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Biomedical subjects

Y Doi

Publications and source records attributed to Y Doi.

602 records · Page 34Linked to original sources

Reduction of endothelial microfilament bundles in the low-shear region of the canine aorta. Association with intimal plaque formation in hypercholesterolemia.

To interrelate in vivo wall shear stress, endothelial microfilament bundle formation, and atherosclerosis localization, we used a mild abdominal aortic stenosis in 11 beagles to produce a range of wall shear stresses above and below the constriction. Six of the beagles were fed standard animal chow supplemented with 5% cholesterol and 10% coconut oil. Wall shear stresses, endothelial microfilament bundles, and intimal plaque localization were assessed along the stenosed aorta. Shear stress was determined in vivo from the near-wall velocity profiles with a 20-MHz, 80-channel, multigate Doppler velocimeter. Content of the microfilament bundles was quantified by planimetry of transmission electron photomicrographs. After 6 weeks, mean shear stress was higher immediately upstream from the throat of the stenosis than at the proximal site (46.1 +/- 7.3 dynes/cm2 versus 24.0 +/- 6.2 dynes/mc2, p less than 0.001) and was significantly lower immediately distal to the stenosis than at the proximal site (9.4 +/- 0.3 dynes/cm2, p less than 0.01). The microfilament bundle content increased immediately upstream from the throat of the stenosis and decreased immediately distal to the stenosis compared with the proximal site in both normocholesterolemic and hypercholesterolemic fat-fed beagles. Intimal plaques formed exclusively immediately distal to the stenosis in the hypercholesterolemic beagles. These findings suggest that a low shear-stress environment attenuates endothelial microfilament bundle formation, thus leading to a predilection for the initiation of atherosclerosis in atherogenic conditions such as hypercholesterolemia.

Actin Cytoskeleton↗

Dynamic responses of active and inactive renin in patients with essential and renovascular hypertension.

We studied the dynamic responses of inactive renin and the form of renin released by the kidney in the hypertensive patients. Significant increase of active renin concentration (p less than 0.01) and decrease of the percentage of inactive renin concentration (p less than 0.01) after sodium depletion was observed in 15 essential hypertensive subjects with normal plasma renin activity. In eight of 15 patients, significant increase of inactive renin concentration (p less than 0.01) was observed after sodium depletion. In the remaining seven patients, no significant change of inactive renin concentration was demonstrated. A small increase of active and inactive renin concentration was observed following sodium depletion in six essential hypertensive subjects with low plasma renin activity (PRA). In the unilateral renal hypertension after upright tilting, active renin concentration in the renal vein of the affected kidney was significantly (p less than 0.02) higher than that in the renal vein of the non-affected kidney and the inferior vena cava. Inactive renin concentration in the renal vein of the affected kidney was significantly (p less than 0.02) lower than that in the renal vein of the nonaffected kidney and the inferior vena cava. In four of five cases, the inactive renin concentration in the femoral artery was less than that in the inferior vena cava. Therefore, we might conclude that only active renin was released from the affected kidney, and active renin became inactive by unknown mechanisms; the ischemic kidney might also activate inactive renin.

Adolescent↗

Effect of changes in sodium or potassium balance, and nephrectomy, on adrenal renin and aldosterone concentrations.

An active form of renin was confirmed in the adrenal gland of rats. It had a molecular weight of 40,000, generated angiotensin I (AI) from natural renin substrate at pH 7.4, and was found at concentrations 30 to 60 times higher than plasma renin in rats on a normal diet. Changes in sodium diet induced changes in adrenal capsular renin concentration (high Na 2.21 +/- 0.34, normal Na 4.34 +/- 0.53, low Na 13.19 +/- 1.67 ng AI/mg protein/hr). A high potassium diet also increased adrenal capsular renin from 5.27 +/- 0.53 to 39.78 +/- 5.68 ng AI/mg protein/hr, while plasma renin concentration decreased from 7.28 +/- 0.63 in the normal diet to 5.05 +/- 0.60 on the high potassium diet. Neither diet altered the concentration of renin in the fasciculata-medullary portion of the adrenal gland. Nephrectomy markedly increased the renin concentration in the adrenal capsules without any effect on the decapsular cells (20 hours after nephrectomy, 71.5 +/- 10.6 ng AI/mg protein/hr). Sodium loading or dexamethasone treatment prior to nephrectomy blunted the rise in adrenal renin (nephrectomy + dexamethasone = 27.64 +/- 4.33 ng AI/mg protein/hr; nephrectomy + NaCl = 38.70 +/- 5.82 ng AI/mg protein/hr). In all experiments, there was a positive correlation between adrenal renin and adrenal aldosterone concentrations, but the experiments did not rule out the possibility that this positive correlation was due to two independent variables changing in the same direction and not causally related. In conclusion, adrenal renin may be a local hormone, involved in the regulation of aldosterone production.

Adrenal Glands↗

Evidence for an extrarenal source of inactive renin in rats.

We studied the source of inactive renin in plasma by investigating the changes of active and inactive renin after bilateral nephrectomy in the rat. Active renin rapidly decreased after bilateral nephrectomy, with a half-life of approximately 15 minutes. Inactive renin, on the other hand, was 20.96 +/- 1.63 ng/ml/hr before nephrectomy and gradually increased to reach a peak at 20 hours after nephrectomy (193 +/- 62 ng/ml/hr). The molecular weight of active renin was approximately 40,000 and that of inactive renin was approximately 60,000 on a Sephacryl S-200 column. Inactive renin was separated from active renin by a Cibacron blue column, and the 0 time inactive renin eluted in the same fractions as the inactive renin from 20 hours after nephrectomy. The pH optimum of inactive renin in rat renin substrate was between 5.5 and 7.5, which differs from the optimal value of pepsin or cathepsin D. The increase of inactive renin in nephrectomized rats was not prevented by removal of the salivary glands, uterus, spleen, pancreas, stomach, intestines, adrenal glands, or pituitary. In summary, inactive renin is present in the anephric rat and does not appear to be converted to active renin in the peripheral blood. The source and control of this extrarenal inactive renin are still unclear, but this renin is secreted in the rat within hours after nephrectomy.

Angiotensin I↗

Trends in antimicrobial-drug resistance in Japan.

Multidrug resistance in gram-positive bacteria has become common worldwide. In Japan until recently, gram-negative bacteria such as Pseudomonas aeruginosa, Klebsiella pneumoniae, and Serratia marcescens were controlled by carbapenems, fluoroquinolones, and aminoglycosides. However, several of these microorganisms have recently developed resistance against many antimicrobial drugs.

Drug Resistance, Microbial↗

Effect of HSP70 induced by warm ischemia to the liver on liver function after partial hepatectomy.

BACKGROUND/AIMS: The purpose of this study was to determine if induction of HSP70 (heat shock protein 70), a stress protein which plays a cytoprotective role in response to various stimuli, protects hepatocytes from damage caused by partial hepatectomy and, if so, to elucidate the mechanism of such protection. METHODOLOGY: One hundred and eight male F344 rats weighing 190-220 g were randomly assigned to two groups with or without the presence of preconditioning. Fifteen-minute warm ischemia was applied to the liver of rats to induce HSP70, and 70% hepatectomy was performed 48 hours after the induction of HSP70 (ischemia group; n = 72). The rats in the nonischemia group did not undergo 15-min warm ischemia prior to 70% hepatectomy (nonischemia group; n = 36). Six rats, selected randomly from each group, were sacrificed at each measurement point to obtain blood and liver tissue samples. The levels of HSP70 in the liver, serum nitric oxide, levels of catalase and superoxide dismutase activity in the liver as antioxidative enzymes, and levels of Bcl-xL and Bax proteins and caspase-3-like activity in the liver as indices of apoptosis, were measured. RESULTS: The mean +/- SD level of HSP70 in the ischemia group (100 +/- 42 arbitrary unit (au)) was significantly higher than that of the nonischemia group (2 +/- 0.7 au) immediately before hepatectomy (P < 0.05). The ischemic preconditioning attenuated the liver damage caused by the subsequent partial hepatectomy. The levels of superoxide dismutase and catalase activity, serum nitric oxide level, and Bax protein level of the ischemia and nonischemia groups showed no significant differences after the partial hepatectomy. In contrast, the mean +/- SD level of Bcl-xL in the liver of the ischemia group (261 +/- 52 au) was significantly higher than that in the nonischemia group (114 +/- 33 au) 12 hours after the hepatectomy (P < 0.01). Furthermore, the mean +/- SD level of caspase-3-like activity in the liver of the ischemia group (18.1 +/- 4.6 au) was significantly lower than that of the nonischemia group (26.0 +/- 4.8 au) at 12 hours after the hepatectomy (P < 0.05). CONCLUSIONS: HSP70 induced by ischemic preconditioning prior to the partial hepatectomy was considered to protect the liver itself. In addition, the induced HSP70 may affect the Bcl-xL level after partial hepatectomy. Therefore, Bcl-xL seems to be involved in the reduction of liver damage after partial hepatectomy along with HSP.

Alanine Transaminase↗

Serum levels of circulating intercellular adhesion molecule 1 in hepatocellular carcinoma.

BACKGROUND/AIMS: This is a comparative study of the relationship between. MATERIAL AND METHODS: Serum levels of circulating intercellular adhesion molecule-1 (cICAM-1) were measured by ELISA assay in four patients with chronic hepatitis (CH), 16 with liver cirrhosis (LC), 38 with hepatocellular carcinoma (HCC), and in nine healthy controls. RESULTS: No significant difference in cICAM-1 levels was observed between LC and HCC. The cICAM-1 level in HCC did not correlate with tumor markers but correlated well with tumor size. cICAM-1 level in HCC Stage III + IV was significantly higher than that of Stage I, and was higher in HCC with liver metastasis as opposed to HCC without metastasis. Furthermore, the cICAM-1 level of HCC decreased significantly after hepatectomy. CONCLUSION: These findings showed a close relationship between cICAM-1 and the progress of intrahepatic metastasis of HCC, indicating a possibility for using cICAM-1 as a prognostic marker.

Biomarkers, Tumor↗