Asthma and coagulation

Asthma is a chronic airway disease characterized by paroxysmal airflow obstruction evoked by irritative stimuli on a background of allergic lung inflammation. Currently, there is no cure for asthma, only symptomatic treatment. In recent years, our understanding of the involvement of coagulation and...

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Vydané v:Blood Ročník 119; číslo 14; s. 3236
Hlavní autori: de Boer, J Daan, Majoor, Christof J, van 't Veer, Cornelis, Bel, Elisabeth H D, van der Poll, Tom
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States 05.04.2012
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ISSN:1528-0020, 1528-0020
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Abstract Asthma is a chronic airway disease characterized by paroxysmal airflow obstruction evoked by irritative stimuli on a background of allergic lung inflammation. Currently, there is no cure for asthma, only symptomatic treatment. In recent years, our understanding of the involvement of coagulation and anticoagulant pathways, the fibrinolytic system, and platelets in the pathophysiology of asthma has increased considerably. Asthma is associated with a procoagulant state in the bronchoalveolar space, further aggravated by impaired local activities of the anticoagulant protein C system and fibrinolysis. Protease-activated receptors have been implicated as the molecular link between coagulation and allergic inflammation in asthma. This review summarizes current knowledge of the impact of the disturbed hemostatic balance in the lungs on asthma severity and manifestations and identifies new possible targets for asthma treatment.
AbstractList Asthma is a chronic airway disease characterized by paroxysmal airflow obstruction evoked by irritative stimuli on a background of allergic lung inflammation. Currently, there is no cure for asthma, only symptomatic treatment. In recent years, our understanding of the involvement of coagulation and anticoagulant pathways, the fibrinolytic system, and platelets in the pathophysiology of asthma has increased considerably. Asthma is associated with a procoagulant state in the bronchoalveolar space, further aggravated by impaired local activities of the anticoagulant protein C system and fibrinolysis. Protease-activated receptors have been implicated as the molecular link between coagulation and allergic inflammation in asthma. This review summarizes current knowledge of the impact of the disturbed hemostatic balance in the lungs on asthma severity and manifestations and identifies new possible targets for asthma treatment.Asthma is a chronic airway disease characterized by paroxysmal airflow obstruction evoked by irritative stimuli on a background of allergic lung inflammation. Currently, there is no cure for asthma, only symptomatic treatment. In recent years, our understanding of the involvement of coagulation and anticoagulant pathways, the fibrinolytic system, and platelets in the pathophysiology of asthma has increased considerably. Asthma is associated with a procoagulant state in the bronchoalveolar space, further aggravated by impaired local activities of the anticoagulant protein C system and fibrinolysis. Protease-activated receptors have been implicated as the molecular link between coagulation and allergic inflammation in asthma. This review summarizes current knowledge of the impact of the disturbed hemostatic balance in the lungs on asthma severity and manifestations and identifies new possible targets for asthma treatment.
Asthma is a chronic airway disease characterized by paroxysmal airflow obstruction evoked by irritative stimuli on a background of allergic lung inflammation. Currently, there is no cure for asthma, only symptomatic treatment. In recent years, our understanding of the involvement of coagulation and anticoagulant pathways, the fibrinolytic system, and platelets in the pathophysiology of asthma has increased considerably. Asthma is associated with a procoagulant state in the bronchoalveolar space, further aggravated by impaired local activities of the anticoagulant protein C system and fibrinolysis. Protease-activated receptors have been implicated as the molecular link between coagulation and allergic inflammation in asthma. This review summarizes current knowledge of the impact of the disturbed hemostatic balance in the lungs on asthma severity and manifestations and identifies new possible targets for asthma treatment.
Author de Boer, J Daan
Majoor, Christof J
van der Poll, Tom
van 't Veer, Cornelis
Bel, Elisabeth H D
Author_xml – sequence: 1
  givenname: J Daan
  surname: de Boer
  fullname: de Boer, J Daan
  email: j.d.deboer@amc.uva.nl
  organization: Academic Medical Center,University of Amsterdam, Center for Experimental and Molecular Medicine, Meibergdreef 9, Amsterdam, The Netherlands. j.d.deboer@amc.uva.nl
– sequence: 2
  givenname: Christof J
  surname: Majoor
  fullname: Majoor, Christof J
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  givenname: Cornelis
  surname: van 't Veer
  fullname: van 't Veer, Cornelis
– sequence: 4
  givenname: Elisabeth H D
  surname: Bel
  fullname: Bel, Elisabeth H D
– sequence: 5
  givenname: Tom
  surname: van der Poll
  fullname: van der Poll, Tom
BackLink https://www.ncbi.nlm.nih.gov/pubmed/22262775$$D View this record in MEDLINE/PubMed
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Snippet Asthma is a chronic airway disease characterized by paroxysmal airflow obstruction evoked by irritative stimuli on a background of allergic lung inflammation....
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SubjectTerms Administration, Inhalation
Animals
Anticoagulants - administration & dosage
Anticoagulants - therapeutic use
Asthma - complications
Asthma - drug therapy
Asthma - metabolism
Blood Coagulation - physiology
Blood Coagulation Disorders - complications
Blood Coagulation Disorders - drug therapy
Blood Coagulation Disorders - metabolism
Blood Coagulation Factors - metabolism
Blood Platelets - metabolism
Fibrinolysis
Heparin - administration & dosage
Heparin - therapeutic use
Humans
Protein C - metabolism
Receptor, PAR-2 - metabolism
Signal Transduction
Title Asthma and coagulation
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