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用于治疗药物监测的生物传感技术。

Biosensing Technologies for Therapeutic Drug Monitoring.

机构信息

Experimental and Clinical Pharmacology Division, CRO Aviano - National Cancer Institute, Via Franco Gallini 2, 33081 Aviano (PN), Italy.

出版信息

Curr Med Chem. 2018;25(34):4354-4377. doi: 10.2174/0929867324666170720101736.

Abstract

BACKGROUND AND RATIONALE

Therapeutic drug monitoring (TDM) is the clinical practice of measuring pharmaceutical drug concentrations in patients' biofluids at designated intervals to allow a close and timely control of their dosage. This practice allows for rapid medical intervention in case of toxicity-related issues and/or adjustment of dosage to better fit the therapeutic demand. Currently, TDM is performed in centralized laboratories employing instruments, such as immunoassay analyzers and mass spectrometers that can be run only by trained personnel. However, the time required for the preparation, samples analysis, and data processing, together with the related financial cost, severely affects the application of TDM in medical practices. Therefore, a new generation of analytical tools is necessary to respond to the timely need of drug administration or reduction aiming at effectively treating oncologic patients.

AIM OF THE REVIEW

State-of-the-Art Technologies for TDM: Technological advances in the field of nanosciences and biosensors offer the unique opportunity to address such issues. The interest for the so-called nanobiosensors is considerably increasing, particularly in drug discovery and clinical chemistry, even though there are only few examples reporting their use for TDM. The techniques employing nanobiosensors are mainly based on electrochemical, optical, and mass detection systems.

CONCLUSIONS

In this review, we described the most promising methodologies that, in our opinion, will bring TDM towards the next stage of clinical practice in the future.

摘要

背景与原理

治疗药物监测(TDM)是指在指定时间间隔测量患者生物流体中药物浓度的临床实践,以实现对其剂量的密切和及时控制。这种实践可以在发生毒性相关问题时进行快速医疗干预,和/或调整剂量以更好地满足治疗需求。目前,TDM 在集中式实验室中进行,采用免疫分析仪器和质谱仪等仪器,只能由经过培训的人员操作。然而,准备、样品分析和数据处理所需的时间,以及相关的财务成本,严重影响了 TDM 在医疗实践中的应用。因此,需要新一代的分析工具来满足药物管理或减少的及时需求,以有效治疗肿瘤患者。

综述目的

TDM 的最新技术:纳米科学和生物传感器领域的技术进步提供了应对这些问题的独特机会。对所谓的纳米生物传感器的兴趣正在大幅增加,特别是在药物发现和临床化学领域,尽管只有少数几个例子报告了它们在 TDM 中的应用。采用纳米生物传感器的技术主要基于电化学、光学和质量检测系统。

结论

在这篇综述中,我们描述了最有前途的方法,在我们看来,这些方法将使 TDM 在未来进入临床实践的下一阶段。

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