Life (Sep 2024)

Impact of Nebulized BromAc<sup>®</sup> on Mucus Plug Clearance in a Mechanically Ventilated Ex Vivo Ovine Lung Model of Obstructive Respiratory Conditions

  • Nicole Valle,
  • Mathew Suji Eapen,
  • Krishna Pillai,
  • Richard Morris,
  • Javed Akhter,
  • Ahmed H. Mekkawy,
  • David L. Morris,
  • Sarah J. Valle

DOI
https://doi.org/10.3390/life14091111
Journal volume & issue
Vol. 14, no. 9
p. 1111

Abstract

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Mucus plugging of the respiratory tract occurs in airway diseases, including asthma, chronic obstructive pulmonary disease, and cystic fibrosis. It can cause blockage of the airways, leading to breathlessness and lung failure. Here, we used a ventilatory setup to demonstrate the effect of BromAc® in dissolving mucus plugs in a novel ex vivo ovine obstructive lung model. Mucus simulant was filled into the trachea of freshly slaughtered ovine lungs and ventilated via an endotracheal tube (ETT) using Continuous Mandatory Ventilation. Predetermined single or repeated doses of Bromelain, Acetylcysteine (Ac), BromAc®, and saline control were administered via an Aerogen® vibrating nebulizer and ventilated for 30 or 60 min. Ventilatory recording of resistance, compliance, and tidal volume was conducted, and rheology pre- and post-treatment were measured. A significant decline in airway resistance (p ®, with the latter showing a stronger mucolytic effect than single agents. The decline in resistance was also effective in shorter time points (p ®TM significantly reduced the viscosity of the mucin at the end of 30 min and 60 min time points (p ® showed complete dissolution of the respiratory mucus simulant and improved ventilatory airflow parameters in the ex vivo ovine model.

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