Institute of Optoelectronics, Military University of Technology, 00-908 Warsaw, Poland.
Sensors (Basel). 2022 Apr 12;22(8):2956. doi: 10.3390/s22082956.
Fluorescence is the most sensitive spectroscopic method of analysis and fluorescence methods. However, classical analysis requires sampling. There are new needs for real-time analyses of biological materials, without the need for sampling. This article presents examples of proprietary applications of laser-induced fluorescence (LIF) in medicine with such methods. A classic example is the analysis of photosensitizers using the photodynamic treatment method (PDT). The level and kinetics of accumulation and excretion of sensitizers in the body are examined, as well as the optimal exposure time after the application of compounds. The LIF method is also used to analyze endogenous fluorophores; it has been used to detect neoplasms, e.g., lung cancer or gynecological and dermatological diseases. Furthermore, it is used for the diagnosis of early stages of tooth decay or detection of fungi. The article will present the construction of sensors based on the LIF method-fiber laser spectrometers and investigated fluorescence spectra in individual applications. Examples of fluorescence imaging, e.g., dermatological, and dental diagnostics and measuring systems will be presented. The advantage of the method is it has greater sensitivity and easily detects lesions early compared to the methods used in observing the material in reflected light.
荧光是最灵敏的光谱分析方法,荧光方法也是如此。然而,经典分析需要采样。现在需要实时分析生物材料,而无需采样。本文介绍了激光诱导荧光(LIF)在医学中的专有应用实例。一个经典的例子是使用光动力治疗(PDT)方法分析光增敏剂。研究了体内增敏剂的积累和排泄水平和动力学,以及化合物应用后的最佳暴露时间。LIF 方法还用于分析内源性荧光团;它已用于检测肿瘤,例如肺癌或妇科和皮肤科疾病。此外,它还用于诊断龋齿的早期阶段或检测真菌。本文将介绍基于 LIF 方法的传感器的构建,例如纤维激光光谱仪,并研究了各个应用中的荧光光谱。还将介绍荧光成像的示例,例如皮肤科和牙科诊断和测量系统。与在反射光中观察材料的方法相比,该方法的优点是具有更高的灵敏度,并且可以更早地检测到病变。