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The application of mechanical aerosol delivery systems in an in vitro model of mechanically ventilated neonates

机译:机械气雾剂输送系统在机械通气新生儿体外模型中的应用

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摘要

Delivery of medication to the neonatal lung using current methods is inefficient. Aerosols offer one way to improve delivery to small airways. In this in vitro work, aerosol delivery by using a micropump or a rotary valve has been evaluated in a model of the neonatal setting with a pressurised metered dose inhaler plus spacer outside of the inspiratory limb. Drug depositions were assessed by spectrophotometric analyses. Drug lung deposition was increased by adjusting the rotary valve for co-ordination between the inhalation and aerosol delivery, but this intermittent mode decreased the aerosol delivery by using the micropump. Also, decreasing the volume of spacer decreased drug deposition in test lungs by using the micropump system. At the optimum conditions, the rotary valve aerosol delivery system delivered 3.68±0.91% of the Qvar nominal dose to the test lungs, and this was 2.34±0.01% for the micropump system. In conclusion, the rotary valve aerosol delivery system provided higher amounts of drug particles to the test lungs compared to the micropump system. The advantages of these methods were that the humidity in the ventilation circuit did not affect the aerosol particles in the spacer. Further optimisation is required to improve aerosol deposition in the test lungs. The article has also a short section of recent patents relevant to aerosol delivery.
机译:使用当前方法将药物递送至新生儿肺是无效的。气雾剂提供了一种改善向小气道输送的方法。在这项体外工作中,已经在新生儿环境的模型中评估了通过使用微型泵或旋转阀进行的气雾剂输送,并在吸气肢体外部使用了加压计量吸入器和垫片。通过分光光度分析评估药物沉积。通过调节旋转阀以协调吸入和气雾剂的输送,可以增加药物肺部的沉积,但是这种间歇模式通过使用微型泵减少了气雾剂的输送。另外,通过使用微型泵系统,减少间隔物的体积可减少药物在测试肺中的沉积。在最佳条件下,旋转阀气雾剂输送系统将Qvar标称剂量的3.68±0.91%输送到了测试肺部,而微型泵系统为2.34±0.01%。总之,与微型泵系统相比,旋转阀气雾剂输送系统向测试肺提供了更多数量的药物颗粒。这些方法的优点是通风回路中的湿度不会影响垫片中的气溶胶颗粒。需要进一步优化以改善测试肺中的气溶胶沉积。本文还包含与气雾剂输送相关的近期专利的一小部分。

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