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用于鼻腔给药的体外解剖模型

In Vitro Anatomical Models for Nasal Drug Delivery.

作者信息

Williams Gerallt, Suman Julie D

机构信息

Aptar Pharma, 27100 Le Vaudreuil, France.

Next Breath, an Aptar Pharma Company, Baltimore, MD 21227, USA.

出版信息

Pharmaceutics. 2022 Jun 26;14(7):1353. doi: 10.3390/pharmaceutics14071353.

Abstract

Nasal drug delivery has been utilized for locally acting diseases for decades. The nose is also a portal to the systemic circulation and central nervous system (CNS). In the age of SARS-CoV2, the development of nasal sprays for vaccination and prophylaxis of respiratory diseases is increasing. As the number of nasal drug delivery applications continue to grow, the role of targeted regional deposition in the nose has become a factor is nasal drug development. In vitro tools such as nasal casts help facilitate formulation and product development. Nasal deposition has been shown to be linked to pharmacokinetic outcomes. Developing an understanding of the complex nasal anatomy and intersubject variability can lead to a better understanding of where the drug will deposit. Nasal casts, which are replicas of the human nasal cavity, have evolved from models made from cadavers to complex 3D printed replicas. They can be segmented into regions of interest for quantification of deposition and different techniques have been utilized to quantify deposition. Incorporating a nasal cast program into development can help differentiate formulations or physical forms such as nasal powder versus a liquid. Nasal casts can also help develop instructions for patient use to ensure deposition in the target deposition site. However, regardless of the technique used, this in vitro tool should be validated to ensure the results reflect the in vivo situation. In silico, CFD simulation or other new developments may in future, with suitable validation, present additional approaches to current modelling, although the complexity and wide degree of variability in nasal anatomy will remain a challenge. Nonetheless, nasal anatomical models will serve as effective tools for improving the understanding of nasal drug delivery.

摘要

几十年来,鼻腔给药一直用于局部作用的疾病。鼻子也是进入体循环和中枢神经系统(CNS)的门户。在新冠病毒时代,用于呼吸道疾病疫苗接种和预防的鼻喷雾剂的研发正在增加。随着鼻腔给药应用数量的不断增长,靶向区域沉积在鼻腔给药研发中所起的作用已成为一个因素。鼻模等体外工具有助于促进制剂和产品开发。鼻腔沉积已被证明与药代动力学结果有关。深入了解复杂的鼻腔解剖结构和个体间差异有助于更好地理解药物的沉积位置。鼻模是人类鼻腔的复制品,已从尸体制作的模型发展为复杂的3D打印复制品。它们可以被分割成感兴趣的区域以量化沉积,并且已经采用了不同的技术来量化沉积。将鼻模程序纳入研发过程有助于区分制剂或物理形态,如鼻用粉剂与液体。鼻模还可以帮助制定患者使用说明,以确保药物沉积在目标部位。然而,无论使用何种技术,这种体外工具都应经过验证,以确保结果反映体内情况。在未来,通过适当的验证,计算机模拟、计算流体动力学(CFD)模拟或其他新进展可能会为当前的建模提供额外的方法,尽管鼻腔解剖结构的复杂性和广泛的变异性仍将是一个挑战。尽管如此,鼻腔解剖模型将成为增进对鼻腔给药理解的有效工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4021/9323574/013a718a5548/pharmaceutics-14-01353-g001.jpg

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