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Microfluidic Platform for Probing Ceramide Channels

Microfluidic Platform for Probing Ceramide Channels
用于探测神经酰胺通道的微流控平台
批准号:
7778341
负责人:
Don L DeVoe
金额:
$18.56万
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:
2009-04-01 至 2012-03-31

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中文摘要
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英文摘要
DESCRIPTION (provided by applicant): A microfluidic platform is proposed that will aid in investigating processes involved in lipid channel formation and dissolution, leading to a deeper understanding of molecular transport across cell membranes, and ultimately contribute to our knowledge of biological channels and their relationships to disease processes. The project will leverage recent results from our team, including the first demonstration of single-molecule detection within a microfluidic ion channel chip using a single membrane-bound biological ion channel as a conductometric sensing element, with real-time control of analyte concentration and buffer conditions on either side of the channel. In this proposal, the proof-of-concept microfluidic platform will be extended to demonstrate in situ phospholipid membrane formation, integrated supporting gels and microporous films for enhanced membrane stability, automated multiplexed lipid channel measurements, and thin film thermal control at the membranes to enable the observation of the relationships between enthalpy and membrane formation, channel formation and dynamics, and analyte/channel interactions. A range of experiments that are not feasible or extremely time-consuming with existing technology will be conducted, with a focus on investigating channels formed by ceramide, a sphingolipid implicated in apoptosis. The structure and function of ceramide channels will be probed using the microfluidic system, with controlling factors manipulated to investigate their impacts on the regulation of channel size and stability. This effort will result in a novel and unique electrophysiology platform which may be applied to a wide range of fundamental and applied investigations of biological channels, together with experimental results that will expand our understanding of an important lipid channel system involved in programmed cell death. PUBLIC HEALTH RELEVANCE: A unique experimental platform is proposed that will elucidate the processes involved inbiological membrane channel formation and dissolution, leading to a deeper understanding of molecular transport across cell membranes, and ultimately contribute to our knowledge of biological channels and their relationships to disease processes.
期刊论文(8)
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科研奖励(0)
会议论文
Rapid microfluidic perfusion enabling kinetic studies of lipid ion channels in a bilayer lipid membrane chip.
快速微流体灌注能够对双层脂质膜芯片中的脂质离子通道进行动力学研究。
DOI: 10.1007/s10439-011-0323-4
发表时间: 2011
期刊: Annals of biomedical engineering
影响因子: 3.8
作者: [Shao,Chenren, Sun,Bing, Colombini,Marco, Devoe,DonL]
通讯作者: Devoe,DonL
DOI: 10.1021/la302704t
发表时间: 2012-09-04
期刊: Langmuir : the ACS journal of surfaces and colloids
影响因子: --
作者: [Rahmanian O, Chen CF, DeVoe DL]
通讯作者: DeVoe DL
DOI: 10.1039/c4lc00390j
发表时间: 2014-09-07
期刊: Lab on a chip
影响因子: 6.1
作者: [Hood RR, Vreeland WN, DeVoe DL]
通讯作者: DeVoe DL
DOI: 10.1039/c2lc41057e
发表时间: 2013-03-21
期刊: Lab on a chip
影响因子: 6.1
作者: [Rahmanian O, DeVoe DL]
通讯作者: DeVoe DL
7
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