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首页> 外文期刊>Annual review of biomedical engineering. >Targeted drug-aerosol delivery in the human respiratory system.
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Targeted drug-aerosol delivery in the human respiratory system.

机译:在人体呼吸系统中靶向药物气雾剂的输送。

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摘要

Inhalation of drug aerosols is a modern pathway to combat lung diseases. It is also becoming the preferred route for insulin delivery, pain management, cancer therapy, and nanotherapeutics. Popular delivery devices include nebulizers, metered-dose inhalers, and dry-powder inhalers. They are all nondirectional and hence have typically low particle deposition efficiencies in desired nasal or lung areas. Thus, for specific disease treatment with costly and/or aggressive medicine, it is necessary to provide targeted drug-aerosol delivery to predetermined sites in the human respiratory system. Experimental measurements and computer models of particle transport and deposition in nasal and lung airway models are presented. Furthermore, the underlying methodology and performance of pressurized metered dose inhalers as well as new smart inhaler systems are discussed. To maximize respiratory drug delivery to specific sites, an optimal combination of particle characteristics, inhalation waveform, particle release position, and drug-aerosol dosage has to be achieved.
机译:吸入药物气雾剂是对抗肺部疾病的现代途径。它也正成为胰岛素输送,疼痛控制,癌症治疗和纳米治疗的首选途径。流行的输送设备包括雾化器,定量吸入器和干粉吸入器。它们都是无方向性的,因此在所需的鼻或肺区域通常具有较低的颗粒沉积效率。因此,对于用昂贵的和/或侵略性药物进行的特定疾病治疗,必须将靶向的药物气雾剂递送至人的呼吸系统中的预定部位。介绍了在鼻和肺气道模型中颗粒传输和沉积的实验测量和计算机模型。此外,还讨论了加压定量吸入器以及新型智能吸入器系统的基本方法和性能。为了最大程度地将呼吸道药物输送到特定部位,必须实现颗粒特性,吸入波形,颗粒释放位置和药物气雾剂剂量的最佳组合。

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