[1]蓝师海 综述,洪涛 审校.miRNA与蛛网膜下腔出血的关系的研究进展[J].中国临床神经外科杂志,2022,27(01):48-50.[doi:10.13798/j.issn.1009-153X.2022.01.018]
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miRNA与蛛网膜下腔出血的关系的研究进展()
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《中国临床神经外科杂志》[ISSN:1009-153X/CN:42-1603/TN]

卷:
27
期数:
2022年01期
页码:
48-50
栏目:
综述
出版日期:
2022-01-15

文章信息/Info

文章编号:
1009-153X(2022)01-0048-03
作者:
蓝师海 综述洪涛 审校
330006 南昌,南昌大学第一附属医院神经外科(蓝师海、洪涛)
关键词:
蛛网膜下腔出血微小核糖核酸MicroRNAmiRNA
分类号:
R 743.9; Q 786
DOI:
10.13798/j.issn.1009-153X.2022.01.018
文献标志码:
A

参考文献/References:

[1]Lawton MT, Vates GE. Subarachnoid hemorrhage[J]. N Engl J Med, 2017, 377(3): 257-266.
[2]Stylli SS, Adamides AA, Koldej RM, et al. miRNA expression profiling of cerebrospinal fluid in patients with aneurysmal subarachnoid hemorrhage[J]. J Neurosurg, 2017, 126(4): 1131-1139.
[3]Sheng B, Fang X, Liu C, et al. Persistent high levels of mir-502-5p are associated with poor neurologic outcome in patients with aneurysmal subarachnoid hemorrhage[J].World Neurosurg, 2018, 116: e92-e99.
[4]Li HT, Wang J, Li SF, et al. Upregulation of microRNA 24 causes vasospasm following subarachnoid hemorrhage by suppressing the expression of endothelial nitric oxide synthase[J]. Mol Med Rep, 2018, 18(1): 1181-1187.
[5]Chan M, Wong J, Leung A, et al. Plasma and CSF miRNA dysregulations in subarachnoid hemorrhage reveal clinical courses and underlying pathways[J]. J Clin Neurosci, 2019,62: 155-161.
[6]Müller AH, Povlsen GK, Bang-Berthelsen CH, et al. Regulation of microRNAs miR-30a and miR-143 in cerebral vasculature after experimental subarachnoid hemorrhage in rats[J]. BMC Genomics, 2015, 16: 119.
[7]Yang S, Tang W, He Y, et al. Long non-coding RNA and microRNA-675/let-7a mediates the protective effect of melatonin against early brain injury after subarachnoid hemorrhage via targeting TP53 and neural growth factor[J].Cell Death Dis, 2018, 9(2): 99.
[8]Yu S, Zeng YJ, Sun XC. Neuroprotective effects of p53/microRNA 22 regulate inflammation and apoptosis in subarachnoid hemorrhage[J]. Int J Mol Med, 2018, 41(4):2406-2412.
[9]Su XW, Chan AH, Lu G, et al. Circulating microRNA 132-3p and 324-3p profiles in patients after acute aneurysmal subarachnoid hemorrhage[J]. PLoS One, 2015, 10(12):e0144724.
[10]Bache S, Rasmussen R, Rossing M, et al. MicroRNA changes in cerebrospinal fluid after subarachnoid hemorrhage [J]. Stroke, 2017, 48(9): 2391-2398.
[11]Powers CJ, Dickerson R, Zhang SW, et al. Human cerebrospinal fluid microRNA: temporal changes following subara-chnoid hemorrhage[J]. Physiol Genomics, 2016, 48(5):361-366.
[12]Liu D, Han L, Wu X, et al. Genome-wide microRNA changes in human intracranial aneurysms[J]. BMC Neurol,2014, 14: 188.
[13]Wu Z, Liu Y, Huang J, et al. MiR-206 inhibits epilepsy and seizure-induced brain injury by targeting CCL2[J]. Cytotechnology,2019, 71(4): 809-818.
[14]Miao Z, Mao F, Liang J, et al. Anxiety-related behaviours associated with microRNA-206-3p and BDNF expression in pregnant female mice following psychological social stress[J]. Mol Neurobiol, 2018, 55(2): 1097-1111.
[15]Zhao H, Li Y, Chen L, et al. HucMSCs-Derived miR-206-knockdown exosomes contribute to neuroprotection in subarachnoid hemorrhage induced early brain injury by targeting BDNF[J]. Neuroscience, 2019, 417: 11-23.
[16]Lai NS, Zhang JQ, Qin FY, et al. Serum microRNAs are non-invasive biomarkers for the presence and progression of subarachnoid haemorrhage[J]. Biosci Rep, 2017, 37(1): .
[17]Zheng X, Li A, Zhao L, et al. Key role of microRNA-15a in the KLF4 suppressions of proliferation and angiogenesis in endothelial and vascular smooth muscle cells[J]. Biochem Biophys Res Commun, 2013, 437(4): 625-31.
[18]Kikkawa Y, Ogura T, Nakajima H, et al. Altered expression of MicroRNA-15a and kruppel-like factor 4 in cerebrospinal fluid and plasma after aneurysmal subarachnoid hemorrhage [J]. World Neurosurg, 2017, 108: 909-916.e3.

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备注/Memo

备注/Memo:
基金项目:国家自然科学基金(81560207);江西省科技厅项目(1210096001)
更新日期/Last Update: 2022-01-18