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B Kieć-Wilk

Publications and source records attributed to B Kieć-Wilk.

5 recordsLinked to original sources

Ambulatory blood pressure, left ventricular mass and vascular phenotypes in relation to the endothelial nitric oxide synthase gene Glu298Asp and intron 4 polymorphisms in a population-based family study.

Reduced nitric oxide production is associated with pathological changes in the cardiovascular system. In a study of randomly chosen families, we analysed the relationship between two polymorphisms (Glu298Asp and intron 4) of the endothelial nitric oxide synthase (eNOS) and ambulatory blood pressure (ABP), left ventricular mass index (LVMI) and vascular phenotypes. The study population consisted of 127 parents and 167 offspring. All subjects underwent 24 h ABP monitoring using a SpaceLabs 90207 device. 2D and M-mode echocardiograms were obtained. Pulse wave velocity between the common carotid and femoral artery was measured with the Complior device, and the carotid intima-media thickness (IMT) was assessed by ultrasound. For statistical analysis, covariables and correlations between relatives were taken into account. The frequency of genotypes was as follows: for Glu298Asp: 55.1%-Glu/Glu, 40.1%-Glu/Asp and 4.8%-Asp/Asp; for intron 4: 65.0%-4 b/b, 33.3%-4 b/a and 1.7%-4 a/a, being in Hardy-Weinberg equilibrium (P > or = 0.29). There was no relationship between the eNOS gene polymorphisms and ABP or LVMI either in parents or their offspring. Among parents, carriers of the 298Asp allele had higher IMT values as compared with Glu/Glu homozygotes (0.94 vs 0.70 mm; P = 0.007). Among offspring, there was a similar tendency (0.60 vs 0.53 mm; P = 0.10), which was confirmed by transmission disequilibrium tests for quantitative variables (P > or = 0.07). Our findings indicate that the Glu298Asp polymorphism of eNOS identifies patients with larger carotid IMT, also in younger subjects.

Adolescent↗

The selected pathophysiological aspects of PPARs activation.

Peroxisome proliferator activated receptors (PPARs) belong to a subfamily of transcription nuclear factors. Three isoforms of PPARs have been identified: alpha, beta/delta and gamma, encoded by different genes and distributed in various tissues. They play important roles in metabolic processes like regulation of glucose and lipid redistribution. They also have anti-atherogenic, anti-inflammatory as well as anti-hypertensive functions. In hypertension-induced cardiac hypertrophy, both PPARa and PPARg activation reveal cardio-protective effect. Despite these beneficial functions, several recent experimental reports point to the possibille unfavorable effects of PPARs activation in lipid metabolism (lipotoxicity) in cardiomyocytes, which can lead to pathologic cardiac hypertrophy in such diseases as diabetes type 2, metabolic syndrome or obesity. This paper reviews evidences and hypotheses about the new pathophysiological aspects of PPARs activation.

Animals↗

Biochemical parameters of endothelial dysfunction in cardiological syndrome X.

UNLABELLED: The endothelial dysfunction in cardiological syndrome X has been studied mainly by invasive methods and by measuring vasoactive mediator (nitric oxide (NO), endothelin-1) levels. Other parameters evaluating this dysfunction (defined as an imbalance between vascular relaxing and contracting factors, between procoagulant and anticoagulant or growth-inhibiting and growth-promoting substances) have not been used. METHODS: Twenty-five non-diabetic patients (16 men, 9 women) with cardiological syndrome X and 10 healthy volunteers (5 men, 5 women) were examined. Biochemical parameters: ET-1, the end products of nitric oxide metabolism (NOx), VEGF, vWF, betaTG, tPA, PAI-1 were measured before and during an ECG exercise tolerance test. The blood concentrations of testosterone and estradiol in men and LH, FSH and estradiol in women were tested. RESULTS: A significantly lower basal concentration of NOx (p=0.01), lower basal NOx/ET-1 ratio (p<0.05) and higher levels of VEGF (p<0.05) were observed in patients with cardiological syndrome X. The male patients also had higher concentrations of estradiol (p<0.05). A significant decrease in tPA concentration and increase in betaTG was noticed during exercise, but with no differences between the study groups. CONCLUSIONS: Endothelial dysfunction in cardiological syndrome X manifests mainly in the regulation of vessel wall tonus. which was revealed by the decrease of NOx level and NOx/ET-1 ratio. VEGF elevation in syndrome X may result from chronic tissue ischaemia due to endothelial dysfunction. Exercise augments the prothrombotic activity of the blood, since a significant elevation in betaTG and decrease in tPA were observed after exercise.

Adult↗

Correlation of the -3826A >G polymorphism in the promoter of the uncoupling protein 1 gene with obesity and metabolic disorders in obese families from southern Poland.

The aim of the study was to examine the allelic frequency of the -3826A > G mutation of UPC1 in patients with familiar obesity and to investigate putative association of this polymorphism with metabolic disorders. One hundred and eighteen overweight /obese patients participated in the study. The UCP1 polymorphism was determined by RFLP. Glucose, lipid, insulin and leptin levels were measured both during OGTT and OLTT. The majority of patients had a homozygous A/A genotype (51,38%), while 14,68% had a G/G genotype. We found no significant association of the G allele with either BMI or glucose tolerance. Patients with the homozygous G/G genotype had significantly higher fasting levels of TG (p < 0.04) and decreased levels of HDL-cholesterol (p = 0,004). They also had an increased concentration of FFA and the rise of TG levels during the OLTT compared to controls was significant (p = 0,058). In addition, the carriers of the G/G genotype had the lowest insulin levels both during OGTT and OLTT. In our study we have demonstrated that the -3826A > G polymorphism of UCP1 does not play a major role in the development of obesity and/or disturbances of glucose metabolism. However, the increased levels of TG and FFA and decreased levels of HDL observed in carriers of the G allele suggest FFA-induced impairment of the HDL turnover and disturbance of the beta-cell function, both of which are risk factors for endothelial injury.

Adult↗

[Is atherosclerosis an autoimmunological process?].

The theories formulated to explain atherogenesis evolved from simple vessel wall lipid accumulation assumption to endothelial dysfunction with adverse vascular wall remodelling hypothesis. The theory that has been accepted lately integrates the former hypotheses and allows for introducing the local immunological activation concept. This immunological activation is initiated by negatively charged and oxidatively modified lipids (e.g. oxPAPC) and their complexes with proteins (like beta 2-GP I). Antibodies and cellular response against chaperonins: HSP 60 and their analogues from bacterial pathogens such as HSP 65, GroEi etc.) as well as release of cytokines, adhesion molecules and inflammatory mediators (CD 40/CD 40-L, IL 15, IFN gamma, IL 1 beta, TNF alpha) also take part in the process. Another important element of atherogenesis is the pathological angiogenic response within the plaque connected with the expression of angiogenic growth factors (such as VEGF, bFGF and PDGF), metallo-proteinases and local hemostasis regulators. This complex activation of local inflammatory and immunological process initiates such phenomena as development of unstable plaque, vascular remodelling, vessel lumen constriction and ischemic, thromboembolic complications of atherosclerosis.

Animals↗