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羟基脲职业暴露的近红外光谱/化学计量学评估

MicroNIR/Chemometrics Assessement of Occupational Exposure to Hydroxyurea.

作者信息

Risoluti Roberta, Materazzi Stefano

机构信息

Department of Chemistry, Sapienza - University of Rome, Rome, Italy.

出版信息

Front Chem. 2018 Jun 19;6:228. doi: 10.3389/fchem.2018.00228. eCollection 2018.

Abstract

Portable Near Infrared spectroscopy (NIRs) coupled to chemometrics was investigated for the first time as a novel entirely on-site approach for occupational exposure monitoring in pharmaceutical field. Due to a significant increase in the number of patients receiving chemotherapy, the development of reliable, fast, and on-site analytical methods to assess the occupational exposure of workers in the manufacture of pharmaceutical products, has become more and more required. In this work, a fast, accurate, and sensitive detection of hydroxyurea, a cytotoxic antineoplastic agent commonly used in chemotherapy, was developed. Occupational exposure to antineoplastic agents was evaluated by collecting hydroxyurea on a membrane filter during routine drug manufacturing process. Spectra were acquired in the NIR region in reflectance mode by the means of a miniaturized NIR spectrometer coupled with chemometrics. This MicroNIR instrument is a very ultra-compact portable device with a particular geometry and optical resolution designed in such a manner that the reduction in size does not compromise the performances of the spectrometer. The developed method could detect up to 50 ng of hydroxyurea directly measured on the sampling filter membrane, irrespective of complexity and variability of the matrix; thus extending the applicability of miniaturized NIR instruments in pharmaceutical and biomedical analysis.

摘要

便携式近红外光谱(NIRs)结合化学计量学首次被研究,作为一种全新的完全现场方法用于制药领域的职业暴露监测。由于接受化疗的患者数量显著增加,开发可靠、快速且现场分析方法以评估制药产品生产工人的职业暴露需求日益增长。在这项工作中,开发了一种对羟基脲(一种化疗中常用的细胞毒性抗肿瘤药物)的快速、准确且灵敏的检测方法。通过在常规药物制造过程中在膜滤器上收集羟基脲来评估职业性抗肿瘤药物暴露。借助与化学计量学相结合的小型近红外光谱仪,以反射模式在近红外区域采集光谱。这种微型近红外仪器是一种非常超紧凑的便携式设备,具有特殊的几何形状和光学分辨率,其设计方式使得尺寸减小不会损害光谱仪的性能。所开发的方法能够直接检测在采样滤膜上测量的高达50 ng的羟基脲,而不论基质的复杂性和变异性如何;从而扩展了小型近红外仪器在制药和生物医学分析中的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09e8/6020770/51e137b9befa/fchem-06-00228-g0001.jpg

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