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Role of TRP channels in pulpitis-induced thermal hyperalgesia

Role of TRP channels in pulpitis-induced thermal hyperalgesia
TRP 通道在牙髓炎引起的热痛觉过敏中的作用
批准号:
7943066
负责人:
Man-Kyo Chung
金额:
$12.83万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-25 至 2012-08-31

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中文摘要
翻译
描述(由申请人提供):申请人,Man-Kyo Chung, D.M.D, phd,正在申请指导临床科学家研究职业发展奖(K08),以提供在颅面疼痛领域发展成为独立牙医科学家的机会。在奖励期间,申请人将接受博士的指导。马里兰大学牙科学院的Ronald Dubner, Ke Ren和Jin Ro说。约翰·霍普金斯大学的迈克尔·卡特琳娜博士将担任顾问。该候选人是细胞和分子生理学方面的专家,尤其专注于温度门控瞬时受体电位(TRP)通道。该计划的目标是拓宽候选人的专业知识,以更系统的方法研究颅面疼痛。本研究的目的是探讨TRP通道在牙髓炎引起的热痛觉过敏中的作用。温度是引起牙痛最常见的刺激因素,即使是轻微的高温或低温也会引起牙髓炎患者持续的剧烈疼痛。最近,一系列热敏TRP通道被认为是在正常以及受伤或炎症条件下转导热感觉和疼痛的候选通道。然而,这些热敏TRP通道是否参与了牙髓炎症下牙齿热敏性的病理增加,目前还没有得到证实。由于缺乏测试牙齿热痛觉过敏的动物模型,候选人计划建立新的技术来诱导牙髓炎和评估牙齿热痛觉过敏使用行为学,电生理和解剖学方法。为了利用小鼠遗传学方法,候选人的目标是在小鼠身上开发新的方法。由于候选人的培训主要集中在体外制剂中通道功能的电生理和生物物理分析,因此K08奖将用于获得所需的培训。成功完成拟议的研究培训将为候选人提供一个坚实的模型,使他在细胞和分子水平上的机械研究可以在系统水平上得到验证。除了研究培训外,还计划进行专业培训,以成功过渡到正式的教职员工。这些研究和专业培训将培养候选人成为一个独立的牙医研究人员,成功地竞争研究经费,研究牙齿疼痛的分子机制。
英文摘要
DESCRIPTION (provided by applicant): The applicant, Man-Kyo Chung, D.M.D., Ph.D., is applying for the Mentored Clinical Scientist Research Career Development Award (K08) to provide the opportunity to develop as an independent dentist scientist in the area of craniofacial pain. During the award period, the applicant will be mentored by Drs. Ronald Dubner, Ke Ren, and Jin Ro at University of Maryland Dental School. Dr. Michael Caterina at Johns Hopkins University will serve as a consultant. The candidate is an expert in cellular and molecular physiology especially focused on temperature-gated Transient Receptor Potential (TRP) Channels. The goal of this program is broadening the candidate's expertise to a more systems approach for studying craniofacial pain. The objective of the research project is to investigate the role of TRP channels in pulpitis-induced thermal hyperalgesia. Temperature is the most usual stimuli evoking dental pain, and even mild heat or cold temperature can evoke persistent extreme pain in the presence of pulpitis. Recently, a family of thermosensitive TRP channels are proposed as candidates transducing thermosensation and pain under normal as well as injured or inflamed conditions. However, it is not proven whether these thermosensitive TRP channels are engaged in the pathologically increased thermal sensitivity of teeth under pulpal inflammation. Since the animal model for testing dental thermal hyperalgesia is lacking, the candidate plans to establish new techniques for the induction of pulpitis and the assessment of dental thermal hyperalgesia using behavioral, electrophysiological, and anatomical approaches. In order to take advantage of mouse genetics approaches, the candidate aims to develop the new methods in mice. Since the candidate's training has been mainly focused on the electrophysiological and biophysical analysis of channel function at in vitro preparations, the K08 award will be used for obtaining required training. Successful completion of the proposed research training will provide the candidate with a solid model with which his mechanistic studies at the cellular and molecular level can be validated at the systems level. Along with research training, professional training for successful transition to an established faculty member is also planned. These research and professional training will develop the candidate into an independent dentist researcher to successfully compete for research grants studying the molecular mechanisms of dental pain. Public Health Relevance: Project Narrative Cold or hot temperatures evoke tooth pain under healthy or inflammatory conditions. This study aims to elucidate the molecules responsible for such temperature-evoked dental pain. The outcome of this study will provide a rationale for developing dental pain- specific therapeutic strategies in the future.
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Trigeminal nociceptors: Neural intersection of chronic pain and alveolar bone remodeling
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