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PMID: 35094370 Published · ppublish English Journal Article Systematic Review

Assessment of the predictive capability of modelling and simulation to determine bioequivalence of inhaled drugs: A systematic review.

Rebello J, Brashier B, Shukla S

Abstract

There are a multitude of different modelling techniques that have been used for inhaled drugs. The main objective of this review was to conduct an exhaustive survey of published mathematical models in the area of asthma and chronic obstructive pulmonary disease (COPD) for inhalation drugs. Additionally, this review will attempt to assess the applicability of these models to assess bioequivalence (BE) of orally inhaled products (OIPs). PubMed, Science Direct, Web of Science, and Scopus databases were searched from 1996 to 2020, to find studies that described mathematical models used for inhaled drugs in asthma/COPD. 50 articles were finally included in this systematic review. This research identified 22 articles on in silico aerosol deposition models, 20 articles related to population pharmacokinetics and 8 articles on physiologically based pharmacokinetic modelling (PBPK) modelling for inhaled drugs in asthma/COPD. Among all the aerosol deposition models, computational fluid dynamics (CFD) simulations are more likely to predict regional aerosol deposition pattern in human respiratory tracts. Across the population PK articles, body weight, gender, age and smoking status were the most common covariates that were found to be significant. Further, limited published PBPK models reported approximately 29 parameters relevant for absorption and distribution of inhaled drugs. The strengths and weaknesses of each modelling technique has also been reviewed. Overall, while there are different modelling techniques that have been used for inhaled drugs in asthma and COPD, there is very limited application of these models for assessment of bioequivalence of OIPs. This review also provides a ready reference of various parameters that have been considered in various models which will aid in evaluation if one model or hybrid in silico models need to be considered when assessing bioequivalence of OIPs.

Keywords
Asthma and COPD Computational fluid dynamics Inhalation PBPK Population pharmacokinetics
MeSH 主题词
Administration, Inhalation Aerosols Asthma/drug therapy Computer Simulation Humans Models, Biological Pulmonary Disease, Chronic Obstructive/drug therapy Therapeutic Equivalency
化学物质
Aerosols
作者与单位
共 3 位作者,点击展开单位 / ORCID
Rebello Juliet ORCID
Clinical Research Division, Cipla Ltd, Mumbai, Maharashtra, India. [email protected].
Brashier Bill
Clinical Research Division, Cipla Ltd, Mumbai, Maharashtra, India.
Shukla Sharvari ORCID
Symbiosis Statistical Institute (SSI), Symbiosis International University, Pune, Maharashtra, India.
Article Info
Journal
Daru : journal of Faculty of Pharmacy, Tehran University of Medical Sciences
Abbr.
Daru
ISSN
2008-2231
Corresponding email
Published
2022-06-00
电子出版
2022-00-30
页码
229-243
Language
English
Country/Region
Switzerland
NLM ID
101125969
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