Search PubMed⌕ Search

Biomedical subjects

M Palkovits

Publications and source records attributed to M Palkovits.

At least 163 records · Page 9Linked to original sources

Neuropeptide Y-containing neuronal pathway from the spinal trigeminal nucleus to the pontine peribrachial region in the rat.

The existence of ascending medullary neuropeptide Y (NPY)-containing projection from the spinal trigeminal nucleus to the pontine peribrachial area has been demonstrated by a combination of immunohistochemical methods with surgical transections in the lower brainstem. An NPY immunopositive cluster of varicose fibers was detected in the spinal trigeminal and in the paratrigeminal nuclei. Numerous immunoreactive perikarya could also be visualized here after colchicine treatment. Transections destroying the lateral region of the medulla oblongata resulted in an accumulation of NPY immunoreactivity in several trigeminal neurons ipsilateral to the knife cut, but no such retrograde accumulation was seen in any neuronal perikarya anywhere else in the medulla oblongata.

Animals↗

Hypothalamic blood flow autoregulation remains unaltered following surgical and pharmacological blockade of central vasopressin.

Experiments were carried out in urethane anaesthetized, ventilated rats to determine if brain arginine-vasopressin (AVP) plays a physiological role in cerebral blood flow autoregulation. Autoregulation was tested by determining local hypothalamic blood flow in the mediobasal hypothalamic area (HBF; H2-gas clearance technique) during consecutive stepwise lowering of systemic mean arterial pressure to 80, 60 and 40 mm Hg, by hemorrhage. Endogenous AVP was blocked by transecting the rostral, lateral and dorsal neuronal connections of the hypothalamus (including the median eminence) from all major brain areas, by bilateral transection of the vasopressin-containing fibres in the hypothalamo-hypophyseal tract to the median eminence at the level of the lateral retrochiasmatic area (RCAL), and finally by intracerebroventricular (i.c.v.) administration of an AVP antagonist, d(CH2)5Tyr(Me)AVP (AAVP). Significant increases of daily water intake indicated impaired vasopressin release following both types of surgical transection. Resting HBF was significantly elevated both after surgical isolation of the hypothalamus and after 10 ng AAVP administration compared to controls. Blood flow autoregulation in the hypothalamic region was seriously impaired following surgical isolation of the hypothalamus. However, HBF autoregulation remained just as effective as that of the control rats following either selective bilateral transection of the vasopressin pathways or following AAVP treatment. The present data indicate that AVP may play a role in the control of resting hypothalamic blood flow, but does not support a role of AVP in HBF autoregulatory mechanisms.

Animals↗

Hypothalamic paraventricular nucleus: a quantitative analysis of cytoarchitectonic subdivisions in the rat.

The boundaries of subnuclei of the hypothalamic paraventricular nucleus (PVN) were outlined on the basis of a step by step computer-assisted image analysis of coronal, serial sections of the hypothalamus in rats. The cell size-frequency histogram, cell packing density, and the cell number were determined for each PVN subdivision. Three principal cell types were distinguished: small, short diameter (d) = 6-10 microns; medium-sized, d = 10-13 microns; and large, d = 13-19 microns. None of these cell types occur exclusively in any PVN subdivision. According to the predominant cell type, the PVN can be divided into magnocellular, mediocellular and parvicellular subnuclei. Large cells appear to form one subdivision in which the cell packing density is relatively stable. Although the cell sizes showed a relatively large variation, no definitive subgroups (parts) could be distinguished. On the basis of cell packing density, the parvicellular and mediocellular subnuclei can be further divided. The mediocellular cell group can be divided into a dorsal and a posterior subdivision. The parvicellular zone is subdivided into a periventricular and a large medial subdivision. Based on inhomogeneities in cell packing density, the medial subdivision can be further divided into anterior, dorso-lateral, ventromedial and caudal parts. The estimated total cell number in the PVN (in both sides of the brain) is about 21,500. On average, 19% of this population, i.e., 4,200 neurons, was calculated in the magnocellular (neurosecretory) division. Out of this, only 66%, about 2,700 cells, falls into the category of large cells. There are approximately 5,700 neurons in the posterior and dorsal mediocellular, and about 11,600 in the periventricular and medial parvicellular subdivisions.

Animals↗

The origin of somatostatin-containing nerve fibers innervating the hypothalamic supraoptic nucleus.

Light and electron microscopic studies were performed to study the connections between somatostatin (SOS)-containing nerve terminals and vasopressin (VP)-containing neurons in the rat supraoptic nucleus (SON). SOS-positive fibers innervate the SON in both the oxytocinergic and vasopressinergic areas. Using double immunostaining symmetric synaptic contacts were visualized between SOS immunoreactive boutons and the soma of VP immunopositive neurons. Surgical transection deafferentiating the SON from all possible directions do not effect the presence of SOS immunopositive fibers. These results suggest a local origin of the SOS fibers. Somatostatin-containing perikarya can indeed be found at the dorsal border of the SON at the rostral and caudal pole of the nucleus--we suggest that these cells innervate the SON. The presence of synaptic contacts between SOS fibers and VP neurons as well as the lack of these fibers in the VP deficient Brattleboro rats indicate a role for SOS in the synthesis and/or release of vasopressin in the SON.

Animals↗

Regional distribution of arylamine and arylalkylamine N-acetyltransferase activities in the rat brain.

Arylamine and arylalkylamine N-acetyltransferase (NAT) activities were measured separately in different areas of the rat brain using specific substrates. Relatively high levels of arylamine NAT activity were detected in all areas examined. Arylalkylamine NAT activity in these areas ranged from 2 to 5% of the arylamine NAT activity. The possibility that arylamine NAT may be involved in the control of kynurenine metabolism in the brain is discussed.

Animals↗

Effect of optic nerve transection on N-acetylaspartylglutamate immunoreactivity in the primary and accessory optic projection systems in the rat.

Evidence has been presented in recent years that support the hypothesis that N-acetylaspartylglutamate (NAAG) may be involved in synaptic transmission in the optic tract of mammals. Using a modified fixation protocol, we have determined the detailed distribution of NAAG immunoreactivity (NAAG-IR) in retinal ganglion cells and optic projections of the rat. Following optic nerve transection, dramatic losses of NAAG-IR were observed in the neuropil of all retinal target zones including the lateral geniculate nucleus, superior colliculus, nucleus of the optic tract, the dorsal and medial terminal nuclei and suprachiasmatic nucleus. Brain regions were microdissected and NAAG levels measured by a radioimmunoassay (RIA) (IC50: NAAG = 2.5 nM, NAA = 100 microM; smallest detectable amount = 1-2 pg/assay). Large decreases (50-60%) in NAAG levels were detected in the lateral geniculate, superior colliculus and suprachiasmatic nucleus. Moderate losses (25-45%) were noted in the pretectal nucleus and the nucleus of the optic tract. Smaller changes (15-20%) were detected in the paraventricular nucleus and the pretectal area. These results are consistent with a synaptic communication role for NAAG in the visual system.

Animals↗

Atrial natriuretic peptide in the locus coeruleus and its possible role in the regulation of arterial blood pressure, fluid and electrolyte homeostasis.

Atrial natriuretic factor (ANP) is present in neuronal cells of the locus coeruleus and its vicinity in the pontine tegmentum and moderate amount of ANP is detectable in this area by radioimmunoassay. The ANP (both peripheral and brain-born) is known as a neuropeptide which may influence the body salt and water homeostasis and blood pressure by targeting both central and peripheral regulatory mechanisms. Whether this pontine ANP cell group is involved in any of these regulatory mechanisms, the effect of various types of hypertension and experimental alterations in the salt and water balance on ANP levels was measured by radioimmunoassay in the locus coeruleus of rats. Adrenalectomy, as well as aldosterone and dexamethasone treatments failed to alter ANP levels in the locus coeruleus. Reduced ANP levels were measured in spontaneously hypertensive (both young and adult) rats, and in diabetes insipidus (Brattleboro) rats with vasopressin replacement. In contrast to these situations, elevated ANP levels were found in rats with DOCA-salt or 1-kidney-1-clip hypertension. These data suggest a link between ANP levels in the locus coeruleus and fluid volume homeostasis. Whether this link is causal and connected with the major activity of locus coeruleus neurons (noradrenergic influence on brain regulatory activities) needs further informations.

Adrenalectomy↗

Time dependent changes in CRF and its mRNA in the neurons of the inferior olive following surgical transection of the olivocerebellar tract in the rat.

Changes in corticotropin-releasing factor (CRF) immunostaining and CRF mRNA in neurons of the inferior olive were compared following unilateral surgical transections of the olivocerebellar tract. Alterations in CRF immunoreactivity could not be observed earlier than 24 h after surgery. The difference--an accumulation in the contralateral side--was most pronounced at 3 days, and disappeared by the 7th postoperative day. On the other hand, changes in mRNA could be observed as early as 5-30 min after the transection. The most significant accumulation was present at 3 h after the cut and no difference could be observed from the 3rd day following surgery. The results suggest that changes in mRNA levels by axotomy may occur at an earlier time point than previously thought.

Animals↗

Corticotropin-releasing hormone-containing neurons in the hypothalamo-hypophyseal system in rats six weeks after bilateral lesions of the paraventricular nucleus.

Corticotropin-releasing factor-like immunoreactive nerve fibers and varicosities are present in the pituitary stalk and median eminence 6 weeks after bilateral lesioning of the hypothalamic paraventricular nucleus. The total immunoreactivity may reach 10% of the control density. The origin of these fibers was investigated 3 days after hypothalamic transections in paraventricular-lesioned (6 weeks postoperatively) rats. Accumulations of corticotropin-releasing factor immunostaining were observed in the proximal portions of the transected axons and in neuronal perikarya. Fibers with retrograde labeling were seen lateral and dorsolateral from the sagittally oriented knife cuts which transected the retrochiasmatic area and cells were found in the supraoptic nucleus and in the perifornical nucleus (dorsal-dorsolateral to the fornix), ipsilateral to the lesion. No corticotropin-releasing factor immunostained cells were seen in other hypothalamic or preoptic nuclei which project to the median eminence or the posterior pituitary. Corticotropin-releasing factor containing cells in the supraoptic and perifornical nuclei may have an importance in stress response in rats with long-term paraventricular lesions.

Animals↗

Changes in the central ANF-system of renovascular hypertensive rats.

The central atrial natriuretic peptides (ANF)-system was investigated in volume-dependent, one-kidney, one-clip (1K1C) and renin-dependent two-kidney, one-clip (2K1C) renovascular hypertensive rats by radioimmunological measurement of ANF concentration in 18 selected brain areas. Significant changes were found in nine brain areas of 1K1C and in eight brain areas of 2K1C hypertensive rats. Except undirectional changes in the organum vasculosum laminae terminalis and the supraoptic nucleus, ANF concentration was changed in the opposite direction in all other brain areas, with an activation of the central ANF system in 1K1C and an inhibition in 2K1C hypertension. The localization of the alterations (circumventricular organs, anteroventral third ventricle region, hypothalamo hypophyseal system, brain stem) implies major differences in the central regulation of blood pressure and electrolyte and fluid homeostasis between these two models. The activation of the central ANF system in 1K1C hypertension may be a compensatory mechanism to prevent further increments in blood pressure and plasma volume. In contrast, the depression of the central ANF system in 2K1C hypertension may promote the elevation of the blood pressure.

Animals↗

Effects of aldosterone and dexamethasone on atrial natriuretic peptide levels in preoptic and hypothalamic nuclei of adrenalectomized and intact rats.

The effect of aldosterone and dexamethasone on the concentrations of atrial natriuretic peptide (ANP) in preoptic and hypothalamic nuclei was examined in adrenalectomized and intact rats. Five days after adrenalectomy, increased ANP levels in those brain areas which control water intake, i.e. in the subfornical organ, supraoptic nucleus, and in the so-called hypothalamic drinking centers (perifornical nucleus, lateral hypothalamic area) were measured. In contrast to this, adrenalectomy decreased ANP levels markedly in the organum vasculosum laminae terminalis and preoptic periventricular nucleus, which are reportedly involved in the central regulation of salt and water homeostasis. ANP contents of these two preoptic structures were restored almost completely by daily administration of 0.9% sodium chloride or aldosterone but not dexamethasone. The daily administration of aldosterone elevated ANP levels in the supraoptic, paraventricular and perifornical nuclei as well as in the lateral hypothalamus both in control and adrenalectomized rats. Dexamethasone which was without any significant effect on preoptic and hypothalamic nuclei in control rats elevated ANP levels in the supraoptic and perifornical nuclei and in the lateral hypothalamic area of adrenalectomized animals. Since neither adrenalectomy, nor aldosterone or dexamethasone treatment influenced plasma ANP levels, altered ANP contents measured in preoptic and hypothalamic nuclei may represent a direct effect of adrenal corticoids (mainly aldosterone) on brain ANP-containing neurons which may participate in the control of body fluid and electrolyte homeostasis.

Adrenalectomy↗

Neuropeptides in atrial subepicardial ganglia of rats.

The distribution of several neuropeptides in subepicardial atrial ganglia was examined in the rat heart by using immunohistochemical techniques. Some of the ganglion cells in the right atrium exhibited neuropeptide Y-immunoreactivity while no immunostaining was found with antisera against atrial natriuretic polypeptide (ANF), substance P, vasoactive intestinal polypeptide (VIP), and calcitonin gene-related peptide (CGRP). Nerve fibers in and around the ganglia showed neuropeptide Y, calcitonin gene-related peptide and vasoactive intestinal polypeptide immunoreactivities. Some of these immunoreactive fibers (substance P, calcitonin gene-related peptide, neuropeptide Y) formed relatively dense networks around blood vessels and capillaries. Atrial natriuretic polypeptide-like immunoreactivity which was present in atrial myocytes failed to show up in any neuronal elements in the rat heart.

Animals↗

Neuropeptides in atrial subepicardial ganglia of rats.

The distribution of several neuropeptides in subepicardial atrial ganglia was examined in the rat heart by using immunohistochemical techniques. Some of the ganglion cells in the right atrium exhibited neuropeptide Y-immunoreactivity while no immunostaining was found with antisera against atrial natriuretic polypeptide (ANF), substance P, vasoactive intestinal polypeptide (VIP), and calcitonin gene-related peptide (CGRP). Nerve fibers in and around the ganglia showed neuropeptide Y, calcitonin gene-related peptide and vasoactive intestinal polypeptide immunoreactivities. Some of these immunoreactive fibers (substance P, calcitonin gene-related peptide, neuropeptide Y) formed relatively dense networks around blood vessels and capillaries. Atrial natriuretic polypeptide-like immunoreactivity which was present in atrial myocytes failed to show up in any neuronal elements in the rat heart.

Animals↗

Neuropeptide content and connectivity of the rat claustrum.

The rat claustrum has a homogeneous distribution of the neuropeptides somatostatin (SOM), cholecystokinin (CCK) and vasoactive intestinal polypeptide (VIP) along its rostrocaudal axis. In general, neuropeptide levels are comparable to those of overlying pyriform cortex. Visualization of mRNA encoding SOM, CCK and VIP in cell bodies of the claustrum by in situ hybridization histochemistry demonstrates that all 3 neuropeptides are contained in intrinsic claustral neurons. Mid-coronal section of the claustrum itself, or interruption of potential rostral, caudal or medial connections between the claustrum and the rest of the brain did not significantly alter levels of VIP, SOM or CCK in claustrum, cerebral cortex, or basal ganglia. Isolation of the claustrum from the cerebral cortex immediately dorsal to it along its rostrocaudal aspect caused no change in peptide levels in claustrum indicating that VIP, SOM and CCK projections to claustrum do not arrive from dorsal cortical areas. Transection of the external capsule above the claustrum caused a 50-100% elevation of all 3 peptides on the contralateral side of the lesion, suggesting that VIP, SOM and CCK synthesis and/or release within the claustrum may be regulated by projections from the contralateral side. VIP, SOM and CCK are candidates for neurotransmitters contained in neurons whose cell bodies are within the claustrum and possibly also immediately overlying lateral neocortex, and have their terminals mainly within the claustrum itself.

Animals↗

Dynorphin A-containing neural elements in the nucleus of the solitary tract of the rat. Light and electron microscopic immunohistochemistry.

Distribution of dynorphin A (DyA) immunoreactivity in the nucleus of the solitary tract (NTS) was examined in rats after various surgical transections by light and electron microscopic immunohistochemistry. In colchicine-treated animals DyA immunostained perikarya were seen in each subdivision of the NTS. In intact rats, dense network of immunopositive nerve fibers was localized light microscopically, and synaptic contacts were found between DyA immunopositive structures (axo-axonic, axo-dendritic synapses), electron microscopically. Surgical transections medial, caudal or rostral to the nucleus did not alter the distribution pattern of DyA in the NTS. Lesion immediately lateral to the nucleus resulted in an ipsilateral appearance of immunostained cell bodies. Vagal and glossopharyngeal afferents (including baroreceptor fibers) terminate in the medial and commissural subnucleus of the NTS. Two days after extracranial vagotomy, synaptic contacts between degenerated presynaptic boutons and DyA immunopositive postsynaptic elements were observed in both medial and commissural part of the NTS. These observations provide morphological evidence suggesting that (1) axons of dynorphin A-containing cell bodies form an intrinsic network inside the nucleus; (2) these DyA cells receive direct peripheral inputs through the vagus nerve, and (3) projecting DyA neurons may exist in the NTS, they may innervate medullary, rather than forebrain, higher brainstem or spinal cord neurons.

Animals↗

Peptidergic innervation of the locus coeruleus cells in the human brain.

The immunocytochemical localization of corticotropin-releasing factor (CRF), thyrotropin-releasing hormone (TRH), substance P (SP), neuropeptide Y (NPY), and neurotensin (NT) were studied in the human locus coeruleus (LC) using the avidin-biotin complex (ABC) technique. The brains were obtained from 3 adult male human subjects of 36-61 years old. All of these peptides studied were present in nerve fibers and varicosities throughout the entire nucleus, where they distributed unevenly. The highest density of immunoreactive neuronal networks was generally observed in the middle and to a lesser extent in the caudal part of the nucleus, while only scattered fibers were seen in the rostral part of the LC. Among the investigated neuronal peptides, the CRF-immunopositive network was the most dense, less dense immunostaining with TRH and NPY antisera while only few SP- and NT-immunoreactive fibers were present in the nucleus. Cell bodies immunostained for the above peptides were not seen in the LC. Per analogiam with rats, fibers immunostained in the LC may be of both intrinsic and extrinsic origins.

Adult↗

Neuropeptide Y innervation of ACTH-immunoreactive neurons in the arcuate nucleus of rats: a correlated light and electron microscopic double immunolabeling study.

A fairly high number of neuropeptide Y (NPY) and adrenocorticotropic hormone (ACTH) immunoreactive (ir) neuronal perikarya and dense networks of NPY-ir fibers are present in the hypothalamic arcuate nucleus of rats. Light and electron microscopic double immunolabeling techniques were used to demonstrate morphological connections between NPY-ir nerve fibers and ACTH-ir neurons here. Silver-gold intensified diaminobenzidine (DAB) labeling of perikaryal-dendritic immunoreactivity followed by a second, non-intensified DAB chromogen labeling of immunoreactive nerve terminals was used and recommended in the above sequence as a method of choice for the detection of synaptic contacts with double-labeling technique. By this way, NPY-immunoreactivity was localized in axons and axonal terminals forming a variety of conventional synaptic contacts with ACTH-ir neuronal perikarya and dendrites in the arcuate nucleus.

Adrenocorticotropic Hormone↗