Literature DB >> 24803295

Dexmedetomidine controls systemic cytokine levels through the cholinergic anti-inflammatory pathway.

Hui Xiang1, Bo Hu, Zhifeng Li, Jianguo Li.   

Abstract

Previous studies have shown that dexmedetomidine exerted anti-inflammatory effect on several animal models with inflammation, but the mechanism is not clear. This study intends to elucidate the anti-inflammatory mechanism of dexmedetomidine through the cholinergic anti-inflammatory pathway. To investigate this therapeutic potential of dexmedetomidine, a murine model of endotoxemia was established induced by lipopolysaccharide (LPS). Animals were assigned to one of four protocols. Protocol one: animals were randomly assigned to control group, dexmedetomidine group, and sterile saline group (n=20 each), and these animals were used for survival analysis. The survival rate was assessed up to 120 h after endotoxin injection. Protocol two: animals were randomly assigned to one of four groups (n=16 each): group 1 (group Saline), treated with sterile saline 15 min prior to endotoxin treatment (10 mg kg(-1) over 2 min); group 2 (group Dex), treated with dexmedetomidine 15 min prior to endotoxin treatment; group 3 (group αBGT+Dex), treated with alpha-7 nicotinic acetylcholine receptors (α7nAChR) antagonist alpha-bungarotoxin (αBGT, 1 μg/kg) 15 min prior to dexmedetomidine treatment; group 4 (group saline+Dex), treated with equivalent sterile saline 15 min prior to dexmedetomidine treatment. Protocol three: animals were randomly assigned to one of two groups (n=16 each): vagotomy group (group VNX+Dex), right cervical vagus nerve was exposed and transected; sham-operated group (group SHAM+Dex), the cervical vagus nerve was visualized, but was neither isolated from the surrounding tissues nor transected. Protocol four: animals were treated with dexmedetomidine (40 μg/kg) and sterile saline to observe the discharge activity of cervical vagus nerves by using BL-420F data acquisition and analysis system (n=16 each). In the survival analysis groups, the survival rate of dexmedetomidine group was significantly higher than that of the endotoxemia group (65 versus 25 %, P<0.01). Preemptive administration of dexmedetomidine significantly attenuated the cytokine response after lipopolysaccharide (LPS) induced endotoxemia (TNF-alpha, IL-1beta, IL-6, P<0.01, respectively). However, preemptive administration of dexmedetomidine failed to suppress cytokine response in α-bungarotoxin group and vagotomy group (TNF-alpha, IL-1beta, IL-6, P>0.05, respectively). Furthermore, preemptive administration of dexmedetomidine significantly increased the discharge frequency of cervical vagus nerves in comparison with sterile saline treatment (P<0.01).Our results demonstrate that the preemptive administration of dexmedetomidine increases the activity of cervical vagus nerve and have the ability to successfully improve survival in experimental endotoxemia by inhibiting the inflammatory cytokines release. However, administration of dexmedetomidine to vagotomy or α7 nAChR antagonist pretreatment mice failed to suppress TNF levels, indicating that the vagus nerve and α7nAChR-mediated cholinergic anti-inflammatory pathway is required for the anti-inflammatory effect of dexmedetomidine. These findings show that central alpha-2 agonist dexmedetomidine suppresses systemic inflammation through vagal- and α7nAChR-dependent mechanism.

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Year:  2014        PMID: 24803295     DOI: 10.1007/s10753-014-9906-1

Source DB:  PubMed          Journal:  Inflammation        ISSN: 0360-3997            Impact factor:   4.092


  30 in total

1.  Vagus nerve stimulation inhibits activation of coagulation and fibrinolysis during endotoxemia in rats.

Authors:  D J van Westerloo; I A J Giebelen; J C M Meijers; J Daalhuisen; A F de Vos; M Levi; T van der Poll
Journal:  J Thromb Haemost       Date:  2006-06-29       Impact factor: 5.824

Review 2.  Anti-inflammatory effects of intravenous anesthetics on endotoxemia.

Authors:  Takumi Taniguchi; Ken Yamamoto
Journal:  Mini Rev Med Chem       Date:  2005-03       Impact factor: 3.862

3.  Selective alpha7-nicotinic acetylcholine receptor agonist GTS-21 improves survival in murine endotoxemia and severe sepsis.

Authors:  Valentin A Pavlov; Mahendar Ochani; Li-Hong Yang; Margot Gallowitsch-Puerta; Kanta Ochani; Xinchun Lin; Jelena Levi; William R Parrish; Mauricio Rosas-Ballina; Christopher J Czura; Gregory J Larosa; Edmund J Miller; Kevin J Tracey; Yousef Al-Abed
Journal:  Crit Care Med       Date:  2007-04       Impact factor: 7.598

4.  Effect of sedation with dexmedetomidine vs lorazepam on acute brain dysfunction in mechanically ventilated patients: the MENDS randomized controlled trial.

Authors:  Pratik P Pandharipande; Brenda T Pun; Daniel L Herr; Mervyn Maze; Timothy D Girard; Russell R Miller; Ayumi K Shintani; Jennifer L Thompson; James C Jackson; Stephen A Deppen; Renee A Stiles; Robert S Dittus; Gordon R Bernard; E Wesley Ely
Journal:  JAMA       Date:  2007-12-12       Impact factor: 56.272

5.  Dose- and time-related effects of dexmedetomidine on mortality and inflammatory responses to endotoxin-induced shock in rats.

Authors:  Takumi Taniguchi; Akihide Kurita; Kyoko Kobayashi; Ken Yamamoto; Hideo Inaba
Journal:  J Anesth       Date:  2008-08-07       Impact factor: 2.078

6.  Genomic responses in mouse models poorly mimic human inflammatory diseases.

Authors:  Junhee Seok; H Shaw Warren; Alex G Cuenca; Michael N Mindrinos; Henry V Baker; Weihong Xu; Daniel R Richards; Grace P McDonald-Smith; Hong Gao; Laura Hennessy; Celeste C Finnerty; Cecilia M López; Shari Honari; Ernest E Moore; Joseph P Minei; Joseph Cuschieri; Paul E Bankey; Jeffrey L Johnson; Jason Sperry; Avery B Nathens; Timothy R Billiar; Michael A West; Marc G Jeschke; Matthew B Klein; Richard L Gamelli; Nicole S Gibran; Bernard H Brownstein; Carol Miller-Graziano; Steve E Calvano; Philip H Mason; J Perren Cobb; Laurence G Rahme; Stephen F Lowry; Ronald V Maier; Lyle L Moldawer; David N Herndon; Ronald W Davis; Wenzhong Xiao; Ronald G Tompkins
Journal:  Proc Natl Acad Sci U S A       Date:  2013-02-11       Impact factor: 11.205

7.  Transcutaneous vagus nerve stimulation reduces serum high mobility group box 1 levels and improves survival in murine sepsis.

Authors:  Jared M Huston; Margot Gallowitsch-Puerta; Mahendar Ochani; Kanta Ochani; Renqi Yuan; Mauricio Rosas-Ballina; Mala Ashok; Richard S Goldstein; Sangeeta Chavan; Valentin A Pavlov; Christine N Metz; Huan Yang; Christopher J Czura; Haichao Wang; Kevin J Tracey
Journal:  Crit Care Med       Date:  2007-12       Impact factor: 7.598

8.  Nicotinic acetylcholine receptor alpha7 subunit is an essential regulator of inflammation.

Authors:  Hong Wang; Man Yu; Mahendar Ochani; Carol Ann Amella; Mahira Tanovic; Seenu Susarla; Jian Hua Li; Haichao Wang; Huan Yang; Luis Ulloa; Yousef Al-Abed; Christopher J Czura; Kevin J Tracey
Journal:  Nature       Date:  2002-12-22       Impact factor: 49.962

9.  Efferent vagal fibre stimulation blunts nuclear factor-kappaB activation and protects against hypovolemic hemorrhagic shock.

Authors:  Salvatore Guarini; Domenica Altavilla; Maria-Michela Cainazzo; Daniela Giuliani; Albertino Bigiani; Herbert Marini; Giovanni Squadrito; Letteria Minutoli; Alfio Bertolini; Rolando Marini; Elena B Adamo; Francesco S Venuti; Francesco Squadrito
Journal:  Circulation       Date:  2003-03-04       Impact factor: 39.918

10.  Central sympatholytics prolong survival in experimental sepsis.

Authors:  Stefan Hofer; Jochen Steppan; Tanja Wagner; Benjamin Funke; Christoph Lichtenstern; Eike Martin; Bernhard M Graf; Angelika Bierhaus; Markus A Weigand
Journal:  Crit Care       Date:  2009-02-06       Impact factor: 9.097

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  45 in total

1.  Dexmedetomidine: magic bullet or firing blanks?

Authors:  Daniel Sellers; George Djaiani
Journal:  J Thorac Dis       Date:  2016-11       Impact factor: 2.895

2.  Protective effect of electro-acupuncture on liver ischemia-reperfusion injury in rats.

Authors:  Yesheng Li; Yi Chen; Xinji Zhang; Li Geng; Binghua Dai; Xin Lv; Ping Zhang; Honghai Li; Jiamei Yang; Yangqing Huang; Feng Xu
Journal:  Exp Ther Med       Date:  2018-06-12       Impact factor: 2.447

3.  [Protective effect of dexmedetomidine against perioperative inflammation and on pulmonary function in patients undergoing radical resection of lung cancer].

Authors:  Yuan-Bo Guo; Jin-Dong Xu; Xue-Xia Ji; Jian-Xing Zhang; Jie-Xian Liang; Guo-Bin Zhou
Journal:  Nan Fang Yi Ke Da Xue Xue Bao       Date:  2017-12-20

4.  The Effect of Intraoperative Dexmedetomidine Versus Morphine on Postoperative Morphine Requirements After Laparoscopic Bariatric Surgery.

Authors:  Carine Zeeni; Marie T Aouad; Dayane Daou; Sara Naji; Samar Jabbour-Khoury; Ramzi S Alami; Bassem Y Safadi; Sahar M Siddik-Sayyid
Journal:  Obes Surg       Date:  2019-12       Impact factor: 4.129

5.  Whole transcriptome sequencing reveals dexmedetomidine-improves postoperative cognitive dysfunction in rats via modulating lncRNA.

Authors:  Fumou Deng; Lily Cai; Bin Zhou; Zhidong Zhou; GuoHai Xu
Journal:  3 Biotech       Date:  2020-04-13       Impact factor: 2.406

6.  Dexmedetomidine Ameliorates Postoperative Cognitive Dysfunction in Aged Mice.

Authors:  Xiaolan Xie; Zhiwen Shen; Chuwen Hu; Kun Zhang; Mingyan Guo; Fei Wang; Kai Qin
Journal:  Neurochem Res       Date:  2021-06-23       Impact factor: 3.996

7.  Dexmedetomidine suppresses bupivacaine-induced parthanatos in human SH-SY5Y cells via the miR-7-5p/PARP1 axis-mediated ROS.

Authors:  Ting Zheng; Chunying Zheng; Fei Gao; Fengyi Huang; Bin Hu; Xiaochun Zheng
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2020-09-28       Impact factor: 3.000

8.  Pharmacological Beta-Adrenergic Receptor Activation Attenuates Neutrophil Recruitment by a Mechanism Dependent on Nicotinic Receptor and the Spleen.

Authors:  Rangel L Silva; Fernanda V Castanheira; Jozi G Figueiredo; Gabriel S Bassi; Sérgio H Ferreira; Fernando Q Cunha; Thiago M Cunha; Alexandre Kanashiro
Journal:  Inflammation       Date:  2016-08       Impact factor: 4.092

9.  Effect of dexmedetomidine on myocardial ischemia-reperfusion injury.

Authors:  Shoulin Chen; Fuzhou Hua; Jun Lu; Yu Jiang; Yanhua Tang; Lei Tao; Bing Zou; Qinghua Wu
Journal:  Int J Clin Exp Med       Date:  2015-11-15

10.  Dexmedetomidine attenuates oxidative stress induced lung alveolar epithelial cell apoptosis in vitro.

Authors:  Jian Cui; Hailin Zhao; Chunyan Wang; James J Sun; Kaizhi Lu; Daqing Ma
Journal:  Oxid Med Cell Longev       Date:  2015-03-08       Impact factor: 6.543

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