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Article

Gene expression profiles and related immune-inflammatory factors in the cerebral arteries in mouse models of subarachnoid haemorrhage

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Pages 1234-1242 | Received 09 Mar 2020, Accepted 22 Sep 2020, Published online: 10 Oct 2020

References

  • Price WH, Steers AJ, Wilson J. Subarachnoid hemorrhage and Klinefelter’s syndrome. Lancet. 1982;320(8294):380. [cited 2020 Mar 20]
  • Li K, Barras CD, Chandra RV, et al. A review of the management of cerebral vasospasm after aneurysmal subarachnoid hemorrhage. World Neurosurg. 2019;126:513–527.
  • Penn DL, Witte SR, Komotar RJ Jr., et al. Pathological mechanisms underlying aneurysmal subarachnoid haemorrhage and vasospasm. J Clin Neurosci. 2015;22(1):1–5.
  • Chaudhry SR, Kahlert UD, Kinfe TM, et al. Elevated systemic IL-10 levels indicate immunodepression leading to nosocomial infections after aneurysmal subarachnoid hemorrhage (SAH) in patients. IJMS. 2020;21(5):1569. [cited 2020 Mar 20]
  • Akkaya E, Evran Ş, Çalış F, et al. Effects of intrathecal verapamil on cerebral vasospasm in experimental rat study. World Neurosurg. 2019;127:e1104–e1111.
  • Huang Q, Wang G, Hu YL, et al. Study on the expression and mechanism of inflammatory factors in the brain of rats with cerebral vasospasm. Eur Rev Med Pharmacol Sci. 2017;21(12):2887–2894.
  • Mohney N, Williamson CA, Rothman E, et al. A propensity score analysis of the impact of dexamethasone use on delayed cerebral ischemia and poor functional outcomes after subarachnoid hemorrhage. World Neurosurg. 2018;109:e655–e661.
  • de Oliveira Manoel AL, Macdonald RL. Neuroinflammation as a target for intervention in subarachnoid hemorrhage. Front Neurol. 2018;9(292)[cited 2020 Mar 20]
  • Vadokas G, Koehler S, Weiland J, et al. Early antiinflammatory therapy attenuates brain damage after SAH in rats. Transl Neurosci. 2019;10:104–111.
  • Chou SH. Inflammation, cerebral vasospasm, and brain injury in subarachnoid hemorrhage-a shifting paradigm and a new beginning. Crit Care Med. 2018;46(11):1883–1885.
  • Peeyush Kumar T, McBride DW, Dash PK, et al. Endothelial cell dysfunction and injury in subarachnoid hemorrhage. Mol Neurobiol. 2019;56(3):1992–2006.
  • Wu LY, Ye ZN, Zhuang Z, et al. Biochanin a reduces inflammatory injury and neuronal apoptosis following subarachnoid hemorrhage via suppression of the TLRs/TIRAP/MyD88/NF-κB pathway. Behav Neurol. 2018;2018:1960106–1962020. [cited Mar 20]
  • Fan Y, Yan G, Liu F, et al. Potential role of poly (ADP-ribose) polymerase in delayed cerebral vasospasm following subarachnoid hemorrhage in rats. Exp Ther Med. 2019;17(2):1290–1299.
  • Gris T, Laplante P, Thebault P, Canadian Critical Care Translational Biology Group, et al. Innate immunity activation in the early brain injury period following subarachnoid hemorrhage. J Neuroinflammation. 2019;16(1):253–2020. ;. [cited Mar 20]
  • Rasmussen R, Bache S, Stavngaard T, et al. Plasma levels of IL-6, IL-8, IL-10, ICAM-1, VCAM-1, IFNγ, and TNFα are not associated with delayed cerebral ischemia, cerebral vasospasm, or clinical outcome in patients with subarachnoid hemorrhage. World Neurosurg. 2019;128:e1131–e1136.
  • Hao S, Song C, Shang L, et al. Phosphorylation of Akt by SC79 prevents iron accumulation and ameliorates early brain injury in a model of experimental subarachnoid hemorrhage. Molecules. 2016;21(3):325–2020. [cited Mar 20]
  • Okada T, Enkhjargal B, Travis ZD, et al. FGF-2 Attenuates neuronal apoptosis via FGFR3/PI3k/Akt signaling pathway after subarachnoid hemorrhage. Mol Neurobiol. 2019;56(12):8203–8219.
  • Zhuang Z, Zhao X, Wu Y, et al. The anti-apoptotic effect of PI3K-Akt signaling pathway after subarachnoid hemorrhage in rats. Ann Clin Lab Sci. 2011;41(4):364–372.
  • Inage YW, Itoh M, Wada K, et al. Glutamate transporters in neonatal cerebellar subarachnoid hemorrhage. Pediatr Neurol. 2000;23(1):42–48.
  • Chen Y, Sullivan C, Peng C, et al. A tumor suppressor function of the Msr1 gene in leukemia stem cells of chronic myeloid leukemia. Blood. 2011;118(2):390–400.
  • Hong Y, Shao A, Wang J, et al. Neuroprotective effect of hydrogen-rich saline against neurologic damage and apoptosis in early brain injury following subarachnoid hemorrhage: possible role of the Akt/GSK3β signaling pathway. PLoS One. 2014;9(4):e96212[cited 2020 Mar 20]
  • Zhou CH, Wang CX, Xie GB, et al. Fisetin alleviates early brain injury following experimental subarachnoid hemorrhage in rats possibly by suppressing TLR 4/NF-κB signaling pathway. Brain Res. 2015;1629:250–259.
  • Ma CX, Yin WN, Cai BW, et al. Toll-like receptor 4/nuclear factor-kappa B signaling detected in brain after early subarachnoid hemorrhage. Chin Med J. 2009;122(13):1575–1581.
  • Zhou ML, Wu W, Ding YS, et al. Expression of Toll-like receptor 4 in the basilar artery after experimental subarachnoid hemorrhage in rabbits: a preliminary study. Brain Res. 2007;1173:110–116.
  • Lu Y, Zhang XS, Zhang ZH, et al. Peroxiredoxin 2 activates microglia by interacting with Toll-like receptor 4 after subarachnoid hemorrhage. J Neuroinflammation. 2018;15(1):87–2020. [cited Mar 20]
  • Fadakar K, Dadkhahfar S, Esmaeili A, et al. The role of Toll-like receptors (TLRs) in stroke. Rev Neurosci. 2014;25(5):699–712.
  • Lemos de Matos A, McFadden G, Esteves PJ. Evolution of viral sensing RIG-I-like receptor genes in Leporidae genera Oryctolagus, Sylvilagus, and Lepus. Immunogenetics. 2014;66(1):43–52.
  • Chaudhry SR, Stoffel-Wagner B, Kinfe TM, et al. Elevated systemic IL-6 levels in patients with aneurysmal subarachnoid hemorrhage is an unspecific marker for post-SAH complications. IJMS. 2017;18(12)pii:2580. [cited 2020 Mar 20]
  • Rise ML, Hall JR, Rise M, et al. Impact of asymptomatic nodavirus carrier state and intraperitoneal viral mimic injection on brain transcript expression in Atlantic cod (Gadus morhua). Physiol Genomics. 2010;42(2):266–280.
  • Lv SY, Wu Q, Liu JP, et al. Levels of interleukin-1β, interleukin-18, and tumor necrosis factor-α in cerebrospinal fluid of aneurysmal subarachnoid hemorrhage patients may be predictors of early brain injury and clinical prognosis. World Neurosurg. 2018;111:e362–e373.