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L Kazdová

Publications and source records attributed to L Kazdová.

At least 19 recordsLinked to original sources

Glucose-fatty acid interaction in skeletal muscle and adipose tissue in insulin resistance.

Insulin resistance (IR) is the result of long-lasting positive energy balance and the imbalance between the uptake of energy rich substrates (glucose, lipids) and energy output. The defects in the metabolism of glucose in IR and type 2 diabetes are closely associated with the disturbances in the metabolism of lipids. In this review, we have summarized the evidence indicating that one of the important mechanisms underlying the development of IR is the impaired ability of skeletal muscle to oxidize fatty acids as a consequence of elevated glucose oxidation in the situation of hyperglycemia and hyperinsulinemia and the impaired ability to switch easily between glucose and fat oxidation in response to homeostatic signals. The decreased fat oxidation results into the accumulation of intermediates of fatty acid metabolism that are supposed to interfere with the insulin signaling cascade and in consequence negatively influence the glucose utilization. Pathologically elevated fatty acid concentration in serum is now accepted as an important risk factor leading to IR. Adipose tissue plays a crucial role in the regulation of fatty acid homeostasis. The adipose tissue may be the primary site where the early metabolic disturbances leading to the development of IR take place and the development of IR in other tissues follows. In this review we present recent evidence of mutual interaction between skeletal muscle and adipose tissue in the establishment of IR and type 2 diabetes.

Adipose Tissue↗

Fat-specific transgenic expression of resistin in the spontaneously hypertensive rat impairs fatty acid re-esterification.

OBJECTIVE: To investigate the mechanism by which fat-specific transgenic expression of resistin affects fatty acid metabolism in the spontaneously hypertensive rat (SHR). DESIGN: Basal- and adrenaline-stimulated lipolysis, basal- and insulin-stimulated lipogenesis as well as the site (glycerol versus acyl moiety) of glucose incorporated into triglycerides were determined in adipose tissue isolated from SHR-Resistin transgenic and SHR control rats. RESULTS: A moderate expression of transgenic resistin in adipose tissue was associated with significant increase in the FFA/glycerol ratio during adrenaline-stimulated lipolysis in the SHR-Resistin transgenic rats (3.27+/-0.26) compared to SHR controls (2.11+/-0.10, P=0.0005). Transgenic SHR also exhibited a significant decrease in FFA re-esterification in adipose tissue (approximately by 23%). CONCLUSION: These findings raise the possibility that the prodiabetic effects of transgenic resistin may be partly mediated by increased FFA release from adipose tissue due to impaired FFA re-esterification in adipocytes.

Adipocytes↗

Region of rat chromosome 8 determines complex nutrigenetic interactions under conditions of sucrose and cholesterol diets.

We have previously established a congenic strain SHR-Lx that carries a differential segment of rat chromosome 8 introgressed from a model of metabolic syndrome--the polydactylous rat strain--on the genomic background of spontaneously hypertensive rat (SHR). We compared the glucose tolerance and lipid profile of adult SHR and SHR-Lx males under conditions of standard diet and diets enriched in sucrose and cholesterol, respectively. While there was no evident difference between the SHR and SHR-Lx on standard diet, the one-week sucrose administration revealed the congenic strain sensitivity to carbohydrate-induced dyslipidemia conferred by the differential segment with only mild derangement of glucose tolerance. On the other hand, the high-cholesterol diet administration for three-weeks resulted in a contrasting pattern as the congenic strain displayed significantly lower concentrations of free fatty acids and improved glucose tolerance compared to SHR. After one-month washout period, the SHR-Lx showed higher insulin, triglyceride and cholesterol concentrations together with diminished insulin sensitivity of visceral adipose tissue. In summary, we have identified a genomic region syntenic to human chromosome 11q23, which determines complex nutrigenetic interactions under conditions of sucrose- and cholesterol-enriched diets.

Animal Nutritional Physiological Phenomena↗

A 14-gene region of rat chromosome 8 in SHR-derived polydactylous congenic substrain affects muscle-specific insulin resistance, dyslipidaemia and visceral adiposity.

The SHR and the PD/Cub are two established rodent models of human metabolic syndrome. Introgression of a ca 30 cM region of rat chromosome 8 from PD/Cub onto the genetic background of SHR was previously shown to influence several of the metabolic syndrome-related traits along with causing the PLS in the SHR-Lx congenic strain. In the process of identification of the causative alleles, we have produced several congenic sublines. The differential segment of SHR-Lx PD5 congenic substrain [SHR.PD(D8Rat42-D8Arb23)/Cub] spans approximately 1.4 Mb encompassing only 14 genes. When comparing the metabolic, morphometric and gene expression profiles of the SHR-Lx PD5 vs. SHR, the polydactyly and several distinct metabolic features observed in the original SHR-Lx congenic were still manifested, suggesting that the responsible genes were "trapped" within the relatively short differential segment of PD/Cub origin in SHR-Lx PD5. Particularly, the SHR-Lx PD5 displayed substantial reduction of insulin sensitivity confined to skeletal muscle. Among the candidate genes, the promyelocytic leukaemia zinc-finger Plzf (Zbtb16) transcription repressor is most likely responsible for the Lx mutation resulting in PLS and could also be involved in the alteration of metabolic pathways. The sequence analysis of the Plzf gene revealed a SNP leading to a threonine to serine substitution in SHR at aminoacid position 208 (T208S). In summary, we have isolated a 1.4 Mb genomic region syntenic to human chromosome 11q23, which, apart from causing polydactyly-luxate syndrome (PLS), affects total body weight, adiposity, lipid profile, insulin sensitivity of skeletal muscle and related gene expression as shown in the SHR-Lx PD5 congenic substrain.

Adipose Tissue↗

Effect of acute hyperglycaemia on sodium handling and excretion of nitric oxide metabolites, bradykinin, and cGMP in Type 1 diabetes mellitus.

AIMS: The aim of this study was to evaluate the effect of acutely induced hyperglycaemia on renal sodium handling and to explore the role of the bradykinin-nitric oxide-cGMP signalling pathway. PATIENTS AND METHODS: We compared 20 Type 1 diabetic (DM1) patients without microalbuminuria with 15 weight-, age-, and sex-matched healthy controls (C). Clearances of para-aminohippuric acid (CPAH), inulin (Cin), lithium, sodium, and urinary nitrite/nitrate (NOx), cGMP and bradykinin excretion rates were measured in two 90-min periods: a glycaemic clamp-induced euglycaemia (5 mmol/l-period I) and hyperglycaemia (12 mmol/l-period II) (Study 1) and during time-controlled euglycaemia (5 mmol/l-period I and 5 mmol/l-period II) to avoid the effects of time and volume load (Study 2). RESULTS: Cin and CPAH were not significantly different during euglycaemia (period I of Study 1) in DM1 and controls, whereas fractional excretion of sodium was decreased in DM1 (1.84 +/- 0.75 vs. 2.36 +/- 0.67%; P < 0.05) due to an increase in fractional distal tubular reabsorption of sodium (94.01 +/- 1.94 vs. 92.24 +/- 2.47%; P < 0.05). A comparison of changes during Study 1 and Study 2 revealed acute hyperglycaemia did not change renal haemodynamics significantly, while fractional distal tubular reabsorption of sodium increased (DM1: P < 0.05; C: P < 0.01) and fractional excretion of sodium decreased (P < 0.01) in both groups. The urinary excretion rates of NOx were comparable during euglycaemia in DM1 and C. While in C, they significantly increased during Study 1 (period I: 382 +/- 217 vs. period II: 515 +/- 254 nmol/min; P < 0.01) and Study 2 (period I: 202.9 +/- 176.8 vs. period II: 297.2 +/- 267.5 nmol/min; P < 0.05) as a consequence of the water load, no changes were found in DM1. The urinary excretion of bradykinin was lower in DM1 compared with C (0.84 +/- 0.68 vs. 1.20 +/- 0.85 micro g/min; P < 0.01) during euglycaemia; it was not affected by hyperglycaemia. There were no significant differences between DM1 and C and in cGMP urinary excretion rates following hyperglycaemia. CONCLUSION: This study demonstrates that DM1 without renal haemodynamic alterations is associated with impaired renal sodium handling. Moreover, we did not find a relationship between the renal excretion rates of vasoactive mediators and sodium handling due to hyperglycaemia.

Absorption↗

Genetic analysis of "metabolic syndrome" in the spontaneously hypertensive rat.

In the current review, we summarize results of genetic analyses of "metabolic syndrome" in the spontaneously hypertensive rat (SHR). These results include (1) linkage analyses in the HXB/BXH recombinant inbred (RI) strains derived from SHR and Brown Norway (BN-Lx) strains which revealed quantitative trait loci (QTL) for hemodynamic and metabolic traits on several chromosomes, (2) genetic isolation of these putative QTL within differential chromosome segments of SHR.BN congenic strains, (3) detailed mapping of these QTL within limited chromosome segments of SHR.BN congenic sublines, (4) sequencing of selected positional candidate genes which revealed important mutations in the Cd36 and Srebp1 SHR genes, (5) functional tests of these candidate genes in SHR transgenic lines, and (6) integrated gene expression profiling and linkage mapping in RI strains which will be used to identify co-regulated genes and to determine co-segregation of transcriptional profiles with physiological and pathophysiological phenotypes.

Animals↗

Differential linkage of triglyceride and glucose levels on rat chromosome 4 in two segregating rat populations.

The PD/Cub is a recently established model of the IRS. The BN.SHR4 congenic strain was derived by introgression of the chromosome 4 segment of SHR origin (including the defective Cd36/Fat allele) onto the BN/Cub genetic background. We investigated the linkage of metabolic and morphometric phenotypes (total body weight, OGTT, fasting serum levels of TG, FFA) on chromosome 4 in two separate F2 rat populations: the PD/Cub x BN/Cub and PD/Cub x BN.SHR4 (total N = 243). In the PD/Cub x BN.SHR4 F2s, we found significant linkage for fasting TG levels (LOD = 3.26) and suggestive linkage for fasting glycaemia (LOD = 2.80) in the interval Il-6 - D4Bro1, i.e. the part of chromosome 4 of SHR origin in the BN.SHR4 congenic. However, no linkage for fasting TG concentrations, fasting glycaemia or any other followed parameter was found in the second, PD/Cub x BN/Cub F2. The differential linkage of TG and glucose levels to the centromeric part of rat chromosome 4q in the studied F2s points to the importance of this region for the lipid and carbohydrate metabolism at the specific age (10 months) and diet (standard chow) combination. The Cd36/Fat and Il-6 genes are the preliminary positional candidates for the observed effect.

Animals↗

Antioxidant status, lipoprotein profile and liver lipids in rats fed on high-cholesterol diet containing currant oil rich in n-3 and n-6 polyunsaturated fatty acids.

Plant-based n-3 polyunsaturated fatty acids (PUFA) possess a prospective antiatherogenic potential. Currant oil from Ribes nigrum L. is one of the few plant oils containing PUFAn-3 (15.3 mol%) in addition to PUFAn-6 (60.5 mol%). This study was aimed at comparing the effects of currant oil with those of lard fat, rich in saturated (43.8 mol%) and monounsaturated (47.0 mol%) fatty acids, on antioxidant parameters, the lipoprotein profile and liver lipids in rats fed on 1 % (w/w) cholesterol diets containing either 10 % of currant oil (COD) or lard fat (LFD). After 3 weeks of feeding, the COD induced a significant decrease in blood glutathione (GSH) and an increase in Cu(2+) induced oxidizability of serum lipids, but did not affect liver GSH and t-butyl hydroperoxide-induced lipoperoxidation of liver microsomes. Although the COD did not cause accumulation of liver triacylglycerols as LFD, the lipoprotein profile (VLDL, LDL, HDL) was not significantly improved after COD. The consumption of PUFAn-3 was reflected in LDL as an increase in eicosapentaenoic and docosahexaenoic acid. These results suggest that currant oil affects positively the lipid metabolism in the liver, above all it does not cause the development of a fatty liver. However, adverse effects of currant oil on the antioxidant status in the blood still remain of concern.

Administration, Oral↗

Transgenic expression of CD36 in the spontaneously hypertensive rat is associated with amelioration of metabolic disturbances but has no effect on hypertension.

Spontaneously hypertensive rats (SHR/NIH strain) harbor a deletion variant in the Cd36 fatty acid transporter and display defective fatty acid metabolism, insulin resistance and hypertension. Transgenic rescue of Cd36 in SHR ameliorates insulin resistance and improves dyslipidemia. However, the role of Cd36 in blood pressure regulation remains controversial due to inconsistent blood pressure effects that were observed with transgenic expression of Cd36 on the SHR background. In the current studies, we developed two new SHR transgenic lines, which express wild type Cd36 under the control of the universal Ef-1 alpha promoter, and examined the effects of transgenic expression of wild type Cd36 on selected metabolic and cardiovascular phenotypes. Transgenic expression of Cd36 in the new lines was associated with significantly decreased serum fatty acids, amelioration of insulin resistance and glucose intolerance but failed to induce any consistent changes in blood pressure as measured by radiotelemetry. The current findings confirm the genetic association of defective Cd36 with disordered insulin action and fatty acid metabolism in the SHR/NIH strain and suggest that Cd36 is linked to other gene(s) on rat chromosome 4 that regulate blood pressure.

Adipose Tissue↗

[Fatty acid composition of serum phospholipids and the effect of insulin in patients with type 2 diabetes].

BACKGROUND: A direct relation has been found between the insulin sensitivity and fatty acid (FA) composition of serum and tissue lipids in adult humans. The aim of our study was to confirm the above relation in different groups of type 2 diabetic patients (DM2). METHODS AND RESULTS: The FA composition of serum phospholipids was measured by gas liquid chromatography at the insulin action during the two-step hyperinsulinemic isoglycemic clamp (1 and 10 mU/kg.min) in a group of 21 newly diagnosed DM2 subjects (DMN) and in 24 healthy controls (HC). The DMN group consisted of a subgroup of patients treated with hypoglycemic agents (DMH; n = 21) and a group treated with the diet only (DMD; n = 11). In diabetics, the metabolic clearance rates of glucose at either insulin level (MCRglusubmax and MCRglumax) were significantly reduced in comparison with HS (MCRglusubmax--DMN: 5.35 +/- 2.7 ml.kg-1.min-1; DMH: 5.38 +/- 2.17 ml.kg-1.min-1; DMD: 5.48 +/- 2.35 ml.kg-1.min-1; HS: 10.9 +/- 3.3 ml.kg-1.min-1; p < 0.01; and MCRglumax--DMN: 13.3 +/- 3.3 ml.kg-1.min-1; DMH: 12.5 +/- 3.0 ml.kg-1.min-1; DMD: 13.3 +/- 3.0 ml.kg-1.min-1; HS: 17.4 +/- 3.8 ml.kg-1.min-1; p < 0.05). An increased content of highly unsaturated n-6 family FA (p < 0.01), especially of the arachidonic acid (DMN: 10.98 +/- 1.79%; DMD: 10.78 +/- 1.64%; DMH: 10.97 +/- 1.70% vs HS: 8.51 +/- 1.53% (p < 0.01) was found in all groups of diabetics compared to HS, and lower levels of linoleic acid in DMN (p < 0.001), and DMH (p < 0.05) were identified. The content of saturated FA and that of monosaturated FA was comparable in HS, DMN and DMD persons. While in healthy subjects a negative correlation between MCRglu and the content of saturated FA as well as a positive association between insulin action and the ration of linoleic and arachinonic acids were found, no such relation was found in the diabetic subjects. CONCLUSIONS: Different groups type 2 diabetic patients show altered FA pattern of serum phospholipids. Changes in FA composition may play a role in the modulation of insulin action in peripheral tissues, but they cannot explain the insulin resistance in type 2 diabetic patients.

Adult↗

Metabolic characterization of insulin resistance syndrome feature loci in three brown Norway-derived congenic strains.

Studies on genetic determination of the insulin resistance syndrome in rat models revealed several susceptibility loci for features of this complex phenotype, i.e. dyslipidemia, insulin resistance and obesity. We analysed the influence of introgression of the RNO4, RNO20 segments of SHR origin and RNO8 segment of PD/Cub origin (all previously shown to be involved in (dys)regulation of carbohydrate and lipid metabolism) onto the genetic background of a common progenitor, the Brown Norway (BN/Cub) rat. The differential segments were genetically characterized in the BN.PD-D8Rat39/D8Rat35 (BN-Lx, RNO8 congenic), BN.SHR-Il6/Cd36 (BN.SHR4, RNO4 congenic) and BN.PD-D8Rat39/D8Rat3, SHR-D4Mgh2/Cd36,SHR-D20Wox3/D20Mgh5 (BN-Lx 1K, RNO4, 8, 20 triple congenic) strains and their metabolic profiling was performed. After one week of high-sucrose diet, all congenic strains showed substantially higher levels of serum triglycerides and free fatty acids as well as impaired glucose tolerance in comparison with the BN/Cub progenitor strain. The BN-Lx 1K triple congenic strain displayed the most profound dyslipidemia, glucose intolerance and highest increase of triglyceridemia in response to high-sucrose diet overall, though accompanied with the significantly lowest adiposity index. These results further support the role of genes present within the studied chromosomal regions in observed metabolic disturbances. Furthermore, these findings point to the studied loci within the gene-gene and gene-environment interactions involved in pathogenesis of the insulin resistance syndrome. The set of defined congenic strains provides a possibility of assessing individual features of such a complex phenotype.

Animals↗

Rosiglitazone improves insulin resistance, lipid profile and promotes adiposity in a genetic model of metabolic syndrome X.

RSG is a member of the TZD group of drugs widely used in treatment of type 2 diabetes. The underlying mechanism of TZD action in insulin-sensitive tissues is not fully understood. In this study we show that 14-day RSG administration in a new rodent model of metabolic syndrome X, polydactylous rat strain (PD/Cub), substantially improves its lipid profile (serum TGs 4.20 +/- 0.23 vs 2.34 +/- 0.14 mmol/l, P < 0.0001; FFA 0.46 +/- 0.05 vs 0.33 +/- 0.02 mmol/l, P = 0.017), diminishes the liver TG depots (15.76 +/- 0.60 vs 8.44 +/- 0.55 micromol/g, P < 0.0001), serum insulin concentrations (1.10 +/- 0.08 vs 0.63 +/- 0.02 nmol/l, P < 0.0001) and promotes visceral adiposity (adiposity index 1.28 +/- 0.03 vs 1.85 +/- 0.07, P < 0.0001). No changes were observed in serum or liver concentrations of cholesterol. Concomitantly, both basal and insulin-stimulated glycogen synthesis in red-fibre type muscle (m. soleus) was enhanced, as well as glucose uptake into adipose tissue. However, glucose oxidation in soleus (basal and insulin-stimulated) remained unchanged. In consent with previously published data we suggest the current pharmacogenetic study as a further proof of substantial influence of genetic background on the physiological outcome of TZD therapy.

Adipose Tissue↗

[Serum ferritin, LDL oxidation and risk factors for atherogenesis in healthy offspring of hypertensive patients].

Iron is an important factor in the process of oxidation stress and atherogenesis which is as a rule potentiated in subjects with the insulin resistance syndrome. Hypertension is one of the main components of this syndrome. Ferritin due to its relationship with impaired insulin sensitivity becomes a candidate for a new indicator of insulin resistance. The subject of the present study was to assess whether we shall find in young healthy offspring of hypertensive parents changes in the ferritin level, oxidizability of LDL and whether these are related to parameters of glucose tolerance, insulin secretion and sensitivity. Twelve young (27 +/- 3.6 years) non-obese, normotesive offspring of hypertensive parents were compared with a group of 14 controls. Glucose tolerance, insulin secretion and sensitivity were examined by means of a hyperglycaemic clamp and oGTT. As to the ferritin level, the offspring of hypertensive parents did not differ significantly from controls, differences were not fond in the oxidizability of LDL-C. The glucose tolerance was comparable in the two groups. Offspring of hypertensive parents had however a significantly higher insulin and C peptide level when using the clamp and during the glucose tolerance test (p < 0.05), and a reduced insulin sensitivity (p < 0.05). The negative correlation between the index of insulin sensitivity and ferritin suggests that ferritin could be associated with the syndrome of insulin resistance.

Adult↗

Metabolic effects of keto acid--amino acid supplementation in patients with chronic renal insufficiency receiving a low-protein diet and recombinant human erythropoietin--a randomized controlled trial.

Supplement with keto acids/amino acids (KA) and erythropoietin can independently improve the metabolic sequels of chronic renal insufficiency. Our study was designed to establish whether a supplementation with keto acids/amino acids (KA) exerts additional beneficial metabolic effects in patients with chronic renal insufficiency (CRF) treated with a low-protein diet (LPD) and recombinant human erythropoietin (EPO). In a prospective randomized controlled trial over a period of 12 months, we evaluated a total of 38 patients (20 M/18 F) aged 32-68 years with a creatinine clearance (CCr) of 20-36 ml/min. All patients were receiving EPO (40 U/kg twice a week s.c.) and a low-protein diet (0.6 g protein/kg/day and 145 kJ/kg/day). The diet of 20 patients (Group I) was supplemented with KA at a dosage of 100 mg/kg/day while 18 patients (Group II) received no supplementation. During the study period, the glomerular filtration rate slightly decreased (CCr from 28.2 +/- 3.4 to 26.4 +/- 4.1 ml/min and 29.6 +/- 4.8 to 23.4 +/- 4.4 ml/min in groups I and II, respectively and Cin); this however was more marked in Group II (Group I vs. Group II, p < 0.01). The serum levels of urea also declined (p < 0.01), more pronouncedly in Group I (p < 0.025). In Group I, there was a significant rise in the levels of leucine (p < 0.01), isoleucine (p < 0.01), valine (p < 0.02) and albumin (p < 0.01) and a decrease in protein-uria (p < 0.01). Analysis of the lipid spectrum revealed a mild yet significant decrease in total cholesterol and LDL-cholesterol (p < 0.02), more pronounced in Group I. In Group I, there was a decrease in plasma triglycerides (from 4.2 +/- 0.8 down to values a low as 2.2 +/- 0.6 mmol/L; p < 0.01) whereas HDL-cholesterol levels increased (from 0.9 +/- 0.1 to 1.2 +/- 0.1 mmol/L, p < 0.01). A further remarkable finding was a reduction in the serum concentration of free radicals (p < 0.01). We conclude that a KA supplementation in patients with CRF receiving LPD and EPO potentiates the beneficial effects on metabolism of proteins, amino acids and surprisingly, also lipids. Long-term co-administration of KA, EPO and LPD was also associated with a delay in progression of renal insufficiency and a reduction in proteinuria. Thus, concomitant administration of KA and EPO during a low-protein diet presents an effective treatment modality in the conservative management of CRF.

Adult↗

[Nitric oxide (NO) in a model of renal ischemia and cyclosporine toxicity].

BACKGROUND: The role of nitric oxide (NO) after the cadaveric kidney transplantation has not been fully clarified yet. The aim of our study was to examine benefits of the administration of a NO precursor--L-arginine in the model of renal ischaemia and after the subsequent cyclosporine (CsA) treatment, which simulates the state resulting from the kidney transplantation. METHODS AND RESULTS: 60 male rats of the Wistar strain were exposed to ischaemia for 45 minutes. Then they were divided into six groups: 1. Controls, 2. Rats administered by gastric sonde with 300 mg/kg of L-arginine since the first day after ischaemia, 3. Rats administered in a similar way with 10 mg/kg of cyclosporine A, 4. Group of rats receiving both drugs in the same doses, 5. Rats receiving 10 mg/kg of cyclosporine A since the first day after ischaemia and L-arginine in the dose 300 mg/kg since the seventh day, 6. Group of animals administered with L-arginine and cyclosporin A in the same doses with nonselective blocker of NO synthesis--L-NNA in the dose of 5 mg/kg. We examined renal functions (blood and urine levels of creatinine, urea, Na, K, Cl, osmolality, proteinuria), blood and urine levels of NO metabolites (NO2- and NO3-) in the fourth week after ischaemia. We found that L-arginine administration (when groups 1 and 2 were compared) decreased S-creatinine (< 0.05), it increased U-osmolality (p < 0.01), tubular resorption (p < 0.001), and blood levels of NO metabolites (p < 0.05). Changes in urine levels of NO metabolites (U-NOx/U-Cr) and in proteinuria were not found. In animals with renal ischaemia treated with cyclosporine (comparison of groups 3 and 4), L-arginine administration brought about a decrease of blood creatinine levels (p < 0.05), higher creatinine clearance (p < 0.05) and higher blood levels of NO metabolites (S-NOx; p < 0.01). However, differences in tubular functions, proteinuria and U-NOx/U-Cr were not detected. When L-arginine was added 7 days after the beginning of cyclosporine treatment, no significant difference was found between groups 5 and 3 and differences between groups 5 and 4 were similar to those between groups 4 and 3. Animals of the group 6 were not tested due to high mortality indicating high toxicity of the combination ischaemia + cyclosporine + L-arginine + L-NNA. CONCLUSION: Our study shows the benefits of L-arginine treatment in the renal ischaemia and during cyclosporine administration. The treatment should start immediately after the ischaemic period and at the same time as the cyclosporine administration. L-arginine added later has no positive effect.

Animals↗

Serum phospholipid fatty acid composition and insulin action in type 2 diabetic patients.

Relationships have been demonstrated between insulin sensitivity and the fatty acid (FA) composition of serum and tissue lipids in adult humans. The present study aimed to investigate the above relationships in different groups of type 2 diabetic patients (DM2). The FA composition of serum phospholipids (S-PL) measured by gas liquid chromatography and insulin action during a 2-step hyperinsulinemic isoglycemic clamp (1 and 10 mU/kg. min) were determined in 21 newly diagnosed DM2 subjects (DMN), in groups of long-term DM2 patients treated with hypoglycemic agents (DMH; n = 21) or diet alone (DMD; n = 11), and in 24 healthy subjects (HS). In diabetics, the metabolic clearance rates of glucose at both insulin levels (MCR(glu)submax and MCR(glu)max) were significantly reduced compared with HS (MCR(glu)submax DMN, 5.35 +/- 2.7 mL x kg(-1) x min(-1), DMH, 5.38 +/- 2.17 mL x kg(-1) x min(-1); DMD, 5.48 +/- 2.35 mL x kg(-1) x min(-1) v HS, 10.9 +/- 3.3 mL x kg(-1) x min(-1); P <.01; MCR(glu)max DMN, 13.3 +/- 3.3 mL x kg(-1) x min(-1); DMH, 12.5 +/- 3.0 mL x kg(-1) x min(-1); DMD, 13.3 +/- 3.0 mL x kg(-1) x min(-1) v HS, 17.4 +/- 3.8 mL x kg(-1) x min(-1); P <.05). Increased contents of highly unsaturated n-6 family FA (P <.01), arachidonic acid in particular (DMN, 10.98% +/- 1.79%; DMD, 10.78% +/- 1.64%; DMH, 10.97% +/- 1.7% v HS, 8.51% +/- 1.53%; P <.001), were found in all groups of diabetics compared with HS, while lower levels of linoleic acid were seen in DMN (P <.001) and DMH (P <.05). The contents of saturated FA and monounsaturated FA were comparable in HS, DMN, and DMD. While in HS there were significant negative correlations between MCR(glu) and the contents of saturated FA and a positive association between insulin action and proportions of linoleic and arachidonic acids, no significant relationships were found in diabetic subjects. Different groups of DM2 patients show an altered FA pattern of S-PL, which is not related to insulin action. The above data support the hypothesis that changes in FA composition may play a role in modulating insulin action in peripheral tissues, but cannot explain the insulin resistance (IR) in DM2 patients.

Adult↗

Age-related changes in fatty acid composition in muscles.

Changes in lipid metabolism in muscles are closely related to insulin resistance. Insulin resistance is impaired during aging in hereditary hypertriglyceridemic rats. However, changes in the membrane fatty acid composition during aging are poorly understood. The aim of the study was to describe the fatty acid (FA) composition of muscle phospholipids in the diaphragm and in the m. soleus in relation to aging and insulin resistance. Female hereditary hypertriglyceridemic rats (HHTg) have been shown to have elevated levels of serum triglycerides. Fasting and post-load blood glucose and insulin concentrations were higher in HHTg lines as compared with controls of the same age. The most important changes observed in the m. soleus in the HHTg line included decreased saturated FA between 3 and 14 months of age (42.79 +/- 2.30 vs. 28.85 +/- 2.57mol.%, p<0.01) and increased polyunsaturated FA n-6 (27.99 +/- 1.66 vs. 39.37+2.29 mol.%, p<0.01). In the diaphragm we noted, in normotriglyceridemic controls, increased proportions of monounsaturated FA (5.73 +/- 0.80 vs. 11.02 +/- 0.75mol.%, p<0.001), while these proportions were decreased in HHTg rats (13.50 +/- 0.83 vs. 10.46 + 0.61 mol.%, p < 0.05). Age-related changes in muscle phospholipids seem not to be the key to explaining insulin resistance.

Aging↗

[Nitric oxide in patients after cadaveric kidney transplantation].

BACKGROUND: The role of nitric oxide (NO) after cadaveric renal graft transplantation has not been yet fully clarified. The aim of our study was to examine NO production into the urine of patients following cadaveric renal graft transplantation with a normal course and complications (acute rejection and cyclosporin toxicity). METHODS AND RESULTS: Production of stabile NO metabolites (NO2 and NO3) into urine (U-NOx) was examined in recipients of cadaveric renal transplantation. Only patients with standard triple immunosuppressive therapy (cyclosporin, azathioprine, prednisone) were include into the study. Patients receiving other immunosuppressive agents or drugs affecting NO formation (nitrates, ACE inhibitors) were excluded from the study, as were those with infectious or other serious post-transplant complications. Overall, we examined 33 patients (21 men and 12 women), with acute rejection and cyclosporin-induced toxicity in ten each, and a normal course with no complications in 13. The mean age of the patients was 50.96_11.13 years. U-NOx was examined by biochemistry using Griesse reaction every day after transplantation both in a morning urine sample and in a sample from 24-hour collection over the preceding day and calculated to 1 mmol/l of urinary creatinine (U-Cr). The levels of U-NOx/U-Cr in patients with acute rejection over the past 2 days before its development were lower compared with those in patients with a normal course (p_0.05). No difference was found between the groups of patients with cyclosporin-induced toxicity and a normal course. The levels of U-NOx were inversely correlated (p_0.01) to the levels of serum creatinine (S-Cr), but did not correlate with the blood levels of cyclosporin A. CONCLUSIONS: The study demonstrated a decrease in urinary U-NOx production within the past 2 days before renal transplant rejection. The levels of U-NOx in patients with cyclosporin-induced toxicity remain unaltered. U-NOx/U-Cr could possibly become a non-invasive marker of rejection.

Cadaver↗