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Generation of hES/iPS cell-derived sensory neurons: a new approach to study mechanosensation

Generation of hES/iPS cell-derived sensory neurons: a new approach to study mechanosensation
hES/iPS 细胞来源的感觉神经元的生成:研究机械感觉的新方法
批准号:
363239741
负责人:
Dr. Katrin Schrenk-Siemens
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2017
资助国家:
德国
项目状态:
已结题
起止时间:
2016-12-31 至 2021-12-31

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中文摘要
翻译
感知和辨别机械刺激的能力对我们的健康至关重要。在一天中,我们会遇到各种各样的触觉刺激。这些刺激大致可以归类为愉快的--比如让我们区分不同纹理和表面的机械刺激--或者痛苦的,比如针刺,它可以作为警告信号改变我们的行为,以避免组织损伤。尽管在过去的几十年里,我们已经了解了很多关于负责检测不同形式的机械刺激的感觉神经元的不同亚型(机械感受器对无害的机械刺激做出反应,而伤害性感受器专门用于检测有害的机械输入),但负责传递不同类型的机械刺激的分子机制才刚刚开始被发现。Piezo2是一种由各种不同感觉神经元亚型表达的大型跨膜蛋白,是哺乳动物机械感受器中无毒机械刺激的主要转导分子之一。但目前还不清楚,这种蛋白质是否也参与了传递有害的机械刺激以引起疼痛感觉。同样,关于Piezo2传递机械刺激的机制以及它是如何作为分子机械感受器进行调制和微调的,目前还一无所知。与其他已知的感觉受体类似,我们认为需要一些辅助蛋白来帮助Piezo2完成其高度专业化的功能。因此,我们建议以人胚胎干细胞(HESC)来源的伤害性感受器和机械感受器为模型系统,更详细地研究Piezo2在感觉神经生物学中的作用。我们的目的是首先了解Piezo2在传递伤害性机械刺激的伤害性感受器中的作用,该痛觉感受器介导痛觉。接下来,我们想要分析Piezo2蛋白质组,以确定Piezo2功能所需的调节蛋白。我们相信,我们的基于人类细胞的模型系统是找到这些问题答案的优秀工具,这不仅将帮助我们更好地了解这种高度专业化的感觉转导机制背后的基本机制,而且也是当疼痛感知变得不适应时开发干预措施的基本先决条件。
英文摘要
The ability to perceive and discriminate mechanical stimuli is of fundamental importance to our wellbeing. We encounter a large variety of tactile stimuli during the course of a day. These stimuli can broadly be categorized as pleasant -such as mechanical stimuli that allow us to discriminate different textures and surfaces - or painful such as a pinprick, which can serve as warning signal to change our behavior in order to avoid tissue damage.Although over the last decades we have learned a great deal about the different subtypes of sensory neurons responsible for the detection of different forms of mechanical stimulation (mechanoreceptors respond to innocuous mechanical stimuli while nociceptors are specialized to detect noxious mechanical input), the molecular mechanisms responsible for transducing the different types of mechanical stimuli are just beginning to be uncovered.Piezo2, a large transmembrane protein expressed by a variety of different sensory neuron subtypes, was identified as one main transducer of innocuous mechanical stimuli in mammalian mechanoreceptors. But it is still unclear, if this protein is also involved in transducing noxious mechanical stimuli to elicit painful sensations. Likewise, nothing is known yet about the mechanism by which Piezo2 is transducing mechanical stimuli and how it is modulated and fine-tuned to serve as a molecular mechanoreceptor. Similarto other known sensory receptors, we propose that a number of accessory proteins are required to assist Piezo2 in fulfilling its highly specialized function.We therefore propose to investigate the role of Piezo2 in sensory neurobiology in more detail, using human embryonic stem cell (hESC)-derived nociceptors and mechanoreceptors as a model system. Our aim is first to understand the role of Piezo2 in transducing noxious mechanical stimuli in nociceptors that mediate the perception of pain. We next want to analyze the Piezo2 proteom in order to identify regulatory proteins required for Piezo2 function. We are confident that our human cell-based modelsystem is an excellent tool to find answers to these questions, which will not only help us to better understand the basic mechanisms underlying this highly specialized sensory transduction machinery, but are also essential prerequisites to develop interventions when pain perception becomes maladaptive.
期刊论文(1)
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会议论文
HESC-derived sensory neurons reveal an unexpected role for PIEZO2 in nociceptor mechanotransduction
HESC 衍生的感觉神经元揭示了 PIEZO2 在伤害感受器机械转导中的意外作用
DOI: 10.1101/741660
发表时间:
期刊: bioRxiv
影响因子: --
作者: [Katrin Schrenk-Siemens, Jörg Pohle, Charlotte Rostock, Muad Abd El Hay, Ruby M. Lam, Marcin Szczot, Shiying Lu, Alexander T. Chesler, Jan Siemens]
通讯作者: Jan Siemens
国内基金
海外基金
基于 ANKRD22 介导的脂代谢重编程激活Notch4/HES1 通路促进巨噬细胞获得免疫抑制表型机制研究
  • 批准号:
    ZCLMS26H1601
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2026
  • 负责人:
    肖于飞
  • 依托单位:
HES1与IL-10 mRNA双修饰人脐带间充质干细胞在急性脑出血治疗中的作用及机制研究
滋养细胞支链氨基酸缺乏通过JAG1-Notch3-HES1信号轴诱导子痫前期发生的机制研究
奥氮平经肠球菌影响Notch1/ HES1通路调控骨形成的机制研究
  • 批准号:
    2025JJ90281
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2025
  • 负责人:
    袁卉
  • 依托单位: