鼻腔
生物医学工程
鼻喷雾剂
鼻腔给药
药物输送
分布(数学)
体内
材料科学
颗粒沉积
沉积(地质)
纳米技术
医学
外科
药理学
数学
复合材料
生物
数学分析
生物技术
古生物学
沉积物
航程(航空)
作者
Jiawen Su,Yan Liu,Hongyu Sun,Abid Naeem,Huipeng Xu,Yue Qu,Caifen Wang,Zeru Li,Jianhua Lu,Lulu Wang,Xiaofeng Wang,Jie Wu,Lixin Sun,Jiwen Zhang,Zhigang Wang,Rui Yang,Li Wu
标识
DOI:10.1016/j.apsb.2023.06.007
摘要
Nasal drug delivery efficiency is highly dependent on the position in which the drug is deposited in the nasal cavity. However, no reliable method is currently available to assess its impact on delivery performance. In this study, a biomimetic nasal model based on three-dimensional (3D) reconstruction and three-dimensional printing (3DP) technology was developed for visualizing the deposition of drug powders in the nasal cavity. The results showed significant differences in cavity area and volume and powder distribution in the anterior part of the biomimetic nasal model of Chinese males and females. The nasal cavity model was modified with dimethicone and validated to be suitable for the deposition test. The experimental device produced the most satisfactory results with five spray times. Furthermore, particle sizes and spray angles were found to significantly affect the experimental device's performance and alter drug distribution, respectively. Additionally, mometasone furoate (MF) nasal spray (NS) distribution patterns were investigated in a goat nasal cavity model and three male goat noses, confirming the in vitro and in vivo correlation. In conclusion, the developed human nasal structure biomimetic device has the potential to be a valuable tool for assessing nasal drug delivery system deposition and distribution.
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