American Journal of Physiology-Lung Cellular and Molecular Physiology · 2007 · 38 citations · 41 references
AsthmaMolecular PharmacologyMolecular PhysiologySignal TransductionNeural PathwaysLung InflammationMedicinePhysiologyAirway MechanicsPulmonary PhysiologyAdenosine DeaminaseLung MechanicsPulmonary PharmacologyElevated Adenosine LevelsAdenosine-induced BronchoconstrictionPharmacologyRespiratory Neurobiology
High levels of adenosine can be measured from the lungs of asthmatics, and it is well recognized that aerosolized 5'AMP, the precursor of adenosine, elicits robust bronchoconstriction in patients with this disease. Characterization of mice with elevated adenosine levels secondary to the loss of adenosine deaminase (ADA) expression, the primary metabolic enzyme for adenosine, further support a role for this ubiquitous mediator in the pathogenesis of asthma. To begin to identify pathways by which adenosine can alter airway tone, we examined adenosine-induced bronchoconstriction in four mouse lines, each lacking one of the receptors for this nucleoside. We show, using direct measures of airway mechanics, that adenosine can increase airway resistance and that this increase in resistance is mediated by binding the A(1) receptor. Further examination of this response using pharmacologically, surgically, and genetically manipulated mice supports a model in which adenosine-induced bronchoconstriction occurs indirectly through the activation of sensory neurons.
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Igor Feoktistov, Italo Biaggioni · Journal of Clinical Investigation · 1995 · 362 citations · Full text
Asthma, Adenosine Antagonistic Properties, Inflammatory Lung Disease +21
Adenosine in Bronchoalveolar Lavage Fluid in Asthma
Albert G. Driver, Cynthia A. Kukoly, Shahid Ali et al. · American Review of Respiratory Disease · 1993 · 307 citations