Literature DB >> 7127419

Morphometric analysis of hypoxia-induced synaptic activity in intrapulmonary neuroepithelial bodies.

J M Lauweryns, A Van Lommel.   

Abstract

A morphometric analysis has demonstrated ultrastructural changes induced by hypoxia in the epithelial cells and the intracorpuscular nerve endings of the presumed chemoreceptive intrapulmonary neuroepithelial bodies (NEB) of neonatal rabbits. Acute hypoxia stimulates an exocytosis of epithelial dense-core vesicles (DCV) at the level of the morphologically afferent or sensory (type 1 a) intracorpuscular nerve endings of the NEB. Assuming the epithelial cells to be chemoreceptive, this phenomenon could represent a transduction of sensory stimuli. In the morphologically efferent or motor (type 2 and type 1b) intracorpuscular nerve endings of the NEB, acute hypoxia causes a depletion of synaptic vesicles and an increase in the amount of membrane-bounded cisternae and multivesicular bodies, suggestive of an enhanced synaptic activity of these nerve endings. It is proposed that the chemoreceptor cells could thus in turn be modulated centrifugally by their efferent-like intracorpuscular nerve endings. It has been proposed in our earlier studies that the NEB probably are intrapulmonary chemoreceptors with local secretory activities, reacting to the composition of the inhaled air. By the release of serotonin and peptide substances they may produce a local vasoconstriction in hypoxically aerated lung areas, enabling an intrapulmonary regulation of the V/Q ratio. The present study provides evidence that, in addition to this local effect, NEB could generate centripetal nerve impulses via exocytosis of epithelial DCV at the afferent-like intracorpuscular nerve endings. At the same time they could be modulated by the CNS via their efferent-like intracorpuscular nerve endings.

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Year:  1982        PMID: 7127419     DOI: 10.1007/bf00217094

Source DB:  PubMed          Journal:  Cell Tissue Res        ISSN: 0302-766X            Impact factor:   5.249


  59 in total

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Authors:  S J Rose; G D Pappas; M E Kriebel
Journal:  Brain Res       Date:  1978-04-14       Impact factor: 3.252

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Authors:  W Taylor
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3.  Depletion of vesicles and fatigue of transmission at a vertebrate central synapse.

Authors:  P G Model; S M Highstein; M V Bennett
Journal:  Brain Res       Date:  1975-11-14       Impact factor: 3.252

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Authors:  J M Lauweryns; M Cokelaere; P Theunynck
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5.  Effect of stimulation on the number of synaptic vesicles in nerve fibres and terminals of the cerebral cortex in the cat.

Authors:  O Fehér; F Joó; N Halász
Journal:  Brain Res       Date:  1972-11-27       Impact factor: 3.252

6.  The ultrastructure and source of nerve endings in the carotid body.

Authors:  K Nishi; L J Stensaas
Journal:  Cell Tissue Res       Date:  1974       Impact factor: 5.249

7.  Secretory cells in the premature human lung lobule.

Authors:  R C Rosan; J M Lauweryns
Journal:  Nature       Date:  1971-07-02       Impact factor: 49.962

Review 8.  The origin and fate of secretory packages, especially synaptic vesicles.

Authors:  E Holtzman
Journal:  Neuroscience       Date:  1977       Impact factor: 3.590

9.  Chemoreceptor nerve and type A glomus cell activity following hypoxia, hypercapnia, or anoxia: a morphological study in the rat carotid body.

Authors:  J T Hansen
Journal:  J Ultrastruct Res       Date:  1981-11

10.  Turnover of transmitter and synaptic vesicles at the frog neuromuscular junction.

Authors:  B Ceccarelli; W P Hurlbut; A Mauro
Journal:  J Cell Biol       Date:  1973-05       Impact factor: 10.539

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  11 in total

1.  Transient increase in rab 3A and synaptobrevin immunoreactivity after mild hypoxia in neonatal rats.

Authors:  A Manzur; M Sosa; A M Seltzer
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2.  Ultrastructure of nerve endings and synaptic junctions in rabbit intrapulmonary neuroepithelial bodies: a single and serial section analysis.

Authors:  J M Lauweryns; A Van Lommel
Journal:  J Anat       Date:  1987-04       Impact factor: 2.610

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Review 4.  The endocrine lung and its response to hypoxia.

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6.  The intrapulmonary neuroepithelial bodies after vagotomy: demonstration of their sensory neuroreceptor-like innervation.

Authors:  J M Lauweryns; A Van Lommel
Journal:  Experientia       Date:  1983-10-15

7.  Transgenic resistance to Bamboo mosaic virus by expression of interfering satellite RNA.

Authors:  Kuan-Yu Lin; Yau-Heiu Hsu; Hsin-Chuan Chen; Na-Sheng Lin
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8.  A correlative light-, fluorescence- and electron-microscopic study of neuroepithelial bodies in the lung of the red-eared turtle, Pseudemys scripta elegans.

Authors:  D W Scheuermann; M H De Groodt-Lasseel; C Stilman; M L Meisters
Journal:  Cell Tissue Res       Date:  1983       Impact factor: 5.249

9.  Calcitonin gene-related peptide immunoreactivity in airway epithelial cells of the human fetus and infant.

Authors:  D E Johnson; J D Wobken
Journal:  Cell Tissue Res       Date:  1987-12       Impact factor: 5.249

10.  Functional Exploration of the Pulmonary NEB ME.

Authors:  Inge Brouns; Line Verckist; Isabel Pintelon; Jean-Pierre Timmermans; Dirk Adriaensen
Journal:  Adv Anat Embryol Cell Biol       Date:  2021       Impact factor: 1.231

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