3,451
Views
26
CrossRef citations to date
0
Altmetric
Research Article

XingNaoJing injection ameliorates cerebral ischaemia/reperfusion injury via SIRT1-mediated inflammatory response inhibition

, ORCID Icon, , , , & show all
Pages 16-24 | Received 17 Jul 2019, Accepted 20 Nov 2019, Published online: 19 Dec 2019

References

  • Amantea D, Nappi G, Bernardi G, Bagetta G, Corasaniti MT. 2009. Post-ischemic brain damage: pathophysiology and role of inflammatory mediators. Febs J. 276(1):13–26.
  • Chen F, Castranova V, Shi X, Demers LM. 1999. New insights into the role of nuclear factor-kappaB, a ubiquitous transcription factor in the initiation of diseases. Clin Chem. 45(1):7–17.
  • Duris K, Lipkova J, Splichal Z, Madaraszova T, Jurajda M. 2018. Early inflammatory response in the brain and anesthesia recovery time evaluation after experimental subarachnoid hemorrhage. Transl Stroke Res.
  • Escribano-Lopez I, Diaz-Morales N, Iannantuoni F, Lopez-Domenech S, de Maranon AM, Abad-Jimenez Z, Banuls C, Rovira-Llopis S, Herance JR, Rocha M, et al. 2018. The mitochondrial antioxidant SS-31 increases SIRT1 levels and ameliorates inflammation, oxidative stress and leukocyte-endothelium interactions in type 2 diabetes. Sci Rep. 8(1):15862.
  • Esiri MM, McGee JO. 1986. Monoclonal antibody to macrophages (EMB/11) labels macrophages and microglial cells in human brain. J Clin Pathol. 39(6):615–621.
  • Fann DY, Lee SY, Manzanero S, Chunduri P, Sobey CG, Arumugam TV. 2013. Pathogenesis of acute stroke and the role of inflammasomes. Ageing Res Rev. 12(4):941–966.
  • Fischer-Smith T, Croul S, Adeniyi A, Rybicka K, Morgello S, Khalili K, Rappaport J. 2004. Macrophage/microglial accumulation and proliferating cell nuclear antigen expression in the central nervous system in human immunodeficiency virus encephalopathy. Am J Pathol. 164(6):2089–2099.
  • Frank-Cannon TC, Alto LT, McAlpine FE, Tansey MG. 2009. Does neuroinflammation fan the flame in neurodegenerative diseases? Mol Neurodegeneration. 4(1):47–59.
  • Gray MS, Wang HE, Martin KD, Donnelly JP, Gutierrez OM, Shikany JM, Judd SE. 2018. Adherence to Mediterranean-style diet and risk of sepsis in the REasons for Geographic and Racial Differences in Stroke (REGARDS) cohort. Br J Nutr. 120(12):1415–1421.
  • Guo Y, Yan S, Xu L, Zhu G, Yu X, Tong X. 2014. Use of angong niuhuang in treating central nervous system diseases and related research. Evid Based Complement Alternat Med. 2014:1.
  • He Q, Li Z, Wang Y, Hou Y, Li L, Zhao J. 2017. Resveratrol alleviates cerebral ischemia/reperfusion injury in rats by inhibiting NLRP3 inflammasome activation through Sirt1-dependent autophagy induction. Int Immunopharmacol. 50:208–215.
  • Huang L, Chen C, Zhang X, Li X, Chen Z, Yang C, Liang X, Zhu G, Xu Z. 2018. Neuroprotective effect of curcumin against cerebral ischemia-reperfusion via mediating autophagy and inflammation. J Mol Neurosci. 64(1):129–139.
  • Jin R, Yang G, Li G. 2010. Inflammatory mechanisms in ischemic stroke: role of inflammatory cells. J Leukoc Biol. 87(5):779–789.
  • Kettenmann H, Verkhratsky A. 2008. Neuroglia: the 150 years after. Trends Neurosci. 31(12):653–659.
  • Koo JH, Cho JY. 2017. Treadmill exercise attenuates alpha-Synuclein levels by promoting mitochondrial function and autophagy possibly via SIRT1 in the chronic MPTP/P-induced mouse model of Parkinson's disease. Neurotox Res. 32(3):473–486.
  • Li R, Cui K, Liu K, Li H, Zhang Y, Liu X, Chen R, Li M, Wang T, Wang S, et al. 2017. Metabolic syndrome in rats is associated with erectile dysfunction by impairing PI3K/Akt/eNOS activity. Sci Rep. 7(1):13464.
  • Longa EZ, Weinstein PR, Carlson S, Cummins R. 1989. Reversible middle cerebral artery occlusion without craniectomy in rats. Stroke. 20(1):84–91.
  • Ma X, Yang YX, Chen N, Xie Q, Wang T, He X, Wang J. 2017. Meta-analysis for clinical evaluation of xingnaojing injection for the treatment of cerebral infarction. Front Pharmacol. 8:485.
  • Meng X, Tan J, Li M, Song S, Miao Y, Zhang Q. 2017. Sirt1: role under the condition of ischemia/hypoxia. Cell Mol Neurobiol. 37(1):17–28.
  • Radak D, Katsiki N, Resanovic I, Jovanovic A, Sudar-Milovanovic E, Zafirovic S, Mousad SA, Isenovic ER. 2017. Apoptosis and acute brain ischemia in ischemic stroke. CVP. 15(2):115–122.
  • Su D, Cheng Y, Li S, Dai D, Zhang W, Lv M. 2017. Sphk1 mediates neuroinflammation and neuronal injury via TRAF2/NF-kappaB pathways in activated microglia in cerebral ischemia reperfusion. J Neuroimmunol. 305:35–41.
  • Tu XK, Yang WZ, Shi SS, Wang CH, Zhang GL, Ni TR, Chen CM, Wang R, Jia JW, Song QM. 2010. Spatio-temporal distribution of inflammatory reaction and expression of TLR2/4 signaling pathway in rat brain following permanent focal cerebral ischemia. Neurochem Res. 35(8):1147–1155.
  • Wu J, Chen Y, Yu S, Li L, Zhao X, Li Q, Zhao J, Zhao Y. 2017. Neuroprotective effects of sulfiredoxin-1 during cerebral ischemia/reperfusion oxidative stress injury in rats. Brain Res Bull. 132:99–108.
  • Wu L, Zhang H, Xing Y, Gao Y, Li Y, Ren X, Li J, Nie B, Zhu L, Shang H, Gao Y. 2016. Meta-analysis of the fffects of xingnaojing injection on consciousness disturbance. Medicine. 95(7):e2875.
  • Xu H, Qin W, Hu X, Mu S, Zhu J, Lu W, Luo Y. 2018. Lentivirus-mediated overexpression of OTULIN ameliorates microglia activation and neuroinflammation by depressing the activation of the NF-kappaB signaling pathway in cerebral ischemia/reperfusion rats. J Neuroinflammation. 15(1):83–99.
  • Xu P, Du SY, Lu Y, Bai J, Guo YW, Du Q, Cao YF. 2014. The effect of stroke and other components in Xing-Nao-Jing on the pharmacokinetics of geniposide. J Ethnopharmacol. 152(2):302–307.
  • Zhang YM, Qu XY, Zhai JH, Tao LN, Gao H, Song YQ, Zhang SX. 2018. Xingnaojing injection protects against cerebral ischemia reperfusion injury via PI3K/Akt-mediated eNOS phosphorylation. Evid Based Complement Alternat Med. 2018:2361046.
  • Zhu Y, Wang K, Ma Z, Liu D, Yang Y, Sun M, Wen A, Hao Y, Ma S, Ren F, et al. 2019. SIRT1 activation by butein attenuates sepsis-induced brain injury in mice subjected to cecal ligation and puncture via alleviating inflammatory and oxidative stress. Toxicol Appl Pharmacol. 363:34–46.