Physiological neutrophil sequestration in the lung: visual evidence for localization in capillaries

DC Lien, WW Wagner Jr, RL Capen… - Journal of Applied …, 1987 - journals.physiology.org
DC Lien, WW Wagner Jr, RL Capen, C Haslett, WL Hanson, SE Hofmeister, PM Henson
Journal of Applied Physiology, 1987journals.physiology.org
Although the lung is known to be a major site of neutrophil margination, the anatomic
location of these sequestered cells within the lung is controversial. To determine the site of
margination and the kinetics of neutrophil transit through the pulmonary microvasculature,
we infused fluorescein isothiocyanate-labeled canine neutrophils into the pulmonary
arteries of 10 anesthetized normal dogs and made fluorescence videomicroscopic
observations of the subpleural pulmonary microcirculation through a window inserted into …
Although the lung is known to be a major site of neutrophil margination, the anatomic location of these sequestered cells within the lung is controversial. To determine the site of margination and the kinetics of neutrophil transit through the pulmonary microvasculature, we infused fluorescein isothiocyanate-labeled canine neutrophils into the pulmonary arteries of 10 anesthetized normal dogs and made fluorescence videomicroscopic observations of the subpleural pulmonary microcirculation through a window inserted into the chest wall. The site of fluorescent neutrophil sequestration was exclusively in the pulmonary capillaries with a total of 951 labeled cells impeded in the capillary bed for a minimum of 2 s. No cells were delayed in the arterioles or venules. Transit times of individual neutrophils varied over a wide range from less than 2 s to greater than 20 min with an exponential distribution skewed toward rapid transit times. These observations indicate that neutrophil margination occurs in the pulmonary capillaries with neutrophils impeded for variable periods of time on each pass through the lung. The resulting wide distribution of transit times may determine the dynamic equilibrium between circulating and marginated neutrophils.
American Physiological Society