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High Throughput, High Sensitivity NMR

High Throughput, High Sensitivity NMR
高通量、高灵敏度 NMR
批准号:
BB/X019217/1
负责人:
Matthew Cliff
金额:
$50.92万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
翻译
这项提议是购买设备来改造曼彻斯特大学(UOM)现有的核磁共振(核磁共振)光谱仪,以便将其用于高通量(HTP)核磁共振和高灵敏度检测。该仪器所在的曼彻斯特生物技术研究所(MIB)拥有机器人液体处理设备,这是进行HTP研究所需的可重复样品制备所必需的。核磁共振谱可用作由化学物质的结构精确定义的分子指纹。使用核磁共振研究分子混合物的部分原因是灵敏度和分辨率(对于~1H核磁共振)。在曼彻斯特开发的最先进的方法论可以解决部分或全部这些限制。使用复杂的核磁共振技术对复杂混合物进行HTP研究,以提高灵敏度、分辨率和/或特异性,将允许定义由于新陈代谢(在高等真核生物、介质、水或土壤中)或特定生物催化剂引起的化学成分变化,或筛选小分子对目标蛋白质的影响,无论是作为类药物分子还是赋形剂。此外,我们还将继续使用结构和功能生物分子核磁共振设备,研究溶液中的蛋白质。这项研究将对环境和工业生物技术产生影响,使其能够向“净零”碳排放过渡,并发展可持续农业,并对生物化学研究产生影响,从而促进制药开发,从而实现终身健康。
英文摘要
This proposal is to purchase equipment to convert an existing Nuclear Magnetic Resonance (NMR) spectrometer at the University of Manchester (UoM) so that it can be used for high-throughput (HTP) NMR with high sensitivity detection.The Manchester Institute of Biotechnology (MIB), where the instrument is housed, has a robotic liquid-handling Facility, necessary for the reproducible sample preparation required for HTP studies. NMR spectra can be used as a molecular fingerprint that is defined precisely by the structure of a chemical. Use of NMR to study mixtures of molecules is compromised partly by sensitivity, and also by (for 1H NMR) resolution. State of the art methodology developed in Manchester can solve some or all of these limitations. HTP studies of complex mixtures using sophisticated NMR techniques to increase sensitivity, resolution and/or specificity will allow definition of changes in chemical composition due to metabolism (in higher eukaryotes, media, water, or soil) or specific biocatalysts, or to screen small molecules for their effects on target proteins, either as drug-like molecules, or excipients. In addition, we will continue to use the equipment for structural and functional biomolecular NMR, to study proteins in solution. The research will impact on environmental and industrial biotechnology, enabling the transition to "net zero" carbon emissions and developing sustainable agriculture, and on biochemical research, enabling pharmaceutical development and consequently life-long health.
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