Gabapentin alleviated the cough hypersensitivity and neurogenic inflammation in a guinea pig model with repeated intra-esophageal acid perfusion

Eur J Pharmacol. 2023 Nov 15:959:176078. doi: 10.1016/j.ejphar.2023.176078. Epub 2023 Oct 5.

Abstract

Objective: The anti-tussive effect of gabapentin and its underlying neuromodulatory mechanism were investigated via a modified guinea pig model of gastroesophageal reflux-related cough (GERC).

Methods: Intra-esophageal perfusion with hydrochloric acid (HCl) was performed every other day 12 times to establish the GERC model. High-dose gabapentin (48 mg/kg), low-dose gabapentin (8 mg/kg), or saline was orally administered for 2 weeks after modeling. Cough sensitivity, airway inflammation, lung and esophagus histology, levels of substance P (SP), and neurokinin-1 (NK1)-receptors were monitored.

Results: Repeated intra-esophageal acid perfusion aggravated the cough sensitivity in guinea pigs in a time-dependent manner. The number of cough events was significantly increased after 12 times HCl perfusion, and the hypersensitivity period was maintained for 2 weeks. The SP levels in BALF, trachea, lung, distal esophagus, and vagal ganglia were increased in guinea pigs receiving HCl perfusion. The intensity of cough hypersensitivity in the GERC model was significantly correlated with increased SP expression in the airways. Both high and low doses of gabapentin administration could reduce cough hypersensitivity exposed to HCl perfusion, attenuate airway inflammatory damage, and inhibit neurogenic inflammation by reducing SP expression from the airway and vagal ganglia.

Conclusions: Gabapentin can desensitize the cough sensitivity in the GERC model of guinea pig. The anti-tussive effect is associated with the alleviated peripheral neurogenic inflammation as reflected in the decreased level of SP.

Keywords: Airway inflammation; Chronic cough; Gabapentin; Gastroesophageal reflux; Substance P.

MeSH terms

  • Animals
  • Cough* / drug therapy
  • Cough* / metabolism
  • Gabapentin / pharmacology
  • Gastroesophageal Reflux* / metabolism
  • Guinea Pigs
  • Hydrochloric Acid / metabolism
  • Lung / metabolism
  • Neurogenic Inflammation / complications
  • Neurogenic Inflammation / metabolism
  • Perfusion
  • Receptors, Neurokinin-1 / metabolism
  • Substance P / metabolism

Substances

  • Gabapentin
  • Hydrochloric Acid
  • Substance P
  • Receptors, Neurokinin-1