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Characterizing human cancer metabolomics with ex vivo 1H HRMAS MRS.

机译:用离体1H HRMAS MRS表征人类癌症代谢组学。

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Publications of proton high resolution magic angle spinning (1H HRMAS) magnetic resonance spectroscopy (MRS) and its role in identification of metabolic markers for human cancer reported between 2005 and 2009 are reviewed according the anatomic sites of cancer: lung, breast, prostate, brain, colorectal, and cervical. Limited and insufficient screening options for the general public have indicated a need for more advanced tests that can identify and locate cancer at an early stage. 1H HRMAS MRS is a valuable tool that can elucidate relevant biological metabolite information that is being used to distinguish cancer from benign tissue, and even classify types of tumors. Researchers are working to translate this ex vivo spectroscopy information into an in vivo system that could be implemented in cancer clinics. For instance, in the case of lung cancer, the goal is to identify the at risk population through a simple blood test, which would be the first level of screening. From these tests, patients identified as at risk will be able to undergo further non-invasive radiological testing for diagnostic purposes. Not only will this ex vivo technology become a valuable diagnostic tool, it will also provide a way to monitor treatments on an individual basis so they can be adjusted accordingly for the best possible outcome.
机译:根据癌症的解剖部位,回顾了2005年至2009年之间报道的质子高分辨率魔角旋转(1H HRMAS)磁共振波谱(MRS)的出版物及其在鉴定人类癌症代谢标记中的作用。 ,结直肠和宫颈。对于普通公众而言,有限的筛查选择和不充分的筛查表明,需要更先进的检测方法,以便及早发现和定位癌症。 1H HRMAS MRS是一种有价值的工具,可以阐明相关的生物代谢物信息,这些信息可用于区分癌症与良性组织,甚至对肿瘤类型进行分类。研究人员正在努力将这种离体光谱信息转化为可以在癌症诊所中实施的体内系统。例如,在肺癌的情况下,目标是通过简单的血液检查来识别高危人群,这将是筛查的第一步。从这些测试中,被确定为有风险的患者将能够进行进一步的非侵入性放射学测试以用于诊断目的。这种离体技术不仅将成为一种有价值的诊断工具,还将提供一种以个人方式监视治疗的方法,以便可以对其进行相应调整以实现最佳效果。

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