首页> 外文会议>Advanced Biomedical and Clinical Diagnostic Systems III; Progress in Biomedical Optics and Imaging; vol.6 no.7 >A fast method for detecting Cryptosporidium parvum oocysts in real world samples
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A fast method for detecting Cryptosporidium parvum oocysts in real world samples

机译:一种检测真实样品中隐孢子虫卵囊的快速方法

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Contamination of drinking water with pathogenic microorganisms such as Cryptosporidium has become an increasing concern in recent years. Cryptosporidium oocysts are particularly problematic, as infections caused by this organism can be life threatening in immunocompromised patients. Current methods for monitoring and analyzing water are often laborious and require experts to conduct. In addition, many of the techniques require very specific reagents to be employed. These factors add considerable cost and time to the analytical process. Raman spectroscopy provides specific molecular information on samples, and offers advantages of speed, sensitivity and low cost over current methods of water monitoring. Raman spectroscopy is an optical method that has demonstrated the capability to identify and differentiate microorganisms at the species and strain levels. In addition, this technique has exhibited sensitivities down to the single organism detection limit. We have employed Raman spectroscopy and Raman Chemical Imaging, in conjunction with chemometric techniques, to detect small numbers of oocysts in the presence of interferents derived from real-world water samples. Our investigations have also indicated that Raman Chemical Imaging may provide chemical and physiological information about an oocyst sample which complements information provided by the traditional methods. This work provides evidence that Raman imaging is a useful technique for consideration in the water quality industry.
机译:近年来,诸如隐孢子虫之类的病原微生物污染了饮用水。隐孢子虫卵囊特别成问题,因为这种生物体引起的感染在免疫受损的患者中可能危及生命。当前用于监测和分析水的方法通常很费力,需要专家进行。另外,许多技术需要使用非常特殊的试剂。这些因素会增加分析过程的成本和时间。拉曼光谱法可提供有关样品的特定分子信息,并且与当前的水监测方法相比,具有速度快,灵敏度高和成本低的优点。拉曼光谱法是一种光学方法,已证明能够在物种和菌株水平上鉴定和区分微生物。另外,该技术已显示出低至单一生物体检测极限的灵敏度。我们采用拉曼光谱和拉曼化学成像技术,结合化学计量学技术,在存在来自真实水样的干扰物的情况下,检测少量卵囊。我们的研究还表明,拉曼化学成像可以提供有关卵囊样品的化学和生理信息,以补充传统方法提供的信息。这项工作提供了证据,证明拉曼成像是水质工业中考虑的有用技术。

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