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L Diop

Publications and source records attributed to L Diop.

At least 19 recordsLinked to original sources

Effect of fedotozine on the cardiovascular pain reflex induced by distension of the irritated colon in the anesthetized rat.

The effect of fedotozine was evaluated in a model of colonic hypersensibility to balloon distension in anesthetized rats. Acetic acid (0.6%, intracolonically) significantly enhanced the hypotension reflex response to colonic distension (P < 0.05). At a noxious pain pressure (75 mm Hg), fedotozine ((+)-(-1R)-1-phenyl-1-[(3,4,5- trimethoxy)benzyloxymethyl]-N,N-dimethyl-n-propylamine) had no effect at 0.6 and 1 mg/kg i.v. in saline-treated rats and higher doses were required to produce antinociception (ED50 = 2.57 mg/kg i.v.). By contrast, fedotozine at 0.6 and 1 mg/kg i.v. displayed 38 and 54% antinociception (P < 0.05) respectively, in acetic acid-treated animals, leading to a decrease in its ED50 (1.15 mg/kg i.v.). Similar results were obtained with (+/-)-trans-N-methyl-N-[2-(pyrrolidinyl)-cyclohexyl]benzo[b]-thiophene- 4-acetamide (PD-117,302), a kappa-opioid receptor agonist, while the antinociceptive action of morphine and a kappa-opioid receptor agonist, trans-(+/-)-3,4-dichloro-N-methyl-N-(2-[1- pyrrolidinyl]cyclohexyl)benzenacetamide ((+/-)-U-50,488H), was identical in control and acetic acid-treated animals. Nor-binaltorphimine, a selective kappa-opioid receptor antagonist, reversed the enhanced antinociceptive activity of fedotozine and PD-117,302. It is concluded that acetic acid induces colonic hypersensibility to painful mechanical stimuli and that some but not all kappa-opioid receptor ligands can have enhanced efficacy in this pathological situation.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh

Peripheral kappa-opioid receptors mediate the antinociceptive effect of fedotozine (correction of fetodozine) on the duodenal pain reflex inrat.

Fedotozine has been shown to act on gastrointestinal sensitivity through peripheral kappa-opioid receptors. The present study investigated the action of fedotozine and reference compounds, morphine and (+/-)-U-50,488H, on duodenal pain in anesthetized rats. The noxious stimulus was produced by duodenal distension (100 mm Hg; 30 s). Fedotozine (1-5 mg/kg i.v.) produced a dose-dependent inhibition of the cardiovascular reflex induced by duodenal distension (ED50 = 1.87 mg/kg) but had no effect at doses up to 300 micrograms/rat by either intracerebroventricular (i.c.v.) or intrathecal routes (i.t.). The mu-opioid receptor agonist, morphine, was active by both i.v. (ED50 = 0.62 mg/kg) and i.c.v. routes (ED50 = 2.17 micrograms/rat) as was the kappa-opioid receptor agonist, (+/-)-U-50,488H (trans-(+/-)-3,4-dichloro-N-methyl-N-(2-[1- pyrrolidinyl]cyclohexyl)benzeneacetamide) (ED50 = 0.25 mg/kg and 149 micrograms/rat for i.v. and i.c.v. routes, respectively). The selective kappa-opioid receptor antagonist, nor-binaltorphimine (10 mg/kg s.c.), abolished the response to fedotozine (5 mg/kg i.v.) and (+/-)-U-50,488H (2 mg/kg i.v.) but not that to morphine (1 mg/kg i.v.). In contrast, naloxone (30 micrograms/kg i.v.) blocked the response to morphine (1 mg/kg i.v.) but not that to fedotozine (5 mg/kg i.v.) or (+/-)-U-50,488H (2 mg/kg i.v.). It is concluded that the antinociceptive effects of fedotozine on duodenal pain are mediated by peripheral kappa-opioid receptors.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh

Role of vagal afferents in the antinociception produced by morphine and U-50,488H in the colonic pain reflex in rats.

The mechanisms underlying the antinociception induced by morphine or U-50,488H (trans-(+-)-3,4-dichloro-N-methyl-N-(2-[1-pyrrolidinyl]- cyclohexyl)benzeneacetamide) against painful colonic distension were examined in anaesthetized rats. The respective ED50 values for morphine and U-50,488H were 0.34 and 0.35 mg/kg for the i.v. route, and 1.68 and 167 micrograms/rat for the i.c.v. route. Morphine was active by the intrathecal route (ED50 = 7.8 micrograms) whereas U-50,488H had no effect at doses up to 100 micrograms/rat. The morphine response was selectively antagonized by naloxone (30 micrograms/kg i.v.) whereas that of U-50,488H was blocked by nor-binaltorphimine (10 mg/kg s.c.). Bilateral vagotomy abolished the response to morphine at 0.35 mg/kg i.v. and reduced by 41.3% that to 1 mg/kg morphine, but had no effect on that to U-50,488H or i.c.v. morphine (10 micrograms/rat). It is concluded that peripheral mu- and kappa-opioid receptors may produce antinociception for colonic pain and that vagal integrity is required for mu-opioid but not kappa-opioid peripheral antinociception.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh

Travel stress alters the intestinal migrating myoelectric complex in rats: antagonist effect of trimebutine.

A novel stress model was developed that may closely resemble a real-life situation. Intestinal motility was monitored in rats before and after a 12 hour train voyage (travel stress). Travel stress reduced the duration of phase III of the intestinal MMC by 30% (3.2 +/- 0.3 vs 4.7 +/- 0.6 min; p less than 0.001) while the durations of phase I and II were unaffected. This effect persisted for two days. Phase III duration returned to basal values after 3 days indicating a reversible alteration on intestinal migrating myoelectric complex (MMC). The infusion of trimebutine at a flow rate of 166 micrograms/kg/h during the stress exposure abolished the changes observed in the duration of phase III of the MMC; the infusion of diazepam (16.6 micrograms/kg/h) had no effect. These results indicate that the travel stress model may be similar to common life events that induce alterations of intestinal motility. Furthermore, trimebutine prevented the reduction of phase III duration induced by travel stress suggesting its possible action on mechanisms involved in the mediation of the stress-induced intestinal motility changes.

Animals

CRF triggers the CNS release of TRH in stress-induced changes in gastric emptying.

Stress elicited by exposure to cold induces an increase of gastric emptying (GE) and intestinal transit of a caloric meal in mice and the release of corticotropin-releasing factor (CRF) and thyrotropin-releasing hormone (TRH) in the central nervous system (CNS). The present study proposed 1) to compare in mice the central effects of TRH, CRF, and cold-exposure stress on GE and intestinal transit of a caloric test meal consisting of 0.5 ml of reconstituted milk marked with 51Cr-labeled sodium chromate, and 2) using CRF and TRH antisera to determine whether TRH and CRF act in cascade or independently. The intracerebroventricular (icv) injection of TRH (0.5 microgram/kg) and CRF (1 microgram/kg), as well as cold stress, significantly increased GE, whereas 10-fold higher doses injected intraperitoneally were ineffective. The effect of cold stress on GE was abolished by prior icv injection of both CRF and TRH antisera. The effect of TRH was not blocked by CRF antiserum, but TRH antiserum suppressed the increase in GE induced by CRF. Moreover, both CRF and TRH antisera abolished changes in the rate of GE induced by exogenous CRF and TRH injection, respectively, therefore demonstrating the specific efficiency of immunoneutralization. CRF and cold stress both induced an increase in the rate of intestinal transit, while TRH had no effect. Antibodies to CRF prevented the intestinal stimulatory effect induced by CRF and cold stress. In contrast, antibodies to TRH were unable to antagonize either CRF or cold-stress induced increase in the rate of intestinal transit.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

[Complete removable dentures and the elderly at I.O.S., Dakar].

INTRODUCTION: At I.O.S. Dakar, we have taken an essential interest in elderly persons with functional disorders, aesthetic and psychological. We have fixed the following objectives: to evaluate the importance of the elderly person in our surgery to define the major characteristics of this category of patient to single out the specific aspects of the restorative denture to make our teaching programmes more relevant. MATERIALS AND METHODS: Two complementary axes: a retrospective statistical descriptive study carried out on the records of patients at P.A.C. of I.O.S. during the previous three academic years of patients at P.A.C. of I.O.S. during the previous three academic years 1986-87, 88-89, 89-90. an analysis of the records based on the following variables: age, sex, place of living, occupation, type of complete attached dentures additionally, certain particular aspects of these patients have been studied. SELECTION CRITERIA: We have studied patients over 55 years of age who have either a single or bimaxillary replacement. VARIABLES STUDIED: two types of denture: unimaxillary CAD and bimaxillary CAD our patients were classed as: urban--living in Dakar and Gorée rural--coming from surrounding villages suburban--those coming from Pikine, Parcelles Assainies, Rufisque. for occupation: first sector--agriculture, fishing second sector--industrial or conversion workers third sector--service workers or tradesmen, housewives, pensioners, others. RESULTS AND COMMENTARY: the sex ratio is closely akin to that of the general population the majority of patients live in Dakar these are mainly housewives, retired people who could regularly attend our consultations and stay the course of our treatment, prosthetic restorations are complete attached bimaxillary dentures (79.14%). Clinical specifications: On a local clinical level, the total toothlessness of the elderly presents as: a muscular hypotomy, a loss of the vertical dimension of occlusion, a marked increase in nasal and oral fissures, a stiffening of the articular structures, a great reduction of osteo-mucus in the residual edges, a spreading of the tongue which invades the oral cavity, a loss of occlusive memory, Bearing on therapy and teaching: good clinical observation, constant reference to the medical services, appropriate surgery prior to denture fitting. CONCLUSION: This study shows us that at I.O.S. Dakar, persons over 55 coming to consult us are most often city dwellars and often housewives or retired people. The major purpose of these visits is functional. The minute failure rate encountered over these three years has led us to believe that prosthesis enjoys high esteem thanks to the raised criteria of competence, of knowledge and of the patience of the whole team.

Aged

Effects of sodium, lithium, and magnesium on in vitro binding of [3H]SCH23390 in rat neostriatum and cerebral cortex.

The effects of sodium, lithium, and magnesium on the in vitro binding properties of the D1 antagonist [3H]SCH23390 were examined with membrane preparations from rat neostriatum (CPU; caudate-putamen) and cerebral cortex (CTX). The saturation binding isotherms for both tissues performed in the presence of 120 mM of either Na+ or Li+ revealed an increase in the affinity, as compared to that observed when the incubation buffer was composed of Tris-Cl 50 mM with MgCl2 1 mM alone. For the CPU there were no changes in the maximum binding capacity (Bmax) in the different buffers used. In the case of the CTX, there was a loss of [3H]SCH23390 binding sites when either Na+ or Li+ 120 mM were added to the incubations, suggesting a lack of selectivity of this ligand in the absence of group IA cations. The agonist state of the [3H]SCH23390 binding site was studied in competition experiments with dopamine. The highest agonist affinity was obtained in 50 mM Tris-Cl buffer with 1 mM MgCl2 while the addition of 120 mM of either Na+ or Li+ caused a 3- to 5-fold decrease in the potency of dopamine to compete with specific [3H]SCH23390 binding in both CPU and CTX. The presence of magnesium was essential for the competition experiments; i.e.: a concentration of 1 mM MgCl2 was optimum to obtain dopamine antagonism of ligand binding, while increasing Mg2+ to 2 or 5 mM did not appear to further improve the inhibitions. The results support both agonist and antagonist affinity shifts for the dopamine D1 receptor labeled with [3H]SCH23390.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Distribution of dopamine D1 receptors in rat cortical areas, neostriatum, olfactory bulb and hippocampus in relation to endogenous dopamine contents.

The tritiated dopamine D1 antagonist SCH23390 was employed to determine the densities of D1 receptors in seven discrete and functionally identified cortical areas (cingulate, frontal, parietal, primary somatosensory, primary visual, retrosplenial and entorhinal-piriform) as well as in the neostriatum, hippocampus and olfactory bulbs. In addition, the tissue levels of the catecholamines NA, AD, DA, the indoleamine 5-HT and their main metabolites (MHPG, DOPAC, HVA, 3-MT, 5-HTP and 5-HIAA) were measured in the different regions by HPLC with electrochemical detection. The Scatchard analysis of saturation curves revealed the highest density of [3H]SCH23390 binding sites for the neostriatum, while the densities were 10-20 times lower for total cerebral cortex and hippocampus respectively. For the olfactory bulb and other cortical areas, D1 receptor densities were determined by equilibrium binding at a fixed radioligand concentration approaching saturation. The distribution of D1 receptors was heterogeneous with the greatest densities in entorhinal-piriform and cingulate cortices. The endogenous DA levels measured for all regions correlated with their metabolite (DOPAC, HVA and 3-MT) contents (r = 0.999; P less than 0.001). There was also a very good correlation (r = 0.981; P less than 0.001) between tissue DA and D1 receptor densities. This quantitative information reflects particular features of the organization of the DA systems and is discussed in relation to turnover and recently established aspects of the DA innervation.

Animals

Noradrenaline content and adrenergic receptors in kidney and heart of the prehypertensive and hypertensive Lyon rat strain.

Sympathetic activity modulates the blood pressure in part by activation of cardiac and renal adrenergic receptors. Thus an alteration of tissue noradrenaline content and/or adrenergic receptors in heart and kidney might be involved in the pathogenesis of hypertension. In order to verify this possibility, we studied tissue noradrenaline content and alpha and beta adrenergic receptors in the heart and kidney of Lyon hypertensive (LH), normotensive (LN), and low-pressure (LL) rats. Density and affinity of receptors were determined using the specific radioligands [3H]-prazosin (alpha 1), [3H]-rauwolscine (alpha 2), and [3H]-dihydroalprenolol (beta) in prehypertensive (5-week-old) and hypertensive (21-week-old) rats. In the prehypertensive period, no differences concerning renal and cardiac noradrenaline content and adrenergic receptor densities and affinities were observed. In the hypertensive period, an age-related decrease of renal alpha 1 and beta receptors was observed in LN and LL (P less than 0.01) but not in LH rats. Consequently, at this time, density of renal alpha 1 and beta receptors was higher in LH than in LN and LL (P less than 0.01). In contrast, the density and affinity of renal alpha 2 and cardiac alpha 1 and beta receptors and tissue noradrenaline content were similar in the three rat strains. Because renal alpha 1 and beta receptors mediate various functions involved in the control of blood pressure such as tubular sodium reabsorption, renin secretion, and glomerular filtration, the different density of these receptors in LH rats might be involved in the development or maintenance of hypertension.

Aging

Specific [3H]SCH23390 binding to dopamine D1 receptors in cerebral cortex and neostriatum: evidence for heterogeneities in affinity states and cortical distribution.

The tritiated antagonist SCH23390 was used to identify dopamine D1 receptors in the cerebral cortex and neostriatum. The kinetic properties of binding were investigated in parallel experiments with membrane preparations from both tissues. The densities of receptors (Bmax) and the dissociation constants (KD) were determined from saturation curves, and the specificity of binding verified in competition experiments using agonists and antagonists. The cortical D1 receptor displays the same pharmacological selectivity (including stereospecificity) and kinetic properties as the neostriatal D1 receptor. From both the dissociation kinetics by dilution and the competition curves, it could be established that there is an heterogeneity of binding probably due to high- and low-affinity states. Endogenous dopamine, 4-hydroxy-3-methoxyphenylacetic acid, 3,4-dihydroxyphenylacetic acid, and 3-methoxytyramine contents, as well as D1 receptor distribution, were measured for the neostriatum and four localized cortical areas: anterior cingulate, primary somatosensory, primary visual, and piriform-entorhinal. For the regions examined, the distribution of D1 receptors is heterogeneous, but correlates very well (r greater than 0.98) with the endogenous levels of dopamine and its major metabolites.

Animals

Noradrenergic effects on rat visual cortex: single-cell microiontophoretic studies of alpha-2 adrenergic receptors.

The catecholamine noradrenaline has been proposed to modulate the excitability of cortical neurons, and such a regulation may be mediated by specific adrenergic receptors. We characterized, using electrophysiological recordings, the types of responses of single cells in the rat visual cortex (areas 17 and 18) to the iontophoretic application of adrenergic agents. For the majority of spontaneous and visually-driven cells sampled, noradrenaline decreased the firing frequency, and in some cases of visually-driven cells could increase the signal/noise ratio. These effects were also documented after the application of the alpha-2 adrenergic agonists clonidine and oxymetazoline, and could be reduced or blocked by a previous ejection of the specific alpha-2 antagonist idazoxan. The present study supports a role for alpha-2 adrenoceptors in the modulation of sensory inputs to the visual cortex.

Adrenergic alpha-Agonists

Adrenergic receptor and catecholamine distribution in rat cerebral cortex: binding studies with [3H]prazosin, [3H]idazoxan and [3H]dihydroalprenolol.

The tritiated adrenergic antagonists [3H]dihydroalprenolol ([3H]DHA; beta-receptors), [3H]prazosin ([3H]PRZ; alpha 1-receptors), and [3H]idazoxan ([3H]IDA; alpha 2-receptors) were used to determine the distribution of these sites in 5 defined areas of the adult rat cerebral cortex. The highest density of [3H]PRZ binding was found in the prefrontal cortex, with a lower and homogeneous distribution for the frontal, parietal, occipital and temporal areas. The [3H]IDA binding sites were fairly uniform for all areas, except for the temporal cortex where it was very dense. In contrast, beta-adrenoceptors labelled by [3H]DHA were very homogeneous for all the regions examined. The functional significance of the distribution of alpha 1, alpha 2 and beta-adrenoceptors is discussed in relation to the catecholamine innervation and monoamine contents measured by high performance liquid chromatography.

Alprenolol

Stereospecific binding of a new benzazepine, [3H]SCH23390, in cortex and neostriatum.

The binding of the D1 antagonist SCH23390 to membrane preparations from rat cerebral cortex was examined using enantiomers of dopamine agonists and antagonists to compete with the bound [3H]SCH23390 at its Kd value. The competition curves were compared with those obtained with preparations from the neostriatum. The results demonstrate that specific [3H]SCH23390 binding in the cerebral cortex has the same pharmacological profile as in the neostriatum, so that this radioligand can be used to label dopamine D1 receptors in brain regions with a sparse dopaminergic innervation.

Animals

Selective modification of renal alpha 2-adrenergic receptors in Milan hypertensive rat strain.

Cerebral and renal alpha-adrenergic receptors play an important role in the control of blood pressure. We studied alpha-adrenergic receptors in the cerebral and renal cortex of Milan hypertensive strain (MHS) and normotensive strain (MNS) rats, a genetic model of spontaneous hypertension linked to a kidney abnormality. Binding of the selective alpha 1-adrenergic antagonist [3H]prazosin and the alpha 2-adrenergic antagonist [3H]rauwolscine was used for receptor studies in tissues of prehypertensive (24-day-old) and hypertensive (60-day-old) rats. In the cerebral cortex, no between-strain differences in alpha 1-adrenergic and alpha 2-adrenergic receptor density and affinity were observed in prehypertensive and hypertensive periods. The density of these receptors increased similarly with age in MHS and MNS rats. In the renal cortex, the differences between MHS and MNS rats concerned alpha 2-adrenergic receptors only. Compared with their age-matched normotensive controls, MHS rats showed 1) a lower affinity for the antagonist (p less than 0.05) in the prehypertensive period, 2) absence of the normal age-related increase in receptor density, and 3) a lower density of [3H]rauwolscine binding sites (p less than 0.001) in the hypertensive period. In this period, studies of competitive inhibition of [3H]rauwolscine binding showed that l-epinephrine bound to one class of sites in MHS rats (pseudo-Hill plot, 0.90) and to two classes in MNS rats (pseudo-Hill plot, 0.68). In addition, the lack of any guanylylimidodiphosphate effect on the l-epinephrine competition curve observed in MHS rats suggests the uncoupling of these receptors from the guanosine 5'-triphosphate binding protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors

Changes in central alpha-adrenoceptors and noradrenaline content after high sodium intake in Sabra salt-sensitive and salt-resistant rats.

Several studies have suggested a correlation between sodium accumulation and the development of hypertension. However, the mechanisms whereby sodium is able to increase blood pressure remain unclear. In the present study, alpha-adrenoceptors and noradrenaline contents have been studied in the cerebral cortex, hypothalamus and medulla oblongata in the Sabra rat strain in order to define their role in the resistance or sensitivity to sodium-induced hypertension. Alpha-Adrenoceptors were defined using the selective ligands 3H-prazosin and 3H-rauwolscine for alpha 1- and alpha 2-adrenoceptors, respectively. Under normal sodium diet, alpha 2-adrenoceptor density was higher in cerebral cortex and lower in hypothalamus and medulla oblongata of SBN (salt-resistant) compared to SBH (salt-sensitive) rats. Five weeks of high sodium intake induced a decrease in alpha 2-adrenoceptor density in cerebral cortex and an increase in hypothalamus only in SBN rats. These changes abolished the differences between SBH and SBN rats observed with a normal sodium diet. No changes in density and affinity of alpha 2-adrenoceptors were observed in medulla oblongata of SBN and SBH rats. Density and affinity of alpha 1-adrenoceptors were similar in SBN and SBH rats in all the tissues studied and they were unaffected by the high sodium diet. Noradrenaline contents in cerebral cortex, hypothalamus and medulla oblongata were also similar in the two rat substrains under normal sodium diet, but high sodium intake induced a decrease cerebrocortical noradrenaline content only in SBN rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Sabra rats as a model to differentiate between Na+ and GTP regulation of alpha 2-adrenoceptor densities.

Sodium ions and guanyl nucleotides play an important role in increasing alpha 2-adrenoceptor densities in cerebral and renal cortex of normotensive rats. The in vitro effect of Na+ and GTP was investigated on cerebral and renal alpha-adrenoceptors in hypertensive (SBH, salt-sensitive) and normotensive (SBN, salt-resistant) Sabra rats. In SBH and SBN rats, guanyl nucleotides increased cerebral and renal high-affinity alpha 2-adrenoceptor densities. Sodium ions, in contrast, markedly increased cerebral and renal high affinity alpha 2-adrenoceptor densities only in SBH rats. Under these conditions, alpha 1-adrenoceptor densities were unchanged. Thus, although Na+ and GTP both increase alpha 2-adrenoceptor densities, these agents appear to mediate their regulatory effects via different membrane components. Moreover, the absence of sodium regulation of alpha 2-adrenoceptors in SBN rats may be responsible for the resistance to salt-induced hypertension.

Animals

Cerebral and renal alpha-adrenoceptors in Sabra hypertensive (SBH) and normotensive (SBN) rats: effects of high-sodium diet.

The aim of the present study was to investigate the effect of high (8%) versus normal (0.2%) sodium diet on cerebral and renal alpha-adrenoceptors of Sabra hypertensive (SBH) and normotensive (SBN) rats. Cerebral alpha 2-adrenoceptor densities were higher in SBN than in SBH rats. In contrast, renal alpha 2-adrenoceptor density was higher in SBH than in SBN rats. No difference in alpha 1-adrenoceptor densities was observed between the two strains. After 2 and 5 weeks of high-sodium diet, alpha 2-adrenoceptor densities were increased in renal cortex of SBH and SBN rats. In contrast, cerebral alpha 2-adrenoceptor densities were markedly decreased in SBN but not in SBH rats. alpha 1-Adrenoceptor densities were unchanged by high salt intake. Blood pressure increased only after 5 weeks of high-sodium diet, markedly in SBH and to a lesser extent in SBN rats. The variation in alpha 2-adrenoceptor densities thus preceded the blood pressure elevation. The dietary sodium-induced increase in renal alpha 2-adrenoceptor densities observed both in SBH and SBN rats does not appear to be a genetic marker of hypertension. In contrast, the marked decrease in cerebral alpha 2-adrenoceptors in SBN rats may represent an adaptative change in sympathetic activity responsible for the resistance to the development of salt-induced hypertension.

Animals

Dietary sodium regulation of alpha 2-adrenoceptors in Sabra hypertensive (SHB) and normotensive (SBN) rats.

Cerebral and renal alpha 2-adrenoceptors, modulated in vitro by sodium ions, are implicated in the control of sympathetic activity and of sodium reabsorption, respectively. The aim of the present study was to investigate the effect of high (8%) versus normal (0.2%) sodium diet on cerebral and renal alpha-adrenoceptors of Sabra hypertensive (SBH) and normotensive (SBN) rats. After two or five weeks of high sodium diet alpha 2-adrenoceptor density was increased in the renal cortex of SHB and SBN rats. In contrast, cerebral alpha 2-adrenoceptor densities were markedly decreased in SBN but unchanged in SBH rats. Blood pressure increased only after five weeks of high sodium diet, in SBH and to a lesser extent in SBN rats. The change in alpha 2-adrenoceptor densities thus preceded the blood pressure elevation. The dietary sodium-induced increase in renal alpha 2-adrenoceptor densities which precedes the blood pressure elevation does not appear to be a genetic marker of hypertension. Conversely, the marked decrease of cerebral alpha 2-adrenoceptors in SBN rats may represent an adaptative change in sympathetic activity responsible for the resistance to the development of salt-induced hypertension.

Animals