A microfluidic platform for evaluating neutrophil chemotaxis induced by sputum from COPD patients

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Abstract

Chronic Obstructive Pulmonary Disease (COPD) is a common lung disease characterized by breathing difficulty as a consequence of narrowed airways. Previous studies have shown that COPD is correlated with neutrophil infiltration into the airways through chemotactic migration. However, whether neutrophil chemotaxis can be used to characterize and diagnose COPD is not well established. In the present study, we developed a microfluidic platform for evaluating neutrophil chemotaxis to sputum samples from COPD patients. Our results show increased neutrophil chemotaxis to COPD sputum compared to control sputum from healthy individuals. The level of COPD sputum induced neutrophil chemotaxis was correlated with the patient's spirometry data. The cell morphology of neutrophils in a COPD sputum gradient is similar to the morphology displayed by neutrophils exposed to an IL-8 gradient, but not a fMLP gradient. In competing gradients of COPD sputum and fMLP, neutrophils chemotaxis and cell morphology are dominated by fMLP.

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Wu, J., Hillier, C., Komenda, P., Lobato De Faria, R., Levin, D., Zhang, M., & Lin, F. (2015). A microfluidic platform for evaluating neutrophil chemotaxis induced by sputum from COPD patients. PLoS ONE, 10(5). https://doi.org/10.1371/journal.pone.0126523

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