This investigation consists of two major lines of research focused on the same problem: the analysis of CNS control of the airways. The first part of this grant application deals with neuroanatomy of central airway pathways and the second part is focused on determining the functional role some of the specific CNS regions play in regulation of secretomotor and bronchomotor control. Anatomical studies will use pseudorabies virus as a transneuronal marker to study the cells of origin which control the parasympathetic outflow to the intrathoracic airways (bronchus and distal most part of the airways) as well as the trachea. Potential differences in innervation of the tracheobronchial system will be analyzed. A detailed study of the neuropeptide-containing premotor neurons innervating the tracheal parasympathetic preganglionic neurons will be made using immunohistochemical procedures to identify both virally infected neurons and putative neurotransmitters. Finally, the chemical content of the tracheal parasympathetic preganglionic neurons will be examined using choline acetyltransferase and neuropeptide immunochemistry combined with cholera-toxin retrograde cell body labeling. In the second part, secretomotor and bronchomotor functions will be investigated following L-glutamate stimulation of specific brain nuclei known to project to airway parasympathetic preganglionic neurons. Furthermore, their role in reflex responses will be studied. The first project will involve an analysis of the midline nuclei, with particular attention focused on the raphe pallidus and adjoining region. The second project involves an analysis of the Kolliker-Fuse nucleus and surrounding region. The third project will analyze the responses elicited from the dorsal periventricular gray matter. A fourth project will analyze the role of excitatory amino acids in generation of parasympathetic activity and in mediating secretomotor and bronchomotor reflex responses. The data derived from these studies will provide a better understanding of the CNS neural systems that influence airway function and have a direct bearing on understanding centrally mediated airways dysfunctions.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL050527-03
Application #
2028943
Study Section
Respiratory and Applied Physiology Study Section (RAP)
Project Start
1995-01-01
Project End
1998-07-05
Budget Start
1996-12-01
Budget End
1998-07-05
Support Year
3
Fiscal Year
1997
Total Cost
Indirect Cost
Name
Case Western Reserve University
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
077758407
City
Cleveland
State
OH
Country
United States
Zip Code
44106
Neziri, Burim; Daci, Armond; Krasniqi, Shaip et al. (2017) The impact of bilateral vagotomy on the physostigmine-induced airway constriction in ferrets. Respir Physiol Neurobiol 242:102-107
Kohn, Amitai Z; Hoxha, Zana; Balan, Kannan V et al. (2009) Developmental changes in brainstem neurons regulating lower airway caliber. Pediatr Res 65:509-13
Sopi, Ramadan B; Martin, Richard J; Haxhiu, Musa A et al. (2008) Role of brain-derived neurotrophic factor in hyperoxia-induced enhancement of contractility and impairment of relaxation in lung parenchyma. Am J Physiol Lung Cell Mol Physiol 295:L348-55
Mesner, Oded; Miller, Martha J; Iben, Sabine C et al. (2008) Hyperbilirubinemia diminishes respiratory drive in a rat pup model. Pediatr Res 64:270-4
Haxhiu, Musa A; Kc, Prabha; Balan, Kannan V et al. (2008) Modeling of sleep-induced changes in airway function: implication for nocturnal worsening of bronchial asthma. Adv Exp Med Biol 605:469-74
Mack, S O; Wu, M; Kc, P et al. (2007) Stimulation of the hypothalamic paraventricular nucleus modulates cardiorespiratory responses via oxytocinergic innervation of neurons in pre-Botzinger complex. J Appl Physiol 102:189-99
Wilson, Christopher G; Akhter, Shamima; Mayer, Catherine A et al. (2007) Allergic lung inflammation affects central noradrenergic control of cholinergic outflow to the airways in ferrets. J Appl Physiol 103:2095-104
Sopi, Ramadan B; Haxhiu, Musa A; Martin, Richard J et al. (2007) Disruption of NO-cGMP signaling by neonatal hyperoxia impairs relaxation of lung parenchyma. Am J Physiol Lung Cell Mol Physiol 293:L1029-36
Haxhiu, Musa A; Rust, Cheryl F; Brooks, Chevon et al. (2006) CNS determinants of sleep-related worsening of airway functions: implications for nocturnal asthma. Respir Physiol Neurobiol 151:1-30
Dehkordi, Ozra; Kc, Prabha; Balan, Kannan V et al. (2006) Airway-related vagal preganglionic neurons express multiple nicotinic acetylcholine receptor subunits. Auton Neurosci 128:53-63

Showing the most recent 10 out of 77 publications