Search PubMed⌕ Search

Biomedical subjects

C Ferri

Publications and source records attributed to C Ferri.

At least 109 records · Page 6Linked to original sources

Hepatitis C virus genotype analysis in patients with type II mixed cryoglobulinemia.

OBJECTIVE: To investigate the possible role of HCV variants in the pathogenesis of mixed cryoglobulinemia. SETTING: Medical service (rheumatology and hepatology units) of urban, university-affiliated teaching hospitals. DESIGN: Analysis of viral genotypes in a cohort of patients with hepatitis C virus (HCV) infection and mixed cryoglobulinemia. PATIENTS: 90 unselected HCV-positive (anti-HCV antibody-positive and HCV RNA-positive) patients consecutively recruited at routine ambulatory visits: 29 with and 61 without (control group) mixed cryoglobulinemia. MEASUREMENTS: Clinical and histologic data; HCV RNA detection in serum and peripheral blood mononuclear cells by polymerase chain reaction (PCR); HCV genotype determination by two methods based on genotype-specific primer PCR and genotype-specific probe hybridization, respectively. RESULTS: Persistent aminotransferase increases were found in 55% of patients with mixed cryoglobulinemia. Peripheral blood mononuclear cells were infected in 80% of cases. In serum samples, HCV genotype 2a/III was detected with a higher prevalence in patients with mixed cryoglobulinemia than in controls (41% compared with 15%). The overall prevalence of genotype 2a/III in mixed cryoglobulinemia increased to 52% when findings in peripheral blood mononuclear cells were also considered. Among patients with mixed cryoglobulinemia, this genotype was more frequent in those without clinical and biochemical signs of liver disease (85%) or with serum autoantibodies (75%). CONCLUSIONS: Mixed cryoglobulinemia may be related, at least in part, to the HCV genotype infecting the host.

Aged↗

Effect of aprotinin on insulin sensitivity in non-insulin-dependent diabetes mellitus.

It has been suggested that kallikrein-kinin system may influence carbohydrate metabolism via a kinin-mediated increment of insulin-mediated glucose uptake. To evaluate the effect of acute inhibition of the kallikrein-kinin system on insulin sensitivity, a randomized, placebo-controlled, double-blind study was performed in 15 male non-insulin-dependent diabetic patients. After basal evaluation of insulin sensitivity with a 2-h euglycaemic hyperinsulinaemic clamp (40 mU m-2 min-1), patients were infused either with aprotinin (200,000 U.I.C. as intravenous bolus injection) or placebo (10 ml isotonic saline) in a cross-over fashion, at 1 week intervals. After both saline and aprotinin infusions, insulin sensitivity was reassessed by continuing the euglycaemic hyperinsulinaemic clamp for a further 1 h. Resulting data showed that aprotinin significantly improved total glucose uptake (from 16.2 +/- 2.9 mumol kg min-1 to 20.6 +/- 4.9 mumol kg min-1 p < 0.01), and decreased metabolic clearance rate of insulin (from 586 +/- 57 ml m-2 min-1 to 442 +/- 155 ml m-2 min-1, p < 0.05). Thus, in spite of the suggested positive effects of kinins on insulin-mediated glucose uptake, acute inhibition of the kallikrein-kinins system resulted in a paradoxical increment of insulin sensitivity, which was probably mediated by the reduced metabolic clearance rate of insulin.

Adult↗

Scintigraphic findings on 99mTc-MDP, 99mTc-sestamibi and 99mTc-HMPAO images in Gaucher's disease.

Gaucher s disease is an autosomal recessive lysosomal storage disease characterized by the specific deficiency of glucocerebrosidase that leads to accumulation of insoluble glucocerebroside in the reticuloendothelial system, particularly the bone marrow, liver, spleen and lymph nodes. Direct scintigraphic visualization of lipid deposits in Gaucher s disease has recently been described, based on the use of the lipid-soluble xenon-133. We report here on the use of the lipophilic cationic complex technetium-99m sestamibi (99mTc-MIBI), employed as an indicator of increased cellular density and metabolic activity, to evaluate Gaucher cell infiltrates in the bone marrow; 99mTc-hexametazime (99mTc-HMPAO) was also employed, as a pure indicator of lipidic infiltration in the bone marrow. A 67-year-old patient with known type 1 Gaucher s disease presented with a painful left hip and knee and difficulty in gait subsequent to traumatic fracture of the left femoral neck that had required implant of a fixation screw-plaque. Bone scan with 99mTc-methylene diphosphonate revealed reduced uptake at the distal metaphyseal-epiphyseal femoral region. In addition, whole-body maps and spot-view acquisitions of the thighs and legs were recorded at both 30 min and 2.5 h after the injection of 99mTc-MIBI: the scintigraphic pattern clearly showed increased uptake at several sites involved by Gaucher deposits in the bone marrow (both knees, with variable intensity in different areas), matching the bone changes detected by conventional x-ray. The target to non-target ratios slowly decreased with time, from an average value of 2.25 in the early scan to an average value of 2 in the delayed scan. The lipid-soluble agent 99mTc-HMPAO exhibited a superimposable scintigraphic pattern of accumulation at the involved sites, though with lower target to non-target ratios (1.27-1.48). The results obtained in this patient suggest a potential role of 99mTc-MIBI in the scintigraphic evaluation of Gaucher s lipid deposits in the bone marrow. If the results are confirmed in other patients, this radiopharmaceutical would offer clear advantages over 133Xe because of its wider availability and greater practicality (i.v. administration of 99mTc-MIBI versus inhalation of 133Xe, and use of a single gamma camera instead of two as with 133Xe).

Aged↗

Chronic hepatitis C and B-cell non-Hodgkin's lymphoma.

Hepatitis C virus (HCV), a hepatotropic and lymphotropic virus, is the major causative agent of nonA-nonB chronic hepatitis; moreover, it is frequently associated with benign and malignant lymphoproliferative disorders such as mixed cryoglobulinaemia and B-cell non-Hodgkin's lymphoma (NHL). We investigated the clinical and virological features of B-cell NHL complicating chronic hepatitis C in a series of 10 patients (M/F 1/9; mean age 63 +/- 6SD years). The malignancy appeared after median 8 +/- 4SD years from onset and was low-grade in six patients, intermediate in three, and high-grade in one. 'One-tube nested' PCR detected serum HCV RNA and viral ongoing replication in both fresh and cultured peripheral lymphocytes in all ten. Analysis of HCV genotypes showed a relatively higher prevalence of 2a/III type compared with unselected chronic hepatitis C (50% vs. 15%). In one patient, HCV RNA was also found in the neoplastic bone marrow and lymph-node specimens. B-cell NHL can complicate chronic hepatitis C and affect the overall prognosis of the disease. The increasing frequency of chronic hepatitis C worldwide suggests that the actual prevalence of this complication may be underestimated. Careful clinical work-up at diagnosis and during follow-up is particularly recommendable.

Aged↗

Impaired inactive to active kallikrein conversion in human salt-sensitive hypertension.

Active and inactive urinary kallikrein excretion rates were evaluated in 43 essential hypertensive men (45.4 +/- 5.6 yr) after normal-(120 mmol/day), low-(20 mmol/day), and high-(240 mmol/day) NaCl diets were given for 2 wk each. Patients were classified as salt-sensitive, salt-resistant, or counterregulating, on the basis of their blood pressure responses to the different NaCl intakes. Resulting data show that active and inactive kallikrein excretion rates were lower (P < 0.001) in salt-sensitive (active, 0.59 +/- 0.27 U/24 h; inactive, 3.45 +/- 1.31 U/24 h) than in salt-resistant (active, 1.41 +/- 0.35 U/24 h; inactive, 6.93 +/- 2.68 U/24 h) and in counterregulating hypertensive patients (active, 1.37 +/- 0.39 U/24 h; inactive, 6.32 +/- 2.58 U/24 h) after the normal NaCl diet. Salt-sensitive hypertensive patients showed also higher plasma digoxin-like substance (P < 0.001), atrial natriuretic peptide (P < 0.001), and fasting insulin (P < 0.005) levels than the other subgroups. Active kallikrein decreased after high and increased after low-NaCl intake in all groups. Inactive kallikrein varied similarly to active one in salt-resistant patients and counterregulating patients, whereas it increased during salt-loading in salt-sensitive patients. Consequently, the active/total kallikrein ratio decreased in salt-sensitive patients (from 20.2 +/- 3.5 to 5.82 +/- 1.02%, P < 0.05) when they switched from low- to high-NaCl intake, and the ratio was lower in these patients than in the other subgroups (P < 0.0001) after the high-NaCl diet. In conclusion, active and inactive kallikrein excretions after normal-NaCl intake are reduced in salt-sensitive hypertensive patients. The divergent active and inactive kallikrein responses to dietary NaCl changes in salt-sensitive patients could indicate an impairment of inactive to active kallikrein conversion during NaCl loading as a new mechanism in human salt-sensitive hypertension.

Adult↗

Active kallikrein response to changes in sodium-chloride intake in essential hypertensive patients.

To evaluate the behavior of active kallikrein excretion in salt-sensitive and salt-resistant hypertensive patients during changes in sodium-chloride (NaCl) intake, 61 male, nonobese, nondiabetic outpatients affected by uncomplicated essential hypertension were given a diet that contained 140 mmol NaCl per day for 2 wk. Patients then received either a low- (20 mmol NaCl/day) or a high- (320 mmol NaCl/day) sodium diet for 2 wk, according to a randomized, double-blind, cross-over protocol. Hypertensive patients were classified as salt sensitive when their diastolic blood pressure rose by at least 10 mm Hg after the high-sodium diet, and decreased by at least 10 mm Hg after the low-sodium diet, considering as baseline blood pressure values those that were taken at the end of the 140 mmol NaCl/day intake period. The remaining patients were classified as salt resistant or, when diastolic blood pressure increased by 10 mm Hg or more after low-sodium intake, as counter-regulating. Twenty-three patients were therefore classified as salt sensitive, 28 as salt resistant, and 10 as counter-regulating. The baseline active kallikrein excretion was significantly lower (P < 0.0001) in salt-sensitive (0.62 +/- 0.31 U/24 h) patients than in salt-resistant (1.39 +/- 0.44 U/24 h) and counter-regulating patients (1.27 +/- 0.38 U/24 h). Surprisingly, the kallikrein response to changes in sodium intake was similar in all subgroups, although enzyme excretion was always at the lowest level in salt-sensitive hypertensive patients. This latter group also showed the highest plasma atrial natriuretic peptide levels (28.2 +/- 8.5 fmol/mL, P < 0.0001 versus salt-resistant and counter-regulating patients), and the greatest peptide increment with sodium load (P < 0.0001 versus salt-resistant and counter-regulating patients). Counter-regulating patients showed the steepest increase in plasma renin activity (from 0.24 +/- 0.18 to 0.83 +/- 0.21 ng/L per s, P < 0.001) and decrease of plasma atrial natriuretic peptide (from 26.1 +/- 6.3 to 6.8 +/- 3.1 fmol/mL, P < 0.001) when switched from a high to a low-sodium intake. In conclusion, salt-sensitive hypertensive patients excrete less active kallikrein than do salt-resistant and counter-regulating patients, but maintain a normal enzyme response to changes in dietary sodium intake. The exaggerated response of atrial natriuretic peptide to high-sodium intake that was observed in the same patients could be compensating for an impaired renal capability to excrete a sodium load.

Adult↗

Circulating catecholamines and metabolic effects of captopril in NIDDM patients.

OBJECTIVE: To evaluate the effects of captopril on circulating catecholamine levels in NIDDM patients and the possible relationship between captopril-related changes in circulating catecholamine levels and insulin sensitivity. RESEARCH DESIGN AND METHODS: Fourteen nonobese normotensive NIDDM men (aged 44.5 +/- 5.1 years) underwent a 2-h euglycemic-hyperinsulinemic clamp (40 mU.m-2.min-1). Baseline evaluation of insulin sensitivity was followed by the random assignment of each patient to either captopril or placebo treatment, according to a crossover double-blind design. Euglycemic-hyperinsulinemic clamp studies were then repeated for all patients after both placebo and captopril treatments. Plasma norepinephrine (NE) and epinephrine (E) levels were assessed before, during, and after each clamp. RESULTS: Resulting data showed that plasma catecholamine levels increased during baseline euglycemic-hyperinsulinemic clamp (NE: +23.6% time 0 vs. time 120 min, P < 0.05; E: +24.8% time 0 vs. time 120 min, P < 0.05). Captopril treatment significantly increased total glucose uptake (from 19.0 +/- 9.0 to 26.8 +/- 10.1 mmol.kg-1.min-1, P < 0.05) and reduced baseline plasma NE (P < 0.001) and E (P < 0.05) levels. However, the magnitude of the NE (+25.7% time 0 vs. time 120 min, P < 0.001) and E (+27.2% time 0 vs. time 120 min, P < 0.05) increments during euglycemic hyperinsulinemia were not affected by the drug. Percentage changes in the ratio of total body glucose uptake to circulating insulin levels and corresponding decrements of baseline plasma E levels after captopril therapy were negatively correlated (r = -0.57, P < 0.05). CONCLUSIONS: The reduction of circulating catecholamines could contribute, at least in part, to the captopril-related amelioration of insulin sensitivity.

Adult↗

Endogenous insulin modulates circulating endothelin-1 concentrations in humans.

OBJECTIVE: To assess the effect of oral glucose loading on plasma endothelin-1 (ET-1) levels in humans. RESEARCH DESIGN AND METHODS: A total of 75 g D-glucose was given orally to 14 nonobese nondiabetic essential hypertensive subjects (eight men and six women, mean age 43.1 +/- 3.0 years) and eight normotensive subjects (four men and four women, mean age 45.2 +/- 4.1 years). Blood samples for plasma ET-1 measurement were drawn every 30 min for 2 h and then at 180 and 240 min. RESULTS: After glucose load, insulin increased more significantly in hypertensive subjects than in normotensive subjects at times 60 (P = 0.004) and 90 (P = 0.001) min. Glucose loading was followed by a mild but significant increase in circulating ET-1 levels in both groups (hypertensive subjects, from 0.87 +/- 0.25 pg/ml at time 0 to 1.64 +/- 0.33 pg/ml at 120 min and 1.74 +/- 0.38 pg/ml at 180 min, P < 0.05; normotensive subjects, from 0.82 +/- 0.38 pg/ml at time 0 to 1.42 +/- 0.18 pg/ml at 180 min, P < 0.05). Whereas baseline ET-1 levels were similar between the two groups, postload ET-1 levels were higher in hypertensive subjects than in normotensive subjects (P = 0.003 at 120 min; P = 0.04 at 180 min). CONCLUSIONS: This study indicates that significant changes in circulating ET-1 levels occur after oral glucose loading, probably due to a glucose-induced increment in endogenous insulin concentration.

Adult↗

Effect of acute exposure to hypoxia on electrolytes and water metabolism regulatory hormones.

BACKGROUND: Many studies suggest the hypothesis that the pathology of high altitude could be due to an early alteration of the hormones that regulate sodium homeostasis. HYPOTHESIS: The aim of this study was to evaluate the behavior of these hormones during an acute exposure to hypobaric hypoxia. METHODS: We studied 26 young healthy pilot students (23.1 +/- 2.9 yrs) in a hypobaric chamber, for 3 h (samples collected at time 0, 120, and 180 min), at 5000 m ASL. RESULTS: The results show an early increase of plasma renin activity (PRA) paradoxically associated to a decrease of aldosterone plasma levels. This later returned to the baseline values at 180 min, whereas PRA remained increased throughout the exposure. Both arginine-vasopressin (ADH) and the atrial natriuretic peptide (ANP) significantly increased, while a new putative hormone, the so-called digoxin-like substance (DLS) did not show significant changes. CONCLUSIONS: Our data demonstrate a specific sensitivity of the hormonal systems to hypoxia, which may be influenced by the time of the exposure. The relationship with results previously reported is also addressed.

Acute Disease↗

Plasma and urinary digitalis-like substance levels during atrial natriuretic peptide infusion in essential hypertensive patients.

In order to evaluate the effect of atrial natriuretic peptide (ANP) infusion on plasma and urinary digitalis-like substance (DLS) levels, 18 essential hypertensive males (mean age 45.6 +/- 3.8 y) were studied. After 1 week on a normal NaCl intake (120 mmol/24h), patients were randomly double-blindly assigned to receive either ANP (99-126) (0.3 microgram/kg/min) (number of patients = 10) or its vehicle (50 ml isotonic saline) (8 patients) over a period of 60 min, in supine position. Plasma and urinary DLS levels were measured at time -60, 0, 30, 60, 120, 180, and 240 min (infusion time from 0-60 min). During ANP infusion, plasma DLS levels decreased significantly (from 25.2 +/- 6.8 pg/ml at time 0 to 12.5 +/- 5.6 pg/ml at 60 min, p < 0.01), while urinary DLS excretion increased (from 60.5 +/- 26.1 pg/ml at time 0 to 246.3 +/- 34.2 pg/ml at 30 min, p < 0.0001). and 402.3 +/- 44.1 pg/ml at 60 min, p < 0.0001). After 3 h from the end of ANP infusion, both plasma and urinary DLS returned to baseline levels (20.5 +/- 14.4 pg/ml and 84.5 +/- 34.2 pg/ml, respectively). Taken together, our data show that ANP infusion significantly increases urinary DLS excretion, while decreasing its circulating levels. This phenomenon could explain the different response of ANP and DLS to some stimuli, such as acute volume expansion. In fact, the rapid increment of plasma ANP due to an acute increase of extracellular fluid volume might simultaneously inhibit the increase in circulating DLS levels by promoting the urinary excretion of this substance.

Adult↗