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Biomedical subjects

Jaroslav A Hubacek

Publications and source records attributed to Jaroslav A Hubacek.

16 recordsLinked to original sources

IL-10 and TNF-beta gene polymorphisms have no major influence on lactate levels after cardiac surgery.

OBJECTIVE: Lactate levels after cardiac surgery are influenced by different proinflammatory (TNF, IL-6, IL-8) and anti-inflammatory (IL-10) cytokines. The goal of the study was to determine the relationship between polymorphism in the IL-10 (-1082G/A) and TNF-beta (+252G/A) genes and lactate levels in patients after cardiac surgery. METHODS: We performed prospective observational study in 168 consecutive adult patients without left ventricle dysfunction undergoing elective coronary artery bypass grafting. Lactic acid levels were documented at five different time points: 10 min after beginning of cardiopulmonary bypass, 40 min after cardiopulmonary bypass termination, and 30 min, 8h, and 16 h after the surgery. Genetic analysis for polymorphism was performed by mismatched polymerase chain reaction and restriction analysis. RESULTS: No association was found between single polymorphism in IL-10 or TNF-beta gene and lactate levels, but the carriers of IL-10/TNF-beta genotype combination +A/GG had significantly different course of lactate levels in time with decrease in lactate (in comparison with increase in other groups) at 8h after the surgery. CONCLUSIONS: IL-10 (-1082G/A) and TNF-beta (+252G/A) gene polymorphisms have a little, yet measurable influence on the time course of changes in lactate levels after cardiac surgery.

Adult↗

Role of cholesterol 7alpha-hydroxylase (CYP7A1) in nutrigenetics and pharmacogenetics of cholesterol lowering.

The relationship between dietary composition/cholesterol-lowering therapy and final plasma lipid levels is to some extent genetically determined. It is clear that these responses are under polygenic control, with multiple variants in many genes participating in the total effect (and with each gene contributing a relatively small effect). Using different experimental approaches, several candidate genes have been analyzed to date.Interesting and consistent results have been published recently regarding the A-204C promoter variant in the cholesterol 7alpha-hydroxylase (CYP7A1) gene. CYP7A1 is a rate-limiting enzyme in bile acid synthesis and therefore plays an important role in maintaining cholesterol homeostasis. CYP7A1-204CC homozygotes have the greatest decrease in total cholesterol level in response to dietary changes in different types of dietary intervention studies. In contrast, one study has reported that the effect of statins in lowering low-density lipoprotein (LDL)-cholesterol levels was slightly greater in -204AA homozygotes. The CYP7A1 A-204C variant accounts for a significant proportion of the genetic predisposition of the response of plasma cholesterol levels.

Anticholesteremic Agents↗

Genetic polymorphisms of TGF-beta, PAI-1, and COL1A-1, and determination of bone mineral density in Caucasian females.

OBJECTIVE: The aim of this study was to examine whether the variants in genes for transforming growth factor beta1 (TGF-beta1; Leu10>Pro and Arg25>Pro), plasminogen activator inhibitor 1 (PAI-1; 4G>5G variant) and collagen -1 (COL1A-1; Sp1 variant) may be useful in identifying individuals with increased susceptibility to early postmenopausal bone loss within the population of Czech women. METHODS: Polymorphisms were genotyped (by PCR and restriction analysis) in 1400 females representatively selected from the Czech population as well as in 218 postmenopausal osteoporotic women 40-70 years of age (mean age 58.7 years) and a 151 control group of postmenopausal females in the same age range (mean age 59.1 years) with normal BMD. RESULTS: We have not found any statistically significant differences in the frequency of the individual genotypes or alleles of analyzed variants between the groups of osteoporotic patients (OP), population group (PG) and control group (CG). The frequencies of the individual genotypes in the analyzed groups were as follows - 1) TGF-beta1 gene: Leu10Leu10 OP - 30.2%, PG - 35.6%, CG 35.1%; Leu10Pro10 OP - 52.1%, PG - 47.1%, CG 50.0%; Pro10Pro10 OP - 17.7%, PG - 17.3%, CG 14.9%; 2) TGF-beta1 gene Arg25 homozygotes OP - 83.8%, PG - 86.1%, CG - 89.3%, Pro25 carriers OP - 16.2%, PG - 13.9%, CG - 10.7%, 3) PAI-1 gene: 4G4G OP - 34.9%, PG - 31.8, CG - 28.5%, 5G4G OP - 43.6%, PG - 46.7%, CG - 50.3%, 5G5G OP - 21.5%, PG - 21.5%, CG - 21.2%, and 4) COL1A-1 ("SS" homozygotes, OP - 63.0%, PG - 63.7%, - CG 64.9%, "s" carriers OP - 37.0%, PG - 36.3%, CG - 35.1%). CONCLUSIONS: Variants in genes for TGF-beta1 (Leu10>Pro and Arg25>Pro), PAI-1 (4G>5G) and COL1A-1 (Sp1 variant) are not associated with low BMD in postmenopausal Czech Caucasian females.

Adult↗

No associations between genetic polymorphisms of TGF-beta, PAI-1, and COL1A1, and bone mineral density in Caucasian females.

OBJECTIVE: The aim of this study was to examine whether variants in genes for transforming growth factor beta1 (TGF-beta1; Leu10>Pro and Arg25>Pro), plasminogen activator inhibitor 1 (PAI-1; 4G>5G variant) and collagen 1 (COL1A1; Sp1 variant) may be useful in identifying individuals with increased susceptibility to early postmenopausal bone loss within the population of Czech women. METHODS: Polymorphisms were genotyped (by PCR and restriction analysis) in 1400 females representatively selected from the Czech population as well as in 218 postmenopausal osteoporotic women 40-70 years of age (mean age 58,7 years) and a 151 postmenopausal females within the same age range (mean age 59,1 years) with normal BMD. RESULTS: We have not found any statistically significant differences in the frequency of individual genotypes or alleles of analyzed variants between the groups of osteoporotic patients (OP), population group (PG) and control group (CG). The frequency of the individual genotypes in the analyzed groups was as follows 1) TGF-beta1 gene: Leu10Leu10 OP 30.2 %, PG 35.6 %, CG 35.1 %; Leu10Pro10 OP 52.1 %, PG 47.1 %, CG 50.0 %; Pro10Pro10 OP 17.7 %, PG 17.3 %, CG 14.9 %; 2) TGF-beta1 gene Arg25 homozygotes OP 83.8 %, PG 86.1%, CG 89.3 %, Pro25 carriers OP 16.2 %, PG 13.9 %, CG 10.7 %, 3) PAI-1 gene: 4G4G OP 34.9 %, PG 31.8, CG 28.5 %, 5G4G OP 43.6 %, PG 46.7 %, CG 50.3 %, 5G5G OP 21.5 %, PG 21.5%, CG 21.2%, and 4) COL1A-1 ("SS" homozygotes, OP 63.0%, PG 63.7%, CG 64.6 %, "s" carriers OP 37.0 %, PG 36.3 %, CG 35.1 %). CONCLUSIONS: Variants in genes for TGF-beta1 (Leu10>Pro and Arg25>Pro), PAI-1 (4G>5G) and COL1A1 (Sp1 variant) are not associated with low BMD in postmenopausal Czech Caucasian females.

Adult↗

Sex-specific effect of APOAV variant (Val153>Met) on plasma levels of high-density lipoprotein cholesterol.

The importance of the APOAV gene for the determination of plasma triglyceride levels has been suggested by creations of transgenic and knockout mice and confirmed in population studies. We examined whether the newly detected APOAV variant is associated with plasma lipid levels and risk of myocardial infarction (MI). APOAV polymorphism (Val153>Met) was genotyped in 1191 males and 1368 females representatively selected from the Czech population. Lipid levels were analyzed in 1997 and 2001 in all individuals. Subsequently, we have analyzed the genotype frequencies of APOAV polymorphism in 435 male patients with MI. Val153>Met variation in the APOAV gene affects the plasma high-density lipoprotein cholesterol levels showing a higher level in Val/Val homozygotes than in Met carriers in both years (1.51 +/- 0.36 and 1.52 +/- 0.37 mmol/L compared with 1.42 +/- 0.33 and 1.39 +/- 0.35 mmol/L, P < .01). This association has been observed in females but not in males. Other analyzed lipid parameters (total cholesterol, low-density lipoprotein cholesterol, and triglycerides) have not been associated with APOAV Val153>Met variant. In a group of patients with MI, the frequency of the Met153 carriers was not significantly different from the male population sample (6.5% vs 6.4%). Val153>Met variation in the APOAV gene plays a sex-specific role in genetic determination of plasma high-density lipoprotein cholesterol levels, but does not influence risk of MI in males.

Adult↗

Apolipoprotein A5 and triglyceridemia. Focus on the effects of the common variants.

High plasma levels of triglycerides are an independent risk factor for the development of cardiovascular disease. Apolipoprotein A5 (APOA5) is a new member of the apolipoprotein APOA1/C3/A4 gene cluster, found by comparative sequencing analysis. The importance of the APOA5 gene for determination of plasma triglyceride levels has been suggested by the creation of transgenic and knock-out mice (transgenic mice displayed significantly reduced triglycerides, whereas knock-out mice had a high level of triglycerides). It has now been clearly established that distinct polymorphisms in the APOA5 gene consistently influence plasma triglycerides in a wide range of human populations, although some differences between ethnic groups and males and females were described. The possible roles of APOA5 variants in determining the risk of myocardial infarction and coronary artery disease development, as well as in the determination of low-density lipoprotein-particle size or plasma concentrations of C-reactive protein and high-density lipoprotein-cholesterol, are also summarized.

Animals↗

APOAV (T-1131>C) variant has no effect on mother's height in a large population study.

The important role of APOAV gene T-1131>C variant in determination of plasma triglyceride levels has been proved on many population studies. Recently, associations between C-1131 allele and higher mother's height as well as with longer fetal birth length were suggested. In 1,305 females, aged between 28 and 67 years and having at least one child, we have analyzed a putative association between T-1131>C APOAV variant (analyzed by PCR and restriction analysis) and body height. Mother's body height did not differ between T/T homozygotes (N = 1093, 162.5 +/- 6.5 cm) and C allele carriers (N = 212, 162.1 +/- 6.4 cm). Thus we have failed to confirm, that mothers with APOAV C-1131 allele are higher than T/T-1131 homozygotes.

Comment↗

Genetic analysis of APOAV polymorphisms (T-1131/C, Ser19/Trp and Val153/Met): no effect on plasma remnant particles concentrations.

BACKGROUND: APOAV is newly described protein, which plays a crucial role in the determination of plasma triglyceride (TG) levels. Remnant lipoproteins (RLPs) result from partial catabolised TG-rich particles. Elevated levels of RLP are associated with atherosclerosis, and they are a predictor of coronary events in patients with coronary artery disease. METHODS: We have evaluated the influence of APOAV polymorphisms (T-1131/C, Ser19/Trp and Val153/Met were measured by PCR and restriction analysis) on plasma levels of RLP-cholesterol and RLP-TG in 285 unrelated representative selected individuals (131 men and 154 women) aged 33-72 years. RESULTS: RLP-cholesterol and RLP-TG levels were not significantly influenced by the APOAV variants either in whole population or in males and females, if analyzed separately. CONCLUSIONS: We conclude that variations T-1131/C, Ser19/Trp and Val153/Met in the APOAV gene have no effect on plasma levels of remnant particles.

Adult↗

ARH missense polymorphisms and plasma cholesterol levels.

Mutations in a putative low-density lipoprotein (LDL) receptor adaptor protein called ARH have been recently described in patients with autosomal recessive hypercholesterolemia (ARH). ARH plays a tissue-specific role in determination of LDL receptor function. In the ARH gene three mismatched polymorphisms have been detected: Pro202Ser, Pro202His and Arg238Trp. These are of putative interest in plasma cholesterol level determination. To evaluate the effect of polymorphisms on plasma cholesterol levels, all polymorphisms were analyzed by PCR and restriction enzyme analysis by MnII, HpyCH4IV and SacII in 100 Caucasian males with high (>90%, 6.29 +/- 0.89 mmol/l), and 100 males with low (<10%, 3.60 +/- 0.57 mmol/l), total plasma cholesterol levels. No significant differences were observed in frequencies of ARH genotypes or alleles between these two extreme groups. These results suggest that ARH polymorphisms are unlikely to be important genetic determinants of plasma cholesterol levels.

Adaptor Proteins, Signal Transducing↗

Polymorphisms in CYP-7A1, not APOE, influence the change in plasma lipids in response to population dietary change in an 8 year follow-up; results from the Czech MONICA study.

OBJECTIVES: To evaluate the influence of variation in the genes for apolipoprotein E (APOE; epsilon2, epsilon3, epsilon4) and cholesterol-7alpha hydroxylase (CYP-7A1; -204A-->C) on plasma lipid level changes. DESIGN AND METHODS: 131 males for whom dietary composition markedly changed and total cholesterol decreased (from 6.21 +/- 1.31 mmol/L in 1988 - 5.43 +/- 1.06 mmol/L in 1996) over an 8 yr follow-up study. Polymorphisms were investigated using PCR. RESULTS: APOE genotype influenced plasma total and LDL cholesterol, with carriers of the epsilon4 having the highest and epsilon2 carriers the lowest levels, this reached borderline significance for cholesterol in 1988 (p = 0.06) and strongly affected the 1996 levels of LDL cholesterol (p = 0.008). However, APOE did not influence the change in these measures over time. In contrast, the CYP-7A1 -204A-->C polymorphism did not affect lipid measures per se but was strongly associated with a decrease in plasma total cholesterol [AA -0.38 (+/- 0.20) mmol/L, AC -0.65 +/- (0.08), CC -1.33 (+/- 0.3) mmol/L, p = 0.01] over the 8 yr time period. CONCLUSIONS: Variation in the CYP-7A1 gene may play an important role in an individual's sensitivity to dietary composition.

Adult↗

Two independent apolipoprotein A5 haplotypes influence human plasma triglyceride levels.

The recently identified apolipoprotein A5 gene (APOA5) has been shown to play an important role in determining plasma triglyceride concentrations in humans and mice. We previously identified an APOA5 haplotype (designated APOA5*2) that is present in approximately 16% of Caucasians and is associated with increased plasma triglyceride concentrations. In this report we describe another APOA5 haplotype (APOA5*3) containing the rare allele of the single nucleotide polymorphism c.56C>G that changes serine to tryptophan at codon 19 and is independently associated with high plasma triglyceride levels in three different populations. In a sample of 264 Caucasian men and women with plasma triglyceride concentrations above the 90th percentile or below the 10th percentile, the APOA5*3 haplotype was more than three-fold more common in the group with high plasma triglyceride levels. In a second independently ascertained sample of Caucasian men and women (n=419) who were studied while consuming their self-selected diets as well as after high-carbohydrate diets and high-fat diets, the APOA5*3 haplotype was associated with increased plasma triglyceride levels on all three dietary regimens. In a third population comprising 2660 randomly selected individuals, the APOA5*3 haplotype was found in 12% of Caucasians, 14% of African-Americans and 28% of Hispanics and was associated with increased plasma triglyceride levels in both men and women in each ethnic group. These findings establish that the APOA5 locus contributes significantly to inter-individual variation in plasma triglyceride levels in humans. Together, the APOA5*2 and APOA5*3 haplotypes are found in 25-50% of African-Americans, Hispanics and Caucasians and support the contribution of common human variation to quantitative phenotypes in the general population.

Apolipoprotein A-V↗

Polymorphisms in the lipopolysaccharide-binding protein and bactericidal/permeability-increasing protein in patients with myocardial infarction.

Gram-negative bacterial infection, namely Chlamydia pneumoniae has been recently discussed as a risk factor for myocardial infarction. The lipopolysaccharide-binding protein (LBP) and the bactericidal/permeability-increasing protein (BPI) play a role in the processes leading to recognition and neutralisation of the Chlamydia pneumoniae and their endotoxins lipopolysaccharides (LPS). LPS interact with plasma LBP, and LBP-LPS complex activates monocytes/macrophages, which can influence the atherosclerotic process. BPI is cytotoxic for Gram-negative bacteria and BPI-LPS complexes do not activate monocytes. We have analysed the polymorphisms in the LBP gene (Gly98-->Cys; Pro436-->Leu) and BPI gene (Lys216-->Glu; PstI polymorphism in intron-5; G545-->C) in 313 patients after myocardial infarction (MI) and in 302 control individuals. Genotype frequencies in the LBP gene and BPI gene did not differ between MI patients and control individuals. Our findings suggest that LBP and BPI polymorphisms do not influence the risk of MI.

Acute-Phase Proteins↗