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Cell Communication of the Vertebrate Retina

Cell Communication of the Vertebrate Retina
脊椎动物视网膜的细胞通讯
批准号:
7729030
负责人:
Robert Francis Miller
金额:
$54.6万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1978
资助国家:
美国
项目状态:
已结题
起止时间:
1978-09-30 至 2013-08-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):该项目的使命是使视网膜中NMDA受体的重要性更加清晰,特别强调它们对视网膜功能的贡献如何通过内源性D-丝氨酸的合成和释放来控制。现在很明显,D-丝氨酸是一种氨基酸,其功能可见性在几年前还不在雷达屏幕上,它是由视网膜的神经胶质细胞合成的,并以星形胶质细胞和穆勒细胞对视网膜神经节细胞的兴奋性有一定控制的方式释放和调节。众所周知,在没有D-丝氨酸存在的情况下,神经递质谷氨酸不能打开NMDA受体的离子通道,D-丝氨酸用作凝血剂或可能是辅助神经递质。视网膜和大脑研究中最紧迫的问题之一是了解D-丝氨酸和NMDA受体的作用,原因有三个。首先,NMDA受体在谷氨酸受体中是独特的,因为它们与兴奋性毒性的关系,兴奋性毒性是由它们对钙的渗透性产生的,并由过量的谷氨酸刺激诱导。NMDA受体的这种特性可以添加到在诸如青光眼、局部缺血、损伤或糖尿病视网膜病变等病症中发现的神经节细胞风险因素中。第二个与健康有关的重要问题来自精神分裂症的现代治疗,其中数千名患者正在接受高剂量的口服D-丝氨酸治疗,以激活NMDA受体,该受体被认为是活性低下的,可能是疾病的原因。由于D-丝氨酸穿过血脑屏障以实现其作用,我们可以安全地假设它也穿过血视网膜屏障,并且基于我们自己的工作,将外源D-丝氨酸添加到视网膜中可以增强NMDA受体活性,特别是因为视网膜中不存在D-丝氨酸的高亲和力去除系统,因为它在脑中;这可能会使视网膜细胞比大脑细胞更危险。然而,D-丝氨酸研究中的第三个重要因素与越来越多的证据有关,即D-丝氨酸对视网膜和大脑的发育至关重要,我们最近的研究表明,异常升高的D-丝氨酸水平可能有贡献。本申请中提出的研究将提供关于D-丝氨酸合成、储存和释放的内在控制机制如何通过调节NMDA受体的可用性来调节视网膜神经节细胞的兴奋性的新信息。我们建议研究三种不同品系的小鼠,其中每一种都具有NMDA受体促凝剂功能的调节机制的遗传缺陷,包括甘氨酸转运的缺陷,D-丝氨酸降解(DAAO)的缺陷和D-丝氨酸合成(丝氨酸消旋酶)的合成机制的缺乏。我们的研究将包括电生理学方法,通过化学检测和免疫组织化学和EM方法的机制的D-丝氨酸释放的研究,以评估是否与D-丝氨酸的合成和NMDA受体分布的机制改变,由于这种新的氨基酸的正常凝血功能中断。公共卫生相关性:我们对NMDA受体在视网膜功能中的作用及其由D-丝氨酸调节的认识对公共卫生问题具有重要意义。在视网膜中,D-丝氨酸及其对NMDA受体的作用对神经节细胞的光敏感性做出重要贡献,但也可能参与加重神经节细胞的退行性现象,例如与青光眼、缺血、损伤或疾病状态如糖尿病视网膜病变相关的那些。此外,了解NMDA受体和D-丝氨酸调节对精神分裂症患者有意义,其中一些人服用高剂量的D-丝氨酸以增强与其疾病相关的NMDA受体功能;这些患者还可能由于治疗剂量的D-丝氨酸过度激活视网膜NMDA受体而具有高于正常的视网膜损伤风险,所述D-丝氨酸容易穿过血-视网膜屏障并进入视网膜,它缺乏一个高亲和力的运输系统来去除D-丝氨酸,而D-丝氨酸存在于大脑中。
英文摘要
DESCRIPTION (provided by applicant): The mission of this project is to bring new clarity to the importance of NMDA receptors in the retina, with a special emphasis on how their contribution to retinal function is controlled by the synthesis and release of endogenous D-serine. It is now apparent that D-serine, an amino acid whose functional visibility was off the radar screen just a few years ago, is synthesized by glial cells of the retina and released and regulated in such a way that astrocytes and Muller cells have some control over the excitability of retinal ganglion cells. It is well understood that the neurotransmitter glutamate cannot open the ion channel of NMDA receptors without the presence of D-serine which serves as a coagonist or perhaps a co-neurotransmitter. One of the most pressing problems in retina and brain research is to understand the role of D-serine and NMDA receptors for three important reasons. First the NMDA receptors are unique among glutamate receptors because of their relationship to excitotoxicity, created by their permeability to calcium and induced by excessive glutamate stimulation. This property of NMDA receptors can be additive to the ganglion cell risk factors found in conditions such as glaucoma, ischemia, injury or diabetic retinopathy. A second health-related matter of importance comes from the modern treatment of schizophrenia, where thousands of patients are being treated with high doses of oral D-serine to activate NMDA receptors which are thought to be hypoactive and possibly the cause of the disease. Since D-serine crosses the blood-brain barrier to achieve its effects, we can safely assume that it also crosses the blood-retinal barrier and, based on our own work, the addition of exogenous D-serine into the retina can enhance NMDA receptor activity, particularly since no high affinity removal system for D-serine is present in the retina, as it is in the brain; this could render cells in the retina more at risk than those in the brain. Yet a third important factor in D-serine study relates to the mounting evidence that D-serine is critical for development in the retina and brain and our more recent studies suggest that abnormally elevated D-serine levels can contribute. The studies proposed in this application will provide new information about how the intrinsic control mechanisms of D-serine synthesis, storage and release serve to regulate the excitability of retinal ganglion cells through modulation of NMDA receptor availability. We propose to study three different strains of mice, each of which has a genetic defect of the regulatory mechanisms of NMDA receptor coagonist function, including a deficiency in glycine transport, a deficiency in the degradation of D-serine (DAAO) and the absence of the synthetic machinery for D-serine synthesis (serine racemase). Our studies will include electrophysiological methods, studies of the mechanisms of D-serine release through chemical detection and immunohistochemical and EM methods to evaluate whether the mechanisms related to D-serine synthesis and NMDA receptor distribution are changed due to an interruption in the normal coagonist functions of this novel amino acid. PUBLIC HEALTH RELEVANCE: Our knowledge of the role that NMDA receptors play in retinal function and their regulation by D-serine has critical implications for issues of public health. In the retina, D-serine and its actions on NMDA receptors make an important contribution to the light sensitivity of ganglion cells but may also be involved in exacerbating degenerative phenomena of ganglion cells, such as those associated with glaucoma, ischemia, injury or disease states like diabetic retinopathy. In addition, understanding NMDA receptors and D-serine regulation has implications for patients with schizophrenia, some of whom take high doses of D-serine to enhance NMDA receptor function related to their disease; these patients may also be at higher than normal risk for retinal damage through excessive activation of retinal NMDA receptors by therapeutic doses of D-serine which readily cross the blood-retinal barrier and have access to the retina, which lacks a high affinity transport system to remove D-serine, something that is present in the brain.
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The Eye: A Window on Schizophrenia
  • 批准号:
    8653027
  • 项目类别:
  • 资助金额:
    $15.02万
  • 财政年份:
    2013
  • 负责人:
    Robert Francis Miller
  • 依托单位:
The Eye: A Window on Schizophrenia
  • 批准号:
    8488629
  • 项目类别:
  • 资助金额:
    $25.89万
  • 财政年份:
    2013
  • 负责人:
    Robert Francis Miller
  • 依托单位:
NAD & CD38 Form a Communication System in the Retina
  • 批准号:
    6888076
  • 项目类别:
  • 资助金额:
    $29.19万
  • 财政年份:
    2002
  • 负责人:
    Robert Francis Miller
  • 依托单位:
NAD & CD38 Form a Communication System in the Retina
  • 批准号:
    6460934
  • 项目类别:
  • 资助金额:
    $28.46万
  • 财政年份:
    2002
  • 负责人:
    Robert Francis Miller
  • 依托单位:
海外基金