Tuberc Respir Dis.  1994 Apr;41(2):73-86. 10.4046/trd.1994.41.2.73.

Neural Mechanism in Bronchial Asthma

Abstract

In addition to classic cholinergic and adrenergic pathways, the existence of a third division of autonomic control in the human airways has been proved. It is called a nonadrenergic noncholinergic(NANC) nervous system and difficult to study in the absence of specific blockers. Neuropeptides are certainly suggested to be transmitters of this NANC nervous system. It is very frustrating to understand the pathophysiologic role of these peptides in the absence of any specific antagonists. However, further studies of neuropeptides might eventually lead to novel forms of treatment for bronchial asthma. Another study of the interaction between different components of the autonomic nervous system, either in ganglionic neurotransmission or by presynaptic modulation of neurotransmitters at the end-organ will elute neural control in airway disease, particularly in asthma. Studies of how autonomic control may be disordered in airway disease should lead to improvements in clinical management. Epithelial damage due to airway inflammation in asthma may induce bronchial hyperresponsiveness. Axon reflex mechanism is one of possible mechanisms in bronchial hyperresponsiveness. Epithelial damage may expose sensory nerve terminals and C-fiber nrve endings are stimulated by inflammatory mediators. Bi-directional communication between the nerves and mast cells may have important roles in allergic process. The psychological factors and conditioning of allergic reactions is suggested that mast cell activation might be partly regulated by the central nervous system via the peripheral nerves. Studies in animal models, in huamn airways in vitro and in patients with airway disease will uncover the interaction between allergic disease processes and psychologic factors or neural mechainsms.

Keyword

Neural Mechanism; Bronchial Astrma

MeSH Terms

Asthma*
Autonomic Nervous System
Axons
Central Nervous System
Ganglion Cysts
Humans
Hypersensitivity
Inflammation
Mast Cells
Models, Animal
Nervous System
Neuropeptides
Neurotransmitter Agents
Peptides
Peripheral Nerves
Psychology
Reflex
Synaptic Transmission
Neuropeptides
Neurotransmitter Agents
Peptides
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