Journal of Neuroscience Methods 2005-03-15

Basophilia, acidophilia and argyrophilia of "dark" (compacted) neurons during their formation, recovery or death in an otherwise undamaged environment.

Andrea Zsombok, Zsolt Tóth, Ferenc Gallyas

Index: J. Neurosci. Methods 142(1) , 145-52, (2005)

Full Text: HTML

Abstract

By means of a condenser discharge electric shock paradigm, "dark" (compacted) granule neurons were momentarily produced in the hippocampal dentate gyri of rats, which were sacrificed either immediately or following survival periods ranging from 1h to 30 days. Except for the morphological changes related to the formation, recovery or death of the "dark" neurons, the affected brain areas remained undamaged. Vibratome, frozen, cryostat and paraffin sections were stained with Mayer's hematoxylin, acid fuchsin, or Fluoro-Jade and by three silver methods widely used for the demonstration of damaged neurons; with or without previous removal of nucleic acids, partial digestion of proteins or blockade of the negatively charged side-groups of nucleic acids and proteins. The results allowed the following conclusions: (i) "Dark" neurons acquire argyrophilia and excess basophilia simultaneously with their momentary formation. (ii) Negatively charged protein molecules are responsible for these processes. (iii) From the recovering "dark" neurons, the acquired basophilia and argyrophilia disappear within a few hours post-insult. (iv) From the moribund or dead "dark" neurons, the acquired basophilia disappears in the same period of time while the acquired argyrophilia in a few days. (vi) Freshly-produced or recovering "dark" neurons are slightly acidophilic, whereas the moribund or dead ones display intense acidophilia.


Related Compounds

  • Acid Fuchsin

Related Articles:

Hydrogen peroxide primes heart regeneration with a derepression mechanism.

2014-09-01

[Cell Res. 24(9) , 1091-107, (2014)]

Functional Reconstruction of Tracheal Defects by Protein-Loaded, Cell-Seeded, Fibrous Constructs in Rabbits.

2015-09-01

[Tissue Eng. Part A 21 , 2390-403, (2015)]

Inhibition of glycosaminoglycan-mediated amyloid formation by islet amyloid polypeptide and proIAPP processing intermediates.

2011-02-25

[J. Mol. Biol. 406(3) , 491-502, (2011)]

Characterization of conformational changes and noncovalent complexes of myoglobin by electrospray ionization mass spectrometry, circular dichroism and fluorescence spectroscopy.

2010-06-01

[J. Mass Spectrom. 45(6) , 618-26, (2010)]

Cytosolic labile zinc: a marker for apoptosis in the developing rat brain.

2006-01-01

[Eur. J. Neurosci. 23(2) , 435-42, (2006)]

More Articles...