Literature DB >> 11791685

Regional deposition of coarse particles and ventilation distribution in healthy subjects and patients with cystic fibrosis.

J S Brown1, K L Zeman, W D Bennett.   

Abstract

The efficacy of inhaled pharmaceuticals depends, in part, on their site of respiratory deposition. Markedly nonuniform ventilation distribution may occur in persons with obstructive airways diseases and may affect particle deposition. We studied the relationship between regional deposition (RDep) and regional ventilation (RVent) in a group of 12 cystic fibrosis (CF) patients with mild to moderate airway obstruction (63 +/- 8% predicted FEV1) and 11 healthy nonsmoking volunteers (104 +/- 13% predicted FEV1) using planar scintigraphic methods. RDep was assessed from initial deposition and 24-h retention images for monodisperse technetium-99m-labeled iron oxide particles (5-microm MMAD). Regional volumes and RVent were assessed from xenon-133 equilibrium and washout, respectively. Six regions of interest per lung were established by dividing each lung into thirds by height and approximately half by width. The two lower regions of the left lung were not analyzed due to activity in the stomach. Remaining regions were categorized as central (two interior-most regions) and peripheral (eight exterior regions). RDep and RVent were computed for the eight peripheral regions. Tracheobronchial (TB) deposition was estimated for each of the peripheral regions as the difference between initial activity and decay-corrected 24-h retention or parenchymal deposition. RDep was computed as the fraction of material within a region normalized to regional volume. RVent for each region was determined by normalizing the xenon washout rate for that region by the total washout rate for the eight peripheral regions. Significant linear associations were found between RDep and RVent in both the healthy subjects and CF patients. In healthy subjects, RDep in the TB airways was positively associated with RVent (p = 0.03). In CF patients, RDep in the TB airways was negatively associated with RVent (p = 0.04) and RDep in the parenchyma was positively associated with RVent (p < 0.001). The initial pattern of RDep in the lung was not significantly associated with RVent in either group. These data suggest that significant coarse particle deposition may occur in the TB airways of poorly ventilated lung regions in CF patients, whereas, particle deposition in the TB airways of the healthy subjects follows ventilation.

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Year:  2001        PMID: 11791685     DOI: 10.1089/08942680152744659

Source DB:  PubMed          Journal:  J Aerosol Med        ISSN: 0894-2684


  14 in total

1.  Surfactant Driven Post-Deposition Spreading of Aerosols on Complex Aqueous Subphases. 1: High Deposition Flux Representative of Aerosol Delivery to Large Airways.

Authors:  Amsul Khanal; Ramankur Sharma; Timothy E Corcoran; Stephen Garoff; Todd M Przybycien; Robert D Tilton
Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2015-02-27       Impact factor: 2.849

2.  What Causes Uneven Aerosol Deposition in the Bronchoconstricted Lung? A Quantitative Imaging Study.

Authors:  Elliot Eliyahu Greenblatt; Tilo Winkler; Robert Scott Harris; Vanessa Jane Kelly; Mamary Kone; Ira Katz; Andrew R Martin; George Caillibotte; Jose Venegas
Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2015-05-15       Impact factor: 2.849

3.  Heterogeneity of Particle Deposition by Pixel Analysis of 2D Gamma Scintigraphy Images.

Authors:  William D Bennett; Miao Xie; Kirby Zeman; Harry Hurd; Scott Donaldson
Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2014-11-13       Impact factor: 2.849

4.  SPECT-CT Comparison of Lung Deposition using a System combining a Vibrating-mesh Nebulizer with a Valved Holding Chamber and a Conventional Jet Nebulizer: a Randomized Cross-over Study.

Authors:  Jonathan Dugernier; Michel Hesse; Rita Vanbever; Virginie Depoortere; Jean Roeseler; Jean-Bernard Michotte; Pierre-François Laterre; François Jamar; Gregory Reychler
Journal:  Pharm Res       Date:  2016-11-07       Impact factor: 4.200

5.  Regional Ventilation Is the Main Determinant of Alveolar Deposition of Coarse Particles in the Supine Healthy Human Lung During Tidal Breathing.

Authors:  Rui Carlos Sá; Kirby L Zeman; William D Bennett; G Kim Prisk; Chantal Darquenne
Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2017-03-09       Impact factor: 2.849

6.  Surfactant Driven Post-Deposition Spreading of Aerosols on Complex Aqueous Subphases. 2: Low Deposition Flux Representative of Aerosol Delivery to Small Airways.

Authors:  Ramankur Sharma; Amsul Khanal; Timothy E Corcoran; Stephen Garoff; Todd M Przybycien; Robert D Tilton
Journal:  J Aerosol Med Pulm Drug Deliv       Date:  2015-03-10       Impact factor: 2.849

7.  Early airway structural changes in cystic fibrosis pigs as a determinant of particle distribution and deposition.

Authors:  Maged Awadalla; Shinjiro Miyawaki; Mahmoud H Abou Alaiwa; Ryan J Adam; Drake C Bouzek; Andrew S Michalski; Matthew K Fuld; Karen J Reynolds; Eric A Hoffman; Ching-Long Lin; David A Stoltz
Journal:  Ann Biomed Eng       Date:  2013-12-06       Impact factor: 3.934

8.  Surfactant-induced Marangoni transport of lipids and therapeutics within the lung.

Authors:  Amy Z Stetten; Steven V Iasella; Timothy E Corcoran; Stephen Garoff; Todd M Przybycien; Robert D Tilton
Journal:  Curr Opin Colloid Interface Sci       Date:  2018-01-13       Impact factor: 6.448

9.  Quasi-immiscible spreading of aqueous surfactant solutions on entangled aqueous polymer solution subphases.

Authors:  Ramankur Sharma; Timothy E Corcoran; Stephen Garoff; Todd M Przybycien; Ellen R Swanson; Robert D Tilton
Journal:  ACS Appl Mater Interfaces       Date:  2013-06-10       Impact factor: 9.229

Review 10.  Physiotherapy in infants and young children with cystic fibrosis: current practice and future developments.

Authors:  Louise Lannefors; Brenda M Button; Maggie McIlwaine
Journal:  J R Soc Med       Date:  2004       Impact factor: 5.344

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