Literature DB >> 29119534

Angiotensin II Causes Neuronal Damage in Stretch-Injured Neurons: Protective Effects of Losartan, an Angiotensin T1 Receptor Blocker.

P M Abdul-Muneer1, Saurav Bhowmick2, Nicholas Briski2.   

Abstract

Angiotensin II (Ang II) is a mediator of oxidative stress via activation/induction of reactive oxygen and nitrogen species-generating enzymes, NADPH oxidase (NOX) and inducible nitric oxide synthase (iNOS). We investigated the hypothesis that overproduction of Ang II during traumatic brain injury (TBI) induces the activation of the oxidative stress, which triggers neuroinflammation and cell apoptosis in a cell culture model of neuronal stretch injury. We first established that stretch injury causes a rapid increase in the level of Ang II, which causes the release of pro-inflammatory cytokines, IL-1β and TNF-α, via the induction of oxidative stress. Since angiotensin-converting enzyme (ACE) mediates the production of Ang II via the conversion of Ang I into Ang II, we analyzed the expression of ACE by western blotting. Further, we analyzed caspase-3-mediated apoptosis by TUNEL staining and annexin V western blotting. Angiotensin type I (AT1) receptor antagonist losartan attenuated Ang II-induced oxidative stress and associated neuroinflammation and cell death in cultured neurons. Remarkably, we noticed that the expression of Ang II type 1 receptor (AngT1R) upregulated in neuronal stretch injury; losartan mitigates this upregulation. Findings from this study significantly extend our understanding of the pathophysiology of TBI and may have significant implications for developing therapeutic strategies for TBI-associated brain dysfunctions.

Entities:  

Keywords:  AngT1R; Angiotensin II; Cell death; Losartan; Neuroinflammation; Oxidative stress

Mesh:

Substances:

Year:  2017        PMID: 29119534     DOI: 10.1007/s12035-017-0812-z

Source DB:  PubMed          Journal:  Mol Neurobiol        ISSN: 0893-7648            Impact factor:   5.590


  66 in total

1.  History about the discovery of the renin-angiotensin system.

Authors:  N Basso; N A Terragno
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2.  Novel AT(1) receptor-independent functions of losartan.

Authors:  Junichi Sadoshima
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3.  Critical role of angiotensin II in excess salt-induced brain oxidative stress of stroke-prone spontaneously hypertensive rats.

Authors:  Shokei Kim-Mitsuyama; Eiichiro Yamamoto; Tomoko Tanaka; Yumei Zhan; Yasukatsu Izumi; Yasuhiro Izumiya; Takeshi Ioroi; Hideki Wanibuchi; Hiroshi Iwao
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4.  Nox2-induced production of mitochondrial superoxide in angiotensin II-mediated endothelial oxidative stress and hypertension.

Authors:  Sergey I Dikalov; Rafal R Nazarewicz; Alfiya Bikineyeva; Lula Hilenski; Bernard Lassègue; Kathy K Griendling; David G Harrison; Anna E Dikalova
Journal:  Antioxid Redox Signal       Date:  2013-10-30       Impact factor: 8.401

5.  Sodium and Potassium Relating to Parkinson's Disease and Traumatic Brain Injury.

Authors:  Yonghwang Ha; Jeong A Jeong; Youngsam Kim; David G Churchill
Journal:  Met Ions Life Sci       Date:  2016

6.  Oxidative stress is a critical mediator of the angiotensin II signal in human neutrophils: involvement of mitogen-activated protein kinase, calcineurin, and the transcription factor NF-kappaB.

Authors:  Rajaa El Bekay; Moisés Alvarez; Javier Monteseirín; Gonzalo Alba; Pedro Chacón; Antonio Vega; José Martin-Nieto; Juan Jiménez; Elizabeth Pintado; Francisco J Bedoya; Francisco Sobrino
Journal:  Blood       Date:  2003-03-27       Impact factor: 22.113

Review 7.  Angiotensin II receptor antagonists.

Authors:  M Burnier; H R Brunner
Journal:  Lancet       Date:  2000-02-19       Impact factor: 79.321

8.  Transforming growth factor-beta 1 signaling regulates neuroinflammation and apoptosis in mild traumatic brain injury.

Authors:  Rachel K Patel; Nithisha Prasad; Ram Kuwar; Debanjan Haldar; P M Abdul-Muneer
Journal:  Brain Behav Immun       Date:  2017-04-19       Impact factor: 7.217

9.  Endothelial cell damage and angiotensin-converting enzyme insertion/deletion genotype in elderly hypertensive patients.

Authors:  K Kario; T Matsuo; H Kobayashi; N Kanai; S Hoshide; T Mitsuhashi; U Ikeda; S Nishiuma; M Matsuo; K Shimada
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10.  Inhibition of tumor necrosis factor alpha (TNFalpha) activity in rat brain is associated with cerebroprotection after closed head injury.

Authors:  E Shohami; R Bass; D Wallach; A Yamin; R Gallily
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  8 in total

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Authors:  Saurav Bhowmick; Veera D'Mello; Danielle Caruso; P M Abdul-Muneer
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2.  Stretch-Induced Deformation as a Model to Study Dopaminergic Dysfunction in Traumatic Brain Injury.

Authors:  Hector Rosas-Hernandez; Susan M Burks; Elvis Cuevas; Syed F Ali
Journal:  Neurochem Res       Date:  2019-09-16       Impact factor: 3.996

Review 3.  Manifestation of renin angiotensin system modulation in traumatic brain injury.

Authors:  Golnoush Mirzahosseini; Saifudeen Ismael; Heba A Ahmed; Tauheed Ishrat
Journal:  Metab Brain Dis       Date:  2021-04-09       Impact factor: 3.655

4.  Neurodegeneration and Sensorimotor Deficits in the Mouse Model of Traumatic Brain Injury.

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Journal:  Brain Sci       Date:  2018-01-06

5.  AT1R/GSK-3β/mTOR Signaling Pathway Involved in Angiotensin II-Induced Neuronal Apoptosis after HIE Both In Vitro and In Vivo.

Authors:  Wei Si; Banghui Li; Cameron Lenahan; Shirong Li; Ran Gu; Hao Qu; Lu Wang; Jiapeng Liu; Tian Tian; Qian Wang; Xiao Hu; Gang Zuo
Journal:  Oxid Med Cell Longev       Date:  2020-12-22       Impact factor: 6.543

6.  Losartan Treatment Could Improve the Outcome of TBI Mice.

Authors:  Jianhua Xiong; Yalong Gao; Xiaotian Li; Kai Li; Qifeng Li; Jun Shen; Zhenying Han; Jianning Zhang
Journal:  Front Neurol       Date:  2020-10-15       Impact factor: 4.003

7.  Activation of angiotensin-converting enzyme 2/angiotensin (1-7)/mas receptor axis triggers autophagy and suppresses microglia proinflammatory polarization via forkhead box class O1 signaling.

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Journal:  Aging Cell       Date:  2021-09-16       Impact factor: 9.304

8.  Intercellular Adhesion Molecule-1-Induced Posttraumatic Brain Injury Neuropathology in the Prefrontal Cortex and Hippocampus Leads to Sensorimotor Function Deficits and Psychological Stress.

Authors:  Saurav Bhowmick; Anitha Malat; Danielle Caruso; Nizmi Ponery; Veera D'Mello; Christina Finn; P M Abdul-Muneer
Journal:  eNeuro       Date:  2021-07-16
  8 in total

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