吸烟者和非吸烟者唾液样品谱线的研究

Shiek S. S. J. Ahmed, R. Raja, Saurabh Raghuwanshi, M. P. M.Sc.
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引用次数: 4

摘要

世界上最常见的吸烟形式是吸烟,它是肺癌、血压、肺气肿、支气管炎、心脏病发作等的主要原因。研究表明,吸烟每吸一根烟,人的寿命就会缩短6分钟。吸烟者的唾液中含有一些有害物质,如尼古丁,而不吸烟者的唾液中没有尼古丁。吸烟会破坏唾液中的分子,而这些分子是保护口腔免受癌症侵害的有用物质。在正常情况下,唾液在毒素和口腔粘膜之间起着保护性缓冲作用,但在吸烟者中,这种缓冲性质和保护酶变得不起作用或功能减弱,导致各种口腔疾病。本研究采用傅里叶变换红外光谱显微镜对唾液样本进行分析,检测吸烟者的标志物。该分析包括68个人;样本分为23个非吸烟者样本,18个活跃吸烟者样本和27个过去吸烟者样本。根据时间间隔(吸烟前15分钟、吸烟后立即、吸烟后30分钟和吸烟后1小时)收集活跃吸烟者的样本。从唾液中发现了几个有趣的峰作为吸烟者的标志。在737cm、1659 cm、2146 cm和3414 cm处的吸光峰与非吸烟者相比有显著变化。基于时间尺度的分析表明,大约需要一个小时的时间间隔才能恢复活跃吸烟者的原始光谱位置。我们的研究还表明,通过分析过去吸烟者的光谱模式,稳定的标记可能适用于活跃吸烟者。因此,这些参数可以作为开发利用唾液样本检测活跃吸烟者的光谱方法的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies On The Spectral Lines of Salivary Samples Taken From Smokers And Non-Smokers
The most common form of smoking in world is cigarette smoking, which is the leading cause of lung cancer, blood pressure, emphysema, bronchitis, heart attack etc Studies show that smoking shortens the life of person by six minutes for every single cigarette he smokes. Saliva of smokers contains some harmful substances like nicotine which is not found in non-smokers. Smoking tobacco destroys the molecules in saliva which are useful in protecting oral region from cancer. Under normal conditions saliva acts like a protective buffer between toxin and the lining of mouth, but in smokers this buffer nature and protective enzyme becomes non functional or less functional resulting in various oral diseases. In the present study, Fouriertransform infrared spectro-microscopy was used for the analysis of saliva sample for the detection of marker for smokers. The analysis included 68 individuals; the samples were classified as 23 non-smokers saliva sample, 18 samples of active smokers and 27 samples of past smokers. Samples of active smokers were collected based on time intervals (15 minutes before smoking, immediately after smoking, 30 minutes after smoking and 1 hour after smoking). Several interesting peaks have been identified as the marker for the smokers from saliva. The peaks at 737cm, 1659 cm, 2146 cmand 3414 cm were significantly altered in the absorption level in active smokers and past smokers when compared with the non-smokers. Analysis based on the time scale suggests that about one hour time interval was required for regaining original spectral position of active smokers. Our study also indicates that the stable marker was possible for active smokers by analyzing the past smokers spectral pattern. Hence these parameters could be used as a basis for developing a spectral method in detection of active smokers using their salivary sample.
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