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Biomedical subjects

R Paoletti

Publications and source records attributed to R Paoletti.

At least 73 records · Page 4Linked to original sources

Lipoprotein(a) and other lipids after oophorectomy and estrogen replacement therapy.

OBJECTIVE: To assess the effect of surgical menopause and subsequent estrogen replacement therapy (ERT) on lipoprotein(a) [Lp(a)] and common lipids. METHODS: In 24 healthy premenopausal women, lipids (total cholesterol, low-density lipoprotein [LDL] and high-density lipoprotein [HDL] cholesterol, and triglycerides) and gonadotropins (FSH, LH) were measured the day before hysterectomy with bilateral oophorectomy and then after 1, 2, and 3 months. Blood was also drawn after 2, 4, 6, and 15 days to exclude the effect of surgery on Lp(a). In 19 women who volunteered for ERT, the lipid profile was assayed again after 3, 6, and 12 months of treatment. RESULTS: Lipoprotein(a) levels rose significantly over the 3 months after surgery, from a mean +/- standard deviation (SD) 5.7 +/- 6.1 mg/dL to 10.4 +/- 9.2 mg/dL. Total cholesterol and LDL cholesterol levels increased significantly over the first 2 months; HDL cholesterol decreased significantly during the 3 months of follow-up (by 10, 17, and 20%) (P < .001). Plasma triglycerides did not change after surgery. Three months following ERT, Lp(a) and total cholesterol were significantly decreased (28 and 11%, respectively), as was LDL cholesterol (33%) after 6 months. High-density lipoprotein cholesterol increased by 24% after 6 months of treatment, and triglycerides rose significantly in the year of therapy (37%). CONCLUSION: These findings suggest that surgical menopause induces atherogenic changes in the lipid profile in 3 months and that ERT soon reverses them.

Cholesterol↗

Effect of the new calcium antagonist lercanidipine and its enantiomers on the migration and proliferation of arterial myocytes.

The in vitro effects were investigated of the new dihydropyridine calcium antagonist (CA) lercanidipine and its enantiomers on arterial myocyte (smooth muscle cell; SMC) migration and proliferation as related to L-type calcium channel inhibition. Lercanidipine and its enantiomers inhibited the replication and migration of arterial myocytes in concentration ranging from 10 to 50 microM. The antiproliferative effect of lercanidipine, evaluated as cell number, was dose dependent, with a potency similar to that of lacidipine and nifedipine, and was unrelated to the stereoselectivity of enantiomers to bind L-type calcium channels. The cell doubling time increased with drug concentration < or = 122 versus 38 h for controls. The cell growth inhibition induced by lercanidipine and its enantiomers was reversible. Lercanidipine dose dependently decreased [3H]thymidine incorporation into DNA; the (R)-enantiomer, displaying the lowest CA activity, was the most potent in this respect. The tested compounds were able to inhibit fibrinogen-induced myocyte migration in a dose-dependent manner, with the (R)-enantiomer showing the more pronounced effect. To directly rule out the role of calcium channels in the antiatherosclerotic properties of lercanidipine, we examined the effect of the compounds on serum-stimulated calcium influx in SMC. Fluorimetry of Fluo 3 was used to measure changes in free cytosolic Ca2+ concentration ([Ca2+]i) in SMC after long-term preincubation (24 h) with the tested CA. Lercanidipine and its enantiomers (25 microM) decreased the serum-induced elevation of [Ca2+]i in SMC with the (S)-enantiomer (69% inhibition) 2.4-fold more active than the counterpart and the racemate (29% inhibition). In conclusion, our in vitro results suggest that lercanidipine may directly interfere with events involved in atherogenesis. The studies performed with enantiomers of lercanidipine suggest that the observed effects are not related to the blockade of voltage-dependent Ca2+ channels and confirm at least in vitro a pharmacologic potential of the compound to negatively influence the process of atherogenesis.

Animals↗

Effect of lacidipine on fatty and proliferative lesions induced in hypercholesterolaemic rabbits.

1. The in vivo antiatherogenic activity of the calcium antagonist, lacidipine, was investigated in two different types of atherosclerotic lesions (proliferative and fatty lesions) induced in rabbits. 2. The proliferative lesion was obtained by positioning a hollow silastic collar around one carotid artery, while aortic fatty lesions were induced by cholesterol feeding. Cholesterol (1%) and lacidipine (1, 3, and 10 mg kg-1) were given daily mixed with standard diet for 8 weeks to White New Zealand rabbits. The intimal hyperplasia (proliferative lesion) was induced 6 weeks after dietary and drug treatment started. 3. The neointimal formation was determined by measuring cross sectional thickness of intimal (I) and medial (M) tissue of fixed arteries. In untreated animals (n = 5), 14 days after collar positioning an intimal hyperplasia was clearly detectable: the arteries with no collar (sham) showed an I/M tissue ratio of 0.03 +/- 0.02, whereas in the carotid with collar the ratio was 0.62 +/- 0.12. In lacidipine-treated animals a significant and dose-dependent effect on proliferative lesions at all three doses tested, was observed. I/M ratios were 0.47 +/- 0.02, 0.40 +/- 0.09, 0.32 +/- 0.02 for doses 1, 3, and 10 mg kg-1 day-1, respectively (P < 0.05). 4. The fatty lesion extent was significantly reduced by lacidipine at the 10 mg kg-1 day-1 dose, although a trend was also observed with lower dosage. 5. These results suggest a direct antiatherosclerotic effect of lacidipine, independent of modulation of risk factors such as hypercholesterolaemia and/or hypertension. Furthermore, the proliferative lesions are apparently more sensitive to lacidipine than are lipid-rich lesions.

Animals↗

Relation between hemostatic variables and increase of common carotid intima-media thickness in patients with peripheral arterial disease.

BACKGROUND AND PURPOSE: Increases in common carotid intima-media thickness (CC-IMT), as measured by B-mode ultrasonography, have been widely used in both population studies and clinical trials in the search for risk factors for early atherosclerosis progression and have been found to correlate with age and with high concentrations of low-density lipoprotein cholesterol, leukocytes, and hemoglobin. We have now investigated the relation between several baseline hemostatic and conventional risk factors and CC-IMT changes over 16 months in 64 patients with peripheral arterial disease randomly selected from the prospective PLAT study series. METHODS: Samples from 24 patients (37.5%) who showed increases in CC-IMT during the follow-up period were compared with those from 40 (62.5%) in whom CC-IMT remained unchanged. RESULTS: Baseline conventional risk factors and coagulation variables were similar in the two groups except for higher plasma concentrations of von Willebrand factor (vWF) (178.3 +/- 53.6% versus 141.2 +/- 53.7%, P=.01) and factor VII (FVII) (133.9 +/- 36.4% versus 107.0 +/- 27.3%, P=.001) in the patients with increased CC-IMT. CC-IMT increase correlated positively with plasma levels of FVII (r=.31, P<.01) and vWF (r=.31, P<.01). Multiple stepwise regression analysis identified FVII as the only independent variable associated with an increase in CC-IMT (beta=.83, P=.01). CONCLUSIONS: High plasma concentration of FVII and vWF may be associated with the progression of early carotid atherosclerosis in patients with peripheral arterial disease.

Age Factors↗

[Human recombinant erythropoietin in the treatment of anemia in obstetric-gynecologic patients. Evaluation of such treatment as an alternative to blood transfusion].

The authors introduce the subject with physiological comments regarding the ability of r-HuEP to stimulate erythropoietic bone marrow, underlining the need for other molecules to backup the therapy (vitamin B12, folic acid and iron). Subsequently, and in the light of this introduction, they outline the indications for r-HuEPO treatment in specialist fields and the relative contraindications. They then report the results obtained in a group of 24 patients with the relevant indications receiving subcutaneous treatment on alterate days with r-HuEPO in fials of 4000 IU/ml. Basal hemoglobin levels were 6-8 g and treatment was continued until levels of around 10-11 g were reached; tolerance was good in both gynecological and obstetric patients.

Adult↗

Calcium, calcium antagonists and experimental atherosclerosis.

Several calcium entry blockers have shown an antiatherosclerotic effect both in vitro and in vivo. The effects are particularly evident against smooth muscle cell migration multiplication, matrix formation, calcium and cholesterol accumulation. Among the new calcium antagonists, isradipine, amlodipine and lacidipine, are promising as antiatherosclerotic agents. Lacidipine is particularly interesting because of its lipophylic structure and accumulation in cell membranes. Lacidipine is structurally related to nifedipine; we observed that lacidipine inhibits three major processes of atherogenesis: cholesteryl ester metabolism in macrophages, proliferation of myocytes, and their migration.

Animals↗

Mevalonate pathway and isoprenoids regulate human bronchial myocyte proliferation.

The role of mevalonate and geranylgeraniol in the control of cellular proliferation of cultured human bronchial myocytes was examined by investigating the effect of simvastatin, an inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A reductase, the rate-limiting enzyme in mevalonate synthesis. Simvastatin inhibited the rate of growth of human bronchial smooth muscle cells in a concentration-dependent manner, with an IC50 value of 0.97 +/- 0.1 microM. Mevalonate (100 microM), as well as geranylgeraniol (5 microM), at their highest non-toxic concentrations, restored cell proliferation to control levels.

Bronchi↗

Pathogenesis of atherosclerosis and the role of 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitors.

Atherosclerosis is a complex multifactorial process resulting from an excessive inflammatory/fibroproliferative response to various forms of injurious stimuli to the arterial wall. The potential interactions of cells, cytokines, and growth-regulatory molecules among the different cells in the atherosclerotic lesion present numerous opportunities for modulating lesion formation and progression. Smooth muscle cell (SMC) migration and proliferation, together with lipid deposition, are now recognized as the major phenomena occurring within the arterial wall, and thus these phenomena serve as targets for pharmacologic intervention in the process of atherogenesis. Migration and proliferation of SMC are key events in atherosclerosis--and in restenosis after angioplasty. An understanding of the factors that induce such events is important for the prevention and treatment of these diseases. Mevalonate and other intermediates of cholesterol synthesis (isoprenoids) are essential for cell proliferation; hence drugs affecting this metabolic pathway are potential antiatherosclerotic agents. Recently, this group provided in vitro and in vivo evidence of decreases in SMC proliferation by fluvastatin and simvastatin, but not pravastatin, independent of their cholesterol-lowering properties. The in vitro inhibition of cell migration and proliferation induced by simvastatin and fluvastatin (70-90% decrease) was completely prevented by the addition of mevalonate, and partially prevented (70-80%) by farnesol or geranylgeraniol. This confirms the specific role of isoprenoid metabolites--most probably geranylgerylated protein(s)--in regulating cell migration and proliferation. The inhibitory effect of fluvastatin and simvastatin on cholesterol esterification induced by acetyl low density lipoprotein in macrophages was also prevented by the addition of geranylgeraniol.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of 25-hydroxycholesterol, 26-hydroxycholesterol and its analogue, 26-aminocholesterol, on protein content, protein synthesis and LDH leakage in mouse epidermal cells.

The cytotoxicity of 25-hydroxycholesterol, 26-hydroxycholesterol and its analogue, 26-aminocholesterol was investigated in murine epidermal cell line, HEL-30. Lactate dehydrogenase (LDH) leakage, protein synthesis and protein content were determined after exposure of cell monolayers to the compounds ranging from 0.1-200 microM for 2, 6, or 24 h. 26-Aminocholesterol affected all the parameters studied time and concentration dependently; 25-hydroxycholesterol and 26-hydroxycholesterol were not toxic for HEL-30 cells. The cellular target for 26-aminocholesterol was primarily the membrane, since the LDH leakage was already detectable 10 min after exposure. On the other hand, for the other two oxysterols a protective role on this structure might be postulated. In fact 25-hydroxycholesterol and 26-hydroxycholesterol decreased the natural LDH leakage due to the ageing of the culture. In addition, 20 microM 25-hydroxycholesterol reversed the effect of moderately lytic doses of 26-aminocholesterol and Triton X-100, but not of sodium dodecyl sulfate.

Analysis of Variance↗

In vivo enhanced antitumor activity of carmustine [N,N'-bis(2-chloroethyl)-N-nitrosourea] by simvastatin.

The effects of a combination of simvastatin, a cholesterol-lowering agent, and carmustine (BCNU; N,N'-bis(2-chloroethyl)-N-nitrosourea) on experimental C6 glioma were studied in vitro and in vivo. In vitro simvastatin and BCNU alone inhibited cell proliferation in a dose-dependent fashion. A subliminal concentration of simvastatin (0.1 microM) markedly and synergistically increased the BCNU toxicity to C6 glioma cells. The cytofluorimetric analysis of DNA from simvastatin-treated C6 glioma cells showed, besides the already described arrest in G1, an arrest/retardation in G2-M. Mitotic index from C6 cells incubated with simvastatin (10 microM) decreased by about 90%, indicating a specific C6 arrest/retardation in G2. The drug effects could be completely reversed by simvastatin withdrawal or mevalonate addition to the cultured cells. The combination of simvastatin and BCNU resulted predominantly from the profound retardation of cells in the G2-M compartment of the cell cycle. In vivo simvastatin (administered daily mixed with food) and BCNU (single i.p. injection), when given separately, caused a dose-dependent inhibition of labeling index in C6 glioma homografts (ID50, 61 mg/kg/day and 8.7 mg/kg, respectively). The combination of the lowest doses tested (simvastatin, 25 mg/kg/day and BCNU 0.3 mg/kg) resulted in a significant growth delay (compared to either drug alone) in C6 glioma (P < 0.05). There was no significant increase in toxicity as assessed by myelosuppression (WBC counts and bone marrow labeling index) and body weight. The results provide in vivo support for the combined use of simvastatin, a cholesterol-lowering agent, and BCNU in brain tumor treatment.

Animals↗

Effects of 26-aminocholesterol, 27-hydroxycholesterol, and 25-hydroxycholesterol on proliferation and cholesterol homeostasis in arterial myocytes.

The major relation existing between cell growth and cholesterol homeostasis prompted us to investigate the effect of 26-aminocholesterol (26-NH2), 27-hydroxycholesterol (27-OH), and 25-hydroxycholesterol (25-OH) on these cellular events. To test this relation, we incubated human and rat arterial myocytes with the sterols for 72 hours. All the tested compounds (0.5 to 7.5 mumol/L) inhibited rat and human myocyte proliferation and cholesterol biosynthesis in a dose-dependent manner. 26-NH2 was more potent than oxysterols in inhibiting human myocyte proliferation but equieffective in rat cells; 27-OH and 25-OH displayed similar activity in both cell lines. Inhibition of nuclear incorporation of thymidine in rat myocytes is consistent with decreased cell count. The antiproliferative effect of the tested sterols was reversible. The high inhibition (80%) of cholesterol biosynthesis necessary to induce a decrease in myocyte proliferation suggests a causal relation between the cholesterol synthetic pathway and these cellular processes. In addition, all the tested sterols were able to inhibit hydroxymethyl glutaryl-coenzyme A reductase activity in intact myocytes but not in cell-free extracts. The finding that 26-NH2 but not 27-OH or 25-OH does not suppress LDL receptor activity in either human or rat myocytes supports the achievement of selectivity over the coordinately regulated LDL receptor gene. The ability of 26-NH2 to interfere with myocyte proliferation and cholesterol synthesis without affecting the LDL receptor pathway confers at least in vitro a pharmacological interest on the compound in the process of atherogenesis.

Animals↗

[The pharmacology of the statins: the evidence of a direct antiatherosclerotic action].

With the increasing knowledge on the pathogenesis of atherosclerosis, it appears that the prevention of cardiovascular disease in the future will involve, besides risk factor correction, direct pharmacological control of processes occurring in the arterial wall. Among them, a pivotal role is played by smooth muscle cell migration and proliferation that, together with lipid deposition, are prominent features of atherogenesis and restenosis after angioplasty. Mevalonate and other intermediates (isoprenoids) of cholesterol synthesis are essential for cell growth, hence drugs affecting this metabolic pathway are potential antiatherosclerotic agents. Recently we provided evidence that fluvastatin, simvastatin, lovastatin, but not pravastatin, dose-dependently decrease smooth muscle cell migration and proliferation, independently of their hypocholesterolemic properties. The in vitro inhibition of cell migration and proliferation induced by simvastatin and fluvastatin (70-90% decrease) was completely prevented by the addition of mevalonate and partially (80%) by farnesol and geranylgeraniol, confirming the specific role of isoprenoid metabolites--probably through prenylated proteins--in regulating these cellular events. The present results provide evidence that HMG-CoA reductase inhibitors interfere directly with processes involved in atherogenesis--beyond their effects on plasma lipids--partially through local inhibition of isoprenoid biosynthesis.

Animals↗

The antiatherosclerotic effects of calcium antagonists.

It has been known for some time that calcium antagonists demonstrate antiatherosclerotic activity. These agents have been shown to reduce the extension of atherosclerotic lesions in cholesterol-fed rabbits without affecting plasma lipid concentrations or blood pressure, suggesting a direct protective effect on the arterial wall. Lacidipine is a recently developed dihydropyridine calcium antagonist that is extremely lipophilic and has potent and long-lasting antihypertensive properties. Lacidipine directly inhibits the enzyme, acylcoenzyme A-cholesterol acyltransferase, and affects intracellular cholesterol homeostasis by preventing acetyl low-density lipoprotein cholesterol esterification. In vivo studies have shown that lacidipine also reduces the intimal hyperplasia induced by insertion of a plastic collar around one carotid artery in cholesterol-fed rabbits. In animals treated with lacidipine, the rapid proliferation of smooth-muscle cells inside the carotid wall is totally inhibited. Lacidipine, therefore, appears to protect the arterial wall against the development of atherosclerotic lesions in animal or human subjects with severe and multiple risk factors. It seems likely that these effects are achieved by a direct action on the mechanisms involved in atherogenesis.

Animals↗

Inhibition of isoprenoid biosynthesis and arterial smooth-muscle cell proliferation.

Recently, we provided in vitro and in vivo evidence that several vastatins with different potencies decrease arterial smooth-muscle cell (SMC) proliferation independently of their hypocholesterolemic properties. In this study, the in vivo dose-dependent antiproliferative activity of fluvastatin on neointimal formation induced by the insertion of a collar around one carotid artery was investigated in normocholesterolemic rabbits (five animals per treatment group). Intraperitoneal fluvastatin treatment progressively inhibited intimal to medial tissue ratios (I/M) by 5, 48, and 64% versus controls at doses of 3, 5, or 10 mg/kg/day, respectively. Local arterial delivery by an Alzet pump of mevalonate (8 mg/kg/day) at the site of collar placement fully prevented a fluvastatin (5 mg/kg/day) inhibitory effect on both I/M and SMC proliferation, as assessed by direct incorporation of bromodeoxyuridine (BrdU) into replicating DNA. The results suggest that vastatins exert a direct antiproliferative effect on intimal myocytes beyond their effects on plasma lipids, probably through local inhibition of isoprenoid biosynthesis.

Animals↗