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Effects of Perfluorocarbons on surfactant exocytosis and membrane properties in isolated alveolar type II cells
Authors:Andreas Wemh?ner  Irmgard Hackspiel  Nina Hobi  Andrea Ravasio  Thomas Haller  Mario Rüdiger
Affiliation:1.University Hospital Dresden, Department for Pediatric Intensive Care and Neonatology, Technical University Dresden, Germany;2.Department of Pediatrics, Neonatology; Innsbruck Medical University, Austria;3.Department of Physiology and Medical Physics, Innsbruck Medical University, Austria
Abstract:

Background

Perfluorocarbons (PFC) are used to improve gas exchange in diseased lungs. PFC have been shown to affect various cell types. Thus, effects on alveolar type II (ATII) cells and surfactant metabolism can be expected, data, however, are controversial.

Objective

The study was performed to test two hypotheses: (I) the effects of PFC on surfactant exocytosis depend on their respective vapor pressures; (II) different pathways of surfactant exocytosis are affected differently by PFC.

Methods

Isolated ATII cells were exposed to two PFC with different vapor pressures and spontaneous surfactant exocytosis was measured. Furthermore, surfactant exocytosis was stimulated by either ATP, PMA or Ionomycin. The effects of PFC on cell morphology, cellular viability, endocytosis, membrane permeability and fluidity were determined.

Results

The spontaneous exocytosis was reduced by PFC, however, the ATP and PMA stimulated exocytosis was slightly increased by PFC with high vapor pressure. In contrast, Ionomycin-induced exocytosis was decreased by PFC with low vapor pressure. Cellular uptake of FM 1-43 - a marker of membrane integrity - was increased. However, membrane fluidity, endocytosis and viability were not affected by PFC incubation.

Conclusions

We conclude that PFC effects can be explained by modest, unspecific interactions with the plasma membrane rather than by specific interactions with intracellular targets.
Keywords:
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