Ke Wei-Ren, Chang Rachel Yoon Kyung, Kwok Philip Chi Lip, Tang Patricia, Chen Lan, Chen Donghao, Chan Hak-Kim
Advanced Drug Delivery Group, School of Pharmacy, Faculty of Medicine and Health, University of Sydney, Sydney, New South Wales, Australia.
Hangzhou Chance Pharmaceuticals, Hangzhou, China.
Ann Transl Med. 2021 Apr;9(7):596. doi: 10.21037/atm-20-3946.
Inhaled drugs are routinely used for the treatment of respiratory-supported patients. To date, pressurized metered dose inhalers and nebulizers are the two platforms routinely employed in the clinical setting. The scarce utilization of the dry powder inhaler (DPI) platform is partly due to the lack of data that proves optimal delivery and drug efficacy are achievable. Additionally, fitting a DPI in-line to the respiratory circuit is not as straightforward as with the other aerosol delivery platforms. Importantly, there is a common misconception that the warm and humidified inspiratory air in respiratory supports, even for a short exposure, will deteriorate powder formulation compromising its delivery and efficacy. However, some recent studies have dispelled this myth, showing successful delivery of dry powders through the humidified circuit of respiratory supports. Compared with other aerosol delivery devices, the use of DPIs during respiratory supports possesses unique advantages such as rapid delivery and high dose. In this review, we presented studies showing various setups employing commercial DPIs and effects of ventilator parameters on the aerosol delivery. Inclusion of novel DPIs was also made to illustrate characteristics of an ideal inhaler that would give high lung dose with low powder deposition loss in tracheal tubes and respiratory circuits. Clinical trials are urgently needed to confirm the benefits of administration of dry powders in ventilated patients, thus enabling translation of powder delivery into practice.
吸入药物常用于治疗需要呼吸支持的患者。迄今为止,压力定量吸入器和雾化器是临床中常规使用的两种给药平台。干粉吸入器(DPI)平台的使用较少,部分原因是缺乏数据证明其能实现最佳给药和药物疗效。此外,将DPI与呼吸回路串联安装并不像其他气雾剂给药平台那样简单。重要的是,人们普遍存在一种误解,即呼吸支持中温暖且湿润的吸入空气,即使暴露时间很短,也会使粉末制剂变质,从而影响其给药和疗效。然而,最近的一些研究消除了这一误解,表明干粉可通过呼吸支持的加湿回路成功给药。与其他气雾剂给药装置相比,在呼吸支持期间使用DPI具有快速给药和高剂量等独特优势。在本综述中,我们展示了使用商用DPI的各种设置以及呼吸机参数对气雾剂给药影响的研究。还纳入了新型DPI以说明理想吸入器的特性,即能在气管导管和呼吸回路中实现高肺部给药剂量且粉末沉积损失低。迫切需要进行临床试验以证实给通气患者使用干粉的益处,从而使粉末给药能够应用于实际。