Javascript must be enabled to continue!
Regional quantification of muscarinic acetylcholine receptors and β‐adrenoceptors in human airways
View through CrossRef
BACKGROUND AND PURPOSE Muscarinic acetylcholine receptors (mAChRs) and β‐adrenoceptors in the airways and lungs are clinically important in chronic obstructive pulmonary disease (COPD) and asthma. However, the quantitative and qualitative estimation of these receptors by radioligand binding approaches in human airways has not yet been reported because of tissue limitations.EXPERIMENTAL APPROACH The regional distribution and relative proportion of mAChR and β‐adrenoceptor subtypes were evaluated in human bronchus and lung parenchyma by a tissue segment binding method with [3H]‐N‐methylscopolamine ([3H]‐NMS) for mAChRs and [3H]‐CGP‐12,177 for β‐adrenoceptors. Functional responses to carbachol and isoprenaline were also analysed in the bronchus.KEY RESULTS The M3 subtype predominantly occurred in the bronchus, but the density decreased from the segmental to subsegmental bronchus, and was absent in lung parenchyma. On the other hand, the M1 subtype occurred in the lung only, and the M2 subtype was distributed ubiquitously in the bronchus and lungs. β2‐adrenoceptors were increased along the airways, and their densities in the subsegmental bronchus and lung parenchyma were approximately twofold higher than those of mAChRs in the same region. β1‐adrenoceptors were also detected in lung parenchyma but not in the bronchus. The muscarinic contractions and adrenoceptor relaxations in both bronchial regions were mediated through M3‐mAChRs and β2‐adrenoceptors, respectively.CONCLUSIONS AND IMPLICATIONS From the present radioligand binding approach with intact tissue segments, we constructed a distribution map of mAChRs and β‐adrenoceptors in human bronchus and lung parenchyma for the first time, providing important evidence for future pharmacotherapy and new drug development for respiratory disorders.
Title: Regional quantification of muscarinic acetylcholine receptors and β‐adrenoceptors in human airways
Description:
BACKGROUND AND PURPOSE Muscarinic acetylcholine receptors (mAChRs) and β‐adrenoceptors in the airways and lungs are clinically important in chronic obstructive pulmonary disease (COPD) and asthma.
However, the quantitative and qualitative estimation of these receptors by radioligand binding approaches in human airways has not yet been reported because of tissue limitations.
EXPERIMENTAL APPROACH The regional distribution and relative proportion of mAChR and β‐adrenoceptor subtypes were evaluated in human bronchus and lung parenchyma by a tissue segment binding method with [3H]‐N‐methylscopolamine ([3H]‐NMS) for mAChRs and [3H]‐CGP‐12,177 for β‐adrenoceptors.
Functional responses to carbachol and isoprenaline were also analysed in the bronchus.
KEY RESULTS The M3 subtype predominantly occurred in the bronchus, but the density decreased from the segmental to subsegmental bronchus, and was absent in lung parenchyma.
On the other hand, the M1 subtype occurred in the lung only, and the M2 subtype was distributed ubiquitously in the bronchus and lungs.
β2‐adrenoceptors were increased along the airways, and their densities in the subsegmental bronchus and lung parenchyma were approximately twofold higher than those of mAChRs in the same region.
β1‐adrenoceptors were also detected in lung parenchyma but not in the bronchus.
The muscarinic contractions and adrenoceptor relaxations in both bronchial regions were mediated through M3‐mAChRs and β2‐adrenoceptors, respectively.
CONCLUSIONS AND IMPLICATIONS From the present radioligand binding approach with intact tissue segments, we constructed a distribution map of mAChRs and β‐adrenoceptors in human bronchus and lung parenchyma for the first time, providing important evidence for future pharmacotherapy and new drug development for respiratory disorders.
Related Results
JIT 2023 - Jornadas de Jóvenes Investigadores Tecnológicos
JIT 2023 - Jornadas de Jóvenes Investigadores Tecnológicos
Es un honor presentar este libro que compila los trabajos de investigación y desarrollo presentados en las Jornadas de Jóvenes Investigadores Tecnológicos (JIT) 2023. Este evento s...
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
1.Effect of chronic haloperidol treatment on D‐2 receptors labelled by (3H)‐spiperone in homogenates of rat corpus striatum. A. L. Gundlach, D. J. de Vries and P. M. Beart2.The eff...
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
PROCEEDINGS OF THE AUSTRALASIAN SOCIETY OF CLINICAL AND EXPERIMENTAL PHARMACOLOGISTS
14th Annual Meeting, December 1980, Canberra1. Effect of dexamethasone on pineal β‐adrenoceptors. C. A. Maxwell, A. Foldes, N. T. Hinks and R. M. Hoskinson2. A clinicopathological ...
Do Pipecuronium and Rocuronium Affect Human Bronchial Smooth Muscle?
Do Pipecuronium and Rocuronium Affect Human Bronchial Smooth Muscle?
Background
Muscle relaxants affect nicotinic and muscarinic receptors. Interaction of muscle relaxants with muscarinic receptors of human airways has been studied incom...
Muscarinic receptor subtypes in neuronal and non‐neuronal cholinergic function
Muscarinic receptor subtypes in neuronal and non‐neuronal cholinergic function
Summary1 Muscarinic M1–M5receptors mediate the metabotropic actions of acetylcholine in the nervous system. A growing body of data indicate they also mediate autocrine functions of...
Sub-type selective muscarinic acetylcholine receptors modulation for the treatment of parkinsonian tremor
Sub-type selective muscarinic acetylcholine receptors modulation for the treatment of parkinsonian tremor
Abstract
Parkinson’s Disease is characterized by hallmark motor symptoms including resting tremor, akinesia, rigidity, and postural instability. ...
A Concise and Useful Guide to Understand How Alpha1 Adrenoceptor Antagonists Work
A Concise and Useful Guide to Understand How Alpha1 Adrenoceptor Antagonists Work
Abstract:
Adrenoceptors are the receptors for catecholamines, adrenaline, and noradrenaline. They are divided in α (α1 and α2) and β (β1, β2 and β3). α1-adrenoceptors are subdivide...
Functional comparison of muscarinic partial agonists at muscarinic receptor subtypes hM1, hM2, hM3, hM4 and hM5 using microphysiometry
Functional comparison of muscarinic partial agonists at muscarinic receptor subtypes hM1, hM2, hM3, hM4 and hM5 using microphysiometry
This study describes the pharmacological comparison of the muscarinic partial agonists sabcomeline, xanomeline and milameline at human cloned muscarinic receptor subtypes (hM1–5).
...

