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Biomedical subjects

Yoshiki Nishizawa

Publications and source records attributed to Yoshiki Nishizawa.

At least 19 recordsLinked to original sources

Annual change in bone mineral density in predialysis patients with chronic renal failure: significance of a decrease in serum 1,25-dihydroxy-vitamin D.

Bone disease occurs in the predialysis phase of chronic renal failure (CRF). The aim of this study was to examine how a decrease in renal function affects annual bone mineral density (BMD) changes in predialysis CRF patients and to examine the factors that affect BMD. The BMD of the distal radius in 53 predialysis CRF patients (age, 61.3 +/- 10.8 years; serum creatinine 2.7 +/- 1.2 mg/dl) was measured by peripheral quantitative computed tomography (pQCT) twice with a 1-year interval. The total BMD of the radius significantly decreased over a year (P < 0.001), and both trabecular and cortical BMD showed a significant decrease. Significant positive correlations with BMD changes were found for estimated creatinine clearance (r = 0.375, P < 0.01) and baseline serum 1,25(OH)(2)D (r = 0.434, P < 0.005), indicating that BMD decreased to a greater extent with larger reductions in creatinine clearance and serum 1,25(OH)(2)D. Of several bone metabolic markers examined, baseline serum osteocalcin was significantly positively correlated with annual BMD changes (r = -0.276, P < 0.05). Multiple regression analysis showed that baseline serum 1,25(OH)(2)D (beta = 0.434) was a significant predictor of decreases in total and trabecular BMD (R (2) = 0.188, P < 0.01; and R (2) = 0.207, P < 0.01), independent of other confounding factors. These results indicate that BMD decreases as renal function deteriorates in predialysis CRF patients, and that osteocalcin is a clinically useful marker associated with the decrease in BMD. The serum 1,25(OH)(2)D level is the principal factor affecting BMD of the radius, suggesting that supplementation with an active form of vitamin D is of importance for predialysis CRF patients.

Aged↗

Association of serum fetuin-A with carotid arterial stiffness.

OBJECTIVE: Fetuin-A is a circulating glycoprotein which is well characterized as an inhibitor of ectopic calcification. Vascular calcification commonly found in chronic kidney disease (CKD) patients is a predictor of cardiovascular death. Recently, several groups have demonstrated that low fetuin-A levels are associated with mortality in uraemic patients, possibly through regulation of vascular calcification. However, the physiological significance of fetuin-A in atherosclerosis remains unknown, except in specific conditions, such as vascular calcification in CKD patients. The objective of this study was to investigate the association between serum fetuin-A levels and arterial stiffness, a functional property of atherosclerosis, in healthy subjects. PATIENTS AND MEASUREMENTS: The study subjects comprised 141 healthy subjects. We measured serum fetuin-A levels and stiffness parameter beta for the common carotid artery, which was assessed by ultrasound using a phase-locked echo-tracking system. RESULTS: Simple regression analyses indicated that serum fetuin-A levels were significantly correlated with stiffness parameter beta (r = 0.200, P = 0.018). Multiple regression analyses showed that, besides age, fetuin-A (beta = 0.166, P = 0.033) independently contribute to the stiffness parameter beta (R(2) = 0.310, P < 0.0001). CONCLUSIONS: Serum fetuin-A level is associated with carotid arterial stiffness, independent of known atherogenic factors in healthy subjects.

Age Factors↗

Central pulse wave velocity is responsible for increased brachial-ankle pulse wave velocity in subclinical hypothyroidism.

OBJECTIVE: Subclinical hypothyroidism affects 5-15% of the general population, and is associated with increased morbidity from cardiovascular disease. We recently reported a significant increase in brachial-ankle pulse wave velocity (baPWV), a parameter of arterial stiffening and an independent predictor for the presence of cardiovascular disease, in subclinical hypothyroidism. The current study was performed to assess which arterial segment is responsible for enhanced baPWV in subclinical hypothyroidism. PATIENTS AND METHODS: Central PWV (PWV in heart-femoral segments), peripheral PWV (PWV in femoral-ankle segments), and baPWV were measured in subclinical hypothyroid patients and normal subjects. RESULTS: Central PWV, baPWV, and peripheral PWV were significantly higher in subclinical hypothyroid patients than in normal subjects. BaPWV was significantly and positively correlated with central and peripheral PWV in both groups. However, a significant and positive correlation between central and peripheral PWV in normal subjects was not found in subclinical hypothyroid patients. Moreover, stepwise regression analysis showed that the association of central PWV with baPWV was stronger than that of peripheral PWV, whereas in normal subjects central PWV was not associated with baPWV. CONCLUSIONS: Our results demonstrate that central and peripheral PWV are significantly higher in subclinical hypothyroid patients, and that the increase in baPWV depends more strongly on central PWV than on peripheral PWV in these patients. This suggests that increased elastic arterial stiffening of the aorta, rather than of peripheral muscular arteries, might be more responsible for increased general arterial stiffening in subclinical hypothyroid patients.

Ankle↗

Association between plasma angiopoietin-like protein 3 and arterial wall thickness in healthy subjects.

BACKGROUND: Angiopoietin-like protein 3 (ANGPTL3) is a liver-derived plasma protein that modulates plasma triglyceride clearance, angiogenesis and atherosclerosis in experimental models. So far, no study has examined its role in atherosclerosis in human subjects. We evaluated the possible association between plasma ANGPTL3 level and carotid artery intima-media thickness (CA-IMT) and femoral artery intima-media thickness (FA-IMT) in healthy human subjects. METHODS: The subjects were 381 healthy volunteers. Plasma ANGPTL3 was determined by a specific ELISA. CA-IMT and FA-IMT were measured by high-resolution B-mode ultrasonography. RESULTS: The plasma ANGPTL3 level was 764 +/- 291 ng/ml (mean +/- SD). CA-IMT showed a significant positive correlation with plasma ANGPTL3 and other classical risk factors such as age, blood pressure, and plasma glucose and lipid levels. The positive association between ANGPTL3 and CA-IMT remained significant after adjustment for age, sex, smoking, body mass index, systolic blood pressure, plasma glucose, insulin resistance index, triglyceride, and high-density and low-density lipoprotein cholesterol levels. ANGPTL3 also showed a positive association with FA-IMT independent of these factors. CONCLUSIONS: These results demonstrate for the first time that ANGPTL3 is closely associated with arterial wall thickness in human subjects.

Angiopoietin-Like Protein 3↗

Low circulating endogenous secretory receptor for AGEs predicts cardiovascular mortality in patients with end-stage renal disease.

OBJECTIVE: Receptor for advanced glycation end-products (RAGE) is involved in diabetic vascular complications. We have recently shown that plasma endogenously secretory RAGE (esRAGE), an alternatively spliced form of RAGE, is closely associated with metabolic syndrome and atherosclerosis. Here, we evaluated if plasma esRAGE is a predictor of cardiovascular mortality in a cohort of 206 (171 nondiabetic) patients with end-stage renal diseases (ESRD). METHODS AND RESULTS: The cohort was followed for a median of 111 months, and 74 deaths including 34 cardiovascular deaths were recorded. Plasma esRAGE was measured at baseline. Cumulative incidence of cardiovascular death by Kaplan-Meier estimation was significantly higher in subjects in the lowest tertile of plasma esRAGE than those in the middle or the highest tertile both in all and nondiabetic subjects alone. In all subjects, as compared with the lowest tertile of plasma esRAGE, the hazards ratios for the highest and middle tertile were 0.40 (95% CI, 0.18 to 0.89) and 0.26 (0.10 to 0.66), respectively. The higher risk for lower esRAGE was still significant even after adjusted either with body mass index, hypertension, dyslipidemia and vascular complications, but was confounded by age and diabetes. CONCLUSIONS: Low circulating esRAGE is a predictor for cardiovascular mortality in ESRD patients.

Aged↗

Neutrophil-activating activity and platelet-activating factor synthesis in cytokine-stimulated endothelial cells: reduced activity in growth-arrested cells.

The reactivity of endothelial cells (ECs) to proinflammatory cytokines is critically important for the pathogenesis of vascular diseases. Here, we studied functional alterations of human ECs during culture under a confluent condition; i.e., the alterations of neutrophil-activating activity, platelet-activating factor (PAF) synthesis, and granulocyte-macrophage colony-stimulating factor (GM-CSF) production in cytokine-stimulated ECs. Human umbilical vein-derived ECs exhibited the increased activity in neutrophil activation, PAF synthesis, and GM-CSF production when stimulated by proinflammatory cytokines such as interleukin-1 beta (IL-1 beta) and tumor necrosis factor-alpha (TNF-alpha). The activity of cytokine-stimulated ECs to stimulate superoxide release in human neutrophils and to produce PAF declined markedly in parallel as ECs became growth-arrested during culture under a confluent condition. By contrast, GM-CSF production induced by cytokine stimulation was modestly increased, and up-regulation of intercellular adhesion molecule-1 (ICAM-1) and activation of mitogen-activated protein kinases were not altered. The neutrophil-activating activity of cytokine-stimulated ECs was dependent on PAF synthesis and GM-CSF production from ECs. These findings indicate that the reduced neutrophil-activating activity in growth-arrested ECs may be, at least in part, ascribed to down-regulation of PAF synthesis.

Antibodies↗

Enhanced neutrophil motility by granulocyte colony-stimulating factor: the role of extracellular signal-regulated kinase and phosphatidylinositol 3-kinase.

The effect of granulocyte colony-stimulating factor (G-CSF) on human neutrophil motility was studied using videomicroscopy. Stimulation of neutrophils with G-CSF resulted in enhanced motility with morphological change and increased adherence. Enhanced neutrophil motility was detected within 3-5 min after G-CSF stimulation, reached a maximum at 10 min, and was sustained for approximately 35 min. The maximum migration rate was 84.4 +/- 2.9 microm/5 min. A study using the Boyden chamber method revealed that G-CSF-stimulated neutrophils exhibited random migration but not chemotaxis. Enhanced neutrophil motility and morphological change were inhibited by MEK [mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase (ERK) kinase] inhibitors (PD98059 and U0126), and a phosphatidylinositol 3-kinase (PI3K) inhibitor (wortmannin), but not by a p38 MAPK inhibitor (SB203580). These findings are consistent with the fact that G-CSF selectively activates MEK/ERK and PI3K, but not p38, in neutrophils. MEK/ERK activation was associated with G-CSF-induced redistribution of F-actin and phosphorylated myosin light chain. Enhanced neutrophil motility was observed even in the presence of neutralizing anti-CD18 antibody, which prevented cell adherence. These findings indicate that G-CSF induces human neutrophil migration via activation of MEK/ERK and PI3K.

Adult↗

Regional arterial stiffness in patients with type 2 diabetes and chronic kidney disease.

Increased arterial stiffness is an independent predictor of death from cardiovascular disease, and aortic stiffness is more predictive than stiffness of other arterial regions. Because little is known about the effect of chronic kidney disease (CKD) on regional arterial stiffness, pulse wave velocity (PWV) of four different arterial segments was measured in patients who had type 2 diabetes with and without various stages of CKD. A total of 434 patients had type 2 diabetes, and there were 192 healthy control subjects who were comparable in age and gender. GFR was estimated by the abbreviated Modification of Diet in Renal Disease equation. The patients with diabetes were classified into CKD stages by the definition of the Kidney Disease Outcomes Quality Initiative guidelines. PWV was measured in the heart-femoral, heart-carotid, heart-brachial, and femoral-ankle segments simultaneously using an automatic pulse wave analyzer. PWV of each arterial region was increased in patients who had diabetes without kidney damage and was increased further in a stepwise manner with the advanced stages of CKD. The increase in PWV was greater in the heart-femoral and heart-carotid regions than in the heart-brachial and femoral-ankle segments. However, after adjustment for age, BP, and other confounding factors using a multiple regression model, decreased GFR was independently associated with increased PWV of the heart-femoral region but not with PWV of other arterial segments. In type 2 diabetes, CKD was associated with increased stiffness of arteries, particularly of the aorta. The cross-sectional result may explain the increased risk for cardiovascular disease in CKD, although longitudinal studies are needed to confirm it.

Arteries↗

Annual fat mass change is a significant predictor of mortality in female hemodialysis patients.

BACKGROUND: Although obesity confers an increased risk of mortality in the general population, it has been reported to be associated with improved survival in dialysis patients. However, the influence of fat mass change over time on mortality in dialysis patients has not been determined. METHODS: This relationship was examined in 190 female maintenance hemodialysis patients. Fat mass was measured twice with a 12-month interval, using dual energy X-ray absorptiometry (DEXA). The patients were followed up for 5 years, and predictors for all-cause death were examined using Kaplan-Meier analysis and Cox proportional hazards analyses. RESULTS: During the 5-year follow-up period, 65 patients died. Annual fat mass changes in the expired group tended to be greater than in the surviving group (-1.0 +/- 2.5 vs. -0.3 +/- 2.6 kg; P = 0.0776), although initial body fat mass was not significantly different. Kaplan-Meier analysis revealed that patients with decreased fat mass (N = 110) had a significantly lower survival rate, compared with those with increased fat mass (N = 80; P = 0.021). Multivariate Cox proportional hazards analyses demonstrated that annual fat mass change was a significant predictor of all-cause mortality after adjustments for confounding factors, such as age, serum albumin, serum creatinine, and the presence of diabetes. An increase in annual fat mass of 1 kg reduced mortality by 14.5%. CONCLUSIONS: These results demonstrate that the decrease in annual fat mass is a significant predictor for mortality in female hemodialysis patients. Fat mass change is also a useful parameter for measurement of nutritional status in hemodialysis patients.

Absorptiometry, Photon↗

SREBP inhibits VEGF expression in human smooth muscle cells.

Sterol regulatory element-binding proteins (SREBPs) are transcription factors that regulate expression of genes encoding enzymes for lipid biosynthesis. SREBPs are activated by HMG-CoA reductase inhibitors (statins). Statins have been also reported to suppress vascular endothelial growth factor (VEGF) expression in vascular smooth muscle cells (VSMCs). Therefore, we hypothesized that SREBPs are involved in statin-mediated regulation of VEGF production in VSMCs. SREBP1 was robustly expressed, and was activated by atorvastatin in VSMCs, as demonstrated by increased levels of the mature nuclear form of SREBP1, and increased promoter activities of a reporter containing sterol regulatory elements by atorvastatin. Moreover, overexpression of SREBP1a dose-dependently suppressed VEGF promoter activity. Site-specific mutation or deletion of the proximal Sp1 sites reduced the inhibitory effects of SREBP1a on VEGF promoter activity. These data demonstrated that SREBP1, activated by atorvastatin, suppressed VEGF expression through the indirect interaction with the proximal tandem Sp1 sites in VSMCs.

Animals↗

Vascular calcification in chronic kidney disease.

Vascular calcification is often encountered in advanced atherosclerotic lesions and is a common consequence of aging. Calcification of the coronary arteries has been positively correlated with coronary atherosclerotic plaque burden, increased risk of myocardial infarction, and plaque instability. Chronic kidney disease (CKD) patients have two to five times more coronary artery calcification than healthy age-matched individuals. Vascular calcification is a strong prognostic marker of cardiovascular disease mortality in CKD patients. Vascular calcification has long been considered to be a passive, degenerative, and end-stage process of atherosclerosis and inflammation. However, recent evidence indicates that bone matrix proteins such as osteopontin, matrix Gla protein (MGP), and osteocalcin are expressed in calcified atherosclerotic lesions, and that calcium-regulating hormones such as vitamin D3 and parathyroid hormone-related protein regulate vascular calcification in in vitro vascular calcification models based on cultured aortic smooth muscle cells. These findings suggest that vascular calcification is an actively regulated process similar to osteogenesis, and that bone-associated proteins may be involved in the development of vascular calcification. The pathogenesis of vascular calcification in CKD is not well understood and is almost multifactorial. In CKD patients, several studies have found associations of both traditional risk factors, such as hypertension, hyperlipidemia, and diabetes, and uremic-specific risk factors with vascular calcification. Most patients with progressive CKD develop hyperphosphatemia. An elevated phosphate level is an important risk factor for the development of calcification and cardiovascular mortality in CKD patients. Thus, it is hypothesized that an important regulator of vascular calcification is the level of inorganic phosphate. In order to test this hypothesis, we characterized the response of human smooth muscle cell (HSMC) cultures to inorganic phosphate levels. Our findings indicate that inorganic phosphate directly regulates HSMC calcification through a sodium-dependent phosphate transporter mechanism. After treatment with elevated phosphate, there is a loss of smooth muscle lineage markers, such as alpha-actin and SM-22alpha, and a simultaneous gain of osteogenic markers such as cbfa-1 and osteocalcin. Elevated phosphate may directly stimulate HSMC to undergo phenotypic changes that predispose to calcification, and offer a novel explanation of the phenomenon of vascular calcification under hyperphosphatemic conditions. Furthermore, putative calcification inhibitory molecules have been identified using mouse mutational analyses, including MGP, beta-glucosidase, fetuin-A, and osteoprotegerin. Mutant mice deficient in these molecules present with enhanced cardiovascular calcification, demonstrating that specific molecules are normally important in suppressing vascular calcification. These findings suggest that the balance of inducers, such as phosphate, and inhibitors, such as MGP, fetuin-A, and others, are likely to control whether or not calcification occurs under pathological conditions.

Alkaline Phosphatase↗

Direct in vitro evidence of the suppressive effect of cinacalcet HCl on parathyroid hormone secretion in human parathyroid cells with pathologically reduced calcium-sensing receptor levels.

Clinical studies have been performed to determine the effect of cinacalcet HCl (cinacalcet), an allosteric modulator of the calcium-sensing receptor (CaR), on primary hyperparathyroidism (PHPT) and secondary hyperparathyroidism of uremia (SHPT). However, no in vitro studies on human parathyroid cells have been reported to date. In this study, the inhibitory effect of cinacalcet on PTH secretion was analyzed in primary cultured parathyroid cells obtained from patients. The investigation involved three PHPT and three SHPT patients subjected to therapeutic parathyroidectomy. Notably, all SHPT patients were resistant to intravenous vitamin D analogue therapy. Removed parathyroid tumors were used for immunohistochemistry and parathyroid cell primary culture. Immunohistochemical analyses revealed diminished expression of CaR and vitamin D receptor (VDR) in all parathyroid tumors. PTH secretion from cultured parathyroid cells of PHPT and SHPT patients was suppressed by extracellular Ca2+ and cinacalcet in a dose-dependent manner. Rates of suppression of PTH secretion in PHPT and SHPT by cinacalcet (1000 nmol/l) were 61% +/- 21% and 61% +/- 19%, respectively. Cinacalcet demonstrates significant potency in the suppression of PTH secretion in primary cultured human parathyroid cells in vitro, despite reduced levels of the target protein, CaR. Data from this in vitro analysis support the clinical application of cinacalcet in PHPT and SHPT therapy.

Cinacalcet↗

The association of plasma adiponectin level with carotid arterial stiffness.

Adiponectin plays important roles in protecting against both insulin resistance and the development of atherosclerosis. The aim of the present study was to investigate the clinical impact of plasma adiponectin on arterial stiffness, a functional property of atherosclerosis, in type 2 diabetic and nondiabetic subjects. We evaluated plasma adiponectin levels and stiffness index beta for the common carotid artery assessed by ultrasound using a phase-locked echo-tracking system for 98 type 2 diabetic subjects and 116 nondiabetic subjects as controls. Plasma adiponectin levels were significantly lower in the diabetic than in the nondiabetic group. The stiffness index beta was significantly higher in the diabetic than in the nondiabetic group. Plasma adiponectin level was significantly correlated with stiffness index beta in the group of all subjects (r=-0.189, P=.006) and the nondiabetic group (r=-0.187, P=.045), but not in the diabetic group (r=0.045, P=.665). On multiple regression analysis, plasma adiponectin level was found to be a significant independent contributor to stiffness index beta in the group of all subjects (beta=-0.232, P=.020) and the nondiabetic group (beta=-0.337, P=.016), but not in the diabetic group. In conclusion, adiponectin is significantly but weakly associated with carotid arterial stiffness independently of known atherogenic factors in the nondiabetic group and that of all subjects, although no significant association between these variables was found in the group of diabetic subjects.

Adiponectin↗

Effect of adiponectin on carotid arterial stiffness in type 2 diabetic patients treated with pioglitazone and metformin.

Adiponectin, an adipocyte-specific plasma protein, has been reported to exhibit protective effects against atherosclerosis as well as an insulin-sensitizing effect. This study was designed to investigate the effect of adiponectin on carotid arterial stiffness in type 2 diabetic patients treated with pioglitazone and metformin. Twenty type 2 diabetic patients were enrolled and divided into 2 groups, a pioglitazone-treated group (n = 10) and a metformin-treated group (n = 10). Before and after intervention, plasma adiponectin levels were measured by enzyme-linked immunosorbent assay and carotid arterial stiffness was evaluated by the stiffness parameter beta, measured by ultrasound equipped with a phase-locked echo-tracking system. In the pioglitazone group, plasma adiponectin level significantly increased and stiffness parameter beta significantly decreased, whereas in the metformin group neither of these parameters changed significantly. The changes in stiffness parameter beta were significantly and inversely correlated with change in plasma adiponectin level after treatment with pioglitazone or metformin in the group of all subjects (r = -0.472, P = .036). In conclusion, the present study is the first to demonstrate that increase in adiponectin level after treatment with the insulin sensitizers pioglitazone and metformin may improve arterial stiffness in patients with type 2 diabetes mellitus.

Adiponectin↗

Body composition and cardiovascular risk in hemodialysis patients.

Death rate is unacceptably elevated in end-stage renal disease patients treated with hemodialysis. Excessive body fat, or obesity, is the well-known risk factor for cardiovascular disease and other health problems in the general population. However, hemodialysis patients with a higher body mass index (BMI) have a lower risk of death, as shown by many studies. There are several explanations for the paradox of BMI in dialysis patients. First, although body mass is composed of fat mass and fat-free mass (lean mass), it is unknown which is more important, fat mass or lean mass, in predicting outcome of hemodialysis patients. Second, it is also possible that functions of adipose tissue are altered in renal failure so that accumulation of body fat leads to less atherogenicity and beneficial properties become predominant. Third, an increased fat mass may be protective against death after harmful events. In this article, we explore these possibilities using either the data of our own cohort of hemodialysis patients or the existing registry data of Japan. We conclude that in hemodialysis patients, fat mass rather than lean mass plays a protective role against mortality, that the fat mass-adipocytokine relationship is altered, and that a low BMI is associated with increased risk of fatality after cardiovascular events rather than the risk of occurrence of such events.

Adiponectin↗

Contact pressure distribution features in Down syndrome infants in supine and prone positions, analyzed by photoelastic methods.

BACKGROUND: Local force distribution supporting the bodyweight of infants with Down syndrome (DS) appears to be different from that of healthy controls. The purpose of the present study was to establish methods to assess this force distribution and to allow therapeutic evaluation of neurological development in DS infants prior to walking. METHODS: Contact pressure distribution patterns in supine and prone positions were measured by photoelastic methods and were compared between DS infants and healthy controls. The DS group included eight subjects, seven with regular trisomy 21, and one with a Robertson translocation. The controls consisted of 14 neonates, four 4-month-old infants and eight 7-month-old infants. RESULTS: In both groups, head loading ratio decreased as age advanced but the decrement was less in the test group than in the control group. When the bodyweight loading ratios were measured in two different lying positions, that is, prone and supine, the ratios for prone generally tended to be smaller than those for supine in the controls. This kind of difference between prone and supine was not seen in the DS group. The bodyweight is somewhat sustained with limbs and the limbs loading ratios in the DS group were always significantly lower than in the controls. CONCLUSION: Coordinated development of weight-supporting limbs seems to be poor in the DS group.

Age Factors↗