Search PubMed⌕ Search

Biomedical subjects

A Hervonen

Publications and source records attributed to A Hervonen.

At least 55 records · Page 3Linked to original sources

Localization of protein kinase C-beta-like immunoreactivity in the rat dorsal root ganglion.

The localization of protein kinase C-beta-like immunoreactivity (PKC-beta-LI) was studied in the rat dorsal root ganglion (DRG) using an antibody specific for a peptide sequence common to the beta 1- and beta 2-subtypes. PKC-beta-LI was seen in 45% of neuronal cell bodies and in nerve fibers, which were mostly myelinated. The PKC-beta-LI-containing cell bodies had a diameter significantly larger than the unlabeled cell bodies. The results suggest that PKC-beta is a PKC subtype involved in cell surface signal transduction in the subpopulation of large DRG neurons.

Animals↗

Neuronal degeneration and lipopigment formation in rat sympathetic ganglion after treatment with high-dose guanethidine.

Degenerative changes in the rat superior cervical ganglion (SCG) were studied 3 months after treatment with a high-dose of guanethidine using microspectrofluorometry and electron microscopy. The density of the SCG neurons was decreased by 30% and by 60% following 1 and 2 weeks treatment respectively with guanethidine. Intraneuronal lipopigments were increased after the treatment, whereas cytoplasmic catecholamines were decreased. Electron microscopy revealed swollen mitochondria and a novel type of lipo-pigment in surviving neurons. The number and structure of small intensely fluorescent (SIF) cells remained unchanged after the treatment. The results suggest that accelerated lipid peroxidation processes might be involved in guanethidine neurotoxicity and that intraneuronal concentrations of catecholamines may be related to this toxicity.

Animals↗

Organizational role of testosterone on the biochemical and morphological development of the hypogastric ganglion.

Previous reports have demonstrated that after postnatal day 10 testosterone influences hypogastric ganglion (HG) development by 'activating' morphological and biochemical indices. We now report an 'organizational' influence on the developing HG during the first 10 postnatal days. To investigate the organizational effects of testosterone, male rats were castrated within 12 h of birth. Testosterone replacement therapy initiated following castration maintained the normal number of neurons in the HG. Conversely, delayed replacement therapy starting at day 10 or vehicle treatment only, resulted in a significant decrease in neuron number. Castration also produced a significant decrease in somal and nuclear cross-sectional areas. Testosterone replacement, whether initiated immediately or if delayed until day 10, restored somal and nuclear cross-sectional areas to normal. Tyrosine hydroxylase (TH) and choline acetyltransferase (ChAT) activities were sensitive to both testosterone dosage and the time of administration. Testosterone decanoate administered subsequent to castration was not able to completely reverse the enzyme activity deficits, while delayed replacement therapy was even less effective in restoring enzyme activities. In contrast, higher doses of testosterone completely reversed enzyme activity deficits, and in fact produced a significant increase in TH activity. Again, delayed testosterone replacement did not fully restore deficits in enzyme activity. In summary, the hormonal environment during the first 10 days of life is critical for the organization of HG cell number; in contrast, nuclear and cell size appear to be dependent on testosterone for activation. TH and ChAT activities also appear to be organized during this dose- and time-dependent developmental period.

Adrenergic Fibers↗

Age-dependence of the solubility fractions of acetylcholinesterase in the cerebral cortex and cerebellum of the rat.

Choline acetyltransferase (ChAT) activity in the cerebral cortex and the different solubility fractions of acetylcholinesterase (AChE) in the cerebral cortex and cerebellum were investigated in rats of different ages. ChAT activity was not decreased markedly in the cerebral cortex of 24- to 25-month-old rats compared to 3- to 4-month-old rats. The activity of detergent-soluble (DS) AChE in the cerebral cortex and cerebellum was lower in the older rats (24-25 months) rats than in younger (3-4 months) ones. The activity of DS-AChE in the cerebral cortex and cerebellum did not differ between 10- to 11-month-old and 24- to 25-month-old rats. The activity of low salt soluble (LSS) AChE in the cerebral cortex and cerebellum did not differ between older and younger rats.

Acetylcholinesterase↗

Electron microscopic localization of enkephalin-like immunoreactivity in the human adrenal medulla.

Enkephalin-like immunoreactivity in human adrenomedullary cells was studied at the light and electron microscopic levels. Enkephalin immunostaining was associated with chromaffin granules and, in a few cells, with the rough endoplasmic reticulum as well. The relative number of stained granules varied from cell to cell, and a correlation with a particular granular population was not noted. Both large and small granules were labelled. It is concluded that in the human the ability to store enkephalin immunoreactive peptides is a general property of chromaffin granules and, furthermore, is not correlated with specific granular subpopulations or the particular type of catecholamine stored within the cell.

Adrenal Medulla↗

Effect of lifelong selenium and vitamin E deficiency or supplementation on pigment accumulation in rat peripheral tissues.

The accumulation of lipopigments during aging in several peripheral organs and in the nervous system is considered to be related to the peroxidation of unsaturated fatty acids. In this study the effect of lifelong (until to 18 months) dietary antioxidants selenium and vitamin-E on pigment accumulation in some peripheral tissues was estimated using fluorescence and electron microscopy. In the vitamin E deficiency group, there was increased pigment accumulation in all peripheral tissues studied except the hypogastric ganglion, where no change was observed. The vitamin E supplementation degreased the pigment accumulation in older animals in some of the tissues studied. At the electron microscopical level the accumulated pigment in the adrenal cortex showed a lipofuscin-like structure. Lifelong selenium supplementation or deficiency did not significantly alter pigment accumulation in any of the tissues studied. It is possible that in many organs dietary selenium may not play a critical role in lipofuscin formation.

Adrenal Glands↗

Age pigments in different populations of peripheral neurons in vivo and in vitro.

The distribution and ultrastructure of lipopigments in the rat sympathetic, vagus and spinal ganglion neurons were studied in vivo and in vitro using fluorescence and electron microscopy. Newborn, 3-6 mo and 24-30 mo-old male Wistar rats were used. In vivo, the age pigments in the sympathetic neurons showed a tendency to form unipolar or bipolar caps, whereas in the vagus and spinal ganglion neurons pigment granules were packed in the peripheral area of the perikarya during aging. Ultrastructurally, lipid-like vacuoles and a rather homogeneous matrix were the components shared by pigment bodies of all types of peripheral neurons. However, pigment granules in sympathetic neurons frequently had a third, osmiophilic component, which likely represents neuromelanin. In vitro, the cytoplasmic area occupied by autofluorescent pigments was increased in most of the neurons. Some neurons, however, showed the same amount of lipopigments as in vivo. In electron microscopy, age pigment granules typical of each type of neuron were found, and their number and intracellular distribution seemed to be comparable with those in vivo. In most of the neurons cultured from all ages and of all types of ganglion, there appeared to be accumulations of another, very homogeneous and large type of pigment body. In some cases, they were structurally connected with classical pigment bodies or they had a finger print-like substructure. Large homogeneous pigment bodies were also seen in surrounding satellite cells. All these changes were most frequently seen in cultures of spinal ganglia from old animals. It is concluded that although classical age pigments maintain their characteristics in cultured peripheral neurons, there is, in addition, a rapid accumulation of ceroid-like pigments, which may be caused by the inability of the cultured neurons to cope with increased peroxidative damage.

Aging↗

Age-related morphometric and histochemical features of rat sympathetic neurons.

The correlation between catecholamine histofluorescence, tyrosine hydroxylase (TH) immunoreactivity and accumulation of age pigment was studied in the superior cervical ganglia (SCGL) of young (3 months) and old (28 months) rats. In the young animals there was a positive correlation between TH-immunoreactivity and catecholamine stores in most of the neurons. A pigment accumulation covering the profile area was found in approximately 10 per cent of the neurons in the young rats. In these neurons strong TH-immunoreactivity was associated with weak catecholamine histofluorescence. In the ganglia of the old animals there were considerable differences between individual cells in TH-activities, catecholamine stores and amounts of age pigment. In addition, there was a marked uncoupling between TH-activity and catecholamine fluorescence in a number of neurons, i.e. there were neurons with strong TH-immunoreactivity but weak catecholamine histo- fluorescence and vice versa. The functional implications of this uncoupling are discussed in the article.

Aging↗

Light and electron microscopic evidences of the presence of c-fos-like immunoreactivity in the rat adrenal cortex.

The presence and localization of c-fos-like immunoreactivity in the rat adrenal cortex has been demonstrated by immunocytochemical methods at both light and electron microscopic level. C-fos-like immunoreactivity was detected in the zona fasciculata and the zona reticulata, but not in the zona glomerulosa. Ultrastructurally, all products of c-fos-like immunoreaction were localized exclusively in the regions associated with the euchromatin in the nucleus of the immunoreactive cells. Moreover, a higher density of the immunoreactive cells in the adrenal cortex of pregnant rats was found with quantitative immunocytochemistry as compared to the non-pregnant. The characteristic zonation of c-fos-like immunoreactivity in the adrenal cortex suggest that the c-fos protein is involved in the normal function of the glucocorticoid-producing cells of mammalian adrenals. The numerical increase in the immunoreactive cells in pregnant rats implies that basal expression of the c-fos-like protein may vary with the functional state of the cortical cells.

Adrenal Cortex↗

Vasoactive intestinal peptide (VIP)-like immunoreactivity in the human sympathetic ganglia.

Vasoactive intestinal peptide immunoreactive (VIP-IR) nerve fibres and terminals, neurons and small granule containing cells were observed in human lumbal sympathetic ganglia. Electron-microscopically VIP-IR was localized in the large dense-cored vesicles in nerve terminals and on the membranes of the Golgi complexes in the neurons. A small population of principal ganglion cells was surrounded by VIP-IR nerve terminals. Most of these neurons contained acetylcholinesterase (AChE) enzyme but were not tyrosine hydroxylase-immunoreactive (TH-IR). All VIP-IR ganglion cells and most of the nerve fibres contained AChE but not TH-IR. It appears that in human sympathetic ganglia VIP is localized in the cholinergic neurons and nerve fibres and that the VIP-IR nerve terminals innervate mainly the cholinergic subpopulation of the sympathetic neurons.

Acetylcholinesterase↗

Induction of c-fos-like protein in the rat adrenal cortex by acute stress--immunocytochemical evidence.

The effect of immobilization stress on the expression of c-fos protein in the adrenal cortex of adult rats was investigated immunocytochemically. After immobilization stress lasting for longer than 30 min, an enhanced c-fos-like immunoreactivity was observed in the cortical cells of the zona fasciculata and zona reticulata. Compared to unstressed controls, an about 5-fold increase in the density of the immunoreactive cells in a unit of the cortical area was seen following a 1-h immobilization. The enhanced immunoreactivity lasted for at least 3 h after 1-h immobilization and it began to diminish 5 h after the stress. Furthermore, administration of dexamethasone 2 h prior to 1-h immobilization attenuated the stress-enhanced immunostaining for the c-fos-like protein. These results suggest that an acute stress may cause a dramatic and long-persisting induction of c-fos-like protein in the cortical cells of rat adrenals. The characteristic zonal distribution of the c-fos induction in rat adrenals as well as the effect of dexamethasone suggest involvement of the pituitary adrenocorticotropic hormone (ACTH) in the induction.

Adrenal Cortex↗

Age-related changes of enkephalinergic innervation of human sympathetic neurons.

The age-related changes in the distribution of enkephalin-immunoreactive (ENK-IR) nerve fibers in relation to the principal neurons were studied in 23 human sympathetic ganglia from patients aged between 22 and 98 years. There were no age-related changes in the diameter of nerve cells and the packing density of the neurons did not change. There was an age-related decrease in the proportion of neurons innervated by enkephalin-containing fibers. In all age groups the neurons innervated by ENK-IR nerve fibers were larger than those neurons which were not surrounded by ENK-IR nerves. The pigment material in the enkephalin-innervated neurons was non-osmiophilic. The small neurons containing dark neuromelanin type of age pigment were not innervated by ENK-IR nerves. It is speculated that ENK-IR preganglionic nerves play a role in maintaining neuronal integrity of sympathetic neurons.

Adult↗

Pre- and postsynaptic markers of cholinergic neurons in the cerebral cortex of rats of different ages.

In order to investigate the effect of aging on postsynaptic muscarinic binding, we measured 3H-PZ binding in the cerebral cortex of male Fisher 344 rats of different ages. ChAT activity was measured as a presynaptic marker of the cholinergic system. Total and salt-soluble AChE activities were also measured. Maximal binding of 3H-PZ and ChAT activity did not change during aging. The ratio of detergent-soluble AChE to salt-soluble AChE was lower in 30-month-old rats than in 4-month-old rats. The results of the present study do not indicate that the amount of M1 muscarinic receptors proposed to be located postsynaptically decreases during aging. In senescent rats, however, the proportions of salt-soluble and detergent-soluble AChE may differ from those in young rats.

Acetylcholinesterase↗

Cholinergic binding in the hippocampus of the aging male rat.

1. M1 muscarinic (3H-pirenzepine) and 3H-L-nicotine binding were measured in the hippocampus of male Wistar rats aged 3-4, 10-11 and 24-25 months. 2. The maximal number of M1 binding sites did not differ between age groups. 3. The dissociation constant of M1 binding was higher in old rats than in young rats. 4. The binding of 3H-L-nicotine did not differ between age groups. 5. The number of postsynaptic muscarinic receptors may be preserved, but the conformation of these receptors in the rat hippocampus may be altered during aging.

Aging↗

Cholinergic enzyme activities and muscarinic binding in the cerebral cortex of rats of different age and sex.

1. The choline acetyltransferase and acetylcholinesterase activities in the cerebral cortex and hippocampus and muscarinic binding in the cerebral cortex did not differ significantly between male and female Wistar rats. 2. Choline acetyltransferase activities in the cerebral cortex and hippocampus of rats were not altered during ageing. 3. Acetylcholinesterase activities in these same brain areas were markedly decreased during ageing, possibly reflecting a loss of postsynaptic enzyme activity. 4. When measured using 3H-pirenzepine, binding to the postsynaptic muscarinic receptors was slightly higher in 26-month-old rats than in 12-month-old rats; total muscarinic binding measured using 3H-quinuclidinyl benzilate did not alter during ageing. 5. The present study does not support the hypothesis that in the rat brain the number of postsynaptic muscarinic binding sites decreases during ageing.

Aging↗

Sodium dependent uptake of 3H-choline in the cerebral cortex of ageing male rats.

Uptake of 3H-choline and the binding of 3H-hemicholinium-3 in the cerebral cortex was investigated in male Wistar rats of different ages. The effect of Al3+-ions on 3H-choline uptake was also studied. Na-dependent high affinity uptake of 3H-choline and 3H-hemicholinium binding were lower in 10- to 11-month-old rats than in 3- to 4-month-old rats. There was no further decline in these parameters from 10- to 11-month-old to 24- to 25-month-old rats. Al3+-ions had no effect on the uptake of 3H-choline. The present study supports the hypothesis that there is a relationship between Na-dependent high affinity uptake of 3H-choline and the binding of 3H-hemicholinium in the crude synaptosomal fraction of the rat cerebral cortex.

Aging↗

Somatostatin-like immunoreactivity in human sympathetic ganglia.

The localization of somatostatin-like immunoreactivity (SOM-LI) was examined in human lumbar sympathetic ganglia using the peroxidase-antiperoxidase method. Few of the principal neurons showed immunolabelling for somatostatin and sparse networks of nerve terminals were unevenly associated with ganglion cells. Using light microscopy, the most intense SOM-LI was seen in the perinuclear zone of the neurons. Electron-microscopically, the staining was localized on the membranes of the Golgi apparatuses. In the nerve terminals, SOM-LI was seen inside the small vesicles (40-60 nm diameter). All neurons with SOM-LI were also found to be tyrosine-hydroxylase immunoreactive when examined with a double-staining technique. These results provide evidence that somatostatin and noradrenaline co-exist in human sympathetic neurons.

Female↗