Gastrodin blocks neural stem cell differentiation into glial cells mediated by kainic acid

Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100 4 000 #M kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment...

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Published inNeural regeneration research Vol. 7; no. 12; pp. 891 - 895
Main Authors Sun, Guifang, Yuan, Zhihao, Zhang, Boai, Jia, Yanjie, Ji, Yangfei, Ma, Xingrong, Liu, Yu, Liu, Yanru, Wen, Quanqing, Zhao, Yanling
Format Journal Article
LanguageEnglish
Published India Medknow Publications & Media Pvt. Ltd 25.04.2012
Department of Neurology, the First Affiliated Hospital, Zhengzhou University, Zhengzhou 450052, Henan Province, China%Department of Urology, the Third People's Hospital of Zhengzhou, Zhengzhou 450051, Henan Province, China%Department of Neurology, the Central Hospital of Nanyang, Nanyang 473009, Henan Province, China
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ISSN1673-5374
1876-7958
DOI10.3969/j.issn.1673-5374.2012.12.002

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Abstract Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100 4 000 #M kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differentiated neurons to be significantly increased compared with treatment with kainic acid alone Experimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons.
AbstractList Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100-4 000 μM kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differentiated neurons to be significantly increased compared with treatment with kainic acid alone. Experimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons.
Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100--4 000 μM kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differentiated neurons to be significantly increased compared with treatment with kainic acid alone. Experimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons. Abbreviations: GFAP, glial fibrillary acidic protein; NSE, neuron-specific enolase
R741; Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100-4 000 μM kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treat-ment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differen-tiated neurons to be significantly increased compared with treatment with kainic acid alone. Ex-perimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons.
Kainic acid can simulate excitatory amino acids in vitro . Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100–4 000 μM kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differentiated neurons to be significantly increased compared with treatment with kainic acid alone. Experimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons.
Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100 4 000 #M kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differentiated neurons to be significantly increased compared with treatment with kainic acid alone Experimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons.
Author Guifang Sun Zhihao Yuan Boai Zhang Yanjie Jia Yangfei Ji Xingrong Ma Yu Liu Yanru Liu Quanqing Wen Yanling Zhao
AuthorAffiliation Department of Neurology, the First Affiliated Hospital, Zhengzhou University, Zhengzhou 450052, Henan Province, China Department of Urology, the Third People's Hospital of Zhengzhou, Zhengzhou 450051, Henan Province, China Department of Neurology, the Central Hospital of Nanyang, Nanyang 473009, Henan Province, China
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Keywords gastrodin
differentiation
kainic acid
neural stem cells
Language English
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Notes Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100 4 000 #M kainic acid for 7 days to induce neuronal cell differentiation, causing the number of astrocytes to be significantly increased. Treatment with a combination of 0.5 mg/L gastrodin and kainic acid also caused the number of differentiated neurons to be significantly increased compared with treatment with kainic acid alone Experimental findings suggest that gastrodin reduces the excitability of kainic acid and induces neural stem cell differentiation into neurons.
kainic acid; gastrodin; neural stem cells; differentiation
11-5422/R
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Author contributions: Guifang Sun participated in the study concept and design, as well as manuscript writing. Boai Zhang and Zhihao Yuan were in charge of manuscript authorization. Yanjie Jia and Yanru Liu ensured the integrity of data and participated in manuscript authorization. Yangfei Ji and Xingrong Ma were responsible for statistical analysis. Yu Liu participated in data analysis. Quanqing Wen and Yanling Zhao were responsible for experimentation.
Guifang Sun, Master, Attending physician, Department of Neurology, the First Affiliated Hospital, Zhengzhou University, Zhengzhou 450052, Henan Province, China
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PublicationTitle Neural regeneration research
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PublicationTitle_FL NEURAL REGENERATION RESEARCH
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Department of Neurology, the First Affiliated Hospital, Zhengzhou University, Zhengzhou 450052, Henan Province, China%Department of Urology, the Third People's Hospital of Zhengzhou, Zhengzhou 450051, Henan Province, China%Department of Neurology, the Central Hospital of Nanyang, Nanyang 473009, Henan Province, China
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Snippet Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100 4 000...
Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100-4 000...
Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100--4...
R741; Kainic acid can simulate excitatory amino acids in vitro. Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to...
Kainic acid can simulate excitatory amino acids in vitro . Neural stem cells, isolated from newborn Wistar rats, were cultured in vitro and exposed to 100–4...
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SubjectTerms Amino acids
Antigens
Brain research
Cell culture
Cloning
Enzymes
Fibroblasts
Growth factors
Hazardous materials
Laboratory animals
Nervous system
Neurons
Research and Report: Traditional Chinese Medicine and Neuroregeneration
Stem cells
Tumor necrosis factor-TNF
介导
兴奋性氨基酸
天麻素
神经干细胞
神经胶质细胞
红藻氨酸
细胞分化
细胞治疗
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Title Gastrodin blocks neural stem cell differentiation into glial cells mediated by kainic acid
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