Glyoxylic acid is synthesized and catabolized in cells of vertebrates; several pathways have been described. In previous papers, we have demonstrated the localization in some areas of the rat cerebral cortex both of -NADdependent glyoxylate dehydrogenase (glyoDH), using an enzymohistochemical metho
Synaptic immunolocalization of glyoxylate-complex molecules in the striate areas of the rat cerebral cortex: Light and electron microscopic studies
✍ Scribed by R. Martínez-Rodríguez; M.J. Alonso; E. De Miguel; I. Gómez de Segura; F. Gómez-Aguado; A. Picazo; M.T. Corcuera; M.I. Alvarez; A. Toledano
- Publisher
- John Wiley and Sons
- Year
- 1998
- Tongue
- English
- Weight
- 273 KB
- Volume
- 51
- Category
- Article
- ISSN
- 0360-4012
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✦ Synopsis
The location of glyoxylate-complex molecules has been investigated in several areas of the rat cerebral cortex using the immunohistochemical peroxidaseantiperoxidase (PAP) method. Antibodies against glyoxylate-complex molecules have been developed in the rabbit after immunization with a glyoxylate-bovine serum albumin conjugate. Observations carried out with the light microscope demonstrated positive immunostaining at the membrane level of scattered neurons located in all cortical areas, mainly in cortical layer IV. The striate areas (17, 18, 18a) had both the greatest number of immunopositive neurons and the most intense ones. At the electron microscopic level, it was observed that in the striate areas an immunopositive reaction was located mainly in the periphery of synaptic vesicles of some nerve endings, and in both pre-and postsynaptic membranes of these synaptic structures. The presence of glyoxylic acid and glyoxylate-complex molecules in such areas leads us to suggest that these substances could play an important role in selected synaptic contacts in which some pyramidal and non-pyramidal neurons are involved.
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