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1.
J Neurosci Res ; 73(4): 471-80, 2003 Aug 15.
Article in English | MEDLINE | ID: mdl-12898532

ABSTRACT

The olfactory bulb (OB) presents a unique pattern of permanent acquisition of primary afferents and interneurons, but not much detail is known about the differentiation of its oligodendroglial cells. We studied the expression of 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNPase), a protein related to axonal ensheathment by myelinating cells. Expression of CNPase in OB follows a general caudorostral gradient, with the exception of the glomerular layer (GL). At postnatal day 5-6 (P5-P6), the first CNPase(+) profiles appeared in the dorsal lateral olfactory tract adjacent to the accessory OB (AOB), followed by rare cell bodies and processes in AOB internal plexiform layer at P7. At P9, the main OB (MOB) granular cell layer (GrCL) already showed intensely stained CNPase(+) processes. From P5 to P12, small numbers of CNPase(+) cells were found in the subventricular zone (SVZ), throughout its rostral extension (SVZ-RE), and in the intrabulbar subependymal layer. The appearance of CNPase(+) profiles delimiting glomeruli started in the GL rostralmost region at P12, extending to all GL levels, but glomeruli remained open caudally at P15. At P18, oligodendroglial glomeruli were evident throughout OB, but the adult pattern was established only after P30. There was no age-related loss of CNPase immunoreactivity in glial cell bodies, possibly indicating de novo ensheathment of neurites. Our results show an earlier onset of oligodendroglial differentiation in OB than previously reported and a rostrocaudal gradient of formation of oligodendroglial glomeruli. They also raise the possibility that a minor fraction of OB oligodendrocytes might derive from the SVZ-RE.


Subject(s)
2',3'-Cyclic-Nucleotide Phosphodiesterases/metabolism , Olfactory Bulb/enzymology , Olfactory Mucosa/enzymology , Oligodendroglia/enzymology , Aging , Animals , Animals, Newborn , Female , Immunohistochemistry , Male , Neurons/metabolism , Olfactory Bulb/cytology , Olfactory Bulb/growth & development , Olfactory Bulb/metabolism , Olfactory Mucosa/growth & development , Olfactory Mucosa/metabolism , Olfactory Nerve/metabolism , Oligodendroglia/metabolism , Rats , Rats, Wistar , Time Factors
2.
Article in English | MEDLINE | ID: mdl-11818222

ABSTRACT

The four isoforms of the catalytic subunit of Na(+)/K(+)-ATPase identified in rats differ in their affinities for ions and ouabain. Moreover, its expression is tissue-specific, developmentally and hormonally regulated. The aim of the present work was to evaluate the influence of age on the ratio and density of these isoforms in crude membrane preparations from rat brain hemispheres, brainstem, heart ventricles and kidneys. In all tissues investigated, Na(+)/K(+)-ATPase activity was higher in adults than in neonates but brain tissues presented the most remarkable differences. In these tissues, ouabain inhibition curves for Na(+)/K(+)-ATPase activity revealed the presence of two processes with different sensitivities to ouabain. An increase of approximately sixfold in the expression of the high affinity isoforms was observed between newborn and adult rats. In contrast, the low affinity isoform increased only approximately twofold in brainstem whereas it increased ninefold in brain hemispheres. Unlike brain tissues, a decrease (almost fourfold) in the number of high affinity ouabain binding sites was observed during ontogenesis of the heart. Although limited by the inability to resolve alpha(2) and alpha(3) isoforms, present data indicate that the influence of development on the expression of Na(+)/K(+)-ATPase depends not only on the isoform, but also on the tissue where the enzyme is expressed.


Subject(s)
Sodium-Potassium-Exchanging ATPase/metabolism , Aging/physiology , Animals , Animals, Newborn , Brain/enzymology , Heart Ventricles/enzymology , Isoenzymes/antagonists & inhibitors , Isoenzymes/metabolism , Kidney/enzymology , Kinetics , Organ Specificity , Ouabain/metabolism , Ouabain/pharmacology , Protein Binding , Rats , Sodium-Potassium-Exchanging ATPase/antagonists & inhibitors
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