Cusp PharmaTech Consulting LLC, Cambridge, MA 02142, USA.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2010 Jul-Aug;2(4):400-17. doi: 10.1002/wnan.93.
This review summarizes and updates the development of implantable microchip-containing devices that control dosing from drug reservoirs integrated with the devices. As the expense and risk of new drug development continues to increase, technologies that make the best use of existing therapeutics may add significant value. Trends of future medical care that may require advanced drug delivery systems include individualized therapy and the capability to automate drug delivery. Implantable drug delivery devices that promise to address these anticipated needs have been constructed in a variety of ways using micro- and nanoelectromechanical systems (MEMS or NEMS)-based technology. These devices expand treatment options for addressing unmet medical needs related to dosing. Within the last few years, advances in several technologies (MEMS or NEMS fabrication, materials science, polymer chemistry, and data management) have converged to enable the construction of miniaturized implantable devices for controlled delivery of therapeutic agents from one or more reservoirs. Suboptimal performance of conventional dosing methods in terms of safety, efficacy, pain, or convenience can be improved with advanced delivery devices. Microchip-based implantable drug delivery devices allow localized delivery by direct placement of the device at the treatment site, delivery on demand (emergency administration, pulsatile, or adjustable continuous dosing), programmable dosing cycles, automated delivery of multiple drugs, and dosing in response to physiological and diagnostic feedback. In addition, innovative drug-medical device combinations may protect labile active ingredients within hermetically sealed reservoirs.
这篇综述总结和更新了可植入微芯片药物输送装置的发展情况,这些装置将药物储库与设备集成在一起,从而控制药物的剂量。随着新药开发的成本和风险不断增加,充分利用现有治疗方法的技术可能会增加巨大的价值。未来医疗保健的发展趋势可能需要先进的药物输送系统,包括个体化治疗和自动药物输送的能力。为满足这些预期需求而构建的可植入药物输送装置,采用了多种基于微纳机电系统(MEMS 或 NEMS)的技术。这些装置扩展了治疗方案,以解决与剂量相关的未满足的医疗需求。在过去几年中,几种技术(MEMS 或 NEMS 制造、材料科学、聚合物化学和数据管理)的进步已经汇聚在一起,从而能够构建用于从一个或多个储库中输送治疗剂的小型化可植入装置。通过将设备直接放置在治疗部位,实现局部给药,按需给药(紧急给药、脉冲或可调节连续给药),可编程给药周期,自动输送多种药物,并根据生理和诊断反馈进行给药,从而可以改善传统给药方法在安全性、疗效、疼痛或便利性方面的不足。基于微芯片的可植入药物输送装置还可以保护密封储库中不稳定的活性成分。