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PMID: 32330563 Published · ppublish English Comparative Study Journal Article

Comparison of experimentally measured and computational fluid dynamic predicted deposition and deposition uniformity of monodisperse solid particles in the Vitrocell® AMES 48 air-liquid-interface in-vitro exposure system.

Oldham MJ, Castro N, Zhang J, Lucci F, Kosachevsky P, Rostami AA, Gilman IG, Pithawalla YB, Kuczaj AK, Hoeng J, Lee KM

Abstract

Accurately determining the delivered dose is critical to understanding biological response due to cell exposure to chemical constituents in aerosols. Deposition efficiency and uniformity of deposition was measured experimentally using monodisperse solid fluorescent particles with mass median aerodynamic diameters (MMAD) of 0.51, 1.1, 2.2 and 3.3 μm in the Vitrocell® AMES 48 air-liquid-interface (ALI) in vitro exposure system. Experimental results were compared with computational fluid dynamic, (CFD; using both Lagrangian and Eulerian approaches) predicted deposition efficiency and uniformity for a single row (N = 6) of petri dishes in the Vitrocell® AMES 48 system. The average experimentally measured deposition efficiency ranged from 0.007% to 0.43% for 0.51-3.3 μm MMAD particles, respectively. There was good agreement between average experimentally measured and the CFD predicted particle deposition efficiency, regardless of approach. Experimentally measured and CFD predicted average uniformity of deposition was greater than 45% of the mean for all particle diameters. During this work a new design was introduced by the manufacturer and evaluated using Lagragian CFD. Lagragian CFD predictions showed better uniformity of deposition, but reduced deposition efficiency with the new design. Deposition efficiency and variability in particle deposition across petri dishes for solid particles should be considered when designing exposure regimens using the Vitrocell® AMES 48 ALI in vitro exposure system.

MeSH 主题词
Aerosols Air Cell Culture Techniques/instrumentation Hydrodynamics Particulate Matter
化学物质
Aerosols Particulate Matter
作者与单位
共 11 位作者,点击展开单位 / ORCID
Oldham Michael J
Oldham Associates LLC, United States of America.
Castro Nicolas
Altria Client Services, Richmond, VA 23219, United States of America. Electronic address: [email protected].
Zhang Jingjie
Altria Client Services, Richmond, VA 23219, United States of America.
Lucci Francesco
Philip Morris International Research & Development, Philip Morris Products S.A.(part of Philip Morris International group of companies), Quai Jeanrenaud 5, CH-2000, Neuchatel, Switzerland.
Kosachevsky Pasha
Enthalpy Analytical, Richmond, VA 23228, United States of America.
Rostami Ali A
Altria Client Services, Richmond, VA 23219, United States of America.
Gilman I Gene
Enthalpy Analytical, Durham, NC 27713, United States of America.
Pithawalla Yezdi B
Altria Client Services, Richmond, VA 23219, United States of America.
Kuczaj Arkadiusz K
Philip Morris International Research & Development, Philip Morris Products S.A.(part of Philip Morris International group of companies), Quai Jeanrenaud 5, CH-2000, Neuchatel, Switzerland; Multiscale Modeling & Simulation, Dept. of Applied Mathematics, University of Twente, P.O. Box 217, 7500, AE, Enschede, the Netherlands.
Hoeng Julia
Philip Morris International Research & Development, Philip Morris Products S.A.(part of Philip Morris International group of companies), Quai Jeanrenaud 5, CH-2000, Neuchatel, Switzerland.
Lee K Monica
Altria Client Services, Richmond, VA 23219, United States of America.
Article Info
Journal
Toxicology in vitro : an international journal published in association with BIBRA
Abbr.
Toxicol In Vitro
ISSN
1879-3177
Corresponding email
Published
2020-09-00
电子出版
2020-00-21
页码
104870
Language
English
Country/Region
England
NLM ID
8712158
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