多学科方法研究RFID系统对药物的潜在暴露风险

R. Acierno, M. Maffia, L. Mainetti, L. Patrono, E. Urso
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引用次数: 1

摘要

在不久的将来,无线技术将在医疗保健应用中发挥非常重要的作用,特别是对物体和人的跟踪和跟踪系统。其中,射频识别(RFID)解决方案承诺大大改善医疗保健环境中的许多流程,并与减少药物处方和管理中的错误相关的患者安全。不幸的是,这些创新技术在医疗保健领域的大规模部署仍然存在一些障碍。为了面对这些挑战,需要多学科技能。最近的一个研究项目试图协调各种活动,重点是在药品供应链上的项目一级追踪和跟踪药品。其中之一与评估暴露在超高频射频识别设备产生的电磁场对药物的潜在影响有关。本文旨在介绍一些有用的研究技术,以开展能够评估暴露于电磁场的某些生物药物的分子结构的潜在变化的实验方案。这项工作强调了实验分析的复杂性,因为它强烈依赖于特定的分子。本文报道了人胰岛素制剂ActrapidTM的一些实验结果。结果显示,ActrapidTM的分子结构和生物活性均未发生实质性变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multidisciplinary approach to investigate potential exposure risks on drugs of RFID systems
In the near future, the wireless technologies will play a very important role in healthcare applications, especially for tracing and tracking systems of objects and people. Among these, the Radio Frequency Identification (RFID) solutions promise to substantially improve both many processes in healthcare environments and the patient safety connected to the reduction of errors in drug prescriptions and administration. Unfortunately, there are still some barriers limiting the large-scale deployment of these innovative technologies in the healthcare sector. In order to face these challenges, multidisciplinary skills are required. A recent research project has attempted to coordinate heterogeneous activities focused on the tracing and tracking of drugs at item level on the pharmaceutical supply chain. One of these is related to the evaluation of potential effects of exposure to electromagnetic fields, generated by RFID devices in UHF band, on drugs. This paper aims to introduce some investigative techniques useful to carry out an experimental protocol able to evaluate the potential alterations of the molecular structure of some biological drugs exposed to electromagnetic fields. The work highlighted that the experimental analysis is complex because it depends strongly on particular molecules. Some experimental results on ActrapidTM, a human insulin preparation, are reported. They showed the absence of substantial alterations both in molecular structure and biological activity of ActrapidTM.
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