Molecular Basis of Somatic Sensation
Molecular Basis of Somatic Sensation
批准号:
8322209
负责人:
Jaime Garcia-Anoveros
金额:
$4.28万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-03-01 至 2014-02-28
关键词:
AccountingAddressAfferent NeuronsAnatomyAnimalsAntibodiesBehavioralCalciumCell LineCellsCutaneousDetectionEsthesiaExhibitsGangliaGene ProteinsGenesHealthImageImmunohistochemistryIn Situ HybridizationIon ChannelIonsKnock-outKnowledgeMeasuresMediatingMessenger RNAMethodsMolecularMusNeuronsNociceptionOrganPainPatternPerceptionPeripheral NervesPharmaceutical PreparationsPhysiologicalPositioning AttributePropertyProteinsSensorySkinStimulusTRP channelTemperatureTestingTissuesWestern Blottingbasecell typecold temperaturenovelpatch clampreceptorresponsesensory stimulussomatosensorywarm temperature
中文摘要
描述(由申请人提供):热敏通道在高温或低温下打开,并介导我们对环境温度的感知。这些通道中的一些也介导非热诱导的疼痛感觉。这些热敏通道由躯体感觉神经节细胞以及皮肤细胞表达。我们发现了一种新的热门控通道,它可以通过从寒冷的温度中升温而激活。该通道由缓解疼痛而不是引起疼痛的热刺激激活。我们在皮肤细胞系中发现了这种热感应电流。我们还发现,编码这种通道的基因是由皮肤细胞表达的,也许也是由支配皮肤的体感神经节表达的。我们建议通过膜片钳记录来确定什么温度变化打开和关闭这个通道,什么药物阻断或不能阻断它,以及什么离子通过它。我们打算通过原位杂交和抗体检测方法来发现哪些细胞表达这个通道的基因和蛋白质,并将使用钙成像或电生理学方法来确定这些细胞是否功能性地表达所产生的热敏性频道最后,我们将确定敲除Trpml3基因的影响,重点是细胞和整个动物对温度和其他感官刺激的生理反应。这些研究旨在阐明我们如何检测环境温度的变化,以及抗伤害或愉快的感觉如何发生。公共卫生相关性:项目目前已知的热敏通道并不能解释我们感知到的所有热刺激。此外,除了通过减少伤害感受受体的激活之外,目前还不知道如何检测愉悦或疼痛缓解刺激。TRPML3通道的激活温度变化时,从痛苦的寒冷变暖可能有助于了解热感觉和疼痛缓解。
英文摘要
Description (provided by applicant): Thermosensitive channels open at hot or cold temperatures and mediate our perception of environmental temperature. Some of these channels also mediate non-thermally induced sensations of pain. These thermosensitive channels are expressed by cells of somatosensory ganglia as well as by cells of the skin. We have discovered a novel thermally gated channel activated by warming from painfully cold temperatures. This channel is activated by pain-relieving rather than pain-causing thermal stimulation. We find this thermally-induced current in a skin cell line. We also find that the gene encoding this channel is expressed by cells of the skin and perhaps also of the somatosensory ganglia that innervate the skin. We propose to determine by patch clamp recordings what temperature changes open and close this channel, what drugs block or fail to block it, and what ions pass through it. We intend to find out by in situ hybridization and antibody detection methods which cells express this channel's gene and protein, and will use calcium imaging or electrophysiological methods to determine whether these cells functionally express the resulting thermosensitive channel. Finally, we will determine the effects of knocking out the Trpml3 gene, focusing on the physiological response of cells and whole animals to temperature and other sensory stimuli. These studies aim to elucidate how we detect environmental temperature changes but also how antinociceptive or pleasurable sensation may take place. PUBLIC HEALTH RELEVANCE: Project Currently known thermosensitive channels do not account for all thermal stimuli we perceive. Furthermore, there is presently no knowledge of how pleasurable or pain- relieving stimuli may be detected other than by decreased activation of nociceptive receptors. The activation of TRPML3 channels by temperature changes when warming from painful cold may contribute to the understanding of both thermal sensation and pain relief.
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依托单位:
海外基金