tPA contributes to impairment of ATP and Ca sensitive K channel mediated cerebrovasodilation after hypoxia/ischemia through upregulation of ERK MAPK

被引:8
|
作者
Armstead, William M. [1 ,2 ]
Riley, John [1 ]
Cines, Douglas B.
Higazi, Abd Al-Roof [3 ]
机构
[1] Univ Penn, Dept Anesthesiol & Crit Care, Philadelphia, PA 19104 USA
[2] Univ Penn, Dept Pharmacol, Philadelphia, PA 19104 USA
[3] Hebrew Univ Jerusalem, Hadassah Med Sch, Dept Clin Biochem, IL-91010 Jerusalem, Israel
基金
美国国家卫生研究院;
关键词
Cerebral circulation; Newborn; Plasminogen activators; Signal transduction; Ischemia; TISSUE-PLASMINOGEN ACTIVATOR; FOCAL CEREBRAL-ISCHEMIA; BRAIN-INJURY; PREVENTS IMPAIRMENT; STROKE; THROMBOLYSIS; RESPONSES; RECEPTOR; PIGLETS; FIBRINOLYSIS;
D O I
10.1016/j.brainres.2010.12.052
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The sole FDA approved treatment for acute stroke is tissue type plasminogen activator (tPA). However, tPA potentiates impairment of pial artery dilation in response to hypotension after hypoxia/ischemia (H/I) in pigs. ATP and Ca sensitive K channels (Katp and Kca) are important regulators of cerebrovascular tone and mediate cerebrovasodilation in response to hypotension. Mitogen activated protein kinase (MAPK), a family of at least 3 kinases, ERK, p38 and JNK, is upregulated after H/I, with the ERK isoform contributing to vasodilator impairment. This study examined the effect of H/I on Katp and Kca induced pial artery dilation and the roles of tPA and ERK during/after injury in piglets equipped with a closed cranial window. H/I blunted vasodilation induced by the Katp agonists cromakalim, calcitonin gene related peptide (CGRP) and the Kca agonist NS 1619; the effect of each was exacerbated by tPA. Pre- or post-injury treatment with EEIIMD, a hexapeptide derived from plasminogen activator-1, and ERK antagonist U 0126 prevented Katp and Kca channel agonist induced vasodilator impairment while the inactive analogue EEIIMR had no effect. ERK was upregulated after H/I, which was potentiated by tPA. These data indicate that H/I impairs K channel mediated cerebrovasodilation. tPA augments loss of K channel function after injury by upregulating ERK. These data suggest that thrombolytic therapy for treatment of CNS ischemic disorders can dysregulate cerebrohemodynamics by impairing cation-mediated control of cerebrovascular tone. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:88 / 93
页数:6
相关论文
共 37 条
  • [21] Red blood cells-coupled tPA prevents impairment of cerebral vasodilatory responses and tissue injury in pediatric cerebral hypoxia/ischemia through inhibition of ERK MAPK activation
    Armstead, William M.
    Ganguly, Kumkum
    Kiessling, John W.
    Chen, Xiao-Han
    Smith, Douglas H.
    Higazi, Abd A. R.
    Cines, Douglas B.
    Bdeir, Khalil
    Zaitsev, Sergei
    Muzykantov, Vladimir R.
    JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2009, 29 (08): : 1463 - 1474
  • [22] RBC Coupled tPA Prevents Impairment of Hypercapnic and Hypotensive Cerebrovasodilation After Piglet Photothrombosis Through Inhibition of JNK and Potentiation of p38 MAPK
    Armstead, William
    Ganguly, Kumkum
    Riley, John
    Kiessling, Willis
    Cines, Douglas
    Higazi, Abd
    Muzykantov, Vladimir
    STROKE, 2010, 41 (04) : E251 - E251
  • [23] Adrenomedullin Prevents Sex-Dependent Impairment of Autoregulation during Hypotension after Piglet Brain Injury through Inhibition of ERK MAPK Upregulation
    Armstead, William M.
    Kiessling, J. Willis
    Bdeir, Khalil
    Kofke, W. Andrew
    Vavilala, Monica S.
    JOURNAL OF NEUROTRAUMA, 2010, 27 (02) : 391 - 402
  • [24] VASODILATIVE RESPONSE TO HYPOXIA AND SIMULATED ISCHEMIA IS MEDIATED BY ATP-SENSITIVE K plus CHANNELS IN GUINEA-PIG THORACIC AORTA
    GASSER, R
    KLEIN, W
    KICKENWEIZ, E
    ANGIOLOGY, 1993, 44 (03) : 228 - 243
  • [26] Calpain-mediated impairment of Na+/K+-ATPase activity during early reperfusion contributes to cell death after myocardial ischemia
    Inserte, J
    Garcia-Dorado, D
    Hernando, V
    Soler-Soler, J
    CIRCULATION RESEARCH, 2005, 97 (05) : 465 - 473
  • [27] Remote Postconditioning Attenuates Ischemia/Reperfusion Injury in Rat Skeletal Muscle through Mitochondrial ATP-Sensitive K+ Channel-Dependent Mechanism
    Lee, Jung Il
    Nha, Kyung Wook
    Suh, Jin Soo
    Choo, Suk Kyu
    Park, Jung Ho
    Park, Jong Woong
    JOURNAL OF RECONSTRUCTIVE MICROSURGERY, 2013, 29 (09) : 571 - 578
  • [28] Gestational Hypoxia Increases Reactive Oxygen Species and Inhibits Steroid Hormone-Mediated Upregulation of Ca2+-Activated K+ Channel Function in Uterine Arteries
    Zhu, Ronghui
    Huang, Xiaohui
    Hu, Xiang-Qun
    Xiao, DaLiao
    Zhang, Lubo
    HYPERTENSION, 2014, 64 (02) : 415 - +
  • [29] Glucagon induces suppression of ATP-sensitive K+ channel activity through a Ca2+/calmodulin-dependent pathway in mouse pancreatic β-cells
    He, LP
    Mears, D
    Atwater, I
    Kitasato, H
    JOURNAL OF MEMBRANE BIOLOGY, 1998, 166 (03): : 237 - 244
  • [30] Glucagon Induces Suppression of ATP-sensitive K+ Channel Activity Through a Ca2+/Calmodulin-dependent Pathway in Mouse Pancreatic β-Cells
    L.P. He
    D. Mears
    I. Atwater
    H. Kitasato
    The Journal of Membrane Biology, 1998, 166 : 237 - 244