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Regulatory effects of anandamide on intracellular Ca^(2+) concentration increase in trigeminal ganglion neurons
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作者 Yi Zhang Hong Xie +6 位作者 Gang Lei Fen Li Jianping Pan Changjin Liu Zhiguo Liu Lieju Liu Xuehong Cao 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第8期878-887,共10页
Activation of cannabinoid receptor type 1 on presynaptic neurons is postulated to suppress neu- ~ ~ ~ 2+ ~ ~ 2+ rotransmlsslon by decreasing Ca reflux through high voltage-gated Ca channels. However, recent studies... Activation of cannabinoid receptor type 1 on presynaptic neurons is postulated to suppress neu- ~ ~ ~ 2+ ~ ~ 2+ rotransmlsslon by decreasing Ca reflux through high voltage-gated Ca channels. However, recent studies suggest that cannabinoids which activate cannabinoid receptor type 1 can increase neurotransmitter release by enhancing Ca2+ influx in vitro. The aim of the present study was to investigate the modulation of intracellular Ca2+ concentration by the cannabinoid receptor type 1 agonist anandamide, and its underlying mechanisms. Using whole cell voltage-damp and calcium imaging in cultured trigeminal ganglion neurons, we found that anandamide directly caused Ca2+ influx in a dose-dependent manner, which then triggered an increase of intracellular Ca2+ concentration. The cyclic adenosine and guanosine monophosphate-dependent protein kinase systems, but not the protein kinase C system, were involved in the increased intracellular Ca2+concentration by anandamide. This result showed that anandamide increased intracellu- lar Ca2+ concentration and inhibited high voltage-gated Ca2+ channels through different signal transduction pathways. 展开更多
关键词 nerve regeneration trigeminal ganglion NEURONS ENDOCANNABINOIDS ANANDAMIDE can-nabinoid receptor type 1 voltage-dependent calcium channels vanilloid receptor patch-damp tech-nique calcium cyclic adenosine monophosphate protein kinase protein kinase C nih grant neuralregeneration
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Effect of type-2 astrocytes on the viability of dorsal root ganglion neurons and length of neuronal processes
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作者 Chunling Fan Hui Wang +4 位作者 Dan Chen Xiaoxin Cheng Kun Xiong Xuegang Luo Qilin Cao 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第2期119-128,共10页
The role of type-2 astrocytes in the repair of central nervous system injury remains poorly un- derstood. In this study, using a relatively simple culture condition in vitro, type-2 astrocytes, differentiated from oli... The role of type-2 astrocytes in the repair of central nervous system injury remains poorly un- derstood. In this study, using a relatively simple culture condition in vitro, type-2 astrocytes, differentiated from oligodendrocyte precursor cells by induction with bone morphogenetic pro- tein-4, were co-cultured with dorsal root ganglion neurons. We examined the effects of type-2 astrocytes differentiated from oligodendrocyte precursor cells on the survival and growth of dorsal root ganglion neurons. Results demonstrated that the number of dorsal root ganglion neurons was higher following co-culture of oligodendrocyte precursor cells and type-2 astrocytes than when cultured alone, but lower than that of neurons co-cultured with type-1 astrocytes. The length of the longest process and the length of all processes of a single neuron were shortest in neurons cultured alone, followed by neurons co-cultured with type-2 astroc^es, then neurons co-cultured with oligodendrocyte precursor cells, and longest in neurons co-cultured with type-1 astrocytes. These results indicate that co-culture with type-2 astrocytes can increase neuronal survival rate and process length. However, compared with type-1 astrocytes and oligodendrocyte precursor cells, the promotion effects of type-2 astrocytes on the growth of dorsal root ganglion neurons were weaker. 展开更多
关键词 nerve regeneration spinal cord injury OLIGODENDROCYTE oligodendrocyte precursor cells ASTROCYTES bone morphogenetic protein neurons NEURITES dorsal root ganglion nih grant neuralregeneration
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颠覆式创新视角下新型科研项目资助机制研究——以R35资助体系为例 被引量:9
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作者 刘笑 胡雯 常旭华 《经济体制改革》 CSSCI 北大核心 2021年第2期35-41,共7页
在新一轮科技革命影响下,围绕颠覆式创新开展科研活动将成为创新战略的重点。美国国立卫生研究院提出的R35资助体系为建立支持颠覆式创新的科研项目资助机制提供了新思路。本文在解构科学革命过程的基础上,构建了颠覆式创新视角下科研... 在新一轮科技革命影响下,围绕颠覆式创新开展科研活动将成为创新战略的重点。美国国立卫生研究院提出的R35资助体系为建立支持颠覆式创新的科研项目资助机制提供了新思路。本文在解构科学革命过程的基础上,构建了颠覆式创新视角下科研项目资助机制的分析框架,以R35资助体系为例,总结了新型资助机制在项目立项、项目实施和项目验收阶段的非竞争性管理机制。据此,为我国开展面向颠覆式创新的新型科研项目资助管理提供了启示,即探索竞争性和非竞争性资助的互补机制,构建多层级评审机制,建立有利于颠覆式创新项目培育的评价机制。 展开更多
关键词 科研资助机制 R35 nih 颠覆式创新
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