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首页> 外文期刊>Experimental Lung Research >High-frequency ultrasonic atomization for drug delivery to rodent animal models - optimal particle size for lung inhalation of difluoromethyl ornithine.
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High-frequency ultrasonic atomization for drug delivery to rodent animal models - optimal particle size for lung inhalation of difluoromethyl ornithine.

机译:高频超声雾化,用于将药物递送给啮齿动物模型-肺吸入二氟甲基鸟氨酸的最佳粒径。

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摘要

A high-(8-MHz) and a low-(1.7-MHz) frequency ultrasonic transducer were compared for delivering aerosols to mouse lung. The aerosol concentration (mass of dry particles/volume of air) rose nonlinearly with solution concentration of difluoromethyl ornithine for both transducers. The particle size was linear with the cube root of the solution concentration, and the slope of the low-frequency transducer was 8 times greater than that of the high-frequency transducer. The deposition fraction assessed by the assayed mass in the lung relative to the calculated inhaled mass was found to decline exponentially with particle size. The lower-frequency transducer provided a higher dose despite a lower deposition fraction, but the high-frequency transducer was more efficient and provides a more selective deposition in the lower respiratory tract while operating with significantly less demands on aerosol drying.
机译:比较了高频率(8-MHz)和低频率(1.7-MHz)的超声换能器,以将气雾剂输送到小鼠肺部。两种传感器的气溶胶浓度(干颗粒质量/空气体积)随二氟甲基鸟氨酸溶液浓度的增加而非线性上升。粒径与溶液浓度的立方根呈线性关系,低频换能器的斜率比高频换能器的斜率大8倍。发现通过测定的肺质量相对于计算的吸入质量评估的沉积分数随颗粒大小呈指数下降。尽管沉积分数较低,但低频换能器仍提供较高的剂量,但高频换能器效率更高,并且在下呼吸道中沉积的选择性更高,同时对气溶胶干燥的要求也大大降低。

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