Fluorescent human lung macrophages analyzed by spectral confocal laser scanning microscopy and multispectral

John L Pauly1, Erin M Allison, Edward L Hurley

  • 1Department of Immunology, Roswell Park Cancer Institute, Buffalo, New York 14263, USA. john.pauly@roswellpark.org

Insights

Highly fluorescent "smoker cells" (macrophages) in the lungs are caused by tobacco tar, not changes in natural compounds. This finding clarifies the origin of fluorescence in lung macrophages from smokers.

Area of Science:

  • Pulmonary Medicine
  • Cell Biology
  • Toxicology

Background:

  • Macrophages in smokers' lungs exhibit high fluorescence, termed "smoker cells."
  • The origin of this fluorescence is debated: smoke-induced autofluorescence changes versus tobacco tar particle uptake.

Purpose of the Study:

  • To investigate the origin of macrophage fluorescence in human lung tissue.
  • To differentiate between endogenous compound changes and exogenous tar as the cause of fluorescence.

Main Methods:

  • Utilized spectral confocal laser scanning microscopy (sCLSM) and multispectral cytometry (MSC).
  • Analyzed spectral emissions from live and air-dried macrophages from human lung tissue.
  • Conducted ex vivo experiments exposing non-smoker macrophages to tobacco smoke tar.

Main Results:

  • Spectral profiling confirmed the source of macrophage fluorescence.
  • Ex vivo experiments showed non-fluorescent macrophages become fluorescent after exposure to tobacco tar.
  • Established a clear link between tobacco tar and macrophage fluorescence.

Conclusions:

  • The intense fluorescence of human lung macrophages is definitively caused by the uptake of tobacco tar.
  • This research clarifies a long-standing question regarding the composition of "smoker cells."
  • Provides a basis for understanding lung pathology related to smoking.

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