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Autor(en) / Beteiligte
Titel
Neuroprotective effect of kaempferol glycosides against brain injury and neuroinflammation by inhibiting the activation of NF-κB and STAT3 in transient focal stroke
Ist Teil von
  • PloS one, 2013-02, Vol.8 (2), p.e55839-e55839
Ort / Verlag
United States: Public Library of Science
Erscheinungsjahr
2013
Quelle
Free E-Journal (出版社公開部分のみ)
Beschreibungen/Notizen
  • Ischemic brain injury is associated with neuroinflammatory response, which essentially involves glial activation and neutrophil infiltration. Transcription factors nuclear factor-κB (NF-κB) and signal transducer and activator of transcription 3 (STAT3) contribute to ischemic neuroinflammatory processes and secondary brain injury by releasing proinflammatory mediators. Kaempferol-3-O-rutinoside (KRS) and kaempferol-3-O- glucoside (KGS) are primary flavonoids found in Carthamus tinctorius L. Recent studies demonstrated that KRS protected against ischemic brain injury. However, little is known about the underlying mechanisms. Flavonoids have been reported to have antiinflammatory properties. Herein, we explored the effects of KRS and KGS in a transient focal stroke model. Rats were subjected to middle cerebral artery occlusion for 2 hours followed by 22 h reperfusion. An equimolar dose of KRS or KGS was administered i.v. at the beginning of reperfusion. The results showed that KRS or KGS significantly attenuated the neurological deficits, brain infarct volume, and neuron and axon injury, reflected by the upregulation of neuronal nuclear antigen-positive neurons and downregulation of amyloid precursor protein immunoreactivity in the ipsilateral ischemic hemisphere. Moreover, KRS and KGS inhibited the expression of OX-42, glial fibrillary acidic protein, phosphorylated STAT3 and NF-κB p65, and the nuclear content of NF-κB p65. Subsequently, these flavonoids inhibited the expression of tumor necrosis factor α, interleukin 1β, intercellular adhesion molecule 1, matrix metallopeptidase 9, inducible nitric oxide synthase, and myeloperoxidase. Our findings suggest that postischemic treatment with KRS or KGS prevents ischemic brain injury and neuroinflammation by inhibition of STAT3 and NF-κB activation and has the therapeutic potential for the neuroinflammation-related diseases, such as ischemic stroke.
Sprache
Englisch
Identifikatoren
ISSN: 1932-6203
eISSN: 1932-6203
DOI: 10.1371/journal.pone.0055839
Titel-ID: cdi_plos_journals_1330880828
Format
Schlagworte
Alzheimer's disease, Amyloid precursor protein, Animals, Astrocytes - drug effects, Astrocytes - metabolism, Astrocytes - pathology, Axons - drug effects, Axons - pathology, Biology, Brain, Brain damage, Brain Injuries - drug therapy, Brain Injuries - pathology, Brain injury, Carthamus tinctorius, Cell activation, Cell adhesion, Cerebral blood flow, Cerebral Infarction - drug therapy, Cerebral Infarction - pathology, Chinese medicine, Drug delivery systems, Edema, Education, Extracellular matrix, Flavonoids, Glial fibrillary acidic protein, Glycosides, Head injuries, Immunoreactivity, Infarction, Middle Cerebral Artery - drug therapy, Infarction, Middle Cerebral Artery - pathology, Infiltration, Inflammation, Inflammation - drug therapy, Inflammation - pathology, Inflammation Mediators - metabolism, Inhibition, Injury prevention, Intercellular adhesion molecule 1, Interleukin, Interleukins, Ischemia, Kaempferol, Kaempferols - chemistry, Kaempferols - pharmacology, Kaempferols - therapeutic use, Kinases, Laboratories, Male, Medicine, Metalloproteinase, Metastases, Microglia - drug effects, Microglia - metabolism, Microglia - pathology, Monosaccharides - chemistry, Monosaccharides - pharmacology, Monosaccharides - therapeutic use, Neurological diseases, Neuronal-glial interactions, Neuroprotection, Neuroprotective Agents - pharmacology, Neuroprotective Agents - therapeutic use, Neurosciences, NF-kappa B - antagonists & inhibitors, NF-kappa B - metabolism, NF-κB protein, Nitric oxide, Occlusion, Peroxidase, Pharmacology, Pharmacy, Phosphorylation, Proteins, Rats, Rats, Sprague-Dawley, Reperfusion, Rodents, Science, STAT3 Transcription Factor - metabolism, Stroke, Stroke - drug therapy, Stroke - metabolism, Stroke - pathology, Transcription factors, Traumatic brain injury, Tumor necrosis factor-TNF

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