The effect of sulfur dioxide gas on bronchial hyperreactivity and pulmonary functions of apricot sulfurization workers

H. Ermis, M. Gokirmak, Z. Yildirim, S. Yologlu (Malatya, Turkey)

Source: Annual Congress 2005 - Occupational airway disease: allergy and irritation
Session: Occupational airway disease: allergy and irritation
Session type: Thematic Poster Session
Number: 3848
Disease area: Airway diseases

Congress or journal article abstract

Rating: 0
You must login to grade this presentation.

Share or cite this content

Citations should be made in the following way:
H. Ermis, M. Gokirmak, Z. Yildirim, S. Yologlu (Malatya, Turkey). The effect of sulfur dioxide gas on bronchial hyperreactivity and pulmonary functions of apricot sulfurization workers. Eur Respir J 2005; 26: Suppl. 49, 3848

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:
Exhaled air volatile organic compounds and eosinophilic airway inflammation in asthma
Source: Annual Congress 2012 - Clinical diagnosis and treatment of adult asthma
Year: 2012

Incidence of asthma among workers exposed to sulphur dioxide and other irritant gases
Source: Eur Respir J 2006; 27: 720-725
Year: 2006



Air pollution and asthma: experimental studies
Source: ISSN=1025-448x, ISBN=1-904097-24-3, page=52
Year: 2002

Exhaled carbon monoxide is not elevated in patients with asthma or cystic fibrosis
Source: Eur Respir J 2002; 20: 92-99
Year: 2002



Gas and dust exposure in underground construction is associated with signs of airway inflammation
Source: Eur Respir J 2001; 17: 416-421
Year: 2001



Carbon monoxide levels in exhaled air do not correlate with airway responsiveness after antigenic bronchoprovocation of asthmatics
Source: Eur Respir J 2003; 22: Suppl. 45, 413s
Year: 2003

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

Methacholine-induced bronchoconstriction does not modify exhaled carbon monoxide level in asthmatic subjects
Source: Eur Respir J 2001; 18: Suppl. 33, 165s
Year: 2001

Pulmonary gas exchange responses to histamine and methacholine challenges in mild asthma
Source: Eur Respir J 2001; 17: 609-614
Year: 2001



Does human exposure to carbon particles and sulphur dioxide produce adverse changes in markers of inflammation in exhaled breath condensate, nasal lavage or serum?
Source: Eur Respir J 2004; 24: Suppl. 48, 604s
Year: 2004

Chronic bronchiolitis in a 5-yr-old child after exposure to sulphur mustard gas
Source: Eur Respir J 2004; 23: 343-346
Year: 2004



The importance of measuriing exhaled carbon monoxide in asthma and COPD
Source: Eur Respir J 2003; 22: Suppl. 45, 82s
Year: 2003

Increased levels of exhaled carbon monoxide and their correlation with airflow obstruction in asthma and COPD
Source: Annual Congress 2012 - Tobacco dependence and respiratory disease
Year: 2012


Azithromycin prevents airway epithelial barrier dysfunction induced by sulphur dioxide inhalation
Source: Virtual Congress 2020 – Cutting edge science: novel molecules and mechanisms of airway diseases
Year: 2020




Nitric oxide but not carbon monoxide is continuously released in the human nasal airways
Source: Eur Respir J 2002; 20: 100-103
Year: 2002



Chronic respiratory effects of war-related sulfur mustard gas inhalation
Source: Annual Congress 2007 - Experimental and observational studies with environmental agents
Year: 2007


Inhalation of nano-scaled titianium dioxide particles aggravates airway inflammation in allergen-challenged mice
Source: Annual Congress 2011 - Environmental exposure and disease mechanisms
Year: 2011


The effect of antioxidant therapy on nitric oxide metabolites in exhaled breath condensate in patients with pollen allergy and bronchial asthma
Source: Annual Congress 2007 - Airway regulation, provocation and monitoring - III
Year: 2007


Extended exhaled nitric oxide measurements at different exhalation flows may differentiate between bronchial airways and alveolar inflammation in patients with asthma and COPD
Source: Eur Respir J 2002; 20: Suppl. 38, 174s
Year: 2002

Measurement of exhaled gases in chronic airway diseases
Source: International Congress 2017 – PG6 Assessing and monitoring airway inflammation in asthma and chronic obstructive pulmonary disease
Year: 2017