Particulate matter and the airway epithelium: the special case of the underground?

Dawn M. Cooper, Matthew Loxham

Source: Eur Respir Rev, 28 (153) 190066; 10.1183/16000617.0066-2019
Journal Issue: September
Disease area: Airway diseases

Congress or journal article abstractFull text journal articlePDF journal article, handout or slides

Rating: 0
You must login to grade this presentation.

Share or cite this content

Citations should be made in the following way:
Dawn M. Cooper, Matthew Loxham. Particulate matter and the airway epithelium: the special case of the underground?. Eur Respir Rev, 28 (153) 190066; 10.1183/16000617.0066-2019

You must login to share this Presentation/Article on Twitter, Facebook, LinkedIn or by email.

Member's Comments

No comment yet.
You must Login to comment this presentation.


Related content which might interest you:
Airway macrophage carbon: biomarker of exposure to particulate matter air pollution
Source: Eur Respir Rev 2008; 17: 20-21
Year: 2008


Shipping-related particulate matter air pollution – source-specific effects on bronchial epithelial cells
Source: International Congress 2019 – Air pollution and respiratory health
Year: 2019


Monitoring asthma: no matter how?
Source: Eur Respir J 2016; 48: 614-616
Year: 2016


Particulate matter exposure and differences in pulmonary vascular structure: The MESA lung and air pollution studies
Source: International Congress 2014 – Highlights in respiratory epidemiology
Year: 2014

Bioreactivity and fate of nanoparticles deposited at the pulmonary epithelial interface: focus on traffic-derived particulate matter
Source: International Congress 2016 – Traffic air pollution in urban areas
Year: 2016


Targeting the lung epithelium: does age matter?
Source: Virtual Congress 2020 – The ageing lung epithelium: effects on repair and regeneration
Year: 2020


Airway inflammatory responses to local instillation of fine and coarse ambient particulate matter
Source: Eur Respir J 2004; 24: Suppl. 48, 604s
Year: 2004

Diesel exhaust exposure enhances the ozone-induced airway inflammation in healthy humans
Source: Eur Respir J 2008; 31: 1234-1240
Year: 2008



Environmental particulate matter in induced sputum in airway versus interstitial lung diseases
Source: Eur Respir J 2007; 30: Suppl. 51, 731s
Year: 2007

The association of particulate matter air pollution with exercise-induced bronchospasm
Source: International Congress 2015 – Highlights in paediatric epidemiology: air pollution, asthma and primary ciliary dyskinesia
Year: 2015

Particulate matter and lung function decline
Source: Annual Congress 2008 - Air pollution year in review
Year: 2008


Occupation asthma in wood workers: site and nature of airway obstruction caused by air pollutants
Source: Eur Respir J 2005; 26: Suppl. 49, 681s
Year: 2005

Airway and systemic eosinophilia in asthma: does site matter?
Source: Eur Respir J 2014; 44: 14-16
Year: 2014


Activation of toxicology-related genes in human airway constructs after exposure to indoor air particulate matter from moisture-damaged houses
Source: Virtual Congress 2020 – Genetic and environmental influences on development of asthma and COPD
Year: 2020




Effects of inhalation of particulate matter and sulphur dioxide on markers of upper and lower airway inflammation
Source: Eur Respir J 2006; 28: Suppl. 50, 617s
Year: 2006

Ambient air pollution and the lungs: what do clinicians need to know?
Source: Breathe 2010; 6: 234-244
Year: 2010


Does modelled exposure of children to particulate matter air pollution for the school address reflect personal exposure to black carbon?
Source: International Congress 2016 – Asthma, bronchiectasis, and the risk factors for respiratory morbidity
Year: 2016


Outdoor but not indoor particulate matter is associated with asthma symptoms
Source: Annual Congress 2010 - Outdoor air pollution
Year: 2010

Toxicological assessment of indoor airborne fine particulate matter induced oxidative stress in alveolar epithelial cells
Source: Annual Congress 2011 - Lung cell injury and repair
Year: 2011


Influence of fine particulate matter from household emissions on selected respiratory and cardiovascular diseases – Initial results
Source: International Congress 2016 – Human responses to exposure, including physiological and biomarker outcomes
Year: 2016