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DEVELOPMENT OF SYNAPTIC INPUTS ON SPINAL INTERNEURONS

DEVELOPMENT OF SYNAPTIC INPUTS ON SPINAL INTERNEURONS
脊髓中间神经元突触输入的发育
批准号:
6898863
负责人:
FRANCISCO J ALVAREZ
金额:
$29.87万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-06-01 至 2008-02-28

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中文摘要
翻译
描述(申请人提供):神经生物学的一个基本问题是成熟的突触回路是如何在出生后从一系列复杂的未分化突触和胚胎神经元中出现的。特别是,尽管中间神经元对神经回路的形成、功能和功能障碍很重要,但对它们的成熟知之甚少。我们的重点是脊髓运动回路的发展。新生儿表现出不成熟的脊髓运动回路,表现为反射异常,有效体位调节能力有限,激动剂和拮抗剂的共收缩高于正常水平。对于负责正常运动活动成熟的脊髓神经元间回路是如何发育的,我们知之甚少。成年中间神经元具有特定的突触输入和输出的特征,遗传因素和环境影响在这些不同突触结构发展中的相互关系是一个尚未解决的主要问题。最近对脊髓中几种主要胚胎中间神经元亚型的表征,由不同的遗传背景和表达这些群体谱系标记的转基因小鼠的产生来定义,为研究成体中间神经元的发育及其突触输入提供了可能性,这些发育来自几组遗传决定的“前代”胚胎中间神经元。我们的长期目标是了解突触输入是如何在多种多样的脊髓中间神经元上被不同地选择和成熟的。我们拟研究源自胚胎中间神经元V1组的中间神经元的成体突触组织的出现。利用在V1衍生的中间神经元的体细胞或轴突中表达lacZ或GAP43-EGFP的转基因小鼠,我们将能够跟踪它们从出生到成年的位置、结构和发育。我们的初步数据表明,v1衍生的中间神经元产生了几种脊髓末级抑制性中间神经元,其中包括Renshaw细胞和la抑制性中间神经元(laIN)。有趣的是,每种细胞类型都具有不同的兴奋性突触输入特征:谷氨酸能/肌肉传入优先针对laln,而胆碱能/运动轴突突触则优先针对Renshaw细胞。我们假设这种独特的突触组织在出生后稳定和成熟,因此V1-中间神经元分化成几个成年亚型。我们提出以下具体目标:1)确定成年v1神经元的特征;2)研究v1神经元亚群中产生Renshaw细胞和laln的每个突触输入的正常发育;3)研究这些输入的超微结构和分子成熟;4)测试肌肉传入中枢分支对不同神经元间表型的影响。
英文摘要
DESCRIPTION (provided by applicant): A fundamental problem in neurobiology is how mature synaptic circuits emerge postnatally from a complex array of undifferentiated synapses and embryonic neurons. In particular, little is known about the maturation of interneurons, despite their importance for neural circuit formation, function and dysfunction. Our focus in on the development of spinal cord motor circuits. Newborns display immature spinal motor circuits manifest in abnormal reflexes, limited capacity to make effective postural adjustments and higher than normal co-contraction of agonists and antagonists. Little is known about how the spinal interneuronal circuits responsible for the maturation of normal locomotor activity develop. Adult interneurons are characterized by specific synaptic inputs and outputs and a major unresolved question is the interrelationship between genetic factors and environmental influences in the development of these different synaptic architectures. The recent characterization of a few cardinal embryonic interneuron subtypes in the spinal cord, defined by different genetic backgrounds and the generation of transgenic mice expressing lineage markers for these populations, opens the possibility of investigating the development of adult-type interneurons and their synaptic inputs, from a few groups of genetically determined "predecessor" embryonic interneurons. Our long-term objective is to understand how synaptic inputs are differentially selected and mature on the large diversity of spinal interneurons. We propose to investigate the emergence of adult synaptic organization on interneurons derived from the V1 group of embryonic interneurons. Using transgenic mice that express either lacZ or GAP43-EGFP in the soma or axons of V1- derived interneurons we will be able to follow their location, structure and development from birth to adulthood. Our preliminary data suggests that V1-derived interneurons give rise to several spinal cord last-order inhibitory interneurons, among others, Renshaw cells and la Inhibitory Interneurons (laIN). Interestingly each cell type is characterized by different excitatory synaptic inputs: glutamatergic/muscle afferents preferentially target lalNs while cholinergic/motor axons synapse on Renshaw cells. We hypothesize that this distinctive synaptic organization is stabilized and matured postnatally and as a consequence V1- interneurons diversify into several adult subtypes. We propose the following specific aims 1) identify the characteristics of adult V1-derived neurons, 2) study the normal development of each synaptic input onto V1-neuron subgroups giving rise to Renshaw cells and lalNs, 3) study the ultrastructural and molecular maturation of these inputs, and 4) test the influence of muscle afferent central arborizations in the specification of different interneuronal phenotypes.
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Disruption of spinal circuit early development after silencing En1/Foxp2 interneurons
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    10752857
  • 项目类别:
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  • 财政年份:
    2023
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  • 项目类别:
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  • 财政年份:
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  • 负责人:
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  • 依托单位:
Neuroinflammation Grading and Adjusting of Spinal Sensorimotor Circuitries in Response to Remote Injuries in Peripheral Nerves
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    10559555
  • 项目类别:
  • 资助金额:
    $36.19万
  • 财政年份:
    2020
  • 负责人:
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  • 依托单位:
Neuroinflammation Grading and Adjusting of Spinal Sensorimotor Circuitries in Response to Remote Injuries in Peripheral Nerves
  • 批准号:
    10341146
  • 项目类别:
  • 资助金额:
    $36.24万
  • 财政年份:
    2020
  • 负责人:
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  • 批准号:
    30470937
  • 项目类别:
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  • 资助金额:
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  • 批准年份:
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  • 负责人:
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  • 依托单位: