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Biomedical subjects

N Moatti

Publications and source records attributed to N Moatti.

At least 37 records · Page 2Linked to original sources

Influence of biochemical alterations on arterial stiffness in patients with end-stage renal disease.

The incremental elastic modulus of the common carotid and radial arteries is increased in patients with end-stage renal disease (ESRD), independently of blood pressure, wall stress, and the presence of atherosclerotic alterations. Whether biochemical factors may be involved in the arterial changes and related to renal dysfunction remain largely ignored. To assess this question, we measured aortic (carotid-femoral), upper-limb (carotid-radial), and lower-limb (femoral-tibial) pulse wave velocity (PWV) in 74 ESRD patients undergoing hemodialysis in comparison with 57 control subjects similar in age, sex ratio, and mean blood pressure. We evaluated arterial blood pressure by sphygmomanometry, aortic calcifications and cardiac mass by echography, and routine biochemical parameters, total plasma homocysteine, and plasma endothelin levels by standard techniques. In the population of patients with ESRD, on the basis of multiple stepwise regression analysis, aortic PWV was positively and independently correlated with systolic blood pressure (P<.0001), age (P<.0001), prevalence of aortic calcification (P=.0004), and the prevalence of diabetes mellitus (P=.0043). Upper-limb PWV was influenced exclusively by mean blood pressure (P<.0001). Lower-limb PWV was positively and independently correlated with plasma total homocysteine (P=.0004) and plasma endothelin (P=.0187) only. At any vascular site, PWV was not independently correlated with tobacco consumption; plasma levels of cholesterol, triglyceride, fibrinogen, or hemoglobin; body mass index; or the presence of bilateral nephrectomy. Finally, plasma homocysteine was independently correlated with cardiac mass (P=.0022). This study provides evidence that in ESRD patients, the stiffness of the arterial wall and cardiac mass are strongly influenced by biochemical factors related to the kidney alterations and are independent of age and blood pressure level. Increased plasma endothelin and homocysteine may be specifically involved in the vascular damage of lower limbs.

Adult↗

Plasma insulin and ankle on brachial systolic blood pressure ratio in overweight men with hypertension.

BACKGROUND: Hypertension is often associated with multiple metabolic abnormalities included in the insulin resistance syndrome. In hypertensive individuals, the ratio between ankle and brachial systolic blood pressure (ABI) is considered to be an independent cardiovascular risk factor. Insulin resistance has not been studied in relation to ABI ratio in men with essential hypertension and who are moderately overweight. OBJECTIVE: To identify whether a decrease in the ABI ratio is associated with the degree of abdominal obesity and, hence, with the biochemical characteristics of resistance to insulin. METHODS: In 166 overweight men with mild-to-moderate essential hypertension, insulinaemia was measured using radioimmunoassay. The ABI ratio was measured by using a pressure cuff of appropriate diameter, a standard mercury sphygmomanometer and a Doppler probe. Patients with diabetes or arteriosclerosis obliterans of the lower limbs, or both, were excluded from the study. RESULTS: The ABI ratio was significantly associated with the degree of abdominal obesity, but also with plasma triglycerides and cholesterol, low high-density lipoprotein cholesterol, plasma glucose and insulin. In a multiple regression analysis, the ABI ratio was significantly and negatively associated with only two variables: age and plasma insulin. This result was independent of age and drug treatment of hypertension. CONCLUSION: Because alterations in the ABI ratio may be considered markers of the changes in the structure and function of the arteries of lower limbs, the study provides evidence that plasma insulin, independently of atherosclerotic occlusive lesions, can significantly influence the status of conduit arteries of the lower limbs.

Adult↗

Interleukin-1 beta and interleukin-6 stimulate 2-methylaminoisobutyric acid uptake in HepG2 cells.

The metabolic response to inflammation involves an increased uptake of amino acids in the liver. It has been suggested that cytokines, such as interleukin-1 beta and interleukin-6, could be involved in this increased amino acid uptake. We investigated the role of these two inflammatory cytokines in regulating hepatic amino acid transport systems in the human hepatoma cell line, HepG2. Uptake of methylaminoisobutyric acid, the most specific known substrate of system A, and of glutamine, both transported by other sodium-dependent transport systems ASC and N, was assayed after incubation of the cells for various times with cytokines, using the cluster-tray method. Interleukin-1 beta and interleukin-6 (1000 U/ml) stimulated methylaminoisobutyric acid uptake by 36 +/- 6 and 41 +/- 4%, respectively (per cent +/- SD, n > or = 6). Under our experimental conditions, these cytokines had no effect on glutamine uptake. The stimulatory effect on methylaminoisobutyric acid uptake was not increased by combining the cytokines or by the presence of dexamethasone. The cytokine effect was abolished by cycloheximide, suggesting the involvement of de novo protein synthesis in this activation of transport system A. These data demonstrate that, in our culture conditions, interleukin-1 beta and interleukin-6 indirectly exert a stimulatory effect on methylaminoisobutyric acid transport in HepG2 cells.

Biological Transport↗

HDL phospholipid content and composition as a major factor determining cholesterol efflux capacity from Fu5AH cells to human serum.

The relationships of cell cholesterol efflux to HDL phospholipid (PL) content and composition in human serum were analyzed in two groups of subjects selected on the basis of their HDL cholesterol (HDL-C) levels: a norm-HDL group (1.10 mmol/L < HDL-C < 1.50 mmol/L) and a high-HDL group (HDL-C > 1.75 mmol/L). In the high-HDL group, the relative fractional efflux was significantly higher than in the norm-HDL group, and in both groups, fractional efflux was correlated with a number of lipoprotein parameters, the best correlation and the only one that remained significant after multivariate analysis being with HDL phospholipid (HDL-PL). Analysis of the HDL-PL subclasses revealed that HDL in the high-HDL sera was enriched with phosphatidylethanolamine (HDL-PE) and relatively deficient in sphingomyelin (HDL-SM) compared with norm-HDL sera. Moreover, the fractional efflux values in the high-HDL group were negatively correlated with the proportion of HDL-PE (r = -.64, P < .0001) and positively correlated with the proportion of HDL-SM (r = .43, P < .01). Thus, this study provides evidence that HDL-PL concentration can be used to predict the capacity of serum to accept cellular cholesterol. Among the differences described between norm-HDL and high-HDL sera, the variability in PE to SM ratio might reflect changes in serum cholesterol acceptors that modulate the first step of reverse cholesterol transport.

Animals↗

Plasma and erythrocyte vitamin E content in asymptomatic hypercholesterolemic subjects.

The present study was designed to assess plasma and erythrocyte vitamin E concentrations in 57 asymptomatic hypercholesterolemic (HC) men compared with 56 normocholesterolemic (NC) men. Vitamin E concentrations were determined by using a reversed-phase HPLC method. Compared with NC subjects, HC men had a significantly lower red blood cell (RBC) vitamin E content in spite of their normal plasma vitamin E concentration. This study demonstrates that total plasma vitamin E concentration is not a suitable predictor of cell vitamin E status and suggests an abnormal transfer of tocopherol between plasma and RBCs in HC men. Moreover, the RBCs of HC men were more susceptible to a peroxidative stress. The strong correlation between RBC susceptibility to oxidation and RBC vitamin E content suggests that the low RBC vitamin E content found in HC men has physiological consequences on the RBC oxidation.

Amidines↗

Decreased erythrocyte deformability in glycogen storage disease.

Liver glycogen storage diseases (GSD) are disorders associated with severe dyslipidaemia which can induce cell membrane alterations and possibly reduced cell deformability. Since decreased erythrocyte deformability is known to disturb blood flow in capillaries and may promote ischaemic diseases, this study was designed to investigate erythrocyte deformability using a new filtration system, the Cell Transit Analyser (CTA), and to examine lipid compounds in the blood of 23 patients affected with GSD, aged from 1 to 20 years and 18 controls aged from 1 to 17 years. The patients showed a mixed hyperlipidaemia with predominant hypertriglyceridaemia and an increase in erythrocytes mean transit times (TT) due to the presence of more rigid erythrocytes subpopulations when compared to controls. Thus the erythrocyte rigidity, in addition to the lipid abnormalities must be taken into account for long-term evolution of GSD patients. Moreover this cellular alteration may contribute to shortened erythrocyte survival.

Adolescent↗

Oxidative modifications of low-density lipoproteins (LDL) by the human endothelial cell line EA.hy 926.

Modifications of LDL by the EA.hy 926 cell line were compared to those generated by human umbilical vein endothelial cells (HUVEC). Thiobarbituric acid reactive substances (TBARS) index values (TBARS sample/TBARS cell-free control ratio) were 2.64 +/- 0.18 (m +/- SE, n = 11) and 3.12 +/- 0.24 (n = 11), for HUVEC and EA.hy 926, respectively. The percentage of the most electronegative modified LDL fraction (fraction C), assessed by using an ion-exchange chromatographic method based on fast protein liquid chromatography (FPLC), represented 14 +/- 3% (n = 34) and 22 +/- 13% (n =10) of total modified LDL in HUVEC and EA.hy 926, respectively. LDL modified by both cell lines showed increased agarose electrophoretic mobility and apo B100 fragmentation on SDS-PAGE. None of the results were significantly different between the two cell lines. Superoxide anion production was 0.12 +/- 0.04 (n = 11) and 0.07 +/- 0.01 nmol/min/mg cell protein (n = 11) in HUVEC and EA.hy 926, respectively. Cell-specific effects on LDL were abrogated in cysteine-free medium. Moreover, cell-modified LDL were similarly degraded by J774 macrophage-like cells. We conclude that EA.hy 926 cells are a good model for investigating endothelial cell-induced modifications of LDL. Advantages include ready availability and less individual variability than with HUVEC.

Cell Line↗

High-density lipoprotein 3 physicochemical modifications induced by interaction with human polymorphonuclear leucocytes affect their ability to remove cholesterol from cells.

1. We have recently reported that a short incubation (60 min) in vitro of high-density lipoprotein (HDL) 3 with human polymorphonuclear leucocytes (PMNs) leads to a proteolytic cleavage of apolipoprotein (apo) AII and to a change in the distribution of apo AI isoforms [Cogny, Paul, Atger, Soni and Moatti (1994) Eur. J. Biochem. 222, 965-973]. Since PMNs have been observed to be present in the earliest atherosclerotic lesions for a number of days, we investigated the HDL3 physiochemical modifications induced by in vitro interaction for a long period of time (24 h) with PMNs and the consequences of the changes on the ability of HDL3 to remove cholesterol from cells. 2. The stimulated PMN modification of HDL3 over 24 h resulted in a partial loss of protein with no variation in lipid molar ratio and a loss of 50% of HDL alpha-tocopherol content. The decrease in total protein was due first to a complete degradation of apo AII, and secondly to a partial loss of apo AI. The apo AI remaining on the particles was in part hydrolysed and the apo AI-1 isoform was completely shifted to the apo AI-2 isoform. These apo changes were accompanied by a displacement of the native HDL3 apparent size toward predominantly larger particles. 3. The ability of PMN-modified HDL3 to remove 3H-labelled free cholesterol from cells was measured in two cell lines: Fu5AH rat hepatoma cells and J774 mouse macrophages. HDL3 which had only a limited contact with PMNs (60 min) showed only a small non-significant reduction in the efficiency of cholesterol efflux. On the other hand, compared with native HDL3, HDL3 modified by PMNs for 24 h had a markedly reduced ability to remove cholesterol from cells, regardless of the type of cell. 4. The results suggest that PMN-modified HDL3, if occurring in vivo, could contribute to acceleration of the atherogenic process by decreasing the cholesterol efflux from cells.

Animals↗

Blood lipids and rheological modifications in glycogen storage disease.

OBJECTIVES: Hyperlipidemia is a feature of liver glycogen storage disease (GSD). Recent studies have suggested that rheological mechanisms such as elevated erythrocyte aggregation may be involved in the pathogenesis of ischemic syndromes associated with hyperlipidemia. DESIGN AND METHODS: We investigated erythrocyte aggregation, lipids, and circulatory proteins in the blood of 24 patients affected with GSD, aged from 1 to 23 years (mean = 8) and 26 controls aged from 1 to 28 years (mean = 9). RESULTS: The aggregation results were much higher in patients than controls. The lipid data showed a mixed hyperlipidemia with predominant hypertriglyceridemia, low HDL-C, apoA-I and LpA-I/A-II, and high apoB as compared with controls. However, the LpA-I was not significantly different from controls. CONCLUSIONS: In conclusion, patients with GSD presented hyperlipidemia and elevated erythrocyte aggregation such that they are at long-term risk of ischemic complications.

Adolescent↗

Abnormal lipoprotein pattern in patients with Alagille syndrome depends on Icterus severity.

BACKGROUND & AIMS: Children with Alagille syndrome have lipid abnormalities that differ according to the severity of icteric periods. The lipoprotein profiles of 22 patients with Alagille syndrome were determined and the findings were compared with the severity of jaundice. METHODS: Plasma lipids and apolipoproteins (apos), isolated lipoprotein composition, and lecithin/ cholesterol acyltransferase (LCAT) activity were analyzed in patients. Patients were classified into two groups according to their bilirubin levels; patients in group I had total bilirubin levels of > 100 mumol/L, and patients in group II had total bilirubin levels of < 100 mumol/L. RESULTS: In patients from group II, hypercholesterolemia was associated with increased levels of high-density lipoprotein and high concentrations of apoAI and apoAII; in a few cases, an abnormal lipoprotein with a slow alpha migration was observed. In contrast, in patients from group I, the levels of high-density lipoprotein cholesterol and apoAI and apoAII were very low, and the abnormal lipoprotein X was in many cases responsible for hypercholesterolemia. In group I, the decreased LCAT activity was consistent with the very high level of unesterified cholesterol and the emergence of lipoprotein X. In both groups of patients, the levels of apoE, apoCII, and apoCIII were high, and all the lipoprotein fractions were enriched in phospholipids. CONCLUSIONS: The variations of LCAT activity caused by the degree of jaundice in patients with Alagille syndrome are implicated in the abnormal lipid profiles.

Adolescent↗

A cytotoxic electronegative LDL subfraction is present in human plasma.

By using fast protein liquid chromatography, we isolated from human plasma a minor electronegative LDL subfraction designated LDL(-). After immunoaffinity chromatography against apolipoprotein (apo)(a) and apo A-I, LDL(-) represented 6.7 +/- 0.9% (mean +/- SD; n = 18) of total LDL. Compared with the major LDL subfraction, designated LDL(+), LDL(-) contained similar amounts of thiobarbituric acid-reactive substances, conjugated dienes, and vitamin E and had a similar lipid/protein ratio and mean density. Moreover, the apo B of LDL(-) was not aggregated and its LDL receptor-binding activity was slightly increased. These results were consistent with the nonoxidized nature of LDL(-). LDL(-) showed increased contents of sialic acid (38.1 +/- 5.2 versus 28.9 +/- 3.3 nmol/mg protein; n = 7; P < .01), apo C-III (1.43 +/- 0.21% versus 0.14 +/- 0.04%; n = 7; P < .01), and apo E (1.64 +/- 0.26% versus 0.10 +/- 0.05%; n = 7; P < .0005). Compared with LDL(+), LDL(-) displayed enhanced cytotoxic effects on cultured human umbilical vein endothelial cells, as shown by lactate dehydrogenase assay (P < .003; n = 6), neutral red uptake (P < .02; n = 6), and morphological studies. We also studied the relationship of LDL(-) to age and plasma lipid levels in 133 subjects. The percentage of contribution of LDL(-) to total plasma LDL correlated with age (P < .05), total cholesterol (P < .05), and LDL cholesterol (P < .003). In conclusion, this study shows that LDL(-), a circulating human plasma LDL, is an electronegative native LDL subfraction with cytotoxic effects on endothelial cells. This subfraction, which correlates positively with common atherosclerotic risk factors, might induce atherogenesis by actively contributing to alteration of the vascular endothelium.

Adult↗

Influence of the environment in space on the biochemical characteristics of human low density lipoproteins.

The purpose of this experiment was to study the efficiency of protective substances on the effects of cosmic radiation in space on low density lipoproteins. This environment induced modifications in LDL consisting of an increase of lipid peroxidation markers (hydroperoxides, thiobarbituric acid reactive substances). In contrast, apo B was not affected by cosmic radiation as shown by the stability of the trinitrobenzenesulfonic acid reactivity and the tryptophan content. Furthermore, oxidation of LDL was partially inhibited by the addition of cysteamine or/and probucol before the spaceflight experiment. The hydroperoxide formation was almost completely inhibited by cysteamine. It was concluded that antioxidants can exert a protective effect against peroxidative stress induced by the space environment.

Cosmic Radiation↗

Oxidative modification of low-density lipoprotein by the human hepatoma cell line HepG2.

The human hepatoblastoma cell line HepG2 is a liver model commonly used for lipid metabolism studies. Numerous cell types have been found to oxidize low-density lipoprotein (LDL) but, to our knowledge, the effects of HepG2 cells on LDL have not been investigated. We found that LDL is modified by HepG2 cells through a peroxidative mechanism, as judged by an increase in TBARS content (which was prevented in the presence of the antioxidants vitamin E, 2,6-di-tertbutyl-cresol and probucol), increased degradation by J774 macrophages, decreased internalization by MRC5 fibroblasts, and aggregation of apo B. Aspirin and allopurinol, which inhibit cyclooxygenase and xanthine-oxidase activities, respectively, had no effect on HepG2-induced LDL modification, and neither did catalase, which dismutates hydrogen peroxide; or mannitol, which scavenges hydroxyl radicals. In contrast, superoxide dismutase, a superoxide anion scavenger, and glutamate and threonine, which alter cellular cystine uptake, prevented LDL modifications, as did the removal of cysteine/cystine from the culture medium. Oxidation of LDL by HepG2 cells might thus involve superoxide anion production and/or thiol metabolism.

Antioxidants↗

Enhanced modifications of low-density lipoproteins (LDL) by endothelial cells from smokers: a possible mechanism of smoking-related atherosclerosis.

OBJECTIVE: The aim of the study was to investigate LDL modifications by cultured human umbilical vein endothelial cells (HUVEC) from women smokers and non-smokers. METHODS: Modifications of LDL by HUVEC were studied by determining the values of thiobarbituric acid-reactive substances (TBARS) and the percentage of the most electronegative oxidized LDL fraction (fraction C) by using an ion-exchange chromatographic method based on fast protein liquid chromatography (FPLC). We also studied the cellular production of superoxide anion, the effect of various inhibitors and cysteine, and determined total intracellular glutathione content and cell growth. RESULTS: LDL exposed to HUVEC from smokers for 48 h showed significantly greater modifications than LDL exposed to HUVEC from non-smokers, as assessed by TBARS determination (19.4 +/- 1.2, mean +/- s.e.m., n = 20 versus 15.4 +/- 0.7 nmol/mg LDL, n = 19; P < 0.01) and by FPLC (percentage of fraction C: 39 +/- 7, n = 29 versus 14 +/- 3, n = 34; P < 0.001). Moreover, HUVEC from smokers produced significantly more superoxide anion than those from non-smokers (0.46 +/- 0.13 nmol/10(5) cell/min, n = 9 versus 0.22 +/- 0.05, n = 10; P < 0.05). Superoxide production, like cell-induced modification of LDL, was strongly dependent on the presence of cysteine in the medium. Furthermore, HUVEC from smokers had a significantly (P < 0.05) higher total intracellular glutathione content than those from non-smokers (39.9 +/- 3.1 nmol/mg, n = 9 versus 31.8 +/- 2.2, n = 7). Finally, HUVEC from smokers and non-smokers showed similar growth at 48 h. CONCLUSION: HUVEC from smokers converted significantly more LDL into an atherogenic form than HUVEC from non-smokers, a phenomenon that was not due to altered cell growth. HUVEC-mediated LDL modifications were strongly thiol-dependent, as both LDL modifications and superoxide anion production were inhibited in cysteine-free medium. Stimulation of cystine uptake by HUVEC, reflected by the enhanced total glutathione content, could account for the enhanced superoxide anion production. All these observations may be relevant to the pathophysiology of smoking-related cardiovascular disease.

Adult↗

Role of HDL phospholipid in efflux of cell cholesterol to whole serum: studies with human apoA-I transgenic rats.

Sera of transgenic rats expressing human apoA-I were tested for their ability to stimulate efflux of radiolabeled cholesterol from Fu5AH rat hepatoma cells. Expression of human apoA-I resulted in a dose-dependent increase in HDL, as measured by both HDL-cholesterol and HDL-phospholipid, and produced a decrease in rat apoA-I. In rats expressing high concentrations of human apoA-I (TgR[hAI]high, human apoA-I > 250 mg/dl), the increase in HDL-phospholipid was not proportional to the increase in human apoA-I, as illustrated by a HDL-PL/total apoA-I ratio of 0.84 +/- 0.19 compared to a ratio of 1.28 +/- 0.29 for control rats and of 1.28 +/- 0.39 for rats expressing low levels of human apoA-I (TgR[hAI]low, human apoA-I < 250 mg/dl). Compared to sera from control animals, efflux of cell cholesterol was increased by 26% in the sera from TgR[hAI]low, and by 76% in the TgR[hAI]high. An examination of the relationships between efflux and HDL-related parameters demonstrated a hyperbolic relationship between efflux and either HDL-cholesterol or HDL-apoA-I. In contrast, there was a strong linear association (r2 = 0.84) between cholesterol efflux and HDL-phospholipid, indicating that this parameter is the component of HDL that best reflects the serum's efflux efficiency. The importance of phospholipids in modulating cholesterol efflux was further explored by measuring the effect of supplementation of serum with dimyristoylphosphatidylcholine (DMPC) vesicles, apoA-I, or both DMPC vesicles and apoA-I. Whereas addition of human apoA-I had no effect on efflux, supplementation with DMPC vesicles produced a substantial increase in efflux that was further stimulated by the combination of DMPC vesicles and apoA-I. These results demonstrate that a major component of HDL that modulates cell cholesterol efflux is phospholipid.

Animals↗

[Charge heterogeneity of low density lipoproteins].

Traditionally, low-density lipoprotein (LDL) are separated with respect to their size, density and apolipoprotein composition. Fractionation of LDL according to their electrical charge is also interesting as modified LDL have been implicated in the onset of atherosclerosis. This review discusses possible mechanisms underlying charge heterogeneity of human plasma LDL, such as oxidation, glycation, conjugation with aldehydes, carbamylation and changes in sialic acid content and protein composition.

Aldehydes↗

[Lipoprotein anomalies in HIV infections].

Alterations in lipid parameters occur during many acute infections. Different studies suggest that variations in lipid parameters can be used as markers of the progression of human immunodeficiency virus (HIV) infection. Hypocholesterolemia is observed in asymptomatic HIV+ subjects, then hypertriglyceridemia appears in patients with AIDS. Several hypotheses have been raised concerning the potential causes and consequences of these modifications. Cytokine effects on different enzymes of lipid metabolism, studied in vitro and in vivo, are thought to be partially responsible for the dyslipidemia. Hypertriglyceridemia could participate in cachexia and dementia could be facilitated by the changes in cholesterol metabolism. The use of the lipid parameters is proposed in HIV positive subjects, especially during anti-viral treatment.

Cholesterol↗