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A trifurcated fiber-optic probe based optical system designed for AGEs measurement

机译:基于三叉光纤探头的光学系统,用于AGEs测量

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Advanced Glycation End-products (AGEs) are biochemical end-products of non-enzymatic glycation and are formed irreversibly in human serum and skin tissue. AGEs are thought to play an important role in the pathogenesis of diabetes and corresponding complications. All conventional methods for measuring AGEs must take sampling and measure in vitro. These methods are invasive and have the problem of relatively time-consuming. AGEs have fluorescent characteristics. Skin AGEs can be assessed noninvasively by collecting the fluorescence emitted from skin tissue when excited with proper light. However, skin tissue has absorption and scattering effects on fluorescence of AGEs, it is not reliable to evaluate the accumulation of AGEs according the emitted fluorescence but not considering optical properties of skin tissue. In this study, a portable system for detecting AGEs fluorescence and skin reflectance spectrum simultaneously has been developed. The system mainly consists of an ultraviolet light source, a broadband light source, a trifurcated fiber-optic probe, and a compact charge coupled device (CCD) spectrometer. The fiber-optic probe consists of 36 optical fibers which are connected to the ultraviolet light source, 6 optical fibers connected to the broadband light source, and a core fiber connected to the CCD spectrometer. Demonstrative test measurements with the system on skin tissue of 40 healthy subjects have been performed. Using parameters that are calculated from skin reflectance spectrum, the distortion effects caused by skin absorption and scattering can be eliminated, and the integral intensity of corrected fluorescence has a strong correlation with the accumulation of AGEs. The system looks very promising for both laboratory and clinical applications to monitor AGEs related diseases, especially for chronic diabetes and complications.
机译:高级糖基化终产物(AGEs)是非酶糖基化的生化终产物,在人血清和皮肤组织中不可逆地形成。人们认为AGEs在糖尿病和相应并发症的发病机理中起着重要作用。所有用于测量AGE的常规方法都必须取样并进行体外测量。这些方法是侵入性的并且具有相对耗时的问题。 AGE具有荧光特性。皮肤AGEs可以通过在适当的光激发下收集皮肤组织发出的荧光来进行无创评估。然而,皮肤组织对AGEs的荧光具有吸收和散射作用,根据发射的荧光而不考虑皮肤组织的光学性质来评估AGEs的积累是不可靠的。在这项研究中,已开发出一种可同时检测AGEs荧光和皮肤反射光谱的便携式系统。该系统主要由紫外光源,宽带光源,三叉光纤探头和紧凑型电荷耦合器件(CCD)光谱仪组成。光纤探头由连接到紫外线光源的36根光纤,连接到宽带光源的6根光纤和连接到CCD光谱仪的芯线组成。用该系统对40名健康受试者的皮肤组织进行了示范性测试。使用从皮肤反射光谱计算出的参数,可以消除由皮肤吸收和散射引起的畸变效应,并且校正后的荧光的积分强度与AGEs的积累有很强的相关性。该系统在实验室和临床应用中监测AGEs相关疾病,特别是慢性糖尿病和并发症,看起来非常有前途。

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