Literature DB >> 16272458

In vivo particle uptake by airway macrophages in healthy volunteers.

Neil E Alexis1, John C Lay, Kirby L Zeman, Marianne Geiser, Nadine Kapp, William D Bennett.   

Abstract

We combined two techniques, radiolabeled aerosol inhalation delivery and induced sputum, to examine in vivo the time course of particle uptake by airway macrophages in 10 healthy volunteers. On three separate visits, induced sputum was obtained 40, 100, and 160 min after inhalation of radiolabeled sulfur colloid (SC) aerosol (Tc99 m-SC, 0.2 microm colloid size delivered in 6-microm droplets). On a fourth visit (control) with no SC inhalation, induced sputum was obtained and SC particles were incubated (37 degrees C) in vitro with sputum cells for 40, 100, and 160 min (matching the times associated with in vivo sampling). Total and differential cell counts were recorded for each sputum sample. Compared with 40 min (6 +/- 3%), uptake in vivo was significantly elevated at 100 (31 +/- 5%) and 160 min (27 +/- 4%); both were strongly associated with the number of airway macrophages (R = 0.8 and 0.7, respectively); and the number and proportion of macrophages at 40 min were significantly (P < 0.05) elevated compared with control (1,248 +/- 256 versus 555 +/- 114 cells/mg; 76 +/- 6% versus 60 +/- 5%). Uptake in vitro increased in a linear fashion over time and was maximal at 160 min (40 min, 12 +/- 2%; 100 min, 16 +/- 4%; 160 min, 24 +/- 6%). These data suggest that airway surface macrophages in healthy subjects rapidly engulf insoluble particles. Further, macrophage recruitment and phagocytosis-modifying agents are factors in vivo that likely affect particle uptake and its time course.

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Year:  2005        PMID: 16272458      PMCID: PMC2644195          DOI: 10.1165/rcmb.2005-0373OC

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


  26 in total

1.  Assessment of particle retention and clearance in the intrapulmonary conducting airways of hamster lungs with the fractionator.

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Authors:  S Schürch; P Gehr; V Im Hof; M Geiser; F Green
Journal:  Respir Physiol       Date:  1990-04

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Authors:  M Geiser; A L Serra; L M Cruz-Orive; M Baumann; V Im Hof; P Gehr
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4.  Pathways of clearance in mouse lungs exposed to iron oxide aerosols.

Authors:  S P Sorokin; J D Brain
Journal:  Anat Rec       Date:  1975-03

5.  Influence of surface chemistry and topography of particles on their immersion into the lung's surface-lining layer.

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Journal:  J Appl Physiol (1985)       Date:  2003-01-24

6.  Characteristics of alveolar macrophages following the deposition of a low burden or iron oxide in the lung.

Authors:  B E Lehnert; P E Morrow
Journal:  J Toxicol Environ Health       Date:  1985

7.  Role of alveolar macrophage chemotaxis and phagocytosis in pulmonary clearance responses to inhaled particles: comparisons among rodent species.

Authors:  D B Warheit; M A Hartsky
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8.  Pulmonary macrophages are attracted to inhaled particles through complement activation.

Authors:  D B Warheit; L H Overby; G George; A R Brody
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9.  The effect of particle inhalation on macrophage number and phagocytic activity in the intrapulmonary conducting airways of hamsters.

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