailability of nitric oxide. Thus, a gp91(phox)-containing NADPH oxidase is the critical link between Abeta and cerebrovascular dysfunction, which may underlie the alteration in cerebral blood flow regulation observed in AD patients.
引用
收藏
页码:1769 / 1777
页数:9
相关论文
共 50 条
  • [31] Pro-angiogenic effect of NADPH oxidase-derived reactive oxygen species:: Role in angiotensin II-induced angiogenesis
    Heymes, C
    Silvestre, JS
    Duriez, M
    Lévy, BI
    Shah, A
    CIRCULATION, 2001, 104 (17) : 141 - 141
  • [32] Urotensin Ⅱ-induced insulin resistance is mediated by NADPH oxidase-derived reactive oxygen species in Hep G2 cells
    Ying-Ying Li
    Zheng-Ming Shi
    Xiao-Yong Yu
    Ping Feng
    Xue-Jiang Wang
    World Journal of Gastroenterology, 2016, 22 (25) : 5769 - 5779
  • [33] NADPH oxidase-derived overproduction of reactive oxygen species impairs postischemic neovascularization in mice with type 1 diabetes
    Ebrahimian, Teni G.
    Heymes, Christophe
    You, Dong
    Blanc-Brude, Olivier
    Mees, Barend
    Waeckel, Ludovic
    Duriez, Micheline
    Vilar, Jose
    Brandes, Ralph P.
    Levy, Bernard I.
    Shah, Ajay M.
    Silvestre, Jean-Sebastien
    AMERICAN JOURNAL OF PATHOLOGY, 2006, 169 (02): : 719 - 728
  • [34] Xanthine oxidase-derived reactive oxygen species mediate 4-oxo-2-nonenal-induced hepatocyte cell death
    Sakuma, Satoru
    Negoro, Mild
    Kitamura, Takahiro
    Fujimoto, Yohko
    TOXICOLOGY AND APPLIED PHARMACOLOGY, 2010, 249 (02) : 127 - 131
  • [35] Inhibition of NADPH Oxidase-Derived Reactive Oxygen Species Decreases Expression of Inflammatory Cytokines in A549 Cells
    Joanna Wieczfinska
    Przemyslaw Sitarek
    Ewa Skała
    Tomasz Kowalczyk
    Rafal Pawliczak
    Inflammation, 2019, 42 : 2205 - 2214
  • [36] Thymidine catabolism promotes NADPH oxidase-derived reactive oxygen species (ROS) signalling in KB and yumoto cells
    Tabata, Sho
    Yamamoto, Masatatsu
    Goto, Hisatsugu
    Hirayama, Akiyoshi
    Ohishi, Maki
    Kuramoto, Takuya
    Mitsuhashi, Atsushi
    Ikeda, Ryuji
    Haraguchi, Misako
    Kawahara, Kohichi
    Shinsato, Yoshinari
    Minami, Kentaro
    Saijo, Atsuro
    Toyoda, Yuko
    Hanibuchi, Masaki
    Nishioka, Yasuhiko
    Sone, Saburo
    Esumi, Hiroyasu
    Tomita, Masaru
    Soga, Tomoyoshi
    Furukawa, Tatsuhiko
    Akiyama, Shin-ichi
    SCIENTIFIC REPORTS, 2018, 8
  • [37] Inhibition of NADPH Oxidase-Derived Reactive Oxygen Species Decreases Expression of Inflammatory Cytokines in A549 Cells
    Wieczfinska, Joanna
    Sitarek, Przemyslaw
    Skala, Ewa
    Kowalczyk, Tomasz
    Pawliczak, Rafal
    INFLAMMATION, 2019, 42 (06) : 2205 - 2214
  • [38] TMEM16A Contributes to Endothelial Dysfunction by Facilitating Nox2 NADPH Oxidase-Derived Reactive Oxygen Species Generation in Hypertension
    Ma, Ming-Ming
    Gao, Min
    Guo, Kai-Min
    Wang, Mi
    Li, Xiang-Yu
    Zeng, Xue-Lin
    Sun, Lu
    Lv, Xiao-Fei
    Du, Yan-Hua
    Wang, Guan-Lei
    Zhou, Jia-Guo
    Guan, Yong-Yuan
    HYPERTENSION, 2017, 69 (05) : 892 - +
  • [39] NADPH Oxidase-derived Reactive Oxygen Species Increases Expression of Monocyte Chemotactic Factor Genes in Cultured Adipocytes
    Han, Chang Yeop
    Umemoto, Tomio
    Omer, Mohamed
    Den Hartigh, Laura J.
    Chiba, Tsuyoshi
    Leboeuf, Renee
    Buller, Carolyn L.
    Sweet, Ian R.
    Pennathur, Subramaniam
    Abel, E. Dale
    Chait, Alan
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (13) : 10379 - 10393
  • [40] NADPH oxidase-derived reactive oxygen species contribute to impaired cutaneous microvascular function in chronic kidney disease
    DuPont, Jennifer J.
    Ramick, Meghan G.
    Farquhar, William B.
    Townsend, Raymond R.
    Edwards, David G.
    AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2014, 306 (12) : F1499 - F1506