Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.
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Therapy Effects of Bone Marrow Stromal Cells on Ischemic Stroke"Small Blood Vessels: Big Health Problems?": Scientific Recommendations of the National Institutes of Health Workshop.To Use or Not to Use Metformin in Cerebral Ischemia: A Review of the Application of Metformin in Stroke RodentsUpregulation of CREM/ICER suppresses wound endothelial CRE-HIF-1α-VEGF-dependent signaling and impairs angiogenesis in type 2 diabetes.Metformin treatment in the period after stroke prevents nitrative stress and restores angiogenic signaling in the brain in diabetes.Linagliptin treatment improves cerebrovascular function and remodeling and restores reduced cerebral perfusion in Type 2 diabetes.Amelioration of Metabolic Syndrome-Associated Cognitive Impairments in Mice via a Reduction in Dietary Fat Content or Infusion of Non-Diabetic Plasma.Cellular connections, microenvironment and brain angiogenesis in diabetes: Lost communication signals in the post-stroke period.Impact of Comorbidities on Acute Injury and Recovery in Preclinical Stroke Research: Focus on Hypertension and Diabetes.Cerebrovascular complications of diabetes: focus on cognitive dysfunctionLinagliptin attenuates diabetes-induced cerebral pathological neovascularization in a blood glucose-independent manner: Potential role of ET-1.Diabetes-mediated middle cerebral artery remodeling is restored by linagliptin: Interaction with the vascular smooth muscle cell endothelin systemLinagliptin reduces effects of ET-1 and TLR2-mediated cerebrovascular hyperreactivity in diabetes.Silymarin Ameliorates Diabetes-Induced Proangiogenic Response in Brain Endothelial Cells through a GSK-3β Inhibition-Induced Reduction of VEGF Release.Inhibition of VEGF Signaling Reduces Diabetes-Exacerbated Brain Swelling, but Not Infarct Size, in Large Cerebral Infarction in Mice.Cerebrovascular function and mitochondrial bioenergetics after ischemia-reperfusion in male rats.Brain-Derived Neurotrophic Factor Knockdown Blocks the Angiogenic and Protective Effects of Angiotensin Modulation After Experimental Stroke.The role of KATP channels in cerebral ischemic stroke and diabetes.APX3330 Promotes Neurorestorative Effects after Stroke in Type One Diabetic Rats.Carotid vulnerable plaques are associated with circulating leukocytes in acute ischemic stroke patients: an clinical study based on contrast-enhanced ultrasound.
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P2860
Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.
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article científic
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article scientifique
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articolo scientifico
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Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.
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type
label
Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.
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prefLabel
Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.
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P2093
P2860
P356
P1476
Cerebral neovascularization in diabetes: implications for stroke recovery and beyond.
@en
P2093
Abdelrahman Y Fouda
Adviye Ergul
Susan C Fagan
P2860
P304
P356
10.1038/JCBFM.2014.18
P577
2014-02-05T00:00:00Z