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8篇 您的检索式:作者名="Shen Fanxia"
    题名 作者 年代 出处 被引量
1Arterial stiffness and stroke:de-stiffening strategy,a therapeutic target for stroke显示文摘Stroke is the second leading cause of mortality and morbidity worldwide.Early intervention is of great importance in reducing disease burden.Since the conventional risk factors cannot fully account for the pathogenesis of stroke,it is extremely important to detect useful biomarkers of the vascular disorder for appropriate intervention.Arterial stiffness,a newly recognised reliable feature of arterial structure and function,is demonstrated to be associated with stroke onset and serve as an independent predictor of stroke incidence and poststroke functional outcomes.In this review article,different measurements of arterial stiffness,especially pressure wave velocity,were discussed.We explained the association between arterial stiffness and stroke occurrence by discussing the secondary haemodynamic changes.We reviewed clinical data that support the prediction role of arterial stiffness on stroke.Despite the lack of long-term randomised double-blind controlled therapeutic trials,it is high potential to reduce stroke prevalence through a significant reduction of arterial stiffness(which is called de-stiffening therapy).Pharmacological interventions or lifestyle modification that can influence blood pressure,arterial function or structure in either the short or long term are promising de-stiffening therapies.Here,we summarised different de-stiffening strategies including antihypertension drugs,antihyperlipidaemic agents,chemicals that target arterial remodelling and exercise training.Large and well-designed clinical trials on de-stiffening strategy are needed to testify the prevention effect for stroke.Novel techniques such as modern microscopic imaging and reliable animal models would facilitate the mechanistic analyses in pathophysiology,pharmacology and therapeutics.Yajing Chen Fanxia Shen Jianrong Liu Guo-Yuan Yang 2017Stroke & Vascular Neurology2017,2,2:3
2Endo thelial progenitor cell transplantation improves long term outcome in mice显示文摘Yongfeng Fan Fanxia Shen Tim Frenzel 2010Ann Neurol2010,67,4:1
3Angiopoietin- 2 facilitates vascular endothelial growth factor- induced angiogenesis in the mature mouse Brain 显示文摘Zhu Yiqiang Lee Chanhung Shen Fanxia 2005Stroke2005,36,7:1
4Overexpression of netrin-1 induces neovascularization in the adult mouse brain显示文摘Fan Yongfeng Shen Fanxia Chen Yongmei 2008J Cereb Blood Flow Metab2008,28,9:1
5MicroRNA-9 Coordinates Proliferation and Migration of Human Embryonic Stem Cell-Derived Neural Progenitors显示文摘Celine Delaloy Lei Liu Jin-A Lee Hua Su Fanxia Shen Guo-Yuan Yang William L. Young Kathy N. Ivey Fen-Biao Gao 2010Cell Stem Cell2010,,4:1
6Angiopoietin - 2 facilitates vascular endothelial growth factor- induced angiogenesis in the mature mouse brain显示文摘Zhu Yiqian Lee Chanhung Shen Fanxia 2005Stroke2005,36,7:1
7MicroRNA-9 Coordinates Proliferation and Migration of Human Embryonic Stem Cell-Derived Neural Progenitors显示文摘Celine Delaloy Lei Liu Jin-A Lee Hua Su Fanxia Shen Guo-Yuan Yang William L. Young Kathy N. Ivey Fen-Biao Gao 2010Cell Stem Cell2010,,4:1
8Ketogenic diet alleviates cognitive dysfunction and neuroinflammation in APP/PS1 mice via the Nrf2/HO-1 and NF-κB signaling pathways显示文摘Alzheimer's disease is a progressive neurological disorder characterized by cognitive decline and chronic inflammation within the brain.The ketogenic diet,a widely recognized therapeutic intervention for refractory epilepsy,has recently been proposed as a potential treatment for a variety of neurological diseases,including Alzheimer's disease.However,the efficacy of ketogenic diet in treating Alzheimer's disease and the underlying mechanism remains unclear.The current investigation aimed to explore the effect of ketogenic diet on cognitive function and the underlying biological mechanisms in a mouse model of Alzheimer's disease.Male amyloid precursor protein/presenilin 1(APP/PS1)mice were randomly assigned to either a ketogenic diet or control diet group,and received their respective diets for a duration of 3 months.The findings show that ketogenic diet administration enhanced cognitive function,attenuated amyloid plaque formation and proinflammatory cytokine levels in APP/PS1 mice,and augmented the nuclear factor-erythroid 2-p45 derived factor 2/heme oxygenase-1 signaling pathway while suppressing the nuclear factor-kappa B pathway.Collectively,these data suggest that ketogenic diet may have a therapeutic potential in treating Alzheimer's disease by ameliorating the neurotoxicity associated with Aβ-induced inflammation.This study highlights the urgent need for further research into the use of ketogenic diet as a potential therapy for Alzheimer's disease.Jingwen Jiang Hong Pan Fanxia Shen Yuyan Tan Shengdi Chen 2023Neural Regeneration Research2023,18,12:0
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