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Effects of Ganoderma lucidum spore powder on astrocyte expression and glutamine synthetase activity in the hippocampal region of epileptic rats 被引量:2

Effects of Ganoderma lucidum spore powder on astrocyte expression and glutamine synthetase activity in the hippocampal region of epileptic rats
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摘要 BACKGROUND: Recent studies have demonstrated that astrocyte dysfunction plays a central role in inhibiting epileptic seizures and that regulation of astrocyte function may be a new target for treatment of epilepsy. OBJECTIVE: To observe the effects of Ganoderma lucidum spore powder (GLSP) on astrocyte morphology and glutamine synthetase (COS) activity in the hippocampal region of epileptic rats. DESIGN, TIME AND SETTING: A randomized, controlled animal experiment was performed at the Function Laboratory, College of Basic Medicine, Jiamusi University between October and December 2006. MATERIALS: A total of 30 Sprague Dawley (SD) rats were randomized to three groups (n = 10): control, model, and GLSP. GLSP was sourced from Jiamusi Wild Ganoderma Lucidum Planting Base and prepared to 30 g/L with physiological saline before use. Pentylenetetrazol (PTZ) (10 g/L) was provided by Sigma Company, USA. METHODS: The control group received intraperitoneal (i.p.) and intragastric (i.g.) physiological saline. Following epilepsy induction by i.p. administration of PTZ (35 mg/kg), rats from the mode/and GLSP groups were ig injected with physiological saline and GLSP (300 mg/kg), respectively. Each compound was administered once per day, for a total of 28 successive days. Epileptic seizure convulsions were graded 0-5. A higher grade indicated more severe epilepsy. Only those rats showing stage 2 or higher convulsions at least 5 times successively were included in further experiments. MAIN OUTCOME MEASURES: Immediately alter injection, seizure activity was monitored for 30 minutes to determine the latent period and seizure duration; simultaneously, astrocyte numbers and GS activity in the hippocampal region of rats with epilepsy were detected by immunohistochemistry. RESULTS: All 30 rats were included in the final analysis. On day 28, following PTZ administration epileptic seizures were not found in the control group. In the GLSP group, rats exhibited rhythmic head nodding or facial spasms, and the latent period was significantly longer than that of the model group (P 〈 0.05). In the model group, the majority of rats exhibited myoclonus or generalized convulsions, and epileptic seizure duration was slightly (but not significantly) longer than that in the GLSP group (P 〉 0.05). Within 2-3 minutes of PTZ injection, the model group exhibited grade 4 or 5 epileptic seizures, and the GLSP group mostly showed grade 2 or 3, and occasionally grade 4 or 5, epileptic seizures. All rats recovered within 30 minutes. The model group exhibited significantly increased astrocytes (P 〈 0.05), with thicker cellular processes and a higher number of cellular processes, and significantly decreased GS activity (P 〈 0.05) tban the control group. The astrocyte count was significantly decreased but GS activity was significantly increased in the GLSP group when compared with the model group (P 〈 0.05); however, astrocyte appearance was similar in both groups (P 〈 0.05). CONCLUSION: GLSP can effectively inhibit astrocyte numbers and elevate GS activity in the hippocampal region of rats with epilepsy, thereby reducing epileptic seizures. BACKGROUND: Recent studies have demonstrated that astrocyte dysfunction plays a central role in inhibiting epileptic seizures and that regulation of astrocyte function may be a new target for treatment of epilepsy. OBJECTIVE: To observe the effects of Ganoderma lucidum spore powder (GLSP) on astrocyte morphology and glutamine synthetase (COS) activity in the hippocampal region of epileptic rats. DESIGN, TIME AND SETTING: A randomized, controlled animal experiment was performed at the Function Laboratory, College of Basic Medicine, Jiamusi University between October and December 2006. MATERIALS: A total of 30 Sprague Dawley (SD) rats were randomized to three groups (n = 10): control, model, and GLSP. GLSP was sourced from Jiamusi Wild Ganoderma Lucidum Planting Base and prepared to 30 g/L with physiological saline before use. Pentylenetetrazol (PTZ) (10 g/L) was provided by Sigma Company, USA. METHODS: The control group received intraperitoneal (i.p.) and intragastric (i.g.) physiological saline. Following epilepsy induction by i.p. administration of PTZ (35 mg/kg), rats from the mode/and GLSP groups were ig injected with physiological saline and GLSP (300 mg/kg), respectively. Each compound was administered once per day, for a total of 28 successive days. Epileptic seizure convulsions were graded 0-5. A higher grade indicated more severe epilepsy. Only those rats showing stage 2 or higher convulsions at least 5 times successively were included in further experiments. MAIN OUTCOME MEASURES: Immediately alter injection, seizure activity was monitored for 30 minutes to determine the latent period and seizure duration; simultaneously, astrocyte numbers and GS activity in the hippocampal region of rats with epilepsy were detected by immunohistochemistry. RESULTS: All 30 rats were included in the final analysis. On day 28, following PTZ administration epileptic seizures were not found in the control group. In the GLSP group, rats exhibited rhythmic head nodding or facial spasms, and the latent period was significantly longer than that of the model group (P 〈 0.05). In the model group, the majority of rats exhibited myoclonus or generalized convulsions, and epileptic seizure duration was slightly (but not significantly) longer than that in the GLSP group (P 〉 0.05). Within 2-3 minutes of PTZ injection, the model group exhibited grade 4 or 5 epileptic seizures, and the GLSP group mostly showed grade 2 or 3, and occasionally grade 4 or 5, epileptic seizures. All rats recovered within 30 minutes. The model group exhibited significantly increased astrocytes (P 〈 0.05), with thicker cellular processes and a higher number of cellular processes, and significantly decreased GS activity (P 〈 0.05) tban the control group. The astrocyte count was significantly decreased but GS activity was significantly increased in the GLSP group when compared with the model group (P 〈 0.05); however, astrocyte appearance was similar in both groups (P 〈 0.05). CONCLUSION: GLSP can effectively inhibit astrocyte numbers and elevate GS activity in the hippocampal region of rats with epilepsy, thereby reducing epileptic seizures.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2008年第12期1304-1307,共4页 中国神经再生研究(英文版)
基金 Innovation Scientific Research Foundation for Postgraduates in Heilongjiang Province, No. YJSCX2007-0082HLJ Science and Technology Research Foundation of Heilongjiang Provincial Department of Education, No. 11521276 Natural Science Foundation of Heilongjiang Province, No.D200803
关键词 Ganoderma lucidum spore powder ASTROCYTE glutamine synthetase EPILEPSY Ganoderma lucidum spore powder astrocyte glutamine synthetase epilepsy
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  • 1Plata-Salaman CR,Ilyin SE,Turrin NP,et al.Kindling modulates the IL-1beta system、TNF-alpha、TGF-betal、and neuropeptide mRNA in specific brain regions[J].Brain Res Mol Brain Res,2000,75(3):248~258
  • 2Glutamate receptors and transporters in genetic and acquired models of epilepsy.Epilepsy Res 1999;36(2-3):189-204.
  • 3Sloviter RS.The fuctional organization of the hippocampal dentategyrus and its relevance to the pathogenesis of temporal lobe epilepsy.Ann Neurol 1994;35(6):640-54.
  • 4Matsushima-Y;Qian-L;Aoyagi-M.Comparison of moyamoya disease in Japan and moyamoya disease (or syndrom) in the people's Republic of China.Clin Neurol Neurosurg 1997;99 Supp12:S19-22.
  • 5Meldrum BS.Excitatory amino acid transmitters in epilepsy.Epilepsia 1991;32(suppl,2):S1-3.
  • 6Houser CR,Esclapez M.Vulnerability and plasticity of the GABA system in the pilocarpine model of spontaneous recurrent seizures.Epilepsy Res 1996;26(1):207-18.
  • 7Becker A,Grecksch G,Brosz M.Naloxone ameliorates the learning deficit induced by pentylenetrozal kindling in rats[].European Journal of Neuroscience.1994
  • 8Planas AM,Soriano MA,Ferrer I,et al.Regional expression of inducible heat shock protein-70 mRNA in the rat following administration of convulsant drugs[].Molecular Brain Research.1994
  • 9Schroeder H,Becker A,Grecksch G,et al.The effect of pentylenetetrazol kindling on synaptic mechanisms of interacting glutamatergic and opioid system in the hippocampus of rats[].Brain Research.1998
  • 10Petroff OA,Errante LD,Rothman DL, et al.Glutamate-glutamine cycling in the epileptic human hippocampus[].Epilepsia.2000

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