参考文献/References:
[1] WU X, WEI H, WU JQ. Coding and long non-coding gene expression changes in the CNS traumatic injuries [J]. Cell Mol Life Sci, 2022, 79(2): 123-143.
[2] WANG H, ZHENG X, JIN J, et al. LncRNA MALAT1 silencing protects against cerebral ischemia-reperfusion injury through miR145 to regulate AQP4 [J]. J Biomed Sci, 2020, 27(1): 40-52.
[3] GUO Y, YANG JH, HE Y, et al. Protocatechuic aldehyde prevents ischemic injury by attenuating brain microvascular endothelial cell pyroptosis via lncRNA Xist [J]. Phytomedicine, 2022, 94(1): 153849-153858.
[4] ZHENG L, PANG Q, XU H, et al. The neurobiological links between stress and traumatic brain injury: a review of research to date [J]. Int J Mol Sci, 2022, 23(17): 9519-9546.
[5] KHELLAF A, KHAN DZ, HELMY A. Recent advances in traumatic brain injury [J]. J Neurol, 2019, 266(11): 2878-2889.
[6] LEI J, ZHANG X, TAN R, et al. Levels of lncRNA GAS5 in plasma of patients with severe traumatic brain injury: correlation with systemic inflammation and early outcome [J]. J Clin Med, 2022, 11(12): 3319-3328.
[7] ZHONG J, JIANG L, CHENG C, et al. Altered expression of long non-coding RNA and mRNA in mouse cortex after traumatic brain injury [J]. Brain Res, 2016, 1646: 589-600.
[8] WANG CF, ZHAO CC, WENG WJ, et al. Alteration in long noncoding rna expression after traumatic brain injury in rats [J]. J Neurotrauma, 2017, 34(13): 2100-2108.
[9] ZHONG J, CHENG C, LIU H, et al. Bexarotene protects against traumatic brain injury in mice partially through apolipoprotein E [J]. Neuroscience, 2017, 343(2): 434-448.
[10] ZHONG J, JIANG L, HUANG Z, et al. The long non-coding RNA Neat1 is an important mediator of the therapeutic effect of bexarotene on traumatic brain injury in mice [J]. Brain Behav Immun, 2017, 65(10): 183-194.
[11] XU Y, ZHOU LQ, QIN C, et al. Effect of heterogeneous activation of microglia on brain endothelial cells after ischemic stroke [J]. Neural Inj Func Reconstr, 2022, 17(10): 591-592, 616. 许 瑶,周罗绮,秦 川,等. 缺血性卒中后小胶质细胞的异质性活化对脑内皮细胞的作用[J]. 神经损伤与功能重建,2022,17(10):591-592,616.
[12] LI XL, WANG B, YANG FB, et al. HOXA11-AS aggravates microglia-induced neuroinflammation after traumatic brain injury [J]. Neural Regen Res, 2022, 17(5): 1096-1105.
[13] LIU N, SUN H, LI X, et al. Downregulation of lncRNA KCNQ1OT1 relieves traumatic brain injury induced neurological deficits via promoting "M2" microglia polarization [J]. Brain Res Bull, 2021, 171 (6): 91-102.
[14] CHENG S, ZHANG Y, CHEN S, et al. LncRNA HOTAIR participates in microglia activation and inflammatory factor release by regulating the ubiquitination of myd88 in traumatic brain injury [J]. J Mol Neurosci, 2021, 71(1): 169-177.
[15] MENG J, DING T, CHEN Y, et al. LncRNA-Meg3 promotes Nlrp3mediated microglial inflammation by targeting miR-7a-5p [J]. Int Immunopharmacol, 2021, 90(1): 107141-107150.
[16] ZHANG CH, SHENG JQ, SARSAIYA S, et al. The anti-diabetic activities, gut microbiota composition, the anti-inflammatory effects of Scutellaria-coptis herb couple against insulin resistance-model of diabetes involving the toll-like receptor 4 signaling pathway [J]. J Ethnopharmacol, 2019, 237(6): 202-214.
[17] WANG S, HE B, HANG W, et al. Berberine alleviates Tau hyperphosphorylation and axonopathy-associated with diabetic encephalopathy via restoring PI3K/Akt/GSK3β pathway [J]. J Alzheimers Dis, 2018, 65(4): 1385-1400.
[18] SUN Q, ZENG QC, CHEN YQ, et al. Long intergenic noncoding RNA p21 suppresses the apoptosis of hippocampus neurons in streptozotocin-diabetic mice by sponging microRNA-221 through upregulation of FOS [J]. J Cell Physiol, 2019, 234(11): 21113-21125.
[19] FENG J, ZHOU Z, FENG R, et al. Silencing long non-coding RNA zinc finger antisense 1 restricts secondary cerebral edema and neuron injuries after traumatic brain injury [J]. Neurosci Lett, 2021, 756(6): 135958-135963.
[20] HE B, CHEN W, ZENG J, et al. Long noncoding RNA NKILA transferred by astrocyte-derived extracellular vesicles protects against neuronal injury by upregulating NLRX1 through binding to mir195 in traumatic brain injury [J]. Aging (Albany NY), 2021, 13(6): 8127-8145.
[21] XIAO Z, QIU Y, LIN Y, et al. Blocking lncRNA H19-miR-19a-Id2 axis attenuates hypoxia/ischemia induced neuronal injury [J]. Aging (Albany NY), 2019, 11(11): 3585-3600.
[22] ZHANG S, XUE R, GENG Y, et al. Fisetin prevents HT22 cells from high glucose-induced neurotoxicity via PI3K/Akt/CREB signaling pathway [J]. Front Neurosci, 2020, 14(3): 241-252.
[23] GOCMEZ SS, AHIN TD, YAZIR Y, et al. Resveratrol prevents cognitive deficits by attenuating oxidative damage and inflammation in rat model of streptozotocin diabetes induced vascular dementia [J]. Physiol Behav, 2019, 201(3): 198-207.
[24] TANG W, CHAI W, DU D, et al. The lncRNA-AK046375 upregulates metallothionein-2 by sequestering miR-491-5p to relieve the brain oxidative stress burden after traumatic brain injury [J]. Oxid Med Cell Longev, 2022, 2022(2): 8188404-8188430.
[25] SULHAN S, LYON KA, SHAPIRO LA, et al. Neuroinflammation and blood-brain barrier disruption following traumatic brain injury: pathophysiology and potential therapeutic targets [J]. J Neurosci Res, 2020, 98(1): 19-28.
[26] SKOLD MK, GERTTEN C, SANDBERG AC, et al. VEGF and VEGF receptor expression after experimental brain contusion in rat [J]. J Neurotrauma, 2005, 22(3): 353-367.
[27] LIU H, WEI Z, SUN X, et al. MALAT1 improves functional recovery after traumatic brain injury through promoting angiogenesis in experimental mice [J]. Brain Res, 2022, 1775(1): 147731-147740.
[28] GAO Z, XU J, FAN Y, et al. PDIA3P1 promotes temozolomide resistance in glioblastoma by inhibiting C/EBPβ degradation to facilitate proneural-to-mesenchymal transition [J]. J Exp Clin Cancer Res, 2022, 41(1): 223-244.
[29] MIDURA EF, JERNIGAN PL, KUETHE JW, et al. Microparticles impact coagulation after traumatic brain injury [J]. J Surg Res, 2015, 197(1): 25-31.
[30] GAJAVELLI S, KENTARO S, DIAZ J, et al. Glucose and oxygen metabolism after penetrating ballistic-like brain injury [J]. J Cereb Blood Flow Metab, 2015, 35(5): 773-780.
[31] ZHOU H, WANG X, CHENG R, et al. Analysis of long non-coding RNA expression profiles in neonatal rats with hypoxic-ischemic brain damage [J]. J Neurochem, 2019, 149(3): 346-361.
[32] LOPEZ ME, JARQUIN M, SANCHEZ LA, et al. Decoding aging: understanding the complex relationship among aging, free radicals, and GSH [J]. Oxid Med Cell Longev, 2020, 2020(10): 3970860-3970871.
[33] ZHAO F, QU Y, LIU J, et al. Microarray profiling and co-expression network analysis of lncRNAs and mRNAs in neonatal rats following hypoxic-ischemic brain damage [J]. Sci Rep, 2015, 5(9): 13850-13861.
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