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K Saku

Publications and source records attributed to K Saku.

At least 37 records · Page 2Linked to original sources

Hyperinsulinemic hypoalphalipoproteinemia as a new indicator for coronary heart disease.

OBJECTIVES: The purpose of this study was to investigate the association among insulin resistance, high density lipoprotein cholesterol (HDL-C) and coronary heart disease (CHD), and to test the hypothesis that HDL-C may ameliorate the adverse effects of insulin. BACKGROUND: Serum low HDL-C (hypoalphalipoproteinemia) and hyperinsulinemia are independent predictors for CHD, but a strong negative correlation exists between them, as in patients with syndrome X. METHODS: Fifty-four pairs of cases (M/F: 49/5), defined as patients with angiographically proved CHD, and control subjects (M/F: 49/5) matched with cases with regard to gender and age were included. Insulin resistance was assessed by the homeostasis model assessment (HOMA). RESULTS: Cases had increased HOMA insulin resistance and lower serum levels of HDL-C than controls. A receiver operating characteristic (ROC) curve analysis indicated that HDL-C and insulin resistance were significant discriminators of CHD (area under ROC curve: 0.72 and 0.69, respectively). The interaction between HDL-C and the association of insulin resistance with CHD was significant: subjects with hyperinsulinemia and high HDL-C had no increased risk of CHD. Multivariate conditional logistic regression analysis showed that hyperinsulinemic hypoalphalipoproteinemia was a stronger indicator for CHD than either HDL-C or insulin resistance alone (-2 log likelihood: 19.0 vs. 12.6 or 15.7). CONCLUSIONS: Hyperinsulinemic hypoalphalipoproteinemia was a more potent indicator for CHD than either insulin resistance or low serum HDL-C levels alone, and the adverse effects of hyperinsulinemia seem to be ameliorated by high HDL-C levels.

Aged↗

Soluble vascular cell-adhesion molecule-1 and soluble intercellular adhesion molecule-1 correlate with lipid and apolipoprotein risk factors for coronary artery disease in children.

UNLABELLED: Atherosclerosis begins in childhood and progresses from fatty streaks to raised lesions in adolescence and young adulthood. This process is accelerated in children with risk factors for coronary artery disease (CAD). Cell adhesion molecules (CAMs) are supposed to play important roles in the initial development of atherosclerosis, which may suggest that the expression of CAMs is increased in children more than in older subjects or in CAD patients. To determine whether risk factors for CAD are associated with an increased expression of CAMs, we investigated the relationships of the serum levels of soluble vascular cell adhesion molecule-1 (VCAM-1), soluble intercellular adhesion molecule-1 (ICAM-1) and soluble P-selectin (P-selectin) with lipid and apolipoprotein parameters in children (40 boys and 45 girls). We also examined the relationships between soluble CAMs and the fractional esterification rate of cholesterol in HDL (FER(HDL)), particle size of LDL and lipoprotein containing apoA-I, but no apoA-II (LpA-I). In children, soluble VCAM-1 levels were correlated with the levels of triglyceride (in boys) and apoB, the ratio of apoB to apoA-I and FER(HDL) (in girls). Similar associations were found for soluble ICAM-1. Furthermore, the soluble ICAM-1 level was inversely correlated with LpA-I level, LDL size (in boys) and HDL cholesterol level (in girls). Soluble P-selectin levels were not correlated with these parameters. CONCLUSION: Our data indicate that intervention to normalize risk factors for coronary artery disease should be started at a young age to prevent increased expression of cell adhesion molecules.

Adolescent↗

Quantity and function of high density lipoprotein as an indicator of coronary atherosclerosis.

OBJECTIVES: To examine the association between the fractional esterification rate of cholesterol (C) in low density lipoprotein- and very low density lipoprotein-depleted plasma (FER(HDL)) and coronary artery disease (CAD) and the influence of serum HDL-C levels. BACKGROUND: The function of HDL in reverse cholesterol transport is involved in the antiatherogenic action of HDL, and FER(HDL) is a newly established quantitative measure of HDL function in vivo. METHODS: Cases (n = 185, F/M: 43/142) and controls (n = 74, F/M:27/47) were defined as subjects with/without angiographically proven CAD, respectively. RESULTS: The cases had significantly (p < 0.05) higher FER(HDL) values (13.2+/-0.3 %/h vs. 12.1+/-0.5 %/h) and lower HDL-C levels (39.0+/-1.0 mg/dL vs. 46.8+/-1.4 mg/dL) than the controls. The associations of FER(HDL) and HDL-C with CAD were linear and significant (p < 0.05). Multiple logistic regression analysis indicated that the association of FER(HDL) with CAD varied with the HDL-C level: significant for the low HDL-C tertile (chi-square = 6.20, p < 0.05) but not significant for the middle and high HDL-C tertiles (chi-square = 0.08 and 0.03, n.s.). The risk of CAD, relative to that in patients with low FER(HDL) and high HDL-C, was higher in patients with low FER(HDL) and low HDL-C (odds ratio [95% confidence interval]: 2.37 [1.12-4.97], p < 0.05) and was highest in patients with high FER(HDL) and low HDL-C (3.85 [1.84-8.06], p < 0.01). CONCLUSIONS: The functional assay of HDL (FER(HDL)) is an independent risk factor for CAD. The combination of FER(HDL) and HDL-C could be a potent indicator for CAD, and may reflect a potential mechanism of atherosclerosis.

Biomarkers↗

Angiotensin I converting enzyme gene polymorphism and insulin resistance in patients with angina pectoris.

The association between insertion/deletion polymorphism of the angiotensin I converting enzyme (ACE) gene and insulin resistance (IR) was investigated in 64 consecutive patients (F/M: 11/53) with angina pectoris without clinically manifest diabetes mellitus who underwent diagnostic coronary angiography. The observed frequency distribution of ACE genotypes did not deviate from that predicted from the Hardy-Weinberg equilibrium in this group. Patients with the ACE-ID genotype had significantly lower IR, as assessed by an oral glucose tolerance test (OGTT) and by homeostatic model assessment (HOMA), compared to those with the ACE-II genotype, as assessed by a multiple comparison analysis. Patients were divided into two groups with low and high HOMA-IR, and the I allele was seen more frequently in the high HOMA-IR group than in the low HOMA-IR group (0.62 v 0.47, respectively, by chi2 test, P < .05). Logistic regression analysis showed that the odds ratio for insulin resistance in patients with the II genotype, compared to those with the ID and DD-genotypes (assuming that the I allele has a recessive effect), was 4.0 (95% confidence interval, 1.2 to 16.5; P = .037), after adjusting for the presence of significant coronary atherosclerosis. In conclusion, the D allele was not associated with higher insulin resistance in patients with angina pectoris; that is, patients with the ID and DD genotypes were associated with a significantly lower risk of insulin resistance, compared to those with the II genotype.

Aged↗

In vivo kinetics of human apolipoprotein A-I variants in rabbits.

BACKGROUND: Genetic variants of human apolipoprotein (apo) A-I, the major protein component of high-density lipoprotein (HDL), with a single amino acid substitution have been reported, and some of these result in very low plasma HDL-cholesterol (C) levels. Examining the kinetics of radiolabelled apolipoprotein is a straightforward technique for determining its metabolism in vivo. In this study, we investigated the in vivo kinetics of several human apo A-I variants, which we had identified previously, in rabbits. MATERIALS AND METHODS: Apo A-I variants from heterozygous carriers of Lys-107-->0, Lys-107-->Met, Pro-3-->Arg, Pro-4-->Arg, Pro-165-->Arg and Glu-198-->Lys and the corresponding normal apo A-I were purified and then radioiodinated with 131I and 125I. A kinetic study of apo A-I variants was performed in normolipidaemic rabbits after simultaneous injection of the two isotopes that had been incorporated into HDL. The fractional catabolic rate (FCR) was calculated from the radioactive decay curve. RESULTS: Acidic mature (negatively charged) apo A-I variants caused by a single amino acid substitution (Lys-107-->0, and Lys-107-->Met) were catabolized faster (FCR, 1.931 +/- 0.539 per day vs. 1.636 +/- 0.460 per day, P </= 0.01 using the Wilcoxon signed-rank test) and basic mature (positively charged) apo A-I variants (Pro-3-->Arg, Pro-4-->Arg, Pro-165-->Arg and Glu-198-->Lys) were catabolized more slowly (FCR 1.470 +/- 0.380 per day vs. 1.654 +/- 0.430 per day, P </= 0.01) than the corresponding normal mature apo A-I in vivo in rabbits. In addition, an inverse linear relationship was observed between the deviation in the FCR of variant human apo A-I from that of normal human apo A-I and the number of electric charges that the apo A-I variant carried (r = -0. 90, k = -0.188, P = 0.0003), as assessed by a linear regression analysis, suggesting that the electric charge of apo A-I variants may determine, at least in part, its in vivo kinetics in rabbits. CONCLUSIONS: Genetic variants of apo A-I with a single amino acid substitution show abnormal kinetics, and the electric charge of a apo A-I variant could contribute to determining its kinetics in vivo in this xenologous model.

Animals↗

Metabolism of oxidized phosphatidylcholines formed in oxidized low density lipoprotein by lecithin-cholesterol acyltransferase.

The possible involvement of lecithin-cholesterol acyltransferase (LCAT) in the metabolism of oxidized phosphatidylcholine (PC) in plasma was investigated. A variety of oxidized products are formed from PC following oxidation of low density lipoproteins (LDL). A significant increase in LDL oxidation levels in patients with familial LCAT deficiency (FLD) has been previously demonstrated by a sensitive sandwich ELISA for oxidized LDL using the monoclonal antibody DLH3 which recognizes oxidized products of PC. In the present study, we found that LCAT produces various metabolites from oxidized PC and that oxidized PC molecules in LDL particles serve as substrates. When the neutral lipid fraction was separated by TLC after the incubation of oxidized 1-palmitoyl-2-[1-14C]linoleoyl PC with human plasma, a number of radioactive bands were formed in addition to cholesteryl ester. These products were not formed from native 1-palmitoyl-2-[1-14C]linoleoyl PC. Plasma from FLD patients also failed to form the additional products from oxidized PC. The addition of dithio-bis(nitrobenzoate) (DTNB), an LCAT inhibitor, or the inactivation of LCAT activity by treating the plasma at 56 degrees C for 30 min abolished the generation of these products from oxidized PC. The activity was recovered in the high density lipoprotein (HDL) fraction but not in the LDL fraction separated from normal plasma. When 1-palmitoyl-2-[1-14C](9-oxononanoyl) PC and 1-stearoyl-2-[1-14C](5-oxovaleroyl)PC, PC oxidation products that contain short chain aldehydes, were incubated with human plasma, radioactive products in the neutral lipid fraction were observed on TLC. LDL containing oxidized PC was measured by sandwich ELISA using an anti-apolipoprotein B antibody and DLH3. The reconstituted oxidized PC-LDL particles were found to have lost their ability to bind DLH3 upon incubation with HDL, while the reactivity of the reconstituted oxidized PC-LDL remained unchanged in the presence of DTNB. These results suggest that LCAT is capable of metabolizing a variety of oxidized products of PC and preventing the accumulation of oxidized PC in circulating LDL particles.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Cholesterol paradox in patients with paroxysmal atrial fibrillation.

Hypercholesterolemia is a major risk factor for coronary heart disease (CHD), but the associations among lipids, lipoproteins and paroxysmal atrial fibrillation (PAF) have not yet been reported. The associations among lipids, lipoproteins and PAF were examined in a case-control study, in which cases and controls were defined as those with/without definite ECG-detectable PAF, respectively. CHD patients were excluded from the study. The mean values of serum total cholesterol (TC), triglyceride (TG) and high density lipoprotein-cholesterol (HDL-C), after adjusting for age and gender, in patients with PAF were lower than those in patients without PAF (175 +/- 4 mg/dl vs. 190 +/- 3 mg/dl, 104 +/- 7 mg/dl vs. 123 +/- 6 mg/dl, 46.0 +/- 1.7 mg/dl vs. 51.8 +/- 1.4 mg/dl, respectively), as assessed by an analysis of covariance. After controlling for age and gender, TC, TG and HDL-C (all in quartiles) were inversely and linearly (p < 0.05) associated with the percentage of patients with PAF, as assessed by a multiple logistic regression analysis. The associations between TC or TG and PAF varied with the HDL-C level: significant when HDL-C was low (p < 0.05), but not when HDL-C was high. The odds ratio (relative risk of PAF) for patients with both low TC or TG and low HDL-C was 4.08 (95% CI: 1.81-9.57) times or 9. 40 (3.25-32.0) times higher (p < 0.01) than that for patients with high TC or TG and high HDL-C, respectively. In conclusion, low serum levels of TC and TG were found in PAF patients, while reduced HDL-C may cause PAF. Hypolipoproteinemia including low HDL-C may affect atrial vulnerability and cause atrial fibrillation.

Aged↗

Possible induction of renal dysfunction in patients with lecithin:cholesterol acyltransferase deficiency by oxidized phosphatidylcholine in glomeruli.

To clarify the causes of renal dysfunction in familial lecithin:cholesterol acyltransferase (LCAT) deficiency, kidney samples from 4 patients with LCAT deficiency (3 homozygotes and 1 heterozygote) were examined immunohistochemically. All of the patients exhibited corneal opacities, anemia, renal dysfunction, deficiencies in plasma high density lipoprotein and LCAT activity and mass, and an increase in the ratio of plasma unesterified cholesterol to esterified cholesterol. Renal lesions began with the deposition of lipidlike structures in the glomerular basement membrane, and these structures accumulated in the mesangium and capillary subendothelium. By electron microscopy, 2 types of distinctive structure were found in glomerular lesions: vacuole structures and cross-striated, membranelike structures. The plasma oxidized phosphatidylcholine (oxPC) -modified low density lipoprotein (LDL) levels in LCAT-deficient subjects were significantly (P<0.01) higher than those in controls (1.30+/-0.82 versus 0.42+/-0.32 ng/5 microg LDL, respectively), and a significant (P<0.01) difference was observed even after adjustment for confounding factors by an analysis of covariance. The patient with the highest plasma oxPC-modified LDL had the most membranelike structures in the glomeruli and showed the greatest renal deterioration from a young age. In glomerular lesions, although there was an abundance of apoB and apoE, oil red O-positive lipids, macrophages, apoA1, and malondialdehyde were scarce. OxPC was found extracellularly in glomerular lesions, and although its distribution differed from that of apolipoproteins, it was quite similar to that of phospholipids. In conclusion, these results indicate that oxPC in plasma and glomeruli is distinctive for patients with LCAT deficiency. Therefore, oxPC may be a factor in the deterioration of kidneys in patients with familial LCAT deficiency.

Adult↗

Efficient nuclear delivery of antisense oligodeoxynucleotides and selective inhibition of CETP expression by apo E peptide in a human CETP-stably transfected CHO cell line.

N,N-Dipalmitylglycyl-apolipoprotein E (129-169) peptide (dpGapoE) is an efficient gene delivery system for both plasmids and antisense oligodeoxynucleotides (ODNs). To develop a new and efficient approach to the regulation of cholesteryl ester transfer protein (CETP) expression, we used dpGapoE to transfect phosphorothioate antisense ODNs against nucleotides 329 to 349 of human CETP cDNA into a human CETP-stably transfected Chinese hamster ovary (CHO) cell line (hCETP-CHO). After transfection, translocation to the nuclei and concentration in nuclear structures were observed in >95% of the cells at 6 and 12 hours by fluorescence microscopy. No membrane disruption was observed after transfection of ODNs by dpGapoE. Although the translocation stability of phosphorothioate ODNs in the nuclei continued for >48 hours, it had weakened after 24 hours. Cellular CETP mRNA levels gradually declined, and the maximum reduction in the mRNA level (>50%) was observed at 36 hours, after which the mRNA level started to recover. CETP activity in the culture medium declined over 72 hours. The maximum reduction in CETP activity was observed at 36 hours (53.8% of control). Neither CETP mRNA nor CETP activities changed throughout the experiment after the transfection of sense phosphorothioate ODNs delivered by dpGapoE complex or naked antisense ODNs. We conclude that (1) the novel synthetic dpGapoE was a highly effective and nontoxic vehicle for the nuclear delivery of antisense ODNs into hCETP-CHO cells and (2) antisense ODNs selectively inhibited both CETP expression and activity in an hCETP-CHO cell line. This approach may enable gene regulation in vivo and could possibly be used as an antiatherosclerotic agent to alter high density lipoprotein metabolism.

Animals↗

A missense mutation of the nitric oxide synthase (eNOS) gene (Glu298Asp) in five patients with coronary artery disease--case reports.

The authors report five patients with a missense mutation of the endothelial nitric oxide synthase (eNOS) gene (Glu298Asp) who have angiographically proven coronary artery disease (CAD). They compare their clinical findings and coronary arteriographic characteristics. They conclude that these case reports show that this mutation is not solely responsible for development of CAD. Diabetes mellitus, smoking, and hyperlipidemia are other risk factors.

Aged↗

Levels of soluble cell adhesion molecules in patients with angiographically defined coronary atherosclerosis.

Adhesion molecules on the endothelial cell membrane play an important role in the pathogenesis of atherosclerosis. Levels of soluble forms of cell adhesion molecules are reportedly elevated in patients with peripheral artery vessel disease and in patients with an atherosclerotic aorta. The present study investigated the association of serum levels of soluble vascular cell adhesion molecule 1 (sVCAM-1), soluble intercellular adhesion molecule 1 (sICAM-1), and soluble P-selectin (sP-selectin) with coronary heart disease (CHD) and the extent of coronary atherosclerosis, and examined the influence of serum levels of lipids, lipoproteins and apolipoproteins (apo) in subjects with (n=52, M/F:43/9) and without (controls, n=40, M/F:25/15) angiographically proven coronary atherosclerosis. After controlling for age and gender, levels of sVCAM-1 (least squares mean +/- std error: 565+/-36 ng/ml vs 540+/-41 ng/ml, ns), sICAM-1 (261+/-17ng/ml vs 247+/-19ng/ml, ns), and sP-selectin (142+/-8ng/ml vs 149+/-10 ng/ml, ns) in patients with coronary atherosclerosis were not different from those in controls, as assessed by an analysis of covariance. After also adjusting for body mass index, hypertension, diabetes mellitus, and smoking by a multiple logistic function analysis, the association of sVCAM-1, sICAM-1, and sP-selectin with CHD was still not significant. Levels of sVCAM-1, sICAM-1, and sP-selectin were also not related to the extent of coronary atherosclerosis as judged by the number of stenosed vessels. However, inverse (p<0.05) relationships were observed between sVCAMs and serum levels of HDL3-cholesterol, apo A-II, and lipoprotein containing apo A-I and A-II, between sICAMs and levels of apo A-II and Lp A-I/A-II (Lp A-I/A-II), and between sP-selectin and lipoprotein containing only apo A-I. In conclusion, serum levels of soluble VCAM-1, ICAM-1, and P-selectin were not related to CHD or the extent of coronary atherosclerosis, but were inversely related to serum levels of high-density lipoprotein-related lipoproteins.

Apolipoproteins↗

Combined effects of probucol and benzafibrate on lipoprotein metabolism and liver cholesteryl ester transfer protein mRNA in cholesterol-fed rabbits.

Probucol decreases and bezafibrate increases plasma high density lipoprotein-cholesterol (HDL-C) levels in humans. This study was performed to determine whether the HDL-C-lowering effects of probucol could be reversed by treatment with bezafibrate in hypercholesterolemic rabbits. Forty-nine normolipidemic Japanese White rabbits were divided into 5 groups [group 1: normal chow; group 2: 0.2% cholesterol (Ch) diet; group 3: 0.2% Ch and 1% probucol diet; group 4: 0.2% Ch and 1% bezafibrate diet; group 5: 0.2% Ch and 1% probucol plus 1% bezafibrate diet] and treated for 8 weeks. Plasma lipids, cholesteryl ester transfer protein (CETP) activity in the lipoprotein-deficient plasma fraction, CETP mRNA in liver tissue and plasma drug concentrations were investigated. Serum total cholesterol (TC) increased after the rabbits in groups 2, 3, 4 and 5 were fed Ch, but overall, no significant differences were observed in serum TC and triglyceride (TG) among these groups. Serum HDL-C levels increased (p<0.01) in the bezafibrate-treated group, but a significant (p<0.05) reduction in HDL-C was observed in both the Ch + probucol (group 3) and Ch + probucol plus bezafibrate (group 5) groups; no significant difference was observed between groups 3 and 5. Significant correlation (p<0.01) was found between serum low density lipoprotein cholesterol (LDL-C) levels and plasma probucol concentrations in groups 3 and 5, but no correlation was found between plasma concentrations of probucol/bezafibrate and serum HDL-C levels. CETP activity in the lipoprotein-deficient plasma fraction increased in the Ch-, Ch + probucol-, and Ch + probucol and bezafibrate-fed groups (groups 2, 3 and 5, respectively), whereas a significant reduction in this activity was observed in the Ch + bezafibrate-fed group (group 4). An analysis of covariance showed that the CETP activity responded more sensitively to drug treatment than did the serum HDL-C level. CETP mRNA in liver tissue was assessed by Northern blotting at 8 weeks, but no changes were observed among the 5 groups. Probucol decreased and bezafibrate increased serum HDL-C levels, through CETP activity without affecting liver CETP mRNA levels, and the decrease in HDL-C levels produced by probucol could not be reversed by bezafibrate.

Animals↗

Associations among serum lipoprotein(a) levels, apolipoprotein(a) phenotypes, and myocardial infarction in patients with extremely low and high levels of serum lipoprotein(a).

A high serum lipoprotein(a) [Lp(a)] level, which is genetically determined by apolipoprotein(a) [apo(a)] size polymorphism, is an independent risk factor for coronary atherosclerosis. However, the associations among Lp(a) levels, apo(a) phenotypes, and myocardial infarction (MI) have not been studied. Patients with MI (cases, n = 101, M/F: 86/15, age: 62+/-10y) and control subjects (n = 92, M/F: 53/39, age: 58+/-14y) were classified into quintile groups (Groups I to V) according to Lp(a) levels. Apo(a) isoform phenotyping was performed by a sensitive, high-resolution technique using sodium dodecyl sulfate-agarose/gradient polyacrylamide gel electrophoresis (3-6%), which identified 26 different apo(a) phenotypes, including a null type. Groups with higher Lp(a) levels (Groups II, III, and V) had higher percentages of MI patients than that with the lowest Lp(a) levels (Group I) (54%, 56%, or 75% vs. 32%, p<0.05). Groups with different Lp(a) levels had different frequency distributions of apo(a) isoprotein phenotypes: Groups II, III, IV, and V, which had increasing Lp(a) levels, had increasingly higher percentages of smaller isoforms (A1-A4, A5-A9) and decreasingly lower percentages of large isoforms (A10-A20, A21-A25) compared to Group I. An apparent inverse relationship existed between Lp(a) and the apo(a) phenotype. Subjects with the highest Lp(a) levels (Group V) had significantly (p<0.05) higher serum levels of total cholesterol, apo B, and Lp(a). Patients with MI and the controls had different distributions of apo(a) phenotypes: i.e., more small isoforms and more large size isoforms, respectively (A1-A4/A5-A9/A10-A20/A21-A25: 35.7%/27.7%/20.8%/15.8% and 22.8%/23.9%/29.4%/23.9%, respectively). Lp(a) (parameter estimate +/- standard error: 0.70+/-0.20, Wald chi2 = 12.4, p = 0.0004), apo(a) phenotype (-0.43+/-0.15, Wald chi2 = 8.17, p = 0.004), High-density lipoprotein-cholesterol, apo A-I, and apo B were significantly associated with MI after adjusting for age, gender, and conventional risk factors, as assessed by a univariate logistic regression analysis. The association between Lp(a) and MI was independent of the apo(a) phenotype, but the association between the apo(a) phenotype and MI was not independent of Lp(a), as assessed by a multivariate logistic regression analysis. This association was not influenced by other MI- or Lp(a)-related lipid variables. These results suggest that apo(a) phenotype contributes to, but does not completely explain, the increased Lp(a) levels in MI. A stepwise logistic regression analysis with and without Lp(a) in the model identified Lp(a) and the apo(a) phenotype as significant predictors for MI, respectively.

Apolipoproteins A↗

Insulin resistance and angiographical characteristics of coronary atherosclerosis.

Insulin resistance (IR) is frequently observed in patients with coronary heart disease (CHD). The relationship between IR and the angiographical characteristics of coronary atherosclerosis were investigated in 66 patients with coronary artery lesions. Insulin resistance was assessed by a 75-g oral glucose tolerance test and homeostasis model assessment (HOMA). The angiographical characteristics of coronary atherosclerosis (i.e., the severity of CHD) were defined by both Gensini's score (GS) (a higher degree of coronary artery stenosis or a proximal lesion was assigned a higher score than a distal lesion) and the number of significantly stenosed vessels. When GS was examined as a categorical variable classified by tertile values (Group A, n = 22: 1< or =GS< or =14; Group B, n = 22: 15< or =GS< or =32; and Group C, n = 22: 33< or =GS), patients with a high GS (Group C) had significantly (p<0.05) higher values of fasting plasma insulin, insulin response, and HOMA IR than patients with a low GS (Group A) (12.6+/-1.2 microU/ml vs. 6.9+/-1.2 microU/ml, 122.2+/-11.9 microU ml(-1) h(-1) vs. 72.9+/-12.9 microU ml(-1) h(-1), and 2.9+/-0.3 vs. 1.5+/-0.3, respectively). The values in Group B patients (9.4+/-1.2,microU/mI, 108.5+/-12.5 microU ml(-1) h(-1), and 2.1+/-0.3, respectively) were intermediate between those in Groups A and C. The area of insulin/area of glucose ratio was significantly (p<0.05) higher in Groups B and C than in Group A (0.54+/-0.06 microU/mg, 0.54+/-0.06 microU/mg, and 0.32+/-0.06 microU/mg, respectively). However, no significant differences were observed in variables of glucose tolerance, serum lipid, lipoproteins, fibrinogen, uric acid, and blood pressure among the 3 groups. Significant (p<0.05) positive associations were found between GS, the number of diseased coronary arteries, and fasting immunoreactive insulin, insulin response, the area of insulin/area of glucose ratio and HOMA IR by logistic regression analysis. After adjusting for the number of diseased coronary arteries, the association between GS and IR was not significant, suggesting that IR contributed to the severity of coronary atherosclerosis but not to the distribution of lesions. In conclusion, IR was associated with the severity of CHD as measured by both Gensini's score and the number of diseased coronary arteries, and increased the risk of CHD regardless of the location of the lesions.

Blood Pressure↗

Mechanism of action of probucol on cholesteryl ester transfer protein (CETP) mRNA in a Chinese hamster ovary cell line that had been stably transfected with a human CETP gene.

Probucol, a widely used lipid-lowering agent, is associated with a significant reduction of plasma high density lipoprotein (HDL)-cholesterol levels. To examine the mechanism of probucol HDL-lowering and probucol's effects on cholesteryl ester transfer protein (CETP) and cholesterol metabolism in cells, we used a Chinese hamster ovary (CHO) cell line that had been stably transfected with a human CETP gene (hCETP-CHO). After this cell line was incubated with various concentrations of probucol (5, 10 and 50 microM) for 24 h, mean intracellular probucol concentrations reached 0.47, 0.67, and 1.52 microg/mg cell protein, respectively. Northern blot analysis showed that cellular CETP mRNA was increased by probucol in a dose-dependent manner (137%, 162%, and 221% of the control, respectively). The specific CET activity in the culture medium, measured as the percentage of [3H]cholesterol oleate transferred from discoidal bilayer particles (which mimic HDL) to LDL, also increased in a dose-dependent manner. Intracellular total cholesterol levels were decreased to 87.5%, 74.9%, and 52.5% of the control, respectively. Probucol had no effects on HMG-CoA reductase activity or cholesterol synthesis from [14C]acetate in hCETP-CHO. However, 14C-incorporated cholesterol secretion into the culture medium from hCETP-CHO was increased to 181%, 256% and 354% of the control by 5, 10 and 50 microM probucol, respectively. We concluded that (1) treatment with probucol increased the CETP mRNA level and specific CET activity in the hCETP-CHO cell line, and (2) probucol promoted cholesterol efflux from hCETP-CHO, which resulted in a decrease in intracellular cholesterol levels.

Animals↗

Invasive infection due to Trichosporon cutaneum in patients with hematologic malignancies.

BACKGROUND: Invasive infection due to Trichosporon is a rare but often fatal disease in immunocompromised patients. In this study, data on patients with hematologic malignancies who had an invasive infection due to Trichosporon diagnosed at the Tokyo Metropolitan Komagome Hospital in Tokyo, Japan, were analyzed. METHODS: Positive blood cultures obtained between 1986 and 1996 were reviewed. Medical records of all patients who were positive for Trichosporon in their blood culture or autopsy material were then examined. RESULTS: A total of nine patients with hematologic malignancies were reported positive for Trichosporon cutaneum in their blood culture or at the time of autopsy. The average age was 52 years, and all patients except 2 had acute leukemia. All 8 patients with positive blood cultures were neutropenic, and the average duration of neutropenia before the positive blood cultures were obtained was 43 (range, 0-101) days. For prophylaxis of fungal infection, eight patients were kept in a laminar air flow room and also received nebulization with amphotericin B. Five patients received oral amphotericin B. All 9 patients died of the infection an average of 9 days after their blood cultures turned positive. Minimal inhibitory concentrations were evaluated in six available strains obtained from the patients. They were all resistant to amphotericin B and azoles. CONCLUSIONS: More effective antifungal agents are required for the treatment of infections with this organism.

Adult↗

Predominance of large low density lipoprotein particles and lower fractional esterification rate of cholesterol in high density lipoprotein in children with insulin-dependent diabetes mellitus.

UNLABELLED: Coronary artery disease (CAD) is a major cause of death in patients with insulin-dependent diabetes mellitus. Qualitative changes in low density lipoprotein (LDL) and high density lipoprotein (HDL) are thought to be important for evaluating the risk for CAD. In the present study, we evaluated LDL particle size (LDL-size) by 2%-16% gradient gel electrophoresis, along with conventional lipids and apolipoproteins, in 23 children with IDDM (10 males and 13 females) and 27 nondiabetic controls (12 males and 15 females). The fractional and molar esterification rates (FER and MER) of cholesterol in plasma and HDL were also determined. Plasma levels of triglyceride were significantly lower in diabetic children than in controls. Plasma apoA-I and apoA-II levels in female diabetic children were significantly higher and lower than those in controls respectively. Plasma levels of HDL-cholesterol and the ratio of apoA-I to apoA-II were significantly higher in diabetic children than in controls. Other lipid and apolipoprotein parameters in diabetic children were similar to those in controls. LDL-size in diabetic children was significantly greater than that in controls. FERHDL, which reflects the particle size distribution of HDL, was significantly lower in diabetic children than in controls, which suggests that diabetic children had larger HDL particles. CONCLUSION: The qualitative and quantitative changes in LDL and HDL in diabetic children are similar to those associated with a reduced risk for CAD. Intensive insulin therapy in children may help preventing coronary heart disease in adulthood.

Adolescent↗

Comparison of children and coronary heart disease patients with low high density lipoprotein cholesterol levels.

Low plasma high density lipoprotein cholesterol (HDL-C) is a major risk factor for coronary heart disease (CHD) in adults. In the field of pediatrics, subjects with low plasma HDL-C are often found among obese or dyslipidemic children. However, it is not clear whether low HDL-C in children should be considered a risk factor for CHD. The purpose of this study was to evaluate the risk for CHD in children with low HDL-C by comparing their lipid and apolipoprotein levels and physicochemical characteristics of their HDL with those of age-matched children with normal HDL-C and CHD patients with low HDL-C. Plasma lipids and apolipoproteins were measured in 206 dyslipidemic children (dyslipidemic), 65 obese children (obese), 93 CHD patients with low HDL-C (< 40 mg/dl) and 128 children with normal HDL-C (controls). To evaluate the physicochemical characteristics of HDL, molar and fractional esterification rates of cholesterol in plasma (MER(plasma) and FER(plasma)) and HDL (MER(HDL) and FER(HDL)) were determined in 128 children with normal HDL-C, 71 dyslipidemic, 33 obese and 93 CHD who allowed second blood samples to be taken. Compared to controls, children with low HDL-C showed atherogenic profiles of lipid and apolipoprotein levels and physicochemical characteristics of HDL (lower apo A-I, lower ratio of apo A-I to apo B and higher FER(HDL)). Therefore, the differences in lipid and apolipoprotein profiles between children with low HDL-C and CHD patients with low HDL-C were examined next. The two groups of subjects based on the HDL-C level (Group I: < 30 mg/dl, Group II 30 < or = HDL-C < 40 mg/dl) were studied. Compared to CHD, Group I children showed less atherogenic apolipoprotein profiles (lower apo B and higher ratio of apo A-I to apo B). Similar findings were also found in Group II children, but the differences were less prominent than those in Group I children. FER(HDL) in children with low HDL-C were similar to those in CHD. These findings suggest that the physicochemical characteristics of HDL in children with low HDL-C are similar to those in CHD, but the abnormalities of apo B-containing lipoproteins are milder than those in CHD patients. Thus, if further changes in the nature of apo B-containing lipoproteins could be prevented, children with low HDL-C might not become high risk for CHD in later life.

Adolescent↗