Literature DB >> 1486606

Immunohistochemical localisation of natriuretic peptides in the brains and hearts of the spiny dogfish Squalus acanthias and the Atlantic hagfish Myxine glutinosa.

J A Donald1, A J Vomachka, D H Evans.   

Abstract

The avidin-biotin peroxidase technique was used to determine the distribution of natriuretic peptides in the hearts and brains of the dogfish Squalus acanthias and the Atlantic hagfish Myxine glutinosa. Three antisera were used: one raised against porcine brain natriuretic peptide which cross-reacts with atrial natriuretic and C-type natriuretic peptides (termed natriuretic peptide-like immunoreactivity); the second raised against porcine brain natriuretic peptide which cross-reacts with C-type natriuretic peptide, but not with atrial natriuretic peptide (termed porcine brain natriuretic peptide-like immunoreactivity); and the third raised against rat atrial natriuretic peptide (termed rat atrial natriuretic peptide-like immunoreactivity). Only natriuretic peptide-like immunoreactivity was observed in the heart of S. acanthias which was most likely due to the antiserum cross-reacting with C-type natriuretic peptide. No immunoreactivity was found in the M. glutinosa heart. In the brain of S. acanthias, natriuretic peptide-like immunoreactive fibres were located in many areas of the telencephalon, diencephalon, mesencephalon, rhombencephalon, and spinal cord. Extensive immunoreactivity was observed in the hypothalamo-hypophyseal tract and the neurointermediate lobe of the hypophysis. Natriuretic peptide-like immunoreactive perikarya were found in ventromedial regions of the telencephalon and in the nucleus preopticus. Most perikarya had short, thick processes which extended toward the ventricle. Another group of perikarya was observed in the rhombencephalon. Porcine brain natriuretic peptide-like immunoreactive fibres were observed in the telencephalon, diencephalon, mesencephalon, and rhombencephalon, but perikarya were only present in the preoptic area. In the M. glutinosa brain, natriuretic peptide-like immunoreactive fibres were present in all regions. Immunoreactive perikarya were observed in the pallium, primordium hippocampi, pars ventralis thalami, pars dorsalis thalami, nucleus diffusus hypothalami, nucleus profundus, nucleus tuberculi posterioris, and nucleus ventralis tegmenti. Porcine brain natriuretic peptide-like immunoreactive perikarya and fibres had a similar, but less abundant distribution than natriuretic peptide-like immunoreactive structures. Although the chemical structures of natriuretic peptides in the brains of dogfish and hagfish are unknown, these observations show that a component of the natriuretic peptide complement is similar to porcine brain natriuretic peptide or porcine C-type natriuretic peptide. The presence of natriuretic peptides in the brain suggest they could be important neuromodulators and/or neurotransmitters. Furthermore, there appears to be divergence in the structural forms of natriuretic peptides in the hearts and brains of dogfish and hagfish.

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Year:  1992        PMID: 1486606     DOI: 10.1007/bf00645056

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


  29 in total

1.  Origin of porcine brain natriuretic peptide-like immunoreactive innervation of the middle cerebral artery in the rat.

Authors:  S E Spencer; M R Kibbe; K M Hurley; P Needleman; C B Saper
Journal:  Neurosci Lett       Date:  1991-07-22       Impact factor: 3.046

2.  Isolation of high-molecular-weight C-type natriuretic peptide from the heart of a cartilaginous fish (European dogfish, Scyliorhinus canicula).

Authors:  R Suzuki; A Takahashi; N Hazon; Y Takei
Journal:  FEBS Lett       Date:  1991-05-06       Impact factor: 4.124

3.  Immunocytochemistry of cardiac polypeptide hormones (cardiodilatin/atrial natriuretic polypeptide) in brain and hearts of Myxine glutinosa (Cyclostomata).

Authors:  M Reinecke; D Betzler; W G Forssmann
Journal:  Histochemistry       Date:  1987

4.  Atriopeptin-immunoreactive neurons in the brain: presence in cardiovascular regulatory areas.

Authors:  C B Saper; D G Standaert; M G Currie; D Schwartz; D M Geller; P Needleman
Journal:  Science       Date:  1985-03-01       Impact factor: 47.728

5.  Atrial natriuretic factor in central nervous system regulatory mechanisms: effect of experimental alterations in water and salt homeostasis and blood pressure.

Authors:  M Palkovits; H Geiger; U Bahner; M Fodor; C Pammer
Journal:  Miner Electrolyte Metab       Date:  1990

6.  Ser-Leu-Arg-Arg-atriopeptin III: the major circulating form of atrial peptide.

Authors:  D Schwartz; D M Geller; P T Manning; N R Siegel; K F Fok; C E Smith; P Needleman
Journal:  Science       Date:  1985-07-26       Impact factor: 47.728

7.  Phylogenetic aspects of cardiac hormones as revealed by immunocytochemistry, electronmicroscopy, and bioassay.

Authors:  M Reinecke; M Nehls; W G Forssmann
Journal:  Peptides       Date:  1985       Impact factor: 3.750

8.  Atrial natriuretic polypeptide: topographical distribution in the rat brain by radioimmunoassay and immunohistochemistry.

Authors:  M Kawata; K Nakao; N Morii; Y Kiso; H Yamashita; H Imura; Y Sano
Journal:  Neuroscience       Date:  1985-11       Impact factor: 3.590

9.  Atrial natriuretic factor: a hormone produced by the heart.

Authors:  A J de Bold
Journal:  Science       Date:  1985-11-15       Impact factor: 47.728

10.  Brain natriuretic peptide-like immunoreactive innervation of the cardiovascular and cerebrovascular systems in the rat.

Authors:  C B Saper; M R Kibbe; K M Hurley; S Spencer; H R Holmes; K M Leahy; P Needleman
Journal:  Circ Res       Date:  1990-12       Impact factor: 17.367

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  2 in total

1.  Immunoreactive endozepine-like peptides in the brain and pituitary of the Atlantic hagfish, Myxine glutinosa.

Authors:  S Candiani; A Augello; D Oliveri; M Pestarino
Journal:  Histochem J       Date:  2000-07

2.  Parathyroid hormone-related protein production in the lamprey Geotria australis: developmental and evolutionary perspectives.

Authors:  Melanie K Trivett; Ian C Potter; Glenn Power; Hong Zhou; David L Macmillan; T John Martin; Janine A Danks
Journal:  Dev Genes Evol       Date:  2005-11-04       Impact factor: 0.900

  2 in total

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