Pulmonary intravascular macrophages in domestic animal species: Review of structural and functional properties
- 1 March 1988
- journal article
- review article
- Published by Wiley in Journal of Anatomy
- Vol. 181 (3) , 217-234
- https://doi.org/10.1002/aja.1001810302
Abstract
In dogs, laboratory animals, and man, the clearance of bacteria and participates from blood occurs predominantly in hepatic Kupffer cells and splenic macrophages. In contrast, removal of blood‐borne particulates in calves, sheep, goats, cats, and pigs occurs predominantly in pulmonary intravascular macrophages (PIMs). Review of recent studies indicates that PIMs are a resident cell population, junctionally adherent to the capillary endothelium of lungs and morphologically similar to hepatic Kupffer cells. PIMs are a pulmonary constituent of the mononuclear phagocyte system with respect to secretory, endocytic, and functional properties. Differentiated PIMs are rare in newborn pigs, and the majority of cells closely apposed to capillary endothelium consists of monocytes, which are occasionally in mitosis. In 7‐day‐old and older pigs, most cells apposed to capillary endothelium have characteristics of differentiated PIMs. This suggests a monocytic origin of PIMs in pigs. Perinatal colonization of lung capillaries by monocytes and their subsequent differentation into PIMs represent a component of postnatal lung development. Estimates of relative PIM numbers in ovine and porcine lung parenchyma suggest cell densities similar to that of rat hepatic Kupffer cells. Apart from phagocytic properties, PIMs participate in the removal and disintegration of aged and impaired blood cells. After phagocytic stimulation, isolated PIMs secrete oxygen radicals, which are essential for microbicidal function. Similarly, by secreting bioactive lipids, stimulated PIMs may contribute to regulation of pulmonary hemodynamics. After receiving minute amounts of bacterial endotoxin, pulmonary injury is pronounced in sheep, calves, pigs, and cats, but not in laboratory animals and dogs. This presumably is related to the secretion of bioactive lipids by PIMs.This publication has 141 references indexed in Scilit:
- The normal human lung: ultrastructure and morphometric estimation of diffusion capacityPublished by Elsevier ,2003
- Design of the mammalian respiratory system. V. Scaling morphometric pulmonary diffusing capacity to body mass: Wild and domestic mammalsPublished by Elsevier ,2003
- Morphology and Respiratory Function of the Alveolar UnitInternational Archives of Allergy and Immunology, 1985
- Effect of concanavalin A on lymph node macrophages: stimulation of endocytic cisternaeJournal of Ultrastructure Research, 1984
- Morphometric estimation of pulmonary diffusion capacity in two horse lungsRespiration Physiology, 1980
- EMBRYONIC AND FETAL HEMOGLOBIN IN ANIMALS *Annals of the New York Academy of Sciences, 1974
- Observations on the fine structure and peroxidase cytochemistry of normal rat liver Kupffer cellsJournal of Ultrastructure Research, 1974
- Morphometric estimation of pulmonary diffusion capacity: I. Model and methodRespiration Physiology, 1971
- The stereological analysis of the fine structure of the “micropinocytosis vermiformis” in Kupffer cells of the ratJournal of Ultrastructure Research, 1968
- Intravitam and supravital staining III. The nature of the normal lining of the pulmonary alveoli and the origin of the alveolar phagocytes in the light of vital and supravital stainingThe Journal of Pathology and Bacteriology, 1929