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计算流体动力学沉积建模在呼吸药物输送中的应用。

Use of computational fluid dynamics deposition modeling in respiratory drug delivery.

机构信息

a Department of Mechanical and Nuclear Engineering , Virginia Commonwealth University , Richmond , VA , USA.

b Department of Pharmaceutics , Virginia Commonwealth University , Richmond , VA , USA.

出版信息

Expert Opin Drug Deliv. 2019 Jan;16(1):7-26. doi: 10.1080/17425247.2019.1551875. Epub 2018 Dec 10.


DOI:10.1080/17425247.2019.1551875
PMID:30463458
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6529297/
Abstract

INTRODUCTION: Respiratory drug delivery is a surprisingly complex process with a number of physical and biological challenges. Computational fluid dynamics (CFD) is a scientific simulation technique that is capable of providing spatially and temporally resolved predictions of many aspects related to respiratory drug delivery from initial aerosol formation through respiratory cellular drug absorption. AREAS COVERED: This review article focuses on CFD-based deposition modeling applied to pharmaceutical aerosols. Areas covered include the development of new complete-airway CFD deposition models and the application of these models to develop a next-generation of respiratory drug delivery strategies. EXPERT OPINION: Complete-airway deposition modeling is a valuable research tool that can improve our understanding of pharmaceutical aerosol delivery and is already supporting medical hypotheses, such as the expected under-treatment of the small airways in asthma. These complete-airway models are also being used to advance next-generation aerosol delivery strategies, like controlled condensational growth. We envision future applications of CFD deposition modeling to reduce the need for human subject testing in developing new devices and formulations, to help establish bioequivalence for the accelerated approval of generic inhalers, and to provide valuable new insights related to drug dissolution and clearance leading to microdosimetry maps of drug absorption.

摘要

简介:呼吸药物输送是一个令人惊讶的复杂过程,存在许多物理和生物学方面的挑战。计算流体动力学(CFD)是一种科学模拟技术,能够提供与呼吸药物输送相关的许多方面的空间和时间分辨预测,从初始气溶胶形成到呼吸细胞药物吸收。

涵盖领域:本文重点介绍了应用于药物气溶胶的基于 CFD 的沉积建模。涵盖的领域包括新的全气道 CFD 沉积模型的开发,以及这些模型在开发下一代呼吸药物输送策略中的应用。

专家意见:全气道沉积建模是一种有价值的研究工具,可以提高我们对药物气溶胶输送的理解,并且已经支持了医学假说,例如哮喘中小气道治疗不足的预期。这些全气道模型也被用于推进下一代气溶胶输送策略,如受控冷凝生长。我们设想未来 CFD 沉积建模的应用可以减少在开发新设备和制剂时对人体测试的需求,有助于为通用吸入器的加速批准建立生物等效性,并提供与药物溶解和清除相关的有价值的新见解,从而生成药物吸收的微剂量学图谱。

相似文献

[1]
Use of computational fluid dynamics deposition modeling in respiratory drug delivery.

Expert Opin Drug Deliv. 2018-12-10

[2]
The use of computational fluid dynamics in inhaler design.

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[3]
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[4]
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[6]
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[7]
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[8]
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[10]
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[4]
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[5]
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[6]
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[7]
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[8]
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[9]
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[10]
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本文引用的文献

[1]
Recommendations for Simulating Microparticle Deposition at Conditions Similar to the Upper Airways with Two-Equation Turbulence Models.

J Aerosol Sci. 2018-5

[2]
Tests for Aerosol Deposition. VI: Realistic Testing with Different Mouth-Throat Models and Correlations for a Dry Powder Inhaler, Metered Dose Inhaler, and Soft Mist Inhaler.

J Aerosol Med Pulm Drug Deliv. 2018-6-7

[3]
Numerical simulations of targeted delivery of magnetic drug aerosols in the human upper and central respiratory system: a validation study.

R Soc Open Sci. 2017-12-6

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Assessing Airflow Sensitivity to Healthy and Diseased Lung Conditions in a Computational Fluid Dynamics Model Validated In Vitro.

J Biomech Eng. 2018-5-1

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BMC Med Inform Decis Mak. 2017-12-20

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Eur J Pharm Sci. 2017-10-25

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Patient-specific modelling of regional tobramycin concentration levels in airways of patients with cystic fibrosis: can we dose once daily?

J Antimicrob Chemother. 2017-12-1

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Comput Fluids. 2017-4-22

[9]
One (sub-)acinus for all: Fate of inhaled aerosols in heterogeneous pulmonary acinar structures.

Eur J Pharm Sci. 2017-9-24

[10]
Small Airway Absorption and Microdosimetry of Inhaled Corticosteroid Particles after Deposition.

Pharm Res. 2017-6-22

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