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C M Rotella

Publications and source records attributed to C M Rotella.

At least 55 records · Page 3Linked to original sources

Cognitive-behavioral therapy versus combined treatment with group psychoeducation and fluoxetine in bulimic outpatients.

A series of 51 female bulimic outpatients, aged 23.4+/-3.9, were assigned either to Cognitive-Behavioral Therapy (CBT) or combined Group Psychoeducation and Fluoxetine (GPF) treatment. The Eating Disorder Examination (EDE) was performed at the beginning of treatment and after 6 months, together with the administration of self reported questionnaires for depression (BDI) and Anxiety (STAI). A significant (p<0.001) reduction of the number of monthly binge episodes (from 25.0+/-12.9 to 6.2+/-3.8 and from 24.8+/-9.1 to 8.0+/-4.3) for CBT and GPF respectively were observed. Similar reductions were obtained in the number of episodes of compensatory behaviors. Both treatments reduced depression and anxiety (p<0.001) while CBT only determined a significative improvement of EDE scores. The data obtained suggest that GPF is as effective as CBT in reducing bulimic symptomatology but its long-term efficacy should be evaluated in a follow-up study.

Adult↗

Psychometric properties of EDE 12.0D in obese adult patients without binge eating disorder.

The aim of the present study is to assess the psychometric properties of the Eating Disorder Examination (EDE) 12.0D in obese adult patients without Binge Eating Disorder (BED). A consecutive series of 115 obese patients without BED (23 M; 92 F), seeking treatment for obesity at the Outpatient Clinic of the Section of Metabolic Diseases and Diabetology of the University of Florence was studied using the EDE 12.0D. Patients had a mean (+/- SD) age of 40.8 +/- 15.1 years, and a Body Mass Index (BMI) of 36.3 +/- 5.9 Kg/m2. Internal consistency of EDE and its scales was evaluated through Cronbach's alpha; factor structure of EDE 12.0D was studied with factor analysis. EDE total and Shape Concern (SC) scores were found to be higher in females than in males. EDE total, SC and Eating Concern (EC) scores were inversely correlated to age, but not BMI. Factor analysis suggested the grouping of items in two subscales. The first scale includes all the items from EC, Weight Concern (WC) and SC except reaction to prescribed weighing; the second scale consists of all the items from Restraint. Data obtained show that items from EC, WC and SC all converge into the same factor analysis derived scale in obese patients without BED. EDE 12.0D provides relevant information about psychopathological features of obese patients, but a grouping of items into subscales different from those originally described could be indicated.

Adolescent↗

Insulin-like growth factor binding protein production in bovine retinal endothelial cells.

Retinopathy is the most frequent microangiopathic complication in diabetes. Many circulating hormones and locally produced mitogenic factors have been involved. Bovine retinal endothelial cells (BRECs) were cultured to investigate if insulin, insulin-like growth factors (IGFs), IGF binding proteins (IGFBPs), and a chronic high-glucose condition could control endothelial cell growth. Specific IGF-I receptors with two binding sites with high (Kd 0.03 nmol/L) and low (Kd 1.3 nmol/L) affinity were found when analyzing families of displacement curves between IGF-I versus IGF-I and IGF-I versus insulin. However, IGFs failed to be mitogenic factors in these cells. This could be explained by an inhibitory effect due to the presence of specific IGFBPs with a molecular weight between 24 and 43 kd. Using Western blot and immunoblot analysis, Northern blot study, and specific radioimmunoassay (RIA), these IGFBPs have been identified as IGFBP-3, -2, -5, and -4. Insulin, which does not bind to IGFBPs, was a potent mitogenic factor in these cells at a high concentration (10 nmol/L), suggesting a cross-reaction to IGF-I receptor. These IGFBPs, except the 24-kd form (IGFBP-4), were modulated by both IGF-I and IGF-II, with a maximum effect at 100 and 10 nmol/L, respectively. This regulation on IGFBPs was IGF-I receptor-independent. In fact, (1) IGFBP mRNA levels were not modified after stimulation with 100 nmol/L IGF-I, (2) 100 nmol/L IGF plus an equimolar concentration of alpha IR3 did not affect IGFBP production, (3) Des(1-3)IGF-I had no effect on IGFBP modulation, whereas at 10 nmol/L it enhanced BREC thymidine cell incorporation, and (4) 100 nmol/L insulin, which at this concentration can cross-react with the IGF-I receptor, did not modify the IGFBP pattern. Chronic exposure (4 weeks) of BRECs to 25 mmol/L glucose had no effect on cell growth. However, after 3 weeks, we observed a decreased IGFBP detection, and addition of 100 nmol/L IGF-I did not change IGFBP levels and did not modify cell growth. Conversely, BRECs grown in regular medium for 4 weeks showed increased IGFBP production. In conclusion, we showed that conditions mimicking hyperinsulinemia, rather than high levels of IGFs, could regulate BREC growth and that the IGF-I analog, Des(1-3), even with reduced affinity for IGFBPs but in part capable of binding to IGFBP-3, significantly stimulated BRECs growth only at 10 nmol/L. IGF actions are modulated by locally produced endothelial IGFBPs, and in turn, these endothelial IGFBPs are regulated, via in IGF-I receptor-independent mechanism, by the presence of IGFs. The autoregulatory IGF system together with the direct glucose modulation of IGFBPs could contribute in diabetic subjects to the retinal endothelial cell growth and metabolism through local changes in IGF bioavailability.

Animals↗

High glucose level unmasks a genetic predisposition to enhanced extracellular matrix production in mesangial cells from the Milan normotensive strain.

A growing body of evidence indicates that the individual genetic background plays a role in the pathogenesis of diabetic glomerular disease by either favoring or protecting against injury produced by hyperglycemia. Two genetically related rat strains, the Milan normotensive strain (MNS) and the Milan hypertensive strain (MHS) display different susceptibilities to develop glomerulosclerosis with age. Glomerular sclerosing lesions occur in the MNS rats, which remain normotensive throughout their entire life-span, but not in the MHS rats, despite the presence of arterial hypertension. Previous studies have reported that extracellular matrix production and cell proliferation increased with donor-aging in mesangial cells isolated from MNS rats, but not in those from MHS rats, thus suggesting the existence of an inherited defect in the regulation of cell and matrix turnover, which translates into an abnormal response to growth-promoting stimuli favoring the development of glomerulosclerosis. In the study presented here, it was hypothesized that, in addition to donor-aging, other independent risk factors for the development of glomerular disease, such as metabolic injury by hyperglycemia, would be able to trigger and/or precipitate the occurrence of these changes in mesangial cells from the susceptible normotensive strain, but not in those from the protected hypertensive strain. To test this hypothesis, mesangial cells obtained from these rat strains (before the onset of either glomerulosclerosis or hypertension) were used to assess the effects of prolonged (4 wk) exposure to high (30 mmol/L) versus normal (5.5 mmol/L) glucose concentrations on extracellular matrix and cytokine production and cell proliferation. The accumulation and/or gene expression of the matrix components fibronectin, laminin, and collagen IV, and of the cytokines insulin-like growth factor-I (IGF-I) and transforming growth factor-beta (TGF-beta) did not change under normal glucose and increased progressively in response to high glucose in both MNS and MHS cells. These increases, with the exception of the increment in TGF-beta gene expression, were significantly more pronounced in MNS cells than in MHS cells. In contrast, the proliferative response to serum was not affected by high glucose, but increased in MNS cells, and decreased, although not significantly, in MHS cells during the 4-wk period, thus mimicking the changes previously observed in these rat strains as a function of age. These results indicate that high glucose unmasks a genetic tendency to produce increasing amounts of extracellular matrix, not yet evident under normal glucose conditions, and suggest that a genetically determined propensity of mesangial cells to hyperrespond to chronic hyperglycemia may be implicated in the pathogenesis of diabetic glomerular disease.

Animals↗

Upregulation of mesangial growth factor and extracellular matrix synthesis by advanced glycation end products via a receptor-mediated mechanism.

Enhanced advanced glycosylation end product (AGE) formation has been shown to participate in the pathogenesis of diabetes-induced glomerular injury by mediating the increased extracellular matrix (ECM) deposition and altered cell growth and turnover leading to mesangial expansion. These effects could be exerted via an AGE-receptor-mediated upregulation of growth factors, such as the IGFs and transforming growth factor-beta (TGF-beta). We tested this hypothesis in human and rat mesangial cells grown on nonglycated or native bovine serum albumin (BSA), glycated BSA with AGE formation (BSA-AGE), or glycated BSA in which AGE formation was prevented by the use of aminoguanidine (BSA-AM), in the presence or absence of an antibody, alpha-p60, directed against the p60/OST protein named AGE-receptor 1 (AGE-R1), or normal control (pre-immune) serum. The mRNA and/or protein levels of IGF-I, IGF-II, IGF receptors, IGF binding proteins (IGFBPs), TGF-beta1 and the ECM components fibronectin, laminin, and collagen IV were measured, together with cell proliferation. Both human and rat mesangial cells grown on BSA-AGE showed increased IGF-I and total and bioactive TGF-beta medium levels and enhanced IGF-I, IGF-II, and TGF-beta1 gene expression, compared with cells grown on BSA, whereas total IGFBP and IGFBP-3 medium content, IGF receptor density and affinity, and IGF-I receptor transcripts were unchanged. Moreover, cells grown on BSA-AGE showed increased ECM protein and mRNA levels versus cells cultured on BSA, whereas cell proliferation was unchanged in human mesangial cells and slightly reduced in rat mesangial cells. Growing cells on BSA-AM did not affect any of the measured parameters. Co-incubation of BSA-AGE with anti-AGE-R1, but not with pre-immune serum, prevented AGE-induced increases in IGF-I, TGF-beta1, and ECM production or gene expression; anti-AGE-R1 also reduced growth factor and matrix synthesis in cells grown on BSA. These results demonstrate that mesangial IGF and TGF-beta1 synthesis is upregulated by AGE-modified proteins through an AGE-receptor-mediated mechanism. The parallelism with increased ECM production raises the speculation that the enhanced synthesis of these growth factors resulting from advanced nonenzymatic glycation participates in the pathogenesis of hyperglycemia-induced mesangial expansion.

Animals↗

Platelet-activating factor enhances production of insulin-like growth factor binding proteins in a human adenocarcinoma cell line (HEC-1A)

We have recently demonstrated the existence of an autocrine growth loop driven by platelet-activating factor (PAF) in the human endometrial adenocarcinoma. cell line HEC-1A. To investigate a possible cooperation between PAF and the insulin-like growth factor (IGF) system in this cell line, the effect of PAF on insulin-like growth factor binding protein (IGFBP) production as well as binding and biological activities of IGF-I, IGFv-II, and the analog Des(1-3)IGF-I have been evaluated. Analysis of self- and cross-displacement curves of [125I]IGF-I binding to HEC-1A cells indicates the presence of a single class of binding sites, with affinity constants of 1-4 nM for IGF-I and IGF-II and 70 nM for Des(1- 3)IGF-I, which binds to IGFBPs with lower affinity. Insulin does not apparently bind to this binding site. Moreover, the addition of increasing concentrations of IGF-I leads to a paradoxical increase of binding. These results indicate a similarity of this binding site to IGFBPs. The presence of IGFBPs has been demonstrated by Western ligand blot analysis of HEC-1A conditioned medium which shows the presence of two bands of 32-34 and 40-45 kDa. By Western immunoblotting analysis, the two bands were respectively identified as IGFBP-2 and IGFBP-3. Incubation with PAF (1 microM) highly increases the release of the two IGFBPs from the cells. Such an effect is inhibited by the PAF receptor antagonist L659,989, by the PKC inhibitor sangivamycin, and by the tyrosine kinase inhibitor genistein. PAF also induces a time-dependent increase of mRNA expression for IGFBP-3, suggesting an effect on synthesis of this protein. IGF-I and IGF-II (0.1-100 nM) are almost ineffective in inducing [3H]thymidine incorporation, whereas a slight proliferative effect is observed with Des(1-3)IGF-I which also increases PAF synthesis. These data demonstrate a modulatory action of PAF on IGFBP secretion in HEC-1A cells and indicate that the IGF system plays a minor, if any, modulatory role on proliferation of this cell line.

Adenocarcinoma↗

Regulatory role of eicosanoids in extracellular matrix overproduction induced by long-term exposure to high glucose in cultured rat mesangial cells.

Accumulation of extracellular matrix in the mesangium and altered renal eicosanoid synthesis are two prominent features of diabetic glomerular disease. We investigated the relationship between eicosanoid and extracellular matrix production in rat mesangial cells cultured under high glucose vs normal glucose conditions. Long-term exposure of rat mesangial cells to high glucose, but not to iso-osmolar mannitol, significantly increased extracellular matrix accumulation and gene expression and transforming growth factor-beta (TGF-beta) mRNA levels, and decreased prostaglandin (PG) E2 synthesis without affecting production of either thromboxane (TX) B2 or PGF2 alpha, with respect to cells incubated in normal glucose. Addition of exogenous PGE2 resulted in a dose-dependent reduction of matrix protein and mRNA levels and TGF-beta gene expression in cells cultured in either normal or high glucose conditions, whereas exposure to exogenous PGF2 alpha produced a significant increment in matrix production and matrix and TGF-beta gene expression in cells grown in normal glucose, but only a slight increase in those cultured in high glucose. Stimulation of endogenous endoperoxide metabolism towards PGE2 and PGF2 alpha synthesis with FCE-22,178, a drug originally developed as TXA2 synthase inhibitor, resulted in a dose-dependent decrease in matrix accumulation and matrix and TGF-beta gene expression which was suppressed by coincubation with the cyclo-oxygenase inhibitor fenoprofen blocking the FCE-22,178-enhanced PG production. In both cell lines, the rate of synthesis of TXA2 was very low and the selective blockade of its synthesis (by two other TXA2 synthase inhibitors, OKY-046 and Ridogrel) or action (by the TXA2 receptor antagonist BM-13,177) did not alter matrix production or TGF-beta mRNA levels. These results suggest that the cyclo-oxygenase pathway is involved in the regulation of matrix changes induced by high glucose in rat mesangial cells; the reduced production of PGE2 may enhance the synthesis or potentiate the effect of stimulators of ECM formation such as TGF-beta, whereas TXA2 does not appear to be involved. These data also indicate that glucose-enhanced mesangial matrix accumulation may be prevented by exogenous PGE2 or by drugs capable of increasing endogenous PGE2 synthesis.

Animals↗

Sertraline enhances the effects of cognitive-behavioral treatment on weight reduction of obese patients.

Serotonin reuptake inhibitors, such as dexfenfluramine, fluoxetine and fluvoxamine, have been proposed as therapeutical tools for the treatment of eating disorders and obesity. Sertraline, a SSRI used in the treatment of depression, interferes with eating behavior in animal models, but it has not been tested in obese humans. Aim of this study is the assessment of the effects of sertraline on eating attitudes and body weight in obese patients with and without mood disorders. A consecutive series of 65 obese out-patients aged 18-65 years, with a body mass index (BMI) > 30 kg/m2, was treated for 6 months with sertraline 150 mg/day per os, in addition to a cognitive-behavioral treatment (CBT). A consecutive series of 60 obese patients with similar characteristics, who were treated with CBT only, were used as control group. A greater reduction of BMI (mean +/- SD) was observed in sertraline-treated patients when compared to controls (from 35.3 +/- 5.7 to 32.0 +/- 5.4 kg/m2 in sertraline-treated patients, from 37.1 +/- 7.0 to 36.0 +/- 7.1 kg/m2 in controls; 6.5 +/- 5.4% vs. 3.0 +/- 6.3%; p < 0.01), while a similar change in eating attitudes (evaluated through the BITE questionnaire) was observed in both groups. Effects of sertraline on eating attitude and body weight were similar in patients with and without mood disorders. In conclusion, sertraline, administered together with CBT, seems to be more effective in inducing weight loss in obese patients when compared with CBT alone, and therefore it could be a useful tool in the first months of CBT for severe obesity.

1-Naphthylamine↗

Increased activity of the insulin-like growth factor system in mesangial cells cultured in high glucose conditions. Relation to glucose-enhanced extracellular matrix production.

Recent evidence suggests that several growth factors participate in diabetic glomerular disease by mediating increased extracellular matrix accumulation and altered cell growth and turnover leading to mesangial expansion. Transforming growth factor (TGF)-beta has been demonstrated to be upregulated both in vivo and in vitro, whereas studies on the activity of the renal insulin-like growth factor (IGF) system in experimental diabetes have provided conflicting results. We investigated the effects of prolonged exposure (4 weeks) of cultured human and rat mesangial cells to high (30 mmol/l) glucose vs iso-osmolar mannitol or normal (5.5 mmol/l) glucose levels on: 1) the autocrine/paracrine activity of the IGF system (as assessed by measuring IGF-I and II, IGF-I and II receptors, and IGF binding proteins); and, in parallel, on 2) TGF-beta 1 gene expression; 3) matrix production; and 4) cell proliferation. High glucose levels progressively increased the medium content of IGF-I and the mRNA levels for IGF-I and IGF-II, increased IGF-I and IGF-II binding and IGF-I receptor gene expression, and reduced IGF binding protein production. TGF-beta 1 transcripts and matrix accumulation and gene expression were increased in parallel, whereas cell proliferation was reduced. Iso-osmolar mannitol did not affect any of the above parameters. These experiments demonstrated that high glucose levels induce enhanced mesangial IGF activity, together with enhanced TGF-beta 1 gene expression, increased matrix production, and reduced cell proliferation. It is possible that IGFs participate in mediating diabetes-induced changes in matrix turnover leading to mesangial expansion, by acting in a paracrine/autocrine fashion within the glomerulus.

Animals↗

Insulin-like growth factors I and II stimulate extracellular matrix production in human glomerular mesangial cells. Comparison with transforming growth factor-beta.

An enhanced paracrine/autocrine activity of the insulin-like growth factor (IGF) system within the glomerulus has been implicated together with up-regulation of transforming growth factor-beta (TGFbeta) in the pathogenesis of diabetic glomerular disease. This would imply their ability to modulate extracellular matrix (ECM) and cell turnover at the mesangial level, but the direct effects of IGFs on ECM production have not been demonstrated to date. These experiments in cultured human mesangial cells were aimed at assessing the effects of IGF-I and IGF-II, compared with those of TGFbeta, on 1) ECM medium accumulation and gene expression, and 2) total protein synthesis and cell proliferation. Human mesangial cells were grown to subconfluence, growth arrested for 48 h, and then exposed for 4-24 h to serum-free medium containing IGF-I (10(-7) - 10(-11) M), IGF-II (10(-7) - 10(-11) M), TGFbeta (10(-9) - 10(-11) M), or various combinations of two of these growth factors (10(-9)M). All three growth factors dose dependently increased ECM protein and messenger RNA levels. The combination of either IGF-I or IGF-II with TGFbeta, but not the two IGFs together, produced additive effects on matrix production. Total protein synthesis was also increased by IGF-I, IGF-II, and TGFbeta, although to a lesser extent than ECM production, whereas cell proliferation was enhanced by IGFs but not by TGFbeta. These results demonstrate that IGF-I and IGF-II are effective, although less potent than TGFbeta, in stimulating the production of the ECM components that accumulate in the mesangial region during the course of diabetic glomerular disease.

Cell Division↗

[Psychopathological and clinical features among the ambulatory population of obese patients].

Aim of the present study is the evaluation of psychopathological and clinical features of these outpatients followed by the Outpatient Clinic of the Section of Metabolic Diseases and Diabetes, University of Florence. 84 obese patients and 217 non-obese control subjects were studied using the Structured Clinical Interview for DSM-III-R (SCID), and applying DSM-IV criteria for Binge Eating Disorder. BITE self-reported questionnaire, STAI inventory and Ham-D rating scale were also used. Lifetime prevalence of Binge Eating Disorder in obese patient was 11.9%, markedly lower than that reported in studies on North American samples. Prevalence of depressive disorder (Major Depression and Dysthymia) was significantly higher (p < 0.005) in obese patients than in control subjects. This confirms the important relationships between eating and mood disorders. The prevalence of subclinical eating disorders resulted to be significantly higher in obese patients (p < 0.01) when compared with control subjects. Significant correlations (p < 0.01) of BITE scores were observed with STAI and Ham-D scores, but not with body mass index. These results underline the need for an accurate psychopathological assessment in obese patients, in order to formulate a correct diagnosis and plan adequate therapeutical interventions.

Adolescent↗

Short cycles of very low calorie diet in the therapy of obese type II diabetes mellitus.

Very Low Calorie Diet (VLCD) is known to induce not only weight loss, but also an improvement of metabolic control, in obese type II diabetics. In order to evaluate the therapeutical efficacy of cycles of VLCD shorter than those previously described, 29 obese type II diabetics and 31 obese nondiabetic subjects were entered as inpatients and prescribed a 450 kcal/day diet for 15 days. Metabolic results obtained were similar to those achieved with longer cycles of VLCD, showing that 15 days are sufficient to induce a BMI decrease in diabetic (BMI from 35.3 +/- 4.8 to 33.3 +/- 4.6 after VLCD) and nondiabetic patients (BMI from 40.5 +/- 7.4 to 38.1 +/- 7.2 after VLCD), a desired fall of blood glucose levels and the decrease of daily insulin needs in insulin-treated patients. Glucagon tests were performed before and after VLCD in order to study possible modifications of insulin secretion. Although we did not observe any significant increase of C-peptide basal or peak levels (nM/ml) either in diabetic (basal levels before VLDC: 1.2 +/- 0.4 and peak levels 2.4 +/- 0.7; basal after VLCD 1.23 +/- 0.6 and peak 2.6 +/- 0.7) and nondiabetic patients (basal levels before VLDC 1.0 +/- 0.3 and peak levels 2.5 +/- 0.4; basal after VLCD 0.9 +/- 0.3 and peak 2.4 +/- 0.6). The rise of the C-peptide/glycemia ratio is an index of an improvement of insulin biological activity, which could be partly responsible for the therapeutical effects of VLCD.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Negative cooperativity in the insulin-like growth factor-I receptor and a chimeric IGF-I/insulin receptor.

Insulin and insulin-like growth factor-I (IGF-I) share a spectrum of metabolic and growth-promoting effects, mediated through homologous receptors that belong to the tyrosine kinase family. The dissociation rate of insulin from its receptor is affected by negative cooperativity, i.e. accelerates with increased receptor occupancy. The dose-response curve for the acceleration of tracer dissociation by unlabeled insulin has a distinct bell-shaped curve, with a progressive slowing down at insulin concentrations greater than 100 nM. The kinetics of the IGF-I interaction with its receptor has not been studied in such detail. In the present work, we report that while the IGF-I receptor exhibits negative cooperativity like the insulin receptor, the concentration dependence of the dissociation kinetics is distinct from that of native human insulin by not being bell-shaped, but monophasic like that of insulin analogues mutated at the hexamer-forming surface; it is changed to an insulin-type curve by substitution of IGF-I receptor's sequence including residues 382-565 with the homologous insulin receptor domain. The data suggest that like insulin, IGF-I has a bivalent binding mode and crosslinks two distinct areas of the two alpha subunits that are close, but distinct from the equivalent insulin receptor binding sites.

Arteries↗

Characterization of insulin-like growth factor-binding proteins produced by cultured fibroblasts from patients with noninsulin-dependent diabetes mellitus, insulin-dependent diabetes mellitus, or obesity.

To evaluate whether the production of insulin-like growth factor-binding proteins (IGFBPs) is altered in various pathological states due to modification of the hormonal milieu, we analyzed patterns of IGFBPs released into conditioned medium during 48-h serum-free culture of early passages of human skin fibroblasts from control subjects and patients with metabolic disorders. IGFBP-2, -3, -4, and -5 were identified in the conditioned medium by immunoblotting or RIA. Compared with those in eight control subjects by ligand blot analysis, the levels of IGFBP-3, -2, and -5 were reduced to 43%, 47%, and 53% in 10 noninsulin-dependent diabetic patients, respectively, whereas the levels of IGFBP-3 and -2 were reduced to 36% and 23%, respectively, in 3 nondiabetic obese patients with impaired glucose tolerance. In 2 insulin-dependent diabetic patients, the level of IGFBP-3 was reduced by 25% and 40%, respectively, and IGFBP-2 was not detectable. In contrast, a similar level of IGFBP-4 was detected in both normal and patient's conditioned media, except in 1 insulin-dependent diabetic patient. These data indicate that fibroblasts derived from patients with metabolic disorders retain their intrinsic characteristics even after they are removed from their in vivo hormonal milieu.

Adult↗

Mechanisms of glucose-enhanced extracellular matrix accumulation in rat glomerular mesangial cells.

In view of the importance of mesangial extracellular matrix (ECM) accumulation in the pathogenesis of diabetic glomerulosclerosis, we investigated 1) the effects of high glucose on ECM production by rat glomerular mesangial cells in culture (study A) and 2) the mechanisms underlying these effects, particularly the role of high sugar levels irrespective of intracellular metabolism (study B1) and of excess glucose disposal via the polyol pathway and associated biochemical alterations (study B2). Cells were cultured for 4 weeks, through six to eight passages, under the experimental conditions indicated below and, at each passage, the levels of fibronectin (FN), laminin (LAM), and collagen types I (C-I), III (C-III), IV (C-IV), and VI (C-VI) in media and cell extracts were quantified by an enzyme immunoassay. In study A, medium and cell content of matrix were assessed, together with [3H]leucine and [3H]thymidine incorporation into monolayers, polyol, fructose, and myo-inositol levels and the cytosolic redox state, in cells grown in high (30 mM) D-glucose or iso-osmolar mannitol versus cells cultured in normal (5.5 mM) D-glucose. FN, LAM, C-IV, and C-VI accumulation, but not C-I and C-III accumulation, was increased by 30 mM glucose, but not by iso-osmolar mannitol, when compared with 5.5 mM glucose, starting at week 2 and, except for C-VI, persisting throughout the remaining 2 weeks, whereas no change was observed in the measured indexes of total protein synthesis and DNA synthesis/cell proliferation. At any time point, polyol levels were increased, whereas myo-inositol was reduced by high glucose; in cells grown under elevated glucose concentrations, the lactate/pyruvate (L/P) ratio, an index of the cytosolic redox state, progressively increased. In study B1, the effects of high D-glucose were compared with those of iso-osmolar concentrations of sugars that are partly or not metabolized but are capable of inducing nonenzymatic glycosylation, such as D-galactose and L-glucose, and of mannitol, which does not enter the cell. Both D-galactose and L-glucose, but not mannitol, partly mimicked D-glucose-induced ECM overproduction. Although D-galactose is metabolized via the polyol pathway and alters the cytosolic redox state, ECM changes induced by high galactose were not prevented by the use of an aldose reductase inhibitor (ARI), Alcon 1576 (14 microM).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗