Objective Neurodegenerative diseases, such as ischemia, traumatic injury, Alzheimer's disease, and Parkinson's disease are characterized by neuronal loss and dysfunction. It is known that glutamate-induced toxicity ...Objective Neurodegenerative diseases, such as ischemia, traumatic injury, Alzheimer's disease, and Parkinson's disease are characterized by neuronal loss and dysfunction. It is known that glutamate-induced toxicity plays an important role in neurodegenerative diseases. Glutamate toxicity seems to be mediated by excessive influx of Ca^(2+) into neuronal cells through activation of N-methyl-D-aspartate(NMDA) receptor. To search for potential NMDA receptor inhibitors in traditional Chinese medicine. Methods A series of computer methods including drug-likeness evaluation, ADMET tests as well as molecular docking have been used. Results 1,5-O-dicaffeoyl-quinic acid was identified as NMDA receptor inhibitor by virtual screening. Its neuroprotective activity was further confirmed by in vitro test. 1,5-O-dicaffeoyl-quinic acid showed strong neuroprotection against NMDA-induced cell injury. Conclusion 1,5-O-Dicaffeoylquinic acid may be regarded as a potential NMDA receptor inhibitor for the prevention and treatment of neurodegenerative disorders.展开更多
Trigeminal neuralgia is a debilitating condition,and the pain easily spreads to other parts of the face.Here,we established a mouse model of partial transection of the infraorbital nerve(pT-ION)and found that the Conn...Trigeminal neuralgia is a debilitating condition,and the pain easily spreads to other parts of the face.Here,we established a mouse model of partial transection of the infraorbital nerve(pT-ION)and found that the Connexin 36(Cx36)inhibitor mefloquine caused greater alleviation of pT-ION-induced cold allodynia compared to the reduction of mechanical allodynia.Mefloquine reversed the pT-IONinduced upregulation of Cx36,glutamate receptor ionotropic kainate 2(GluK2),transient receptor potential ankyrin 1(TRPA1),and phosphorylated extracellular signal regulated kinase(p-ERK)in the trigeminal ganglion.Cold allodynia but not mechanic al allodynia induced by pT-ION or by virusmediated overexpression of Cx36 in the trigeminal ganglion was reversed by the GluK2 antagonist NS 102,and knocking down Cx36 expression in Nav1.8-expressing nociceptors by injecting virus into the orofacial skin area of Nav1.8-Cre mice attenuated cold allodynia but not mechanic al allodynia.In conclusion,we show that Cx36 contributes greatly to the development of orofacial pain hypersensitivity through GluK2,TRPA1,and p-ERK signaling.展开更多
BACKGROUND: Developmental seizures are pathologically characterized by regenerative sprouting of hippocampal mossy fibers rich in Zn^2+. Zn^2+ metabolism in the mossy fiber pathway, and Zn^2+ accumulation in presy...BACKGROUND: Developmental seizures are pathologically characterized by regenerative sprouting of hippocampal mossy fibers rich in Zn^2+. Zn^2+ metabolism in the mossy fiber pathway, and Zn^2+ accumulation in presynaptic membrane vesicles, are dependent on zinc transporter 1 (ZnT1) and glutamate receptor subunit 2 (GluR2). OBJECTIVE: To investigate the effects of long-term recurrent neonatal seizure, in the presence and absence of physical exercise, on the developmental expression of hippocampal zinc transporter 1 (ZnT1) and GluR2, and on cognitive function in rats. DESIGN, TIME AND SETTING: Based on behavioral examination and molecular biological research, a randomized, controlled animal experiment was performed at the Department of Neurobiology, Medical College of Soochow University, between January 2007 and April 2008. MATERIALS: Twenty-one 6-day-old Sprague Dawley rats of either gender were employed in this study. ZnT1 mRNA in situ hybridization kit was provided by Tianjin Haoyang Biological Manufacture Co.,Ltd., China. Rabbit anti-GluR2 was purchased from Santa Cruz Biotech, Inc, USA. METHODS: Rats were randomly divided into a recurrent seizure group (n = 11) and a control group (n = 10). In the recurrent seizure group, 30-minute seizure was induced by flurothyl gas inhalation for a total of 6 consecutive days. Rats from the control group underwent experimental procedures similar to the recurrent seizure group, with the exception of flurothyl gas inhalation. Thirty minutes of treadmill exercise was performed daily by all rats at postnatal days 51–56. MAIN OUTCOME MEASURES: At postnatal day 82, rat hippocampal tissue was harvested for analysis of hippocampal ZnT1 and GluR2 expression by in situ hybridization and immunohistochemistry, respectively. Rat learning and memory capabilities were examined using the Y-maze test. RESULTS: In the recurrent seizure group, the gray scale value of ZnT1 in situ hybridization positive neurons in the hippocampal CA3 region was signific展开更多
基金supported by the Scientific Foundation of Shanghai Municipal Health Bureau,China(No.20114218)Natural Science Foundation of Minhang District,Shanghai,China(No.2011MHZ45)
文摘本文旨在研究氯胺酮、丙咪嗪或两者联合用药对Wistar Kyoto(WKY)大鼠抑郁样行为的治疗效果和机制。取6周龄Wistar大鼠作为正常对照,给同龄WKY大鼠(抑郁症模型)腹腔注氯胺酮(给药1周,停药1周)、丙咪嗪(给药2周)或氯胺酮联合丙咪嗪。行糖水偏好及强迫游泳实验观察各组大鼠抑郁样行为的变化,用Western blot检测大鼠缰核β钙/钙调素依赖蛋白激酶II(βform of calcium/calmodulin-dependent protein kinase type II,βCa MKII)和膜谷氨酸受体1(glutamate receptor 1,Glu R1)蛋白表达,以及前额叶皮质的膜Glu R1蛋白表达。结果显示,与Wistar大鼠相比,WKY大鼠糖水偏好程度显著降低,强迫游泳实验中不动时间显著增加;单独氯胺酮治疗对WKY大鼠的抑郁样行为没有显著作用,而丙咪嗪或氯胺酮联合丙咪嗪治疗可显著减少WKY大鼠不动时间。与Wistar大鼠相比,WKY大鼠缰核βCa MKII和膜Glu R1蛋白表达显著上调,前额叶皮质的膜Glu R1蛋白表达显著下调;单独氯胺酮治疗对WKY大鼠缰核βCa MKII和膜Glu R1蛋白表达没有显著作用,但可上调前额叶皮质的膜GluR1蛋白表达;丙咪嗪或氯胺酮联合丙咪嗪治疗均可显著下调WKY大鼠缰核βCa MKII和膜Glu R1蛋白表达,上调前额叶皮质的膜Glu R1蛋白表达,丙咪嗪对上述蛋白表达的作用和联合用药之间无显著差异。以上结果提示,丙咪嗪治疗2周显著改善了WKY大鼠的抑郁样行为,联合使用氯胺酮不能增强丙咪嗪的疗效;丙咪嗪的抗抑郁机制可能与缰核中βCa MKII及膜Glu R1表达下调以及前额叶皮质的膜GluR1表达上调有关。
基金Key National Science and Technology Specific Project of China(2014ZX09J14101-05C)
文摘Objective Neurodegenerative diseases, such as ischemia, traumatic injury, Alzheimer's disease, and Parkinson's disease are characterized by neuronal loss and dysfunction. It is known that glutamate-induced toxicity plays an important role in neurodegenerative diseases. Glutamate toxicity seems to be mediated by excessive influx of Ca^(2+) into neuronal cells through activation of N-methyl-D-aspartate(NMDA) receptor. To search for potential NMDA receptor inhibitors in traditional Chinese medicine. Methods A series of computer methods including drug-likeness evaluation, ADMET tests as well as molecular docking have been used. Results 1,5-O-dicaffeoyl-quinic acid was identified as NMDA receptor inhibitor by virtual screening. Its neuroprotective activity was further confirmed by in vitro test. 1,5-O-dicaffeoyl-quinic acid showed strong neuroprotection against NMDA-induced cell injury. Conclusion 1,5-O-Dicaffeoylquinic acid may be regarded as a potential NMDA receptor inhibitor for the prevention and treatment of neurodegenerative disorders.
基金the National Natural Science Foundation of China(81971056,31600852,81771202,and 81873101)the Innovative Research Team of Highlevel Local Universities in Shanghai+3 种基金the Foundation of Science,Technology and Innovation Commission of Shenzhen Municipality(JCYJ20180302153701406)the National Key R&D Program of China(2017YFB0403803)the Shanghai Municipal Science and Technology Major Project(2018SHZDZX01)ZJLab。
文摘Trigeminal neuralgia is a debilitating condition,and the pain easily spreads to other parts of the face.Here,we established a mouse model of partial transection of the infraorbital nerve(pT-ION)and found that the Connexin 36(Cx36)inhibitor mefloquine caused greater alleviation of pT-ION-induced cold allodynia compared to the reduction of mechanical allodynia.Mefloquine reversed the pT-IONinduced upregulation of Cx36,glutamate receptor ionotropic kainate 2(GluK2),transient receptor potential ankyrin 1(TRPA1),and phosphorylated extracellular signal regulated kinase(p-ERK)in the trigeminal ganglion.Cold allodynia but not mechanic al allodynia induced by pT-ION or by virusmediated overexpression of Cx36 in the trigeminal ganglion was reversed by the GluK2 antagonist NS 102,and knocking down Cx36 expression in Nav1.8-expressing nociceptors by injecting virus into the orofacial skin area of Nav1.8-Cre mice attenuated cold allodynia but not mechanic al allodynia.In conclusion,we show that Cx36 contributes greatly to the development of orofacial pain hypersensitivity through GluK2,TRPA1,and p-ERK signaling.
基金the National Natural Science Foundation of China, No. 30470555, 30571909, 30870808the Natural Science Foundation of Jiangsu Province, No. BK2007509Natural Science Foundation for Colleges and Universities in Jiangsu Province, No. 07KJB320103
文摘BACKGROUND: Developmental seizures are pathologically characterized by regenerative sprouting of hippocampal mossy fibers rich in Zn^2+. Zn^2+ metabolism in the mossy fiber pathway, and Zn^2+ accumulation in presynaptic membrane vesicles, are dependent on zinc transporter 1 (ZnT1) and glutamate receptor subunit 2 (GluR2). OBJECTIVE: To investigate the effects of long-term recurrent neonatal seizure, in the presence and absence of physical exercise, on the developmental expression of hippocampal zinc transporter 1 (ZnT1) and GluR2, and on cognitive function in rats. DESIGN, TIME AND SETTING: Based on behavioral examination and molecular biological research, a randomized, controlled animal experiment was performed at the Department of Neurobiology, Medical College of Soochow University, between January 2007 and April 2008. MATERIALS: Twenty-one 6-day-old Sprague Dawley rats of either gender were employed in this study. ZnT1 mRNA in situ hybridization kit was provided by Tianjin Haoyang Biological Manufacture Co.,Ltd., China. Rabbit anti-GluR2 was purchased from Santa Cruz Biotech, Inc, USA. METHODS: Rats were randomly divided into a recurrent seizure group (n = 11) and a control group (n = 10). In the recurrent seizure group, 30-minute seizure was induced by flurothyl gas inhalation for a total of 6 consecutive days. Rats from the control group underwent experimental procedures similar to the recurrent seizure group, with the exception of flurothyl gas inhalation. Thirty minutes of treadmill exercise was performed daily by all rats at postnatal days 51–56. MAIN OUTCOME MEASURES: At postnatal day 82, rat hippocampal tissue was harvested for analysis of hippocampal ZnT1 and GluR2 expression by in situ hybridization and immunohistochemistry, respectively. Rat learning and memory capabilities were examined using the Y-maze test. RESULTS: In the recurrent seizure group, the gray scale value of ZnT1 in situ hybridization positive neurons in the hippocampal CA3 region was signific