6533b822fe1ef96bd127d7e1
RESEARCH PRODUCT
Cordycepin protects against cerebral ischemia/reperfusion injury in vivo and in vitro.
Chenming ZhaoXulin XuQing LvShanshan YangZhenyong ChengWei HeLianjun GuoXiaoxia Zhousubject
MaleExcitatory Amino AcidsIschemiaCell CountPharmacologyNeuroprotectionHippocampusBrain IschemiaSuperoxide dismutaseBrain ischemiachemistry.chemical_compoundMiceIn vivoMalondialdehydemedicineAnimalsPharmacologyNeuronsbiologyCordycepinDeoxyadenosinesbusiness.industrySuperoxide DismutaseGlutamate receptormedicine.diseaseOxygenGlucoseBiochemistrychemistryReperfusion Injurybiology.proteinMatrix Metalloproteinase 3businessReperfusion injuryPropidiumdescription
Cordycepin, (3'-deoxyadenosine), a bioactive compound of Cordyceps militaris, has been shown to exhibit many pharmacological actions, such as anti-inflammatory, antioxidative and anticancer activities. Little is known about the neuroprotective action of cordycepin as well as its molecular mechanisms. In this study, cordycepin was investigated for its neuroprotective potential in mice with ischemia following 15 min of the bilateral common carotid artery occlusion and 4h of reperfusion. The effect of cordycepin was also studied in mice brain slices treated with oxygen-glucose deprivation (OGD) injury. Our results showed that cordycepin was able to prevent postischemic neuronal degeneration and brain slice injury. Excitatory amino acids such as glutamate and aspartate in brain homogenized supernatant, which were increased in ischemia/reperfusion group, were detected by high performance liquid chromatography (HPLC). The results showed that cordycepin was able to decrease the extracellular level of glutamate and aspartate significantly. Moreover, cordycepin was able to increase the activity of superoxide dismutase (SOD) and decrease the level of malondialdehyde (MDA), ameliorating the extent of oxidation. Furthermore, matrix metalloproteinase-3(MMP-3), a key enzyme involved in inflammatory reactions, was markedly increased after ischemia reperfusion, whereas cordycepin was able to inhibit its expression obviously. In conclusion, our in vivo and in vitro study showed that cordycepin was able to exert a potent neuroprotective function after cerebral ischemia/reperfusion.
year | journal | country | edition | language |
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2011-08-01 | European journal of pharmacology |