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Erschienen in: Inflammation 4/2019

26.02.2019 | ORIGINAL ARTICLE

α7nAChR Deletion Aggravates Myocardial Infarction and Enhances Systemic Inflammatory Reaction via mTOR-Signaling-Related Autophagy

verfasst von: Jinyan Fang, Jiawei Wang, Fanghui Chen, Yuansheng Xu, Hao Zhang, Yi Wang

Erschienen in: Inflammation | Ausgabe 4/2019

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Abstract

Alpha7 nicotinic acetylcholine receptor (α7nAChR) has been previously reported to play an alleviative role in myocardial infarction (MI). In this study, we investigated its specific mechanism. α7nAChR−/− mice and its control (α7nAChR+/+) were used for the study of α7nAChR. Left anterior descending coronary artery occlusion was conducted for the creation of mice MI model and lipopolysaccharide (LPS) was used as inflammatory stressor in murine peritoneal macrophages. Triphenyltetrazolium chloride (TTC) staining and echocardiography was used for the detection of infarct size and cardiac function, respectively. Western blot was conducted for the testing of autophagy-related proteins and enzyme-linked immunosorbent assay (ELISA) and real-time polymerase chain reaction (RT-PCR) was used for the testing of proinflammatory cytokines. Rapamycin was used for the induction of autophagy through inhibiting mammalian target of rapamycin (mTOR)-related signaling. We found that knocking out α7nAChR enhanced the cardiac infarct size and damaged cardiac function in MI. α7nAChR deficiency increased the levels of several proinflammatory cytokines in serum and spleen from MI mice as well as murine macrophages under inflammatory stress. α7nAChR deletion decreased the level of autophagy in spleen from MI mice and macrophages under inflammatory stress. Rapamycin alleviated the cardiac function and systemic inflammatory reaction in MI mice as well as inflammatory reaction in macrophages under inflammatory stress, which was attenuated by knocking out α7nAChR. Our current study investigated the mechanism of α7nAChR-mediated cardio-protective and anti-inflammatory effect related to mTOR-related autophagy, which might provide a novel insight in the treatment of MI.
Literatur
4.
Zurück zum Zitat Fu, H., M. Ni, J.K. Chen, T. Zhao, Y.P. Deng, D.J. Li, G.J. Jiang, and F.M. Shen. 2015. Targeting alpha7 nicotinic acetylcholine receptor to combat inflammation in cardio-cerebral-vascular diseases. Current Drug Targets. Fu, H., M. Ni, J.K. Chen, T. Zhao, Y.P. Deng, D.J. Li, G.J. Jiang, and F.M. Shen. 2015. Targeting alpha7 nicotinic acetylcholine receptor to combat inflammation in cardio-cerebral-vascular diseases. Current Drug Targets.
5.
Zurück zum Zitat Dom, A.M., A.W. Buckley, K.C. Brown, R.D. Egleton, A.J. Marcelo, N.A. Proper, D.E. Weller, Y.H. Shah, J.K. Lau, and P. Dasgupta. 2011. The alpha7-nicotinic acetylcholine receptor and MMP-2/-9 pathway mediate the proangiogenic effect of nicotine in human retinal endothelial cells. Investigative Ophthalmology & Visual Science 52 (7): 4428–4438. https://doi.org/10.1167/iovs.10-5461.CrossRef Dom, A.M., A.W. Buckley, K.C. Brown, R.D. Egleton, A.J. Marcelo, N.A. Proper, D.E. Weller, Y.H. Shah, J.K. Lau, and P. Dasgupta. 2011. The alpha7-nicotinic acetylcholine receptor and MMP-2/-9 pathway mediate the proangiogenic effect of nicotine in human retinal endothelial cells. Investigative Ophthalmology & Visual Science 52 (7): 4428–4438. https://​doi.​org/​10.​1167/​iovs.​10-5461.CrossRef
6.
Zurück zum Zitat Xiong, J., Y.J. Yuan, F.S. Xue, Q. Wang, S. Li, X. Liao, J.H. Liu, Y. Chen, and R.P. Li. 2012. Combined postconditioning with ischemia and alpha7nAChR agonist produces an enhanced protection against rat myocardial ischemia reperfusion injury. Chinese Medical Journal 125 (2): 326–331.PubMed Xiong, J., Y.J. Yuan, F.S. Xue, Q. Wang, S. Li, X. Liao, J.H. Liu, Y. Chen, and R.P. Li. 2012. Combined postconditioning with ischemia and alpha7nAChR agonist produces an enhanced protection against rat myocardial ischemia reperfusion injury. Chinese Medical Journal 125 (2): 326–331.PubMed
10.
Zurück zum Zitat Wu, S.J., Y.C. Li, Z.W. Shi, Z.H. Lin, Z.H. Rao, S.C. Tai, M.P. Chu, L. Li, and J.F. Lin. 2017. Alteration of cholinergic anti-inflammatory pathway in rat with ischemic cardiomyopathy-modified electrophysiological function of heart. Journal of the American Heart Association 6 (9). https://doi.org/10.1161/JAHA.117.006510. Wu, S.J., Y.C. Li, Z.W. Shi, Z.H. Lin, Z.H. Rao, S.C. Tai, M.P. Chu, L. Li, and J.F. Lin. 2017. Alteration of cholinergic anti-inflammatory pathway in rat with ischemic cardiomyopathy-modified electrophysiological function of heart. Journal of the American Heart Association 6 (9). https://​doi.​org/​10.​1161/​JAHA.​117.​006510.
12.
Zurück zum Zitat Buchholz, B., J. Kelly, M. Munoz, E.A. Bernatene, N. Mendez Diodati, D.H. Gonzalez Maglio, F.P. Dominici, and R.J. Gelpi. 2018. Vagal stimulation mimics preconditioning and postconditioning of ischemic myocardium in mice by activating different protection mechanisms. American Journal of Physiology. Heart and Circulatory Physiology 314 (6): H1289–H1297. https://doi.org/10.1152/ajpheart.00286.2017.CrossRefPubMed Buchholz, B., J. Kelly, M. Munoz, E.A. Bernatene, N. Mendez Diodati, D.H. Gonzalez Maglio, F.P. Dominici, and R.J. Gelpi. 2018. Vagal stimulation mimics preconditioning and postconditioning of ischemic myocardium in mice by activating different protection mechanisms. American Journal of Physiology. Heart and Circulatory Physiology 314 (6): H1289–H1297. https://​doi.​org/​10.​1152/​ajpheart.​00286.​2017.CrossRefPubMed
14.
Zurück zum Zitat van Hout, G.P., L. Bosch, G.H. Ellenbroek, J.J. de Haan, W.W. van Solinge, M.A. Cooper, F. Arslan, et al. 2017. The selective NLRP3-inflammasome inhibitor MCC950 reduces infarct size and preserves cardiac function in a pig model of myocardial infarction. European Heart Journal 38 (11): 828–836. https://doi.org/10.1093/eurheartj/ehw247.CrossRefPubMed van Hout, G.P., L. Bosch, G.H. Ellenbroek, J.J. de Haan, W.W. van Solinge, M.A. Cooper, F. Arslan, et al. 2017. The selective NLRP3-inflammasome inhibitor MCC950 reduces infarct size and preserves cardiac function in a pig model of myocardial infarction. European Heart Journal 38 (11): 828–836. https://​doi.​org/​10.​1093/​eurheartj/​ehw247.CrossRefPubMed
21.
Zurück zum Zitat Aisa, Z., G.C. Liao, X.L. Shen, J. Chen, L. Li, and S.B. Jiang. 2017. Effect of autophagy on myocardial infarction and its mechanism. European Review for Medical and Pharmacological Sciences 21 (16): 3705–3713.PubMed Aisa, Z., G.C. Liao, X.L. Shen, J. Chen, L. Li, and S.B. Jiang. 2017. Effect of autophagy on myocardial infarction and its mechanism. European Review for Medical and Pharmacological Sciences 21 (16): 3705–3713.PubMed
31.
Zurück zum Zitat Kiss, A., Y. Tratsiakovich, A. Mahdi, J. Yang, A.T. Gonon, B.K. Podesser, and J. Pernow. 2017. Vagal nerve stimulation reduces infarct size via a mechanism involving the alpha-7 nicotinic acetylcholine receptor and downregulation of cardiac and vascular arginase. Acta Physiologica (Oxford, England) 221 (3): 174–181. https://doi.org/10.1111/apha.12861.CrossRef Kiss, A., Y. Tratsiakovich, A. Mahdi, J. Yang, A.T. Gonon, B.K. Podesser, and J. Pernow. 2017. Vagal nerve stimulation reduces infarct size via a mechanism involving the alpha-7 nicotinic acetylcholine receptor and downregulation of cardiac and vascular arginase. Acta Physiologica (Oxford, England) 221 (3): 174–181. https://​doi.​org/​10.​1111/​apha.​12861.CrossRef
32.
Zurück zum Zitat Su, Y., J. Lu, P. Gong, X. Chen, C. Liang, and J. Zhang. 2018. Rapamycin induces autophagy to alleviate acute kidney injury following cerebral ischemia and reperfusion via the mTORC1/ATG13/ULK1 signaling pathway. Molecular Medicine Reports. https://doi.org/10.3892/mmr.2018.9586. Su, Y., J. Lu, P. Gong, X. Chen, C. Liang, and J. Zhang. 2018. Rapamycin induces autophagy to alleviate acute kidney injury following cerebral ischemia and reperfusion via the mTORC1/ATG13/ULK1 signaling pathway. Molecular Medicine Reports. https://​doi.​org/​10.​3892/​mmr.​2018.​9586.
34.
Zurück zum Zitat Lin, C., Z. Liu, Lu Y, Y. Yao, Y. Zhang, Z. Ma, M. Kuai, et al. 2016. Cardioprotective effect of salvianolic acid B on acute myocardial infarction by promoting autophagy and neovascularization and inhibiting apoptosis. The Journal of Pharmacy and Pharmacology 68 (7): 941–952. https://doi.org/10.1111/jphp.12567.CrossRefPubMed Lin, C., Z. Liu, Lu Y, Y. Yao, Y. Zhang, Z. Ma, M. Kuai, et al. 2016. Cardioprotective effect of salvianolic acid B on acute myocardial infarction by promoting autophagy and neovascularization and inhibiting apoptosis. The Journal of Pharmacy and Pharmacology 68 (7): 941–952. https://​doi.​org/​10.​1111/​jphp.​12567.CrossRefPubMed
36.
Zurück zum Zitat Carloni, S., S. Girelli, C. Scopa, G. Buonocore, M. Longini, and W. Balduini. 2010. Activation of autophagy and Akt/CREB signaling play an equivalent role in the neuroprotective effect of rapamycin in neonatal hypoxia-ischemia. Autophagy 6 (3): 366–377.CrossRef Carloni, S., S. Girelli, C. Scopa, G. Buonocore, M. Longini, and W. Balduini. 2010. Activation of autophagy and Akt/CREB signaling play an equivalent role in the neuroprotective effect of rapamycin in neonatal hypoxia-ischemia. Autophagy 6 (3): 366–377.CrossRef
43.
Zurück zum Zitat Huang, W.Q., J.L. Wen, R.Q. Lin, P. Wei, and F. Huang. 2018. Effects of mTOR/NF-kappaB signaling pathway and high thoracic epidural anesthesia on myocardial ischemia-reperfusion injury via autophagy in rats. Journal of Cellular Physiology 233 (9): 6669–6678. https://doi.org/10.1002/jcp.26320.CrossRefPubMed Huang, W.Q., J.L. Wen, R.Q. Lin, P. Wei, and F. Huang. 2018. Effects of mTOR/NF-kappaB signaling pathway and high thoracic epidural anesthesia on myocardial ischemia-reperfusion injury via autophagy in rats. Journal of Cellular Physiology 233 (9): 6669–6678. https://​doi.​org/​10.​1002/​jcp.​26320.CrossRefPubMed
Metadaten
Titel
α7nAChR Deletion Aggravates Myocardial Infarction and Enhances Systemic Inflammatory Reaction via mTOR-Signaling-Related Autophagy
verfasst von
Jinyan Fang
Jiawei Wang
Fanghui Chen
Yuansheng Xu
Hao Zhang
Yi Wang
Publikationsdatum
26.02.2019
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 4/2019
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-019-00979-2

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