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Biomedical subjects

G A Riegger

Publications and source records attributed to G A Riegger.

At least 19 recordsLinked to original sources

Differential expression of cardiac ANP and BNP in a rabbit model of progressive left ventricular dysfunction.

OBJECTIVE: Activation of atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) is considered a hallmark of myocardial remodeling. To determine magnitude and relative proportion of activation during the progression to heart failure, we assessed ANP and BNP gene expression in atrial and left ventricular (LV) tissue in a newly developed model of progressive rapid ventricular pacing-induced heart failure in rabbits. METHODS: Six animals underwent progressive pacing with incremental rates (330 beats per min (bpm) to 380 bpm over 30 days), resulting in congestive heart failure (CHF). Five animals underwent pacing at 330 bpm for 10 days only (early LV dysfunction, ELVD) and five additional animals served as control group (CTRL). RESULTS: ELVD was characterized by decreased mean arterial pressure (P=0.05 vs. CTRL) as well as significantly impaired LV function (LV fractional shortening (FS) P<0.01 vs. CTRL) and dilatation (P<0.01 vs. CTRL). CHF was characterized by further decreased mean arterial pressure (P<0.01 vs. ELVD), further impaired LV function (FS P<0.03 vs. ELVD) and dilatation (P<0.01 vs. CTRL). In control animals, significant ANP expression was observed only in atrial tissue (P<0.02 vs. BNP) while BNP expression was ubiquitous but marginal (LV P<0.05 vs. ANP). In ELVD, activation of ANP (atria and LV P<0.05 vs. CTRL) and BNP (atria P<0.05 vs. CTRL, LV n.s.) was observed. In CHF, LV-BNP increased further markedly (P<0.01 vs. CTRL, P<0.05 vs. ELVD) while atrial ANP and BNP expression as well as LV ANP expression remained unchanged (all P=n.s. vs. ELVD). CONCLUSION: The current studies demonstrate differential activation of atrial and LV ANP and BNP under normal conditions and during the progression to heart failure and provide a molecular basis for the superiority of BNP as marker of LV dysfunction and CHF.

Animals↗

[48-year old woman with diffuse pulmonary calcifications after allogeneic kidney transplantation. A rare manifestation of tertiary hyperparathyroidism].

HISTORY: A 48-year-old woman was hospitalized because of the presence of asymptomatic bilateral pulmonary infiltrates in the conventional chest radiograph. An antibiotic treatment administered 3 months before had been without any effect on the radiological aspect. The patient had had an end-stage renal disease of unknown cause and was on hemodialysis since 1993. 1997 she received a cadaveric renal transplant. INVESTIGATIONS: Computed tomography scan detected the infiltrates as diffuse calcifications mainly at the lung bases. Extended arterial vascular calcifications were also found. Since approximately 4 years calcium-phosphorus product and parathyroid hormone had been increased. TREATMENT AND COURSE: Because of the long-term increased calcium-phosphorus product and the high parathyroid hormone levels we interpreted the pulmonary calcifications as a result of the tertiary hyperparathyroidism. After parathyroidectomy calcium-phosphorus product and PTH levels normalized, but our patient suffered from increasing disturbances of the peripheral blood circulation induced by the vascular calcifications, necessitating amputation of finger and toe tips. CONCLUSION: Patients with renal failure should undergo regular controls of calcium, phosphorus and parathyroid hormone when creatinine clearance is below 50 ml/min/1.73 m2. Only an early medical treatment can prevent the various complications induced by the secondary or tertiary hyperparathyroidism. If medical therapy fails, parathyroidectomy has to be done. Especially before renal transplantation the extent of hyperparathyroidism has to be carefully analyzed and treated aggressively, if necessary by surgery before the date of transplantation.

Calcinosis↗

Renal transplantation in a patient with end stage renal disease due to cholesterol embolism.

BACKGROUND: Renal failure due to cholesterol emboli is mostly irreversible. Therefore chronic renal replacement therapy is necessary. However, to the best of our knowledge no published experience exists with renal transplantation in patients with end-stage renal disease (ESRD) due to cholesterol embolization (CE). METHODS: Renal transplantation was performed in a 64-year-old man who suffered from ESRD due to CE after coronary angiography. Because our patient presented with a typical profile of cardiovascular risk factors effective long-term control of these risk factors before and after transplantation was a mandatory prerequisite before considering transplantation. RESULTS: After one rejection episode serum creatinine values have been stable and no major complications have occurred during a follow-up of 18 months. No signs of recurrent cholesterol emboli into the donated kidney were seen in renal biopsies performed due to graft rejection. CONCLUSION: Cholesterol embolization is an uncommon reason for ESRD and mainly occurs after invasive vascular procedures in patients with hyperlipidemia, arterial hypertension, and smoking. Because ESRD due to CE often is irreversible, chronic renal replacement therapy may be necessary. As demonstrated in our report, renal transplantation should be considered. However, in this setting effective long-term control of the underlying risk factors before and after renal transplantation has to be ensured.

Embolism, Cholesterol↗

Extracellular matrix proteins in cardiac fibroblasts derived from rat hearts with chronic pressure overload: effects of beta-receptor blockade.

Left ventricular hypertrophy (LVH) is accompanied by progressive accumulations of extracellular matrix proteins. They are produced predominantly by cardiac fibroblasts that surround the cardiac myocytes. The aim of this study was to emphasize the role of a combined approach using both in vivo and in vitro studies to elucidate the effects of carvedilol on cardiac remodeling. We therefore used an established model of supravalvular aortic banding and cardiac fibroblasts. LVH was induced by banding of the ascending aorta. Male Wistar rats were allocated to four groups: sham-operated, sham+carvedilol, aortic stenosis (AS), and AS+carvedilol. Treatment time was four weeks. Fibroblasts were isolated from the entire left ventricle of sham and AS rats. Carvedilol/metoprolol/prazosin were added (0.1, 1.0 and 10 microM; 24 h). In addition, interferon- gamma was applied for 24 h (10, 100 and 1000 IU). AS rats revealed increased LV weights (+27%) and cardiomyocyte widths as compared to sham-operated rats (1.6-fold, P<0.01). Carvedilol reduced LVH by 20%. This finding was accompanied by a decrease of laminin, fibronectin, collagen I and III in vivo. Collagen I/III and fibronectin were increased in fibroblasts of AS v sham rats (P<0.0001, each). Carvedilol reduced collagen I, III and fibronectin by 40/60/35% (0.1 microM; P<0.001) irrespective of LVH. Carvedilol had no effects on collagen IV and laminin. Carvedilol dose-dependently reduced the proliferation rate by 20% at 0.1 microM(P<0.0001). Metoprolol and prazosin had no effect on the expression of extracellular matrix proteins and on the proliferation of the cells of either origin. Interferon- gamma blunted the proliferation rate of cultured fibroblasts and lead to a significant decrease in extracellular matrix deposits. These results indicate that the effects of carvedilol may be due to the antiproliferative or antioxidative properties of this unselective beta-adrenergic receptor antagonist. These changes of the extracellular matrix represent a new mechanism of carvedilol that may contribute to the observed beneficial effects in congestive heart failure.

Adrenergic beta-1 Receptor Antagonists↗

Different regulation of left ventricular ANP, BNP and adrenomedullin mRNA in the two-kidney, one-clip model of renovascular hypertension.

The aim of our study was to clarify whether atrial (ANP) and brain (BNP) natriuretic peptides and the hypotensive peptide adrenomedullin (ADM) are regulated differently in the rat heart in the two-kidney, one-clip model of renovascular hypertension. We assessed messenger ribonucleic acid (mRNA) abundance and distribution of ANP, BNP and ADM in the ventricles and atria of rats after unilateral renal artery stenosis (clipping). Rats were clipped for 6 h or 1, 2 or 4 days and mRNA levels were assessed semiquantitatively in left and right atria and ventricles by RNase protection assay. Left ventricular BNP mRNA up-regulation (4.3-fold after 6 hours) preceded ANP up-regulation (4.5-fold after 1 day) and seemed to be transient, whereas ANP mRNA levels were still elevated at day 4 (2.4-fold vs. sham). The right ventricle and the atria did not participate in these responses. Despite the massive changes of natriuretic peptide mRNAs, ADM mRNA did not change in either the ventricles or the atria. In contrast to ANP and BNP mRNA, which predominate in atrial tissue, mRNA for adrenomedullin is equally distributed in ventricles and atria. Plasma levels of immunoreactive (ir)-ANP and ir-BNP changed in parallel with left ventricular mRNA levels. Our findings suggest that renovascular hypertension induced by clipping the renal artery leads to immediate, but independent, up-regulation of ANP and BNP mRNA in the left ventricle whereas adrenomedullin mRNA is not changed.

Adrenomedullin↗

Differential gene regulation of renal salt entry pathways by salt load in the distal nephron of the rat.

The aim of the present study was to determine the molecular responses of the main salt-reabsorbing systems in the distal nephron to changes of salt load of the organism. For this purpose we analysed messenger ribonucleic acid (mRNA) levels for the bumetanide-sensitive Na+K+2Cl- cotransporter (BSC1), the thiazide-sensitive Na+Cl- cotransporter (TSC), the kidney-specific inwards rectifier K+ channel (ROMK), the amiloride-sensitive epithelial Na+ channel (ENaC) and the kidney-specific Cl- channel ClC-K2, in the cortex and inner and outer medulla of kidneys from male Sprague-Dawley rats fed a high- (8% w/w), normal- (0.6%) or low-(0.02%) salt diet or treated chronically with subcutaneous infusions of furosemide (12 mg/kg per day). BSC1 and ROMK mRNA levels did not differ between the four treatment groups. TSC mRNA increased during furosemide treatment 1.75-fold versus control but was not affected by a high- or a low-salt diet. The mRNA for the alpha-subunit of ENaC increased with the low-salt diet (about 1.5-fold) and with furosemide (about 2.1-fold) in all kidney zones, but did not change with the high-salt diet. Dietary salt loading down-regulated CIC-K2 mRNA in the outer medulla 0.6-fold versus control whilst furosemide treatment, but not the low-salt diet, increased ClC-K2 mRNA in the outer (1.6-fold) and inner medulla (2.0-fold). These findings suggest that gene expression of Na+ and Cl- entry pathways in the distal nephron are at least partly regulated by the salt load of the organism, such that salt-reabsorbing systems are stimulated by salt deficiency and suppressed by salt overload.

Animals↗

Inhibition of cyclooxygenase-2 attenuates urinary prostanoid excretion without affecting renal renin expression.

This study aimed to assess the impact of cyclooxygenase-2 (COX-2) on the secretion and expression of renin in the kidney cortex. For this purpose renocortical COX-2 expression was moderately stimulated by a low-salt diet or strongly stimulated (increase in mRNA about fivefold) by the combination of a low-salt diet and the angiotensin-I-converting enzyme inhibitor ramipril in male Sprague-Dawley rats. None of these manoeuvres changed medullary COX-2 expression or cortical or medullary COX-1 expression. Treatment with low salt plus ramipril but not with low salt alone led to a three- to fourfold increase of the urinary output of all major prostanoids. The selective COX-2 inhibitor rofecoxib (10 mg/kg per day) markedly lowered basal urinary prostanoid excretion and blunted the stimulation of prostanoid excretion during treatment with low salt plus ramipril. The stimulation of renin secretion by the low-salt diet but not by low salt plus ramipril was attenuated by rofecoxib. The low-salt diet led to a moderate increase of renin gene expression, and additional treatment with ramipril caused a 15-fold increase of renin mRNA. However, no effect of rofecoxib on renin gene expression was observed in any group. These findings suggest that stimulation of COX-2 in the renal cortex leads to the increased formation of all major prostanoids. COX-2-derived prostanoids may play a role in the regulation of renin secretion but not in renin gene expression during the intake of a low-salt diet. However, no major relevance of COX-2-derived prostanoids to renin secretion or renin gene expression during ramipril treatment or a combination of ramipril and a low-salt diet was found.

6-Ketoprostaglandin F1 alpha↗

Association between a polymorphism in the G protein beta3 subunit gene (GNB3) with arterial hypertension but not with myocardial infarction.

OBJECTIVE: A polymorphism at position 825(C-->T) of the G protein beta3 (GNB3) gene was found to be associated with enhanced transmembrane signalling as well as with an increased prevalence of arterial hypertension. The aim of the present study was to further investigate the association of the GNB3 C825T allele status with arterial hypertension in a large population-based sample and its association with specific end organ damage, i.e. myocardial infarction (MI). METHODS: Individuals from a population-based sample (n=2052) and patients suffering from premature MI (age at first MI < or = 60 years, n = 606) were studied by questionnaire as well as by physical examination and biochemical analyses. RESULTS: In the population-based sample, the prevalence of arterial hypertension (blood pressure > or = 160/95 mmHg and/or antihypertensive medication) was higher in individuals with the TT genotype (41.8%) as compared to heterozygote individuals (36.6%) or those with the CC genotype (32.75%) (P = 0.02). This association was predominantly found in men. Moreover, men without antihypertensive medication carrying the TT genotype showed higher diastolic blood pressure than those carrying the CC genotype (86.5 vs. 83.7 mmHg, P = 0.04). However, the genotype distribution and the allele frequencies were similar in both, the population-based and the MI patient sample. Furthermore, neither the age at the time of MI nor the location of the MI were related to the genotype distribution. Similarly, gender and age stratified analyses did not show any association of the GNB3 genotype and MI. CONCLUSIONS: In male individuals from a large population-based sample, the T allele of the GNB3 polymorphism was associated with arterial hypertension. However, the effects of the GNB3 825T allele on blood pressure were small and did not translate to a clinically relevant increase of risk for MI.

Antihypertensive Agents↗

Alterations in myocardial creatinine kinase (CK) and lactate dehydrogenase (LDH) isoenzyme-distribution in a model of left ventricular dysfunction.

The purpose of the current study was to evaluate myocardial creatinine kinase (CK) and lactate dehydrogenase (LDH) systems in a model of epinephrine-induced cardiomyopathy in rabbits. Eight rabbits received four repetitive epinephrine infusions (300 mg/kg/60 min, i.v.) in 12-day intervals and eight untreated rabbits served as controls (CTRL). Echocardiography demonstrated a significant deterioration of LV function as well as increased LV-diameter and -mass index in catecholamine-induced cardiomyopathy. Histological examination revealed that repetitive catecholamine infusion resulted in LV fibrous areas with collagenous content and an increase in myocyte width (16.9+/-0.8 microm vs. CTRL 12.9+/-0.9; P<0.05). LV dysfunction was associated with a decreased total LV lactate dehydrogenase activity (LDH; 0.43+/-0.03 IU/mg protein vs. CTRL 0.52+/-0.04; P<0.05) whereas total creatinine kinase activity was unchanged (CK; 7.30+/-0.63 IU/mg protein vs. CTRL 9.20+/-0.49, n.s.). Furthermore, myocardial LDH isoenzymes were shifted with a decrease in LDH(1) and an increase in LDH2 and LDH3 (LDH(1): 84.90+/-2.60% vs. CTRL 94.50+/-0.40; LDH2: 7.30+/-1.20% vs. 1.50+/-0.13; LDH3: 5.40+/-0.90% vs. 3.20+/-0.25; all P<0.05). Foetal B-CK isoenzymes were significantly increased (CK-MB 5.30+/-0.66 vs. 2.20+/-0.35%; P<0.05). The current study demonstrates changes in cardiac energy metabolism including an impaired LDH activity with a shift towards anaerobic isoenzymes as well as a more efficient CK system in a model of catecholamine-induced LV dysfunction.

Animals↗

Marked suppression of renin levels by beta-receptor blocker in patients treated with standard heart failure therapy: a potential mechanism of benefit from beta-blockade.

OBJECTIVES: Recent trials demonstrated beneficial effects of beta-blockers in combination with standard heart failure medication. The mechanisms underlying this benefit are incompletely understood. We hypothesized that beta-blockers may augment the inhibition of the renin-angiotensin system in patients with left ventricular (LV) dysfunction treated with angiotensin-converting enzyme (ACE) inhibitors and/or diuretics by prevention of renin upregulation that occurs in such patients. DESIGN: We examined plasma renin levels (direct radioimmunometric assay) in 312 men with previous myocardial infarction (MI) and echocardiographic LV dysfunction. Patients took medication according to their physicians' prescriptions: antiplatelet agents alone (n=62) or in combination with ACE inhibitors, diuretics or beta-blockers (n=250). RESULTS: Plasma renin levels were elevated in patients taking ACE inhibitors or diuretics and ACE inhibitors plus diuretics (adjusted means from multiple regression analysis were 28.5 mU L-1 [95% CI=20.6-39.5] and 73.7 mU L-1 [95% CI = 49.9- 109.9], respectively) compared with patients on antiplatelets alone (16.1 mU L-1, 95% CI = 13.5-19.3, P < 0.05 each). The combinations of beta-blockers with ACE inhibitors or diuretics and beta-blockers with ACE inhibitors plus diuretics were related to markedly suppressed plasma renin levels (adjusted means 16.4 [13.1-20.6] and 32.1 [23.3-44.3]) as compared with respective patient groups without beta-blockers (P < 0.01 each). CONCLUSIONS: Concomitant beta-blocker treatment can prevent the reactive renin stimulation and potentially the escape from effective inhibition of the renin-angiotensin system in patients with LV dysfunction after MI treated with ACE-inhibitors and/or diuretics.

Adrenergic beta-Antagonists↗

The D-allele of the ACE polymorphism is related to increased QT dispersion in 609 patients after myocardial infarction.

AIMS: Prolongation of QT dispersion can be observed in some patients with myocardial infarction and serves as a possible independent risk factor for sudden cardiac death. Angiotensin-converting enzyme (ACE) inhibition has been shown to reduce QT dispersion in myocardial infarction patients. We hypothesized that ACE gene I/D polymorphism, which is known to modulate ACE activity, may also affect QT dispersion after myocardial infarction. METHODS AND RESULTS: We studied 609 myocardial infarction patients (532 men, aged 56.1+/-0.3; mean 5.5 years after myocardial infarction) from a population-based myocardial infarction register by standardized questionnaire, anthropometry, ECG, echocardiography, and genotyping of ACE I/D polymorphism. In addition, 540 unaffected siblings (251 men, age 54.6+/-0.4 years) of these patients were studied by the same protocol. As compared with their healthy siblings, mean QT dispersion was prolonged in myocardial infarction patients (65.9+/-1.4 ms vs 91.2+/-2.3 ms, respectively, P<0.001). QT dispersion was negatively correlated to left ventricular ejection fraction (P<0.005). The ACE DD-genotype was associated with longer QT dispersion in myocardial infarction patients (103.0+/-4.6 ms vs 81.9+/-4.5 ms in the II group, P<0.001). This association was noted to be strong in multivariate analyses that included age, gender, ejection fraction, left ventricular end-diastolic diameter, medication, and heart rate. In contrast, no association between the ACE DD-genotype and QT dispersion was detected in healthy siblings of myocardial infarction patients. CONCLUSION: Thus, the ACE D-allele may be associated with increased QT dispersion in patients after myocardial infarction but not in healthy subjects. An interaction of myocardial damage and genetic predisposition that both enhance the activity of the renin angiotensin system may decrease the repolarization homogeneity of the heart.

Alleles↗

Siblings of myocardial infarction patients are overlooked in primary prevention of cardiovascular disease.

AIMS: Patients with arterial hypertension or hypercholesterolaemia may benefit from medical therapy for primary prevention of myocardial infarction. Preventive therapy may be particularly effective in individuals with a positive family history for myocardial infarction since such subjects are at high risk for coronary events. The objective of this population-based study was to analyse the risk profile as well as the current utilization of preventive strategies in asymptomatic siblings of patients with myocardial infarction. METHODS AND RESULTS: We studied siblings of 325 patients with premature myocardial infarction from the Augsburg MONICA myocardial infarction registry by standardized questionnaire, blood pressure recordings, and biochemical measurements. Out of 580 siblings, 510 were free of coronary heart disease symptoms. With multiple risk factors being present in most asymptomatic siblings, 29.4% of asymptomatic individuals had an estimated individual 10-year risk for a major cardiovascular event of > or = 20%, or when projected to the age of 60. According to the guidelines of the European Societies of Cardiology, Atherosclerosis, and Hypertension (ESC/EAS/ESH) from 1994 (1998 guidelines in parenthesis) dietary and lifestyle interventions were indicated for arterial hypertension in 48.1% (43.0%) and/or for hypercholesterolaemia in 17.3% (78.8%). Drug treatment was indicated for arterial hypertension in 27.9% (30.6%) and for hypercholesterolaemia in 13.6% (19.1%) of asymptomatic siblings. Of those individuals with the respective indication, actual drug treatment was given for arterial hypertension in 91.5% (83.3%) and for hypercholesterolaemia in 46.4% (33.0%). However, treatment targets were reached in only 31.0% (28.2%) with arterial hypertension and in 7.2% (5.2%) with hypercholesterolaemia, respectively. CONCLUSIONS: Most asymptomatic individuals with positive fraternal family history have more than one modifiable risk factor. Interestingly, a large number of these individuals appears to be under medical surveillance as many receive some sort of drug treatment. However, this therapy did not meet the treatment goals in the majority of those with arterial hypertension and/or hypercholesterolaemia. Thus, although individuals with a positive fraternal history for myocardial infarction can be easily identified, implementation of sufficient preventive strategies continues to be poor in a Western European country.

Adult↗

[Heparin-induced type II thrombocytopenia as the etiology of severe recurrent pulmonary embolism].

Heparin-induced thrombocytopenia (HIT) is a rare complication of anticoagulative heparin therapy. The more severe HIT type II is defined by peripheral thrombocytopenia combined with thrombotic and thromboembolic events. We report the case of a 24 year old male patient who was admitted to our ICU with thromboembolic obstruction of the right central pulmonary artery, and deep venous thrombosis (DVT) of the right superficial femoral vein. Systemic thrombolytic therapy with urokinase for seven days resulted in nearly complete resolution of the thromboembolic material in the pulmonary arteries. Antithrombotic therapy with intravenous heparin and overlapping oral phenoprocoumon was continued on the regular ward. Six days later, the patient had to be readmitted to the ICU with evidence of hemodynamic compromise due to massive bilateral pulmonary thromboembolism that could be confirmed by CT scan--DVT had extended to the right iliacal vein. Additionally, peripheral thrombocyte counts had markedly declined from 112.000 to 35.000/microliter within 3 days, indicating the presence of a Hit type II. This was verified by positive ELISA testing for antibodies against platelet factor 4 (PF4)-heparin-complex. A filter device was temporarily implanted into the inferior vena cava. The patients condition stabilized upon reinitiated systemic thrombolysis and replacement of heparin therapy against recombinant hirudin. Pulmonary artery pressures normalized. Peripheral thrombocytopenia diminished within three days. HIT type II is a severe complication of anticoagulative therapy with heparin. Here we report a case, and discuss diagnostic procedures as well as differential diagnosis to HIT type I.

Adult↗

The NO donor molsidomine reduces endothelin-1 gene expression in chronic hypoxic rat lungs.

We investigated the effects of the nitric oxide (NO) donor molsidomine and the nitric oxide synthase inhibitor N-nitro-L-arginine methyl ester (L-NAME) on pulmonary endothelin (ET)-1 gene expression and ET-1 plasma levels in chronic hypoxic rats. Two and four weeks of hypoxia (10% O2) significantly increased right ventricular systolic pressure, the medial cross-sectional vascular wall area of the pulmonary arteries, and pulmonary ET-1 mRNA expression (2-fold and 3.2-fold, respectively). ET-1 plasma levels were elevated after 4 wk of hypoxia. In rats exposed to 4 wk of hypoxia, molsidomine (15 mg x kg(-1) x day(-1)) given either from the beginning or after 2 wk of hypoxia significantly reduced pulmonary hypertension, pulmonary vascular remodeling, pulmonary ET-1 gene expression, and ET-1 plasma levels. L-NAME administration (45 mg x kg(-1) x day(-1)) in rats subjected to 2 wk of hypoxia did not modify these parameters. Our findings suggest that in chronic hypoxic rats, exogenously administered NO acts in part by suppressing the formation of ET-1. In contrast, inhibition of endogenous NO production exerts only minor effects on the pulmonary circulation and pulmonary ET-1 synthesis in these animals.

Animals↗

Lipoprotein lipase gene polymorphism, cholesterol subfractions and myocardial infarction in large samples of the general population.

OBJECTIVE: Genetic variants of the lipoprotein lipase gene have been associated with dyslipidemia and coronary artery disease. However, data have been inconsistent and are mainly based on selected predominantly male patient groups. METHODS: We evaluated the influence of the HindIII restriction fragment length polymorphism on lipid levels in the general population (1361 participants of a large population-based survey from Augsburg, Germany; 50% women) as well as the association of this polymorphism with the risk of myocardial infarction (MI; genotype frequencies in 1159 patients with documented MI under 60 years of age). RESULTS: In the population-based survey, a highly significant association between the frequent H2H2 genotype and unfavorable cholesterol subfraction levels was observed in men and in postmenopausal women whereas no significant association was observed in premenopausal women (uni- and multivariate analysis). Such unfavorable lipid levels in homozygotes for the H2 allele may be expected to be associated with a 19-25% increased risk to suffer from myocardial infarction (MI). Nevertheless, genotype and allele frequencies in the general population were not different from those in patients with previous MI (H2H2 genotype frequency 51.3% vs. 53.2%, respectively; P=0.63). CONCLUSION: This large study shows that the H2H2 genotype of the lipoprotein lipase gene polymorphism is associated with unfavorable lipid levels. Estrogen status may modulate this association in women. The effects of the genotype on lipid levels were apparently not strong enough to reveal a significant association with MI.

Adult↗

Relationship between left ventricular wall stress and ANP gene expression during the evolution of rapid ventricular pacing-induced heart failure in the dog.

We have recently described a modified model of progressive rapid ventricular pacing-induced heart failure which evolves over a period of 38 days. To further characterize left ventricular remodeling during the progression of heart failure, we assessed left ventricular geometry, wall stress, and atrial natriuretic peptide (ANP) gene expression and protein content during control conditions, asymptomatic left ventricular dysfunction, and overt congestive heart failure (CHF). Although asymptomatic left ventricular dysfunction was characterized by a significant increase in systolic and diastolic left ventricular dimension (+30% and +6%, respectively, P<0.05 each) and a marked increase in left ventricular systolic wall stress (+68%, P<0.01), left ventricular ANP gene expression was unchanged as compared to control. In contrast, strong left ventricular ANP gene expression (+449%, P<0.05) was observed during overt CHF in the absence of further significant increases in left ventricular systolic wall stress. The onset of strong left ventricular ANP gene expression was associated with increased ANP content (+88%, P<0.05) and left ventricular mass index (+13%, P<0.05). In contrast, left atrial ANP gene expression and left ventricular diastolic wall stress increased progressively during asymptomatic left ventricular dysfunction (+39%, P=n.s. and +131%, P<0.01) and overt CHF (+76% and +336% vs. control, P<0.01 each). Progressive rapid ventricular pacing is associated with the induction of left ventricular ANP gene expression and protein synthesis exclusively during overt CHF. The current studies provide new insight into the temporal pattern of ANP-activation and the disparity between left ventricular systolic wall stress and ANP-activation in a large animal model of progressive CHF.

Animals↗

Effects of chronic hypoxia on renal renin gene expression in rats.

BACKGROUND: The effects of hypoxia on renin secretion and renin gene expression have been controversial. In recent studies, we have demonstrated that acute hypoxia of 6 h duration caused a marked stimulation of renin secretion and renal renin gene expression. This hypoxia-induced stimulation of the renin-angiotensin system might contribute, for example, to the progression of chronic renal failure and to the development of hypertension in the sleep-apnoea syndrome. For this reason, we were interested in the more chronic effects of hypoxia on renal renin gene expression and its possible regulation. METHODS: Male rats were exposed to chronic normobaric hypoxia (10% O(2)) for 2 and 4 weeks. Additional groups of rats were treated with an endothelin ET(A) receptor antagonist, LU135252, or a NO donor, molsidomine, respectively. Systolic blood pressure and right ventricular pressures were measured. Renal renin, endothelin-1 and endothelin-3 gene expression were quantitated using RNAase protection assays. RESULTS: During chronic hypoxia, haematocrit increased to 72+/-2%, and right ventricular pressure increased by a mean of 26 mmHg. Renal renin gene expression was halved during 4 weeks of chronic hypoxia. This decrease was reversed by endothelin receptor blockade (105 or 140% of baseline values after treatment for weeks 3-4 or 1-4). Furthermore, there was a trend of increasing renal endothelin-1 gene expression (to 173% of baseline values) after 4 weeks of hypoxia. Systolic blood pressure increased moderately during 4 weeks of chronic hypoxia from 129+/-2 to 150+/-4 mmHg. This blood pressure increase was higher in rats treated for 4 weeks with an endothelin receptor antagonist (196+/-11 mmHg). CONCLUSIONS: Chronic hypoxia (in contrast to acute hypoxia) suppresses renal renin gene expression. This inhibition presumably is mediated by endothelins.

Animals↗