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J Tremblay

Publications and source records attributed to J Tremblay.

At least 91 records · Page 5Linked to original sources

Apoptosis in target organs of hypertension.

Apoptosis or programmed cell death frequently parallels abnormalities in cell proliferation and differentiation. As hypertrophy/hyperplasia or remodeling occurs in organs affected by hypertension, we evaluated the degree of apoptosis in the heart, kidney, and brain in situ in genetically hypertensive mice and rats as well as in cultured vascular smooth muscle cells. Apoptosis was characterized by morphological features, DNA fragmentation, and laddering as well as by terminal deoxynucleotidyl transferase labeling of the 3' OH ends of both extracted DNA and tissue sections. The present report provides the first evidence of increased apoptosis in whole organs of genetically hypertensive rat and mouse strains: in the heart of spontaneously hypertensive rats (SHR) and in the heart (ventricular cardiomyocytes), kidney (inner cortex and medulla), and brain (cortex, striatum, hippocampus, and thalamus) of spontaneously hypertensive mice, with a higher effect of apoptotic inducers in cultured aortic smooth muscle cells derived from SHR. Both types of known apoptotic processes, oligonucleosomal cleavage and large DNA fragmentation, were observed in vascular smooth muscle cells, but only the former appeared to be increased in SHR. This study underlines the importance of cell death dysregulation in hypertension, reveals a new route for investigation of the pathogenesis of hypertension, and suggests novel targets of therapeutic intervention.

Animals↗

Characterization and distribution of natriuretic peptide receptors in the rat uterus.

Atrial natriuretic peptide (ANP) receptors were characterized in rat uterus. The binding of [125I]ANP to uterine membranes was completely competed for by increasing concentrations of unlabeled ANP (Kd = 0.39 nM) and brain natriuretic peptide (Kd = 1.24 nM) and partially by C-type natriuretic peptide (CNP; Kd = 80.4 nM), but not by C-ANF. Also, [125I]Tyr-CNP bound to uterine membranes was completely competed by unlabeled CNP (Kd = 1.12 nM). Cross-linking of [125I]ANP to uterine membranes revealed the presence of one band of 130 kilodaltons, corresponding to the guanylyl cyclase (GC-A and/or GC-B) subtypes of natriuretic peptide receptors. The presence of messenger RNA coding for genes of both GC-A and GC-B receptors was shown by quantitative reverse transcriptase polymerase chain reaction. Furthermore, ANP and, to a lesser degree, CNP stimulated the production of cGMP in rat uterus. Autoradiographic studies localized the highest binding of [125I]ANP in the endometrium, whereas [125I]Tyr-CNP binding was distributed in the endometrium as well as in the myometrium. These results demonstrate that rat uterine ANP receptors are of the guanylyl cyclase-coupled subtypes. The uterus is a target of natriuretic peptides where ANP induces its biological effects through the production of cGMP.

Animals↗

Regulation of renal atrial natriuretic peptide receptors in pregnant sheep.

These studies were designed to characterize the atrial natriuretic peptide (ANF) receptor subtypes (guanylyl cyclase GC-A and GC-B and ANF-C) in normal sheep kidneys and to evaluate alterations in receptor kinetics during pregnancy. Kidneys were obtained from 12 nonpregnant and 12 pregnant sheep during late gestation and maintained on a 100 mmol/day salt intake. Competition binding receptor assays using [125I]human ANF showed that inner medullary membranes are exclusively of the GC-A subtype. The maximum binding capacity (Bmax, 109 +/- 12 vs. 89 +/- 18 fmol/mg protein) and dissociation constant (Kd, 240 +/- 70 vs. 324 +/- 99 pM) are not altered by pregnancy. Specific binding of glomerular membranes to [125I]Tyr-C-type natriuretic peptide, which shows the highest affinity toward GC-B receptors, was observed, but this binding was abolished when ANF-C receptors were saturated with excess C-ANF-(101-121), suggesting that [125I]Tyr-C-type natriuretic peptide binding was mediated by ANF-C receptors. Binding of [125I]human ANF to glomerular membranes revealed that glomerular ANF receptor number was reduced during pregnancy (1040 +/- 212 vs. 335 +/- 42 fmol/mg protein; P = 0.001), but binding affinity was not changed. The reduced number was mainly due to a decrease in ANF-C receptor density (832 +/- 213 vs. 260 +/- 31 fmol/mg protein; P = 0.005). Autoradiography of whole kidney frozen sections produced similar findings. These studies demonstrate that GC-B receptors are absent from renal glomeruli and inner medulla, and that ANF receptor subtypes are differentially regulated in the pregnant sheep kidney, suggesting a role for ANF in the altered volume and pressure homeostasis of pregnancy.

Animals↗

Genes of intracellular calcium metabolism and blood pressure control in primary hypertension.

In the last two decades, major progress has been made in understanding the role of calcium (Ca) metabolism in blood pressure (BP) control. This article discusses the intracellular Ca handling systems that could potentially be involved in the pathogenesis of primary hypertension. We begin by reviewing our current knowledge of intracellular Ca handling, alterations of intracellular Ca metabolism in primary hypertension, and possible mechanisms of BP control. We have analyzed data on the structure and alternative splicing of major genes controlling intracellular free Ca concentration, ie, genes encoding intracellular Ca-binding protein (calmodulin, calbindin, plasma membrane Ca2+ pump, Na+/Ca2+ exchanger, and voltage-dependent Ca channels). Data are presented on the relationship of gene polymorphism and alternative splicing with membrane architecture and the function of gene products. Numerous observations on abnormalities of these gene products in primary hypertension are summarized. Studies on the polymorphism of genes regulating intracellular Ca in hypertension are only now being performed.

Animals↗

Identification of a calcium dependent atrial secretory binding protein as calmodulin.

OBJECTIVE: The role of calcium in the regulation of atrial natriuretic factor (ANF) secretion has focused attention on calcium binding proteins as regulatory components of the secretory machinery for ANF. Two members of the annexin family of calcium binding proteins have emerged as candidates for this role. The aim of this paper is to report the isolation, purification, and identification of another calcium dependent atrial secretory granule binding protein. METHODS: A 20 kDa calcium binding protein was isolated from rat cardiac tissue by affinity chromatography and purified by ion exchange high pressure liquid chromatography followed by reverse phase high pressure liquid chromatography. Identification of the protein was based on its electrophoretic mobility, chromatographic properties, amino acid composition, and ability to stimulate the activity of calmodulin dependent phosphodiesterase. RESULTS: Analysis of this protein and its interaction with atrial secretory granules revealed that it was identical to calmodulin and that the calcium dependent interaction with atrial secretory granules takes place at physiological calcium concentrations. CONCLUSIONS: The study identifies calmodulin as a calcium dependent atrial secretory binding protein. The interaction of calmodulin with atrial secretory granules at physiological calcium concentrations suggest a possible role for calmodulin in the regulation of ANF release from the secretory granules.

Animals↗

Regulation of natriuretic peptide receptor A and B expression by transforming growth factor-beta 1 in cultured aortic smooth muscle cells.

Two types of natriuretic peptide receptors (NPR-A and NPR-B) are membrane guanylate cyclases whose relative expression varies in different tissues. Because natriuretic peptides have been shown to inhibit aortic smooth muscle proliferation, we investigated the regulation of NPR-A and NPR-B in these cells under different proliferative conditions. NPR subtype mRNA levels were measured by our newly developed quantitative reverse transcription-polymerase chain reaction assay using mutated NPR-A and NPR-B cRNA as internal standards. The functional impact of their expression was determined by atrial natriuretic peptide (ANP)- and C-type natriuretic peptide (CNP)-induced stimulation of cyclic GMP production. In the intact aorta, NPR-B mRNA levels were found to be 10-fold higher than those of NPR-A. This dominance was further amplified (1000-fold) in long-term cultures (10 to 15 passages) of aortic smooth muscle cells (ASMC). Higher cyclic GMP production with CNP than with ANP was observed in cultured ASMC from Wistar-Kyoto (WKY) rats. Similar stimulation by the two agonists was noted in spontaneously hypertensive rat (SHR) cells, paralleled by a 10-fold increase in NPR-A mRNA levels and ANP stimulation of cyclic GMP in hypertensive cells. The present study also evaluated NPR-A and NPR-B mRNA control by transforming growth factor-beta 1 (TGF-beta 1), an important regulator of cell proliferation that is overexpressed in SHR ASMC. TGF-beta 1 decreased both NPR-A and NPR-B mRNA levels with a predominant effect in SHR cells at high cell density.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Biochemical characteristics of a calmodulin-phosphodiesterase activator increased in spontaneously hypertensive mice and rats.

The biochemical characteristics of calmodulin-phosphodiesterase (CaM-PDE) are described. It is a cytosolic, hydrophobic, and heat-, acid-, and base-stable compound sensitive to proteases. It is optimally extracted from neutral supernatants by CHCl3/MeOH (2:1 or 1:1). It partitions into the organic fraction of CHCl3/MeOH extracts, whereas the aqueous fraction contains a component that potentiates the activator's capacity to stimulate CaM-PDE. The activator interacts with PDE by increasing its apparent affinity for CaM. Size partition chromatography of CHCl3/MeOH extracts from spontaneously hypertensive rats produces two activity peaks, one eluting at void volume with the second eluting at a position corresponding to a 4-kDa peptide. The compound at void volume can be converted to the 4-kDa entity by sonication. The CaM-PDE activator behaves as a lipopeptide that shares several characteristics with parathyroid hypertensive factor.

Acid-Base Equilibrium↗

Aids-related knowledge and practices in migrant populations: the case of Montrealers of Haitian origin.

The objectives of the study were to determine knowledge levels regarding AIDS and its modes of transmission, and to describe sexual behaviour of Montrealers of Haitian origin. A serial cross-sectional study was conducted in three phases between 1987 and 1990. A questionnaire was administered in a face-to-face interview with the exception of the section concerning sexual practices which was self-administered for those respondents who were literate in French. The study was conducted among 775 men and women residing in the metropolitan Montreal region. These individuals were aged 15 to 39, were born in Haiti or had at least one parent born in Haiti. Knowledge levels were high except for misconceptions about HIV transmission through casual contact and mosquito bites. There was a significant association between high risk sexual behaviour and marital status with the odds of having had multiple partners significantly raised for previously married individuals (OR = 5.96, 95% CI = 3.09; 11.50). High risk behaviour was also associated with being under 25 years of age (OR = 2.83, 95% CI = 1.40; 5.74), knowing someone with HIV/AIDS (OR = 1.88, 95% CI = 1.05; 3.37), being male (OR = 6.81, 95% CI = 3.99; 11.60) and earlier year of interview. Montrealers of Haitian origin, with their specific AIDS-related socio-cultural characteristics, constitute a community which is intermediate between their country of origin, Haiti, and their host country, Canada.

Acquired Immunodeficiency Syndrome↗

Stress modulation by electrolytes in salt-sensitive spontaneously hypertensive rats.

Dietary calcium (Ca) has been proposed for the nonpharmacologic treatment of hypertension. However, its effect on blood pressure (BP) is debatable, and clinical intervention studies have not yet established a clear trend. The authors studied literature results on the effect of nutritional Ca on BP in spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) controls, using the meta-analysis technique. Analysis of the data on inbred animals showed a clear effect of dietary Ca on BP: Ca supplementation produced a significant decrease in SHR and WKY rats, whereas Ca deprivation induced a significant increase in SHR. Furthermore, the hypotensive action of dietary Ca was maximal in salt-sensitive SHR (SHR-S), especially when given a high sodium (Na)/high Ca diet. Because the SHR-S may be more sensitive to stress than the salt-resistant SHR, the possible modulation of stress sensitivity by dietary Na and Ca in SHR-S was examined. High Ca regimens prevented salt-sensitive hypertension in SHR-S, with the high Na/high Ca diet being most potent in lowering BP. This BP reduction by Ca was paralleled by an attenuation of stress sensitivity, as measured by increased body temperature during immobilization stress. Therefore, stress sensitivity was heightened by dietary Na and diminished by dietary Ca (p < 0.05). It was concluded that salt and stress sensitivity in hypertension may be related phenotypes that are both modulated in parallel by dietary ions.

Animals↗

Receptor imaging with atrial natriuretic peptide. Part 1: High specific activity iodine-123-atrial natriuretic peptide.

METHODS: Atrial natriuretic peptide (ANP) was labeled in high specific activity using 123I (p,2n). The biodistribution of 123I-ANP was studied in green vervet monkeys by gamma scintigraphy and in rats by dissection and gamma counting. Iodine-125-ANP was also studied in monkeys by in vitro autoradiography. RESULTS: Iodine-123-ANP showed rapid blood clearance with localization to ANP receptors in the kidneys and lungs, which accounted for 35% of total uptake. In vivo competition imaging studies using cold ANP99-126 and C-ANP102-121 proved that uptake is receptor mediated and allowed imaging of the differential biodistribution of A/B and C-ANP receptor families. Thus, it was possible through the use of selective receptor occupation to prevent uptake in certain organs and to effectively steer the labeled ANP to others. The observed biodistribution patterns were confirmed by an in vitro study using 125I-ANP in the same monkeys, which correlated the scintigraphic images with receptor distribution. An in vivo biodistribution study in rats showed a profound effect of specific activity on biodistribution, with a cutoff for receptor uptake at less than 3000 Ci/mmole. CONCLUSION: Gamma scintigraphy with 123I-ANP permits the imaging of ANP receptors in vivo. In contrast to receptor imaging with either organic molecules or antibodies, ANP provides rapid first-pass uptake and substantial accumulation (%dose/organ approximately 20% or greater) in receptors. The key to receptor imaging with peptides is high specific activity. Labeled ANP offers potential as a diagnostic tool for diabetic nephropathy, particularly for quantifying the involvement of glomerular disease.

Animals↗

Increased cyclic guanosine monophosphate production and overexpression of atrial natriuretic peptide A-receptor mRNA in spontaneously hypertensive rats.

Atrial natriuretic peptide (ANP) specifically stimulates particulate guanylate cyclase, and cyclic guanosine monophosphate (cGMP) has been recognized as its second messenger. Spontaneously hypertensive rats (SHR) have elevated plasma ANP levels, but manifest an exaggerated natriuretic and diuretic response to exogenous ANP when compared to normotensive strains. In isolated glomeruli, the maximal cGMP response to ANP corresponds to a 12- to 14-fold increase over basal levels in normotensive strains (Wistar 13 +/- 2; Wistar-Kyoto 12 +/- 2; Sprague-Dawley 14 +/- 2) while a maximal 33 +/- 3-fold elevation occurs in SHR (P < 0.001). This hyperresponsiveness of cGMP is reproducible in intact glomeruli from SHR from various commercial sources. Furthermore, this abnormality develops early in life, even before hypertension is clearly established, and persists despite pharmacological modulation of blood pressure, indicating that it is a primary event in hypertension. In vitro studies have revealed a higher particulate guanylate cyclase activity in membranes from glomeruli and other tissues from SHR. This increase is not accounted for by different patterns of ANP binding to its receptor subtypes between normotensive and hypertensive strains, as assessed by competitive displacement with C-ANP102-121, an analog which selectively binds to one ANP receptor subtype. The hyperactivity of particulate guanylate cyclase in SHR and its behavior under basal, ligand (ANP), and detergent-enhanced conditions could be attributed either to increased expression or augmented sensitivity of the enzyme. Radiation-inactivation analysis does not evoke a disturbance in the size of regulatory elements normally repressing enzymatic activity, while the expression of particulate guanylate cyclase gene using mutated standard of A- and B-receptors partial cDNAs, quantified by polymerase chain reaction (PCR) transcript titration assay, manifests a selective increase of one guanylate cyclase subtype. Our data suggest that in hypertension, genetic overexpression of the ANP A-receptor subtype is related to the exaggerated biological response to ANP in this disease.

Affinity Labels↗

The atrial natriuretic peptide system in rat ovaries.

The atrial natriuretic peptide (ANP) gene is expressed in several extracardiac tissues where ANP is thought to be involved in autocrine or paracrine regulation. The current studies were designed to characterize the ANP system in rat ovaries. ANP content in rat ovaries was estimated by RIA to be 240 +/- 70 pg/mg protein. HPLC revealed the presence of the 28-amino acid circulating peptide as well as the 126-amino acid prohormone, suggesting that the ovaries are a site of ANP synthesis. Indeed, ANP messenger RNA was detected in this tissue by RNase mapping. ANP present in ovarian extracts displaced [125I]ANP from bovine adrenal receptors (R1 class) in a dose-dependent manner and in parallel to the synthetic peptide, indicating that it possesses biological activity. Immunocytochemical studies localized ANP to interstitial cells surrounding the follicles; weaker but specific staining was also observed in the ovum. High affinity ANP receptors (dissociation constant, 0.30 +/- 0.06 nM; maximum binding capacity, 160 +/- 40 fmol/mg protein) were identified in ovarian membranes. Unlabeled ANP but not c-atrial natriuretic factor (a specific agonist of ANP clearance receptors) competed with binding of [125I]ANP to ovarian membranes in a dose-dependent manner, suggesting that ovarian ANP receptors are predominantly of the R1 class. This was confirmed by cross-linking studies with [125I]ANP, which detected a single protein band with a molecular size of about 120 kilodaltons, corresponding to that of the guanylate cyclase-coupled R1 class of receptor. Consistent with the presence of biologically active receptors, ANP markedly enhanced cGMP accumulation (by 15-fold) in ovarian cells. The presence of both local ANP synthesis and high affinity transducing receptors in the ovaries indicates that the peptide plays a local role in ovarian growth or steroidogenesis.

Adrenal Glands↗

Platelets, growth factors, and vascular smooth-muscle cells in hypertension and diabetes.

Inappropriate vascular smooth-muscle cell (VSMC) growth is the hallmark of vascular pathology in essential hypertension and diabetic macroangiopathy, whereas platelets constitute an important regulator of vessel wall homeostasis because of their content of various growth factors. Numerous abnormalities exist in platelet functions in diabetes and hypertension, such as enhanced activity and altered adhesion and aggregation. Increased thromboxane (TX2) production is characteristic of diabetes, and an elevation of intracellular free Ca2+ is found in platelets of hypertensive patients. By studying the growth patterns of VSMC from spontaneously hypertensive rats (SHRs) vs. those obtained from their normotensive counterparts, Wistar-Kyoto (WKY) rats, we have demonstrated that VSMC from SHRs exhibited a higher specific growth rate, abnormal contact inhibition, and accelerated entry into the S phase of the cell cycle. Moreover, they were hyperresponsive to many growth factors such as calf serum, epidermal growth factor (EGF), platelet-derived growth factor (PDGF), transforming growth factor beta 1 (TGF beta 1), and insulin. Additive effects were observed for EGF and PDGF or EGF and insulin. These intrinsic growth anomalies in cells of hypertensive origin persist in culture indicating their putative primary role in the pathogenesis of hypertension. Endogenous TGF beta 1 revealed an augmented expression of its message levels in SHR VSMC, the difference in mRNA between both strains being more pronounced at high cell density. Further, TGF beta 1 protein synthesis and secretion in VSMC culture were confirmed by immunoprecipitation of de novo labeled TGF beta 1. At high cell density, which most likely represents the physiological state of VSMC, plasmin, an activator of TGF beta 1, significantly stimulated DNA synthesis of VSMC in both strains. The reverse effect was obtained at low cell density. Yet, the fold stimulation was higher in WKY rats, suggesting that TGF beta 1 may be partially activated in SHR VSMC. This is supported by the inhibition of baseline DNA synthesis by TGF beta 1 neutralizing antibody in VSMC of hypertensive origin and not of normotensive controls. TGF beta 1 antisense oligodeoxynucleotide (ODN) nearly normalized the increased proliferation of SHR VSMC in culture. On the other hand, growth-promoting activity (GPA) in platelets of either diabetic or hypertensive patients was higher than in platelets of healthy controls and was found to be normalized by intensive insulin therapy in insulin-dependent diabetic patients. In hypertensive patients, however, hydrochlorothiazide (HCTZ)--even in low doses (25 mg/day)--enhanced the GPA in platelets, whereas other antihypertensive agents such as indapamide, atenolol, and captopril, had neutral effects.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Gastric inhibitory polypeptide-dependent cortisol hypersecretion--a new cause of Cushing's syndrome.

BACKGROUND: Corticotropin-independent nodular adrenal hyperplasia is a rare cause of Cushing's syndrome, and the factors responsible for the adrenal hyperplasia are not known. METHODS: We studied a 48-year-old woman with Cushing's syndrome, nodular adrenal hyperplasia, and undetectable plasma corticotropin concentrations in whom food stimulated cortisol secretion. RESULTS: Cortisol secretion had an inverse diurnal rhythm in this patient, with low-to-normal fasting plasma cortisol concentrations and elevated postprandial cortisol concentrations that could not be suppressed with dexamethasone. The cortisol concentrations increased in response to oral glucose (4-fold increase) and a lipid-rich meal (4.8-fold increase) or a protein-rich meal (2.6-fold increase), but not intravenous glucose. The infusion of somatostatin blunted the plasma cortisol response to oral glucose. Intravenous infusion of gastric inhibitory polypeptide (GIP) for one hour increased the plasma cortisol concentration in the patient but not in four normal subjects. Fasting plasma GIP concentrations in the patient were similar to those in the normal subjects; feeding the patient test meals induced increases in plasma GIP concentrations that paralleled those in plasma cortisol concentrations. Cell suspensions of adrenal tissue from the patient produced more cortisol when stimulated by GIP than when stimulated by corticotropin. In contrast, adrenal cells from normal adults and fetuses or patients with cortisol-producting or aldosterone-producing adenomas responded to corticotropin but not to GIP. CONCLUSIONS: Nodular adrenal hyperplasia and Cushing's syndrome may be food-dependent as a result of abnormal responsiveness of adrenal cells to physiologic secretion of GIP. "Illicit" (ectopic) expression of GIP receptors on adrenal cells presumably underlies this disorder.

Adrenal Glands↗

In vivo measurement of atrial natriuretic peptide receptors using nuclear imaging.

We have successfully visualized atrial natriuretic peptide (ANP) receptors in vivo using nuclear imaging. 123I-Labelled ANP, injected in green vervet monkeys, was rapidly bound to ANP receptors in the kidneys and lungs. That the observed uptake was receptor mediated was demonstrated with competition studies using simultaneous injection of unlabelled ANP 99-126. It was possible to distinguish between the ANP receptor subtypes by the use of selective antagonists. Thus coinjection of ANP 102-121-des[Gln, Ser, Gly, Leu, Gly] (C-ANP), an ANP analog that selectively binds to the ANP C-receptor, decreased uptake in the kidneys by 50% but increased relative uptake in the lungs and soft tissues. This method permits for the first time, the dynamic in vivo analysis of ANP receptors and their interaction with endogenous ligand. Differences and changes in local ANP receptor concentrations and occupancy could be detected. Since ANP receptor density and affinity are influenced by various physiological and pathological conditions, clinical and diagnostic applications seem possible.

Animals↗

Vascular atrial natriuretic factor receptors in spontaneously hypertensive rats.

OBJECTIVE: The aim was to investigate vascular receptors for atrial natriuretic factor (ANF) in spontaneously hypertensive (SHR), Wistar-Kyoto (WKY), and Wistar rats (WR) at different ages. METHODS: Relaxation and guanylate cyclase responses of blood vessels to atrial natriuretic factor were investigated, as was the binding of 125I-ANF to vascular membranes and ANF receptor subtypes, using sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) in reducing conditions, after solubilisation and irreversible binding of 125I-ANF. RESULTS: Vascular relaxation responses of aorta showed an increased sensitivity to ANF in four week old SHR [pD2 = 8.9 (SEM 0.1) v 8.5(0.1) in WKY rats, p < 0.05] while sensitivity was similar for the three strains at older ages. Production of cyclic GMP in mesenteric arteries in response to 100 nmol.litre-1 ANF was greater (p < 0.05) in SHR than in WKY rats at four weeks of age, but was similar in older rats. The density of binding sites for ANF in mesenteric arteries, however, was lower in SHR at four weeks (p < 0.01), and increased in older rats, becoming similar to that of normotensive rats at 12 weeks of age. Affinity of ANF sites was similar in all strains. The proportion of high and low molecular weight ANF binding peptides in solubilised blood vessel membranes on SDS-PAGE was similar in all strains except in four week old SHR, in which binding to the high molecular weight band (presumably the guanylate cyclase containing receptor) was increased relative to the low molecular weight band (non-cyclase-coupled receptor) in comparison to other strains and ages. CONCLUSIONS: Activity of guanylate cyclase in response to occupancy of ANF receptors may be increased in young SHR. Normal relaxation of blood vessels in response to ANF in older SHR could result in failure to counteract the increased vasoconstrictor activity present in these rats, which could play a role in the increase in blood pressure.

Animals↗

Expression of hsp70 gene in lymphocytes from normotensive and hypertensive humans.

The impact of environmental factors on hypertension depends to a certain extent on the individual's genetic background. Environmental temperature is one of the known modulators of blood pressure. We have previously demonstrated abnormal expression of a major environmentally-controlled gene, hsp70, in hypertensive mice and rats. We have developed a simple ex vivo method for the evaluation of hsp genes expression in humans. In the present study, we investigated the accumulation of hsp70 mRNA in lymphocytes from normotensive and hypertensive humans. The data showed a higher accumulation of hsp70 mRNA in lymphocytes from hypertensives vs normotensives (2.04 +/- 0.35 vs 1.48 +/- 0.29 OD mm2, P < 0.05) submitted to heat stress (15 min at 42 degrees C). Basal levels were the same in both groups (0.11 +/- 0.01 vs 0.10 +/- 0.01 OD mm2, respectively). These results support our hypothesis that alterations in the expression of a major environmentally-controlled gene, hsp70, may be involved in enhanced environmental responses even in human hypertension.

Female↗