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G Corso

Publications and source records attributed to G Corso.

At least 37 records · Page 2Linked to original sources

Effect of low density lipoprotein fatty acid composition on copper-induced peroxidation: 1H-nuclear magnetic resonance analysis.

Oxidation of low density lipoprotein (LDL) has been implicated in atherogenesis. An increased content of oleic acid in LDL and the substitution of monounsaturated for polyunsaturated fatty acids in the diet reduce LDL oxidation. With 1H-NMR analysis, all LDL modifications, including the production of copper-induced aldehyde products, can be evaluated simultaneously. The aim of the present study was to investigate whether the fatty acid composition of LDL affected the NMR evaluation of aldehyde compounds. The LDL of the samples utilized were rich in oleic fatty acid (26.9%). After 48 h of exposure to copper sulfate, the mean production of malonyldialdehyde (MDA) by LDL was 31.2 nmol/mg of protein. Moreover, in the present study NMR did not reveal large amounts of peroxidative compounds since the nanomolar amounts of MDA produced after exposure to copper sulfate could not be detected. This study also demonstrated that the fatty acid composition (i.e. the oleic:linoleic acid ratio) must be taken into account in the evaluation of LDL peroxidation by NMR. In particular, a high concentration of oleic acid may limit the formation of large amounts of peroxidative compounds generated after exposure to the oxidant copper sulfate.

Adult↗

Decreased low-density lipoprotein oxidation after repeated selective apheresis in homozygous familial hypercholesterolemia.

Familial hypercholesterolemia was the first genetic disorder recognized to cause myocardial infarction. Patients with homozygous familial hypercholesterolemia have rapidly progressive coronary atherosclerosis with angina pectoris, myocardial infarction, or sudden death at a young age. Selective apheresis on dextran sulfate cellulose columns reduces mortality and may induce regression of coronary lesions. These patients have both increased levels and prolonged circulation residence time of low-density lipoprotein (LDL), which is not removed by cellular receptor. LDL oxidation may play a pivotal role in atherogenesis. LDL undergoes oxidation before being taken up by macrophages and then transformed into arterial wall foam cells. The aim of this study was to investigate LDL oxidation in eight homozygous patients with familial hypercholesterolemia during repeated LDL apheresis. LDL lipid peroxidation, estimated by conjugated-diene absorbance at 234 nm, lipid peroxides, and malondialdehyde showed an increased resistance against oxidation after repeated LDL apheresis. This phenomenon was also observed in the oxidative indexes of protein moiety of LDL (apolipoprotein-B100 fragmentation, trinitrobenzenesulfonic acid reactivity, and electrophoresis agarose mobility). Similarly, cholesteryl esterification was decreased after LDL apheresis. Thus selective LDL apheresis not only decreases the pool of LDL, but it also induces changes that render LDL less susceptible to oxidation. This phenomenon might contribute to reduce coronary atherosclerosis and thus mortality of these particular patients.

Apolipoprotein B-100↗

A simple and rapid purification procedure minimizes spontaneous oxidative modifications of low density lipoprotein and lipoprotein (a).

Usual purification procedures of LDL and Lp(a) require numerous, extensive and prolonged sample handlings: this greatly increases the possibility of spontaneous oxidation. We have developed a method which, making use of two short-run ultracentrifugations in vertical rotors alternated by two rapid column-chromatography steps (SRUC), significantly shortens the preparation time to 3.5 h (LDL) and does not demand additional instrumentation or particular accuracy. Purification of Lp(a) requires a further wheat germ agglutinin chromatographic step, which can be accomplished within 30 min. More importantly, the method significantly reduces spontaneous oxidation as compared with classical isolation procedures. LDL isolated by the standard sequential method exhibits more extensive apolipoprotein B100 degradation, lipid peroxidation, and endogenous antioxidant (vitamin E) loss than the same lipoproteins obtained by means of the SRUC. This procedure may have be particularly valuable in experiments evaluating the effects of oxygen radical-induced modifications, especially in vitro.

Adolescent↗

Clinical and biochemical screening for Smith-Lemli-Opitz syndrome. Italian SLOS Collaborative Group.

Smith-Lemli-Opitz syndrome (SLOS) is a multiple congenital anomalies/mental retardation disorder possibly due to a defect of delta 7-sterol reductase, leading to low plasma cholesterol levels and to the accumulation of 7-dehydrocholesterol (7-DHC) and other cholesterol precursors. This study aimed to identify clinical features that could potentially be specific indicators for the clinical diagnosis of SLOS, and to test the reliability of ultraviolet spectrophotometry (UVS) as a biochemical screening procedure for the syndrome. Twenty patients with clinical suspicion of SLOS, referred to 11 Italian paediatric and clinical genetic centres, were collected during 1994. In 10 patients the diagnosis was confirmed biochemically by gas chromatography/mass spectrometry (GC/MS) analysis of serum sterols, whereas in the other 10 patients the serum sterol profiles were normal. A comparison between confirmed SLOS patients and biochemically negative subjects did not show clinical signs specific for the syndrome. UVS measurement of 7-DHC correlated well with GC/MS profiles, showing 100% sensitivity and specificity. Four out of five patients had serum bile acid concentrations below the normal range of controls.

Adolescent↗

[LDL oxidation in homozygous familial hypercholesterolemia: effects of selective LDL-apheresis treatment].

Homozygous familial hypercholesterolemia (HFH) results from a mutation affecting both the structure and function of a cell surface receptor that removes low density lipoproteins (LDL) from plasma. The disorder is characterized by autosomal dominant inheritance, a lifelong elevation in the concentration of LDL-bound cholesterol in blood and by cholesterol deposits that form xanthomas and early coronary artery disease. HFH patients, as a result of the increased levels and prolonged residence time of LDL in plasma, have a strong tendency toward accumulation of LDL-cholesterol in the arterial wall causing premature atherosclerosis. Selective LDL-apheresis (LA) on dextran/sulphate cellulose columns is the best therapy reducing mortality of these patients. We previously showed that prolonged lifelong enhanced LDL oxidation in HFH. LDL undergo oxidation before being taken up by macrophages then transformed into foam cells. At the present time, the relevance of the in vitro macrophages studies to the accumulation of cholesterol esters in scavenger cells of HFH patients is not yet established. The aim of this study was to investigate LDL oxidation, induced by xanthine (2 mM)+xanthine oxidase (100 mU), and cholesterol esterification in macrophages, in 8 HFH patients before and after LA. LDL peroxidation by conjugated-diene absorbance showed an increased resistance against oxidation after LA: lag time 129 +/- 25 vs 112 +/- 27 min, p < 0.05; diene production 9.1 +/- 2.1 vs 13.9 +/- 2.5 nM/min/mg LDL, p < 0.01. Peroxidation was also evaluated from lipid peroxides (158 +/- 34 vs 57 +/- 18 nM/mg protein after LA, p < 0.05) and malonyldialdehyde (38 +/- 12 vs 27 +/- 8 nM/mg protein after LA, p < 0.05) content. When oxidized LDL was run on polyacrylamide gel extensive apo-B100 fragmentation was observed in LDL before LA, vs a less fragmentation after LA. A similar reduction was obtained in LDL agarose mobility after LA (1.7 +/- 0.2 vs 2.5 +/- 0.2, p < 0.05). Cholesterol esterification in mouse peritoneal macrophages was also decreased after LA (8.5 +/- 1.8 vs 14.6 +/- 2.7 nM/mg cell protein/12 hours, p < 0.05). Vitamin E content of LDL (mg/g protein) was increased after LA (4.44 +/- 1.0 vs 3.9 +/- 1.2, p < 0.05). Thus, selective LA, not only decreases the pool of LDL, but it also induces changes that render LDL less susceptible to oxidation and decreased high cholesterol esterification in macrophages. The prevention of these mechanisms by LA contributes actively to retard atherogenesis in HFH patients.

Analysis of Variance↗

Oxidative structural modifications of low density lipoprotein in homozygous familial hypercholesterolemia.

Patients with homozygous familial hypercholesterolemia (FH), as a result of the increased levels and prolonged residence time of low density lipoprotein (LDL) in plasma, have a strong tendency toward accumulation of LDL-cholesterol in the arterial wall, causing premature atherosclerosis. This phenomenon may enhance per se the physiological degradation of both protein and lipid component of LDL, which be more susceptible to oxidative damage induced by oxygen radicals. It is well known that LDL may undergo oxidative modification before being taken up by macrophages which are then transformed into foam cells. It has been suggested that platelet-activating factor (PAF) may play an important role in atherogenesis and PAF catabolism is known to be mediated by serum acetylhydrolase, an enzyme that is normally associated with LDL. Thus, the present study was designed to investigate the structural properties of LDL, including acetylhydrolase activity, in homozygous FH as compared to normolipidemic subjects before and after xanthine/xanthine oxidase-mediated oxidation. We studied 8 homozygous FH patients matched with 8 normolipidemic volunteers. Lipids of LDL fraction were extracted and verified by thin layer chromatography (TLC) analysis. Fatty acids were methylated and injected into a gas chromatograph/mass spectrometer. Vitamin E in LDL was determined by high performance liquid chromatography (HPLC). As an index of susceptibility of LDL to oxidative modifications, the formation of lipid-conjugated dienes was continuously monitored at 234 nm. Lipid peroxidation was also evaluated from the amount of both lipid peroxides (LPO) and malonyldialdehyde (MDA) content. Apolipoprotein (apo) B-100 on LDL was carried on polyacrylamide and agarose gel electrophoresis. In the homozygous FH patients, the relative content of cholesteryl ester was slightly increased. Interestingly, the relative amount of arachidonic acid (20:4) was constantly increased in each lipid fraction in homozygous FH patients. The amount of vitamin E was not significantly different in the patient group from that in the control group. However, LDL from patients carried lower levels of vitamin E (nmol/mg LDL) than controls (2.7 +/- 0.4 vs. 2.9 +/- 0.3 P = NS). The results shows that lag time (min) was decreased (82 +/- 19 vs. 111 +/- 21; P < 0.05) and the maximal rate of diene production and total diene production was increased in homozygous FH patients. Mean levels of MDA were similar in both groups before oxidation, but levels after initiation of oxidation were significantly higher in the patient group. In contrast, mean levels of LPO were already higher in patients before oxidation (58 vs. 27 nmol/mg of protein; P < 0.05), and after initiation of oxidation were also significantly higher at each time points. When oxidized LDL was run on a polyacrylamide gel, an extensive apo B-100 fragmentation replaced by lower molecular mass fragments ranging from 45,000 to 205,000 m.wt., was observed only in LDL from homozygotes. Relative LDL agarose gel mobility shows that LDL from patients migrated higher than LDL of controls. Finally acetylhydrolase activity associated with LDL in patients was significantly reduced as compared to controls. Thus, in homozygous FH patients, LDL appeared more susceptible to oxidation in vitro; the indices for LDL oxidizability were all significantly different from those of controls. This phenomenon might be due to prolonged residence time of LDL in these patients, as suggested from high basal LPO levels and lower vitamin E levels carried by LDL. This hypothesis may explain together with the high content of arachidonic acid, the enhanced susceptibility of LDL from homozygous FH patients to oxidative damage.

Apolipoprotein B-100↗

Impingement relief test: an adjunctive procedure to traditional assessment of shoulder impingement syndrome.

Shoulder impingement syndrome, a common disorder directly related to the unique anatomy, mobility, and biomechanics of the shoulder girdle complex, is a condition that results from repetitive microtrauma to the structures within the subacromial space, primarily the supraspinatus, the long head of the biceps, and the subacromial bursa. Several factors contribute to shoulder impingement syndrome, including rotator cuff weakness, capsular tightness, poor scapulohumeral rhythm, and muscle imbalance of the scapular upward rotation force couple. This article briefly reviews the biomechanics of the shoulder girdle complex and the pathology of shoulder impingement syndrome. The author introduces an adjunctive assessment procedure that assists the clinician in isolating the primary tissue and the structures involved with shoulder impingement syndrome. Conservative treatment management can then be directed to the involved contractile and/or noncontractile tissue involved with shoulder impingement syndrome.

Biomechanical Phenomena↗

Lipids of human gastric mucosa: effect of Helicobacter pylori infection and nonalcoholic cirrhosis.

BACKGROUND/AIMS: Gastric mucosa phospholipids play an important protective role against exogenous and endogenous toxic agents. Recently, we described a significant alteration of phospholipid profile in patients with chronic atrophic gastritis without Helicobacter pylori infection. The aim of the present study was to assess the phospholipid composition of gastric biopsy specimens in 41 subjects with chronic gastritis in relation to H. pylori infection (no. 26) and nonalcoholic cirrhosis (no. 18). METHODS: Phospholipids were extracted from homogenate mucosal samples using Folch's method, purified, and separated by thin-layer chromatography, while bound fatty acids were analyzed by gas liquid chromatography. RESULTS: The amounts of five gastric phospholipid classes, their rank order, and percent distribution of the principal ones (phosphatidylcholine [PC] 58%, phosphatidylethanolamine [PE] 26%, and phosphatidylinositol 11% vs. values of 49, 19, and 14, respectively, in the earlier study) were confirmed in chronic gastritis without H. pylori infection. H. pylori infection induced a dramatic reduction (about 30%) in the absolute amount of total phospholipids (24.2 micrograms/mg protein versus 35.1 of the H. pylori-negative group; P < 0.01), PC and PE being the most affected (-36% and -26%, respectively), while bound fatty acids remained unchanged. There was no difference in cirrhotic vs. noncirrhotic subjects. CONCLUSIONS: (1) The development of gastritis is characterized by an alteration of the lipid mucosal pattern that can change with the different etiologies, the most dramatic variations being observed in the presence of H. pylori infection; and (2) cirrhosis does not affect further the alteration in the phospholipid profile of the antral mucosa caused by chronic gastritis.

Adult↗

Role of gluconeogenesis in epinephrine-stimulated hepatic glucose production in humans.

To evaluate the contribution of gluconeogenesis to epinephrine-stimulated glucose production, we infused epinephrine (0.06 micrograms X kg-1 X min-1) for 90 min into normal humans during combined hepatic vein catheterization and [U-14C]alanine infusion. Epinephrine infusion produced a rise in blood glucose (50-60%) and plasma insulin (30-40%), whereas glucagon levels increased only at 30 min (19%, P less than 0.05). Net splanchnic glucose output transiently increased by 150% and then returned to base line by 60 min. In contrast, the conversion of labeled alanine and lactate into glucose increased fourfold and remained elevated throughout the epinephrine infusion. Similarly, epinephrine produced a sustained increase in the net splanchnic uptake of cold lactate (four- to fivefold) and alanine (50-80%) although the fractional extraction of both substrates by splanchnic tissues was unchanged. We conclude that a) epinephrine is a potent stimulator of gluconeogenesis in humans, and b) this effect is primarily mediated by mobilization of lactate and alanine from extrasplanchnic tissues. Our data suggest that the initial epinephrine-induced rise in glucose production is largely due to activation of glycogenolysis. Thereafter, the effect of epinephrine on glycogenolysis (but not gluconeogenesis) wanes, and epinephrine-stimulated gluconeogenesis becomes the major factor maintaining hepatic glucose production.

Adult↗

Glucoregulatory response to intravenous fructose administration in the dog.

This study was designed to evaluate the influence of fructose administration on glucose kinetics and the role of fructose conversion to glucose in the maintenance of glucose homeostasis. Intravenous fructose infusion (4.5 mg/kg min-1) produced a stable plasma fructose concentration of about 20 mg/dl and a small but sustained decrease (10 mg/dl) of plasma glucose levels. The latter effect was entirely attributable to a rapid 30-35% fall in hepatic glucose output which later returned slowly to pre-infusion levels. No significant change in the rate of glucose utilization was observed. The rate of fructose conversion to glucose rose progressively during fructose infusion reaching a plateau of 1.4 mg/kg min-1 which corresponded to about 40% of total glucose production. Furthermore, as much as one third of the infused fructose was converted to circulating glucose. No appreciable changes in plasma insulin and glucagon levels occurred during fructose infusion while plasma alanine concentration increased remarkably. These data indicate that 1) fructose administration induces a transient fall in endogenous glucose production not accompanied by significant changes in glucose utilization; 2) the rapid conversion of the infused fructose to circulating glucose provides for the restoration of normal rates of glucose production; and 3) the glucoregulatory response to the administration of fructose occurs in the absence of detectable changes in plasma pancreatic hormone concentration.

Alanine↗

Effect of counterregulatory hormones on kinetic response to ingested glucose in dogs.

The disposal of ingested glucose was quantitated in dogs during individual and combined infusion of glucagon, epinephrine, and cortisol. Initial splanchnic extraction of ingested glucose, endogenous glucose production, and glucose uptake were quantitated using a double-tracer technique. Glucagon or cortisol individually had no effect on the kinetic response to glucose ingestion, whereas epinephrine increased glucose levels by 50-100 mg/dl. Epinephrine caused a reduced suppression of glucose production and a marked inhibition of the initial rise in glucose uptake. Initial splanchnic glucose extraction, plasma insulin, and glucagon were not significantly altered. The addition of glucagon and cortisol to epinephrine did not accentuate hyperglycemia, except after 150 min when glucose production increased. We conclude that a) epinephrine produces glucose intolerance when infused individually, b) this effect is primarily dependent on inhibition of glucose uptake and, to a lesser extent, on a reduction in suppression of endogenous glucose output, and c) addition of glucagon and cortisol has only a minor effect on epinephrine-induced changes in glucose disposal. Our data suggest an important role of epinephrine in stress-induced glucose intolerance.

Animals↗

Increased low-density lipoprotein peroxidation in elderly men.

BACKGROUND: Oxidative modification of low-density lipoprotein (LDL) appears to play a pivotal role in atherogenesis. The specific role played by LDL peroxidation in aging is not known. Since estrogens may protect LDL from peroxidation in vitro and in vivo, we chose to investigate only men of various ages. OBJECTIVE: To determine whether LDL from healthy elderly men was differently susceptible to peroxidation than LDL of young and adult men. SUBJECTS AND METHODS: LDL was isolated from 15 normolipidemic young (aged 19-23 years), 17 adult (aged 35-55 years), and 16 elderly (aged 77-90 years) healthy men. None of the men included in the study was a smoker or a hypertensive. LDL peroxidation was achieved by exposure to 5 mumol/l copper sulfate for 18 h at 37 degrees C, and some markers of lipid peroxidation (estimating various levels of peroxidation) were evaluated. RESULTS: The levels of lipid peroxides in LDL from our elderly men were already higher under basal conditions than were those both of adult and of young men. LDL from elderly men was more susceptible to peroxidation than was that of adult and young men. Furthermore, the lag time correlated inversely to age (r = -0.68, P < 0.01), whereas lipid peroxide and malonyldialdehyde levels correlated highly to age (r = 0.79 and r = 0.77, P < 0.0002 and P < 0.0012, respectively). With aging the vitamin E content in LDL decreased whereas the arachidonic fatty acid content increased. More importantly, the relationship between the vitamin E content and the lag time made evident the parallel increase in lag time and in vitamin E level with aging. The vitamin E concentration also correlated inversely to levels of thiobarbituric acid-reactive substances in LDL from elderly patients (r = -0.61, P < 0.05). CONCLUSIONS: The present study shows that LDL peroxidation increases with age. This phenomenon may favor the progression of atherosclerosis in elderly men.

Adult↗