Literature DB >> 16551221

Hyperosmolar agents and clearance of mucus in the diseased airway.

Evangelia Daviskas1, Sandra D Anderson.   

Abstract

Clearance of mucus is an important function of the airways to maintain hygiene. In disease, persistent inflammation leads to excessive production of mucus, with high viscoelasticity and adhesivity, which is not easily transported by cilia or cough interactions. Accumulated mucus in the airways can lead to airway obstruction, bacterial colonisation, and recurrent infections, resulting in poor quality of life and increased morbidity and mortality. Hyperosmolar agents have the potential to alter the physical properties of mucus and facilitate its clearance by increasing the water in the airway lumen and by reducing the entanglements of the mucin network. Clinical studies using radioaerosols, and imaging with a gamma camera, have demonstrated that hypertonic saline (HS; 3-14.4%) and mannitol (300-400 mg) increase clearance of mucus acutely in patients with mild asthma, bronchiectasis, and cystic fibrosis (CF). Further, in sputum studies, a reduction in the viscoelastic properties, surface tension and spinnability and an increase in the hydration of mucus have been measured in response to HS, mannitol, and other sugars. Inhalation of mannitol (400 mg) twice daily over 2 weeks improved the quality of life significantly in patients with bronchiectasis. Inhalation of 7% HS, four times daily, over 2 weeks improved significantly the baseline mucus clearance rate and lung function in CF patients. In addition, inhalation of 7% HS twice daily over 12 months showed similar results to the short-term studies without a change in the bacterial load in CF patients. Further studies of the long-term clinical effect of hyperosmolar agents are needed.

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Year:  2006        PMID: 16551221     DOI: 10.1089/jam.2006.19.100

Source DB:  PubMed          Journal:  J Aerosol Med        ISSN: 0894-2684


  16 in total

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4.  In vivo X-ray imaging reveals improved airway surface hydration after a therapy designed for cystic fibrosis.

Authors:  Kaye S Morgan; Martin Donnelley; Nigel Farrow; Andreas Fouras; Naoto Yagi; Yoshio Suzuki; Akihisa Takeuchi; Kentaro Uesugi; Richard C Boucher; Karen K W Siu; David W Parsons
Journal:  Am J Respir Crit Care Med       Date:  2014-08-15       Impact factor: 21.405

5.  Design, characterization, and aerosol dispersion performance modeling of advanced spray-dried microparticulate/nanoparticulate mannitol powders for targeted pulmonary delivery as dry powder inhalers.

Authors:  Xiaojian Li; Frederick G Vogt; Don Hayes; Heidi M Mansour
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Journal:  Front Med (Lausanne)       Date:  2022-06-21

7.  Hypertonic stress promotes autophagy and microtubule-dependent autophagosomal clusters.

Authors:  Paula Nunes; Thomas Ernandez; Isabelle Roth; Xiaomu Qiao; Déborah Strebel; Richard Bouley; Anne Charollais; Pierluigi Ramadori; Michelangelo Foti; Paolo Meda; Eric Féraille; Dennis Brown; Udo Hasler
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8.  Improved survival following lung transplantation with long-term use of bilevel positive pressure ventilation in cystic fibrosis.

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Review 9.  Hydrator Therapies for Chronic Bronchitis. Lessons from Cystic Fibrosis.

Authors:  William D Bennett; Ashley G Henderson; Scott H Donaldson
Journal:  Ann Am Thorac Soc       Date:  2016-04

10.  Rheological effects of hypertonic saline and sodium bicarbonate solutions on cystic fibrosis sputum in vitro.

Authors:  Mária Budai-Szűcs; Szilvia Berkó; Anita Kovács; Pongsiri Jaikumpun; Rita Ambrus; Adrien Halász; Piroska Szabó-Révész; Erzsébet Csányi; Ákos Zsembery
Journal:  BMC Pulm Med       Date:  2021-07-12       Impact factor: 3.317

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