Diagnostic and Prognostic Circulating MicroRNA in Acute Stroke: A Systematic and Bioinformatic Analysis of Current Evidence

논문상세정보
' Diagnostic and Prognostic Circulating MicroRNA in Acute Stroke: A Systematic and Bioinformatic Analysis of Current Evidence' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Diagnostic
  • Ischaemic stroke
  • Stroke
  • biomarker
  • mirna
  • prognostic
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' Diagnostic and Prognostic Circulating MicroRNA in Acute Stroke: A Systematic and Bioinformatic Analysis of Current Evidence' 의 참고문헌

  • miR‑335 promotes stress granule formation to inhibit apoptosis by targeting ROCK2 in acute ischemic stroke
    Si W [2019]
  • Upregulated serum miR-146b serves as a biomarker for acute ischemic stroke
    Chen Z [2018]
  • The therapeutic potential of microRNAs in nervous system damage, degeneration, and repair
  • The diagnostic value of serum miRNA-221-3p, miRNA-382-5p, and miRNA-4271 in ischemic stroke
    Wang Y [2017]
  • Stroke biomarkers: progress and challenges for diagnosis, prognosis, differentiation, and treatment
    Saenger AK [2010]
  • Role of placenta growth factor in cancer and inflammation
    김기조 [2012]
  • RNA-Seq identifies circulating miR-125a-5p, miR-125b-5p, and miR-143-3p as potential biomarkers for acute ischemic stroke
    Tiedt S [2017]
  • Preferred reporting items for systematic reviews and meta-analyses : The PRISMA statement
    Moher, D. [2009]
  • Population differences in microRNA expression and biological implications
    Huang RS [2011]
  • Plasma microRNA-16 is a biomarker for diagnosis, stratification, and prognosis of hyperacute cerebral infarction
    Tian C [2016]
  • Plasma let-7i and miR-15a expression are associated with the effect of recombinant tissue plasminogen activator treatment in acute ischemic stroke patients
    Xiang W [2017]
  • Pathobiology of ischaemic stroke : an integrated view
    Dirnagl U [1999]
  • Newcastle-Ottawa Scale : comparing reviewers’ to authors’ assessments
    Lo CK [2014]
  • MicroRNomics : a newly emerging approach for disease biology
    Zhang C [2008]
  • MicroRNA367 negatively regulates the inflammatory response of microglia by targeting IRAK4 in intracerebral hemorrhage
    Yuan B [2015]
  • MicroRNA-224 is readily detectable in urine of individuals with diabetes mellitus and is a potential indicator of beta-cell demise
    Bacon S [2015]
  • MicroRNA-210 overexpression induces angiogenesis and neurogenesis in the normal adult mouse brain
    Zeng L [2014]
  • MicroRNA-15a/16-1 antagomir ameliorates ischemic brain injury in experimental stroke
    Yang X [2017]
  • MicroRNA-15a and microRNA-16 impair human circulating proangiogenic cell functions and are increased in the proangiogenic cells and serum of patients with critical limb ischemia
    Spinetti G [2013]
  • MicroRNA-155 regulates ROS production, NO generation, apoptosis and multiple functions of human brain microvessel endothelial cells under physiological and pathological conditions
    Liu Y [2015]
  • MicroRNA-132 attenuates neurobehavioral and neuropathological changes associated with intracerebral hemorrhage in mice
    Zhang Y [2017]
  • MicroRNA-130a regulates cerebral ischemia-induced blood-brain barrier permeability by targeting Homeobox A5
    Wang Y [2018]
  • MicroRNA-126-3p attenuates intracerebral hemorrhage-induced blood-brain barrier disruption by regulating VCAM-1 expression
    Fu X [2019]
  • MicroRNA-126 suppresses inflammation in endothelial cells under hyperglycemic condition by targeting HMGB1
    Tang ST [2017]
  • MiRNA-424 protects against permanent focal cerebral ischemia injury in mice involving suppressing microglia activation
    Zhao H [2013]
  • Loss of angiomiR-126 and 130a in angiogenic early outgrowth cells from patients with chronic heart failure : role for impaired in vivo neovascularization and cardiac repair capacity
    Jakob P [2012]
  • Leukocyte response is regulated by microRNA let7i in patients with acute ischemic stroke
    Jickling GC [2016]
  • Intranasal delivery of transforming growth factor-beta1 in mice after stroke reduces infarct volume and increases neurogenesis in the subventricular zone
    Ma M [2008]
  • Inhibition of EGFR/MAPK signaling reduces microglial inflammatory response and the associated secondary damage in rats after spinal cord injury
    Qu WS [2012]
  • Increased serum exosomal miR-134 expression in the acute ischemic stroke patients
    Zhou J [2018]
  • Identification of circulating microRNAs as potential biomarkers for detecting acute ischemic stroke
    Li P [2015]
  • Identification of blood let-7e-5p as a biomarker for ischemic stroke
    Huang S [2016]
  • High serum miR-130a levels are associated with severe perihematomal edema and predict adverse outcome in acute ICH
    Wang MD [2016]
  • Global, regional, and national burden of stroke, 1990-2016: a systematic analysis for the Global Burden of Disease Study 2016
  • Excitotoxic glutamate causes neuronal insulin resistance by inhibiting insulin receptor/Akt/mTOR pathway
    Pomytkin I [2019]
  • Epigenome alterations in aortic valve stenosis and its related left ventricular hypertrophy
    Gošev I [2017]
  • Downregulation of serum brain specific microRNA is associated with inflammation and infarct volume in acute ischemic stroke
    Liu Y [2015]
  • Disparate miRNA expression in serum and plasma of patients with acute myocarhttps dial infarction: a systematic and paired comparative analysis
    Mompeón A [2020]
  • Diagnostic and immunosuppressive potential of elevated Mir-424 levels in circulating immune cells of ischemic stroke patients
    Li G [2018]
  • Decreased plasma miR-335 expression in patients with acute ischemic stroke and its association with calmodulin expression
    Zhao B [2016]
  • Data normalization strategies for microRNA quantification
  • Cutting through the complexities of mTOR for the treatment of stroke
    Maiese K [2014]
  • Comparison of miR-124-3p and miR-16 for early diagnosis of hemorrhagic and ischemic stroke
    Leung LY [2014]
  • Classification of subtype of acute ischemic stroke. Definitions for use in a multicenter clinical trial. TOAST. Trial of Org 10172 in Acute Stroke Treatment
    Adams HP Jr [1993]
  • Circulating pro-angiogenic and anti-angiogenic microRNA expressions in patients with acute ischemic stroke and their association with disease severity
    Jin F [2017]
  • Circulating microRNAs as novel potential biomarkers for early diagnosis of acute stroke in humans
    Wang W [2014]
  • Circulating microRNAs as biomarkers of acute stroke
  • Circulating miR-330-3p in late pregnancy is associated with pregnancy outcomes among lean women with GDM
    Pfeiffer S [2020]
  • Circulating miR-30a, miR-126 and let-7b as biomarker for ischemic stroke in humans
    Long G [2013]
  • Circulating miR-145 is associated with plasma high-sensitivity C-reactive protein in acute ischemic stroke patients
    Jia L [2015]
  • Circulating miR-126 and miR-130a levels correlate with lower disease risk, disease severity, and reduced inflammatory cytokine levels in acute ischemic stroke patients
    Jin F [2018]
  • Cerebrospinal fluid microRNAs are potential biomarkers of temporal lobe epilepsy and status epilepticus
    Raoof R [2017]
  • Blood microRNA-93 as an indicator for diagnosis and prediction of functional recovery of acute stroke patients
    Ma Q [2019]
  • Blood biomarkers in the diagnosis of ischemic stroke : a systematic review
    Whiteley W [2008]
  • Antagomir-mediated silencing of endothelial cell specific microRNA-126 impairs ischemia-induced angiogenesis
  • Analysis of circulating microRNA biomarkers in plasma and serum using quantitative reverse transcription-PCR(qRT-PCR)
    Kroh EM [2010]
  • Analysis of BH3-only proteins upregulated in response to oxygen/glucose deprivation in cortical neurons identifies Bmf but not Noxa as potential mediator of neuronal injury
    Pfeiffer S [2014]
  • Alteration of microRNA 340-5p and arginase-1 expression in peripheral blood cells during acute ischemic stroke
    Yoo H [2019]
  • A mammalian microRNA expression atlas based on small RNA library sequencing
    Landgraf P [2007]