Upper-airway inflammation triggered by vibration in a rat model of snoring

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Abstract

Study Objectives: To determine whether the vibratory mechanical stimulus due to snoring induces upper-airway inflammation in an in-vivo rat model. Design: Prospective controlled animal study. Setting: University laboratory. Patients or Participants: Sixteen male Sprague-Dawley rats (250-300 g). Interventions: The upper trachea of 8 rats was cannulated, and the upper airway was subjected to vibration (60 Hz; ± 10 cm H2O) with a periodic pattern consisting of 1 second of vibration followed by 3 seconds of no vibration. This snoring-like vibration was applied for 3 hours. The animals breathed spontaneously through a cannula in the lower trachea. In a control group (8 rats), the animals were similarly instrumented, but no upper-airway vibration was applied. Measurements and Results: The effect of vibration was assessed by measuring the vibration-induced increase in gene expression of the proinflammatory cytokine tumor necrosis factor-α and of the neutrophil attractant chemokine macrophage inflammatory protein-2 in the soft-palate tissue. Real-time reverse-transcription polymerase chain reaction measurement of mRNA showed that vibration induced a significant overexpression of both tumor necrosis factor-α and macrophage inflammatory protein-2: 6.01-fold ± 2.47-fold (p = .005) and 2.38-fold ± 0.54 -fold (p = .021) increase when compared with control (mean ± SEM). Conclusions: The mechanical stimulus of vibration per se triggers an early proinflammatory process in the upper airway.

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Almendros, I., Acerbi, I., Puig, F., Montserrat, J. M., Navajas, D., & Farré, R. (2007). Upper-airway inflammation triggered by vibration in a rat model of snoring. Sleep, 30(2), 225–227. https://doi.org/10.1093/sleep/30.2.225

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