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Investigating potential effects of RFID systems on the molecular structure of the human insulin

机译:研究RFID系统对人胰岛素分子结构的潜在影响

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The Radio Frequency Identification (RFID) is a wireless technology that is becoming more and more important as auto-identification solution for many application scenarios. The adoption of this innovative technology in the pharmaceutical sector promises to solve several problems related to tracing and tracking systems at item level. Unfortunately, there are still some barriers limiting the largescale deployment of RFID technologies. One of these is related to very interesting research topics on the evaluation of potential effects of electromagnetic fields on drugs. In detail, this work aimed to analyze the impact of UHF RFID devices, used in tracing systems, on the molecular structure and potency of a commercial human insulin preparation, ActrapidTM. In order to investigate possible induced alterations of molecular structure, the Reverse Phase-High Pressure Liquid Chromatography and the Nuclear Magnetic Resonance spectroscopy have been mainly used in the experimental protocol. To obtain some indications about drug performance, in vitro cell proliferation assays have been also conducted. The experimental results, achieved by a protocol combining an accurate structural analysis on 5 min to 24 h irradiated drug samples with functional in vitro assays, have shown that the electromagnetic field generated by UHF RFID devices does not cause significant effects on ActrapidTM insulin. These findings are strongly encouraging the use of RFID-based technologies for item-level tracing systems in the pharmaceutical supply chain.
机译:射频识别(RFID)是一种无线技术,其作为许多应用场景的自动识别解决方案变得越来越重要。在制药部门采用这种创新技术承诺解决与物品级别相关的追踪和跟踪系统有关的几个问题。不幸的是,仍有一些障碍限制了RFID技术的庞大群体部署。其中一个是关于评估电磁场对药物潜在影响的非常有趣的研究课题。详细地,这项工作旨在分析追踪系统中使用的UHF RFID器件的影响,对商业人类胰岛素制剂的分子结构和效力,ActraPidtm。为了研究可能的分子结构的诱导改变,在实验方案中主要使用反相 - 高压液相色谱和核磁共振光谱。为了获得有关药物性能的一些指示,还进行了体外细胞增殖测定。通过协议实现的实验结果与5分钟至24小时辐照的药物样品相结合的协议,已经表明,由UHF RFID器件产生的电磁场对ActraPidtm胰岛素产生显着影响。这些调查结果强烈令人鼓舞的使用基于RFID的技术在药物供应链中的物品级追踪系统。

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