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Research Paper

Analysis of regulatory effect of miR-149-5p on Sphingosine-1-phosphate receptor 2 of pericytes and its neuroprotective molecular mechanism after acute cerebral ischemia reperfusion in rats

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Pages 3348-3357 | Received 14 Jan 2021, Accepted 19 Jun 2021, Published online: 05 Jul 2021

References

  • Howell JA, Bidwell GL. Targeting the NF-κB pathway for therapy of ischemic stroke. Ther Deliv. 2020;11(2):113–123.
  • Darcourt J, Withayasuk P, Vukasinovic I, et al. Predictive value of susceptibility vessel sign for arterial recanalization and clinical improvement in ischemic stroke. Stroke. 2019;50(2):512–515. .
  • Pardridge WM. Biologic TNFα-inhibitors that cross the human blood-brain barrier. Bioeng Bugs. 2010;1(4):231–234.
  • Liu W, Cai H, Lin M, et al. MicroRNA-107 prevents amyloid-beta induced blood-brain barrier disruption and endothelial cell dysfunction by targeting Endophilin-1. Exp Cell Res. 2016;343(2):248–257. .
  • De Queiroz KB, Pereira TD, Araujo MS, et al. Resveratrol acts anti-inflammatory and neuroprotective in an infant rat model of pneumococcal meningitis by modulating the hippocampal miRNome. Mol Neurobiol. 2018;55(12):8869–8884. .
  • Wan Y, Jin H, Zhu Y, et al. MicroRNA-149-5p regulates blood–brain barrier permeability after transient middle cerebral artery occlusion in rats by targeting S1PR2 of pericytes. FASEB J. 2018;32(6):3133–3148. .
  • Joanna M, Strosznajder JB. Sphingosine kinase 1/sphingosine-1-phosphate receptors dependent signalling in neurodegenerative diseases. The promising target for neuroprotection in Parkinson’s disease. Pharmacol Rep. 2018;70(5):1010–1014.
  • Yue X, Jin H, Liu H, et al. A potent and selective C-11 labeled PET tracer for imaging sphingosine-1-phosphate receptor 2 in the CNS demonstrates sexually dimorphic expression. Org Biomol Chem. 2015;13(29):7928–7939. .
  • Consoli A, Rosi A, Coskun O, et al. Thrombectomy for m1-middle cerebral artery occlusion: angiographic aspect of the arterial occlusion and recanalization: a preliminary observation. Stroke. 2018;49(5):1286–1289. .
  • You H, Jin Y, Kang J, et al. Mitochondrial serine protease Omi/HtrA2 accentuates brain ischemia/reperfusion injury in rats and oxidative stress injury in vitro by modulating mitochondrial stress proteins CHOP and ClpP and physically interacting with mitochondrial fusion protein OPA1. Bioengineered. 2020;11(1):1058–1070.
  • Liu W, Miao Y, Zhang L, et al. MiR-211 protects cerebral ischemia/reperfusion injury by inhibiting cell apoptosis. Bioengineered. 2020;11(1):189–200.
  • Gao C, Chen H, Niu C, et al. Protective effect of Schizandrin B against damage of UVB irradiated skin cells depend on inhibition of inflammatory pathways. Bioengineered. 2017 Jan 2;8(1):36–44.
  • Shi Z, Duckwiler G, Jahan R, et al. Early blood‐brain barrier disruption after mechanical thrombectomy in acute ischemic stroke. J Neuroimaging. 2018;28(3):283–288. .
  • Abdulkadir RR, Alwjwaj M, Othman O, et al. Outgrowth endothelial cells form a functional cerebral barrier and restore its integrity after damage. Neural Regen Res. 2020;15(6):1071–1078. .
  • Murphy RP, Murphy KJ, Pickering M. The development of myelin repair agents for treatment of multiple sclerosis: progress and challenges. Bioengineered. 2013;4(3):140–146.
  • Matsumoto N, Yamashita T, Shang J, et al. Up-regulation of sphingosine-1-phosphate receptors and sphingosine kinase 1 in the peri-ischemic area after transient middle cerebral artery occlusion in mice. Brain Res. 2020;1739:146831.
  • Camerer E. Endotoxemia rocks sphingolipid metabolism at the blood-brain barrier: an editorial highlight for ‘alteration of sphingolipid metabolism as a putative mechanism underlying LPS-induced BBB disruption’ on page 172. J Neurochem. 2018;144(2):115–117.
  • Wu Q, Yuan X, Li B, et al. Differential miRNA expression analysis of extracellular vesicles from brain microvascular pericytes in spontaneous hypertensive rats. Biotechnol Lett. 2020;42(3):389–401. .
  • Li S, Bian L, Fu X, et al. Gastrodin pretreatment alleviates rat brain injury caused by cerebral ischemic-reperfusion. Brain Res. 2019;1712:207–216.
  • Schram S, Chuang D, Schmidt G, et al. Mutant SOD1 prevents normal functional recovery through enhanced glial activation and loss of motor neuron innervation after peripheral nerve injury. Neurobiol Dis. 2019;124:469–478.
  • Xia P, Pan Y, Zhang F, et al. Pioglitazone confers neuroprotection against ischemia-induced pyroptosis due to its inhibitory effects on HMGB-1/RAGE and Rac1/ROS Pathway by activating PPAR-ɤ. Cell Physiol Biochem. 2018;45(6):2351–2368.