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Biomedical subjects

N Funahashi

Publications and source records attributed to N Funahashi.

13 recordsLinked to original sources

Oral delivery of synthetic eel calcitonin, elcatonin, in rats.

This study was designed to develop an oral dosage form of elcatonin (EC), a hypocalcemic peptide. The EC absorption was estimated by the reduction in plasma calcium concentrations. When EC was orally coadministered with nitroso-N-acetyl-D,L-penicillamine (SNAP, 4.0 mg) and 0.02% Carbopol solution or with taurocholate (20 mM) and 0.02% Carbopol solution, the lowering effect was increased compared with that after EC alone, but the F values (0.32 and 0.30%) were extremely small. The oral administration of the mucoadhesive emulsion, which was prepared by coating the W/O/W emulsion with 0.1% Carbopol, enhanced the calcium lowering effect, with the F value of 0.43%. The strong mucoadhesion of the mucoadhesive emulsion to the gastrointestinal mucosa was observed. A capsule containing EC (500 microg), taurocholate (6 mg) and lyophilized Carbopol (3.5 mg) administered orally gave a sustained but comparatively small calcium lowering effect. In the in vitro enzymatic hydrolysis experiment, EC was more rapidly hydrolyzed in the intestinal fluid than in the mucosal extract. The combination of 20 mM taurocholate with 0.02% Carbopol showed the greatest inhibitory effect in both fluid and extract. These data indicated that EC was effectively absorbed through the intestinal wall, but the peptide was dominantly degraded by proteolytic enzymes in the GI tract. These results will offer a potential approach to the oral delivery of EC.

Administration, Oral↗

Protective Effects of Iganidipine on Morphological and Functional Changes of Arteries in Hypertensive Dahl Rats.

BACKGROUND: This study was performed to examine the protective effects of iganidipine, a new water-soluble calcium antagonist, on the morphological and functional changes of arteries in Dahl salt-sensitive (Dahl-S) rats. METHODS AND RESULTS: Vehicle and iganidipine were administered orally to Dahl-S rats fed a high-salt diet (HSD) for 8 weeks. Aorta, superior mesenteric arteries (SMA), and peripheral mesenteric arteries (PMA) were examined light-microscopically or electon-microscopically. Relaxant responses of isolated aorta and SMA were recorded isometrically. In rats fed HSD, blood pressure was markedly increased. Light microscopy showed intimal and medial hypertrophy, periarteritis, and narrowed arterial lumen in the PMA. Transmission and scanning electron microscopy or light microscopy showed medical thickness in the aorta and SMA and hypertrophy of endothelial cells and dilatation of the subendothelial space only in the aorta. In the SMA, both endothelium-dependent relaxation (EDR) and endothelium-independent relaxations (EIR) were reduced to a similar extent. In the aorta, the EDR was more markedly attenuated than the EIR. Iganidipine at 3 mg/kg/day showed a 24-h sustained hypotensive effect and completely prevented the morphological and functional changes in both arteries. Iganidipine at 1 mg/kg/day, which lowered blood pressure only for several hours, decreased the injuries in PMA and aortic endothelium and moderately restored the EDR in the aorta. Iganidipine at 0.3 mg/kg/day had no effects. CONCLUSIONS: In Dahl-S rats fed an HSD, iganidipine completely prevented all the changes at a sustained-hypotensive dose and prevented the injuries of PMA and aortic endothelium and the reduction of EDR in the aorta at a nonsustained hypotensive dose. Nonhemodynamic effects of iganidipine may be partly involved in its protective effects against arterial injuries.

Journal Article↗

Immunosuppressant HR-325 attenuates progression of malignant arteritis in the kidney of Dahl salt-sensitive rats.

We investigated the effects of the immunosuppressant HR-325 on arterial lesions in Dahl rats with salt-induced hypertension. Forty-eight 6-wk-old Dahl salt-sensitive (DS) rats were divided into 1) a low-salt (0.3% NaCl) group, 2) a high-salt (4% NaCl) group, 3) a high-salt and low-dose (1 mg/kg) HR-325 group, and 4) a high-salt and high-dose (30 mg/kg) HR-325 group. The rats were treated for 8 wk. Various variables of renal function and morphological alterations in the kidney were assessed. Blood pressure was measured by the tail-cuff method. HR-325 significantly decreased systolic blood pressure in a dose-dependent manner throughout the study. HR-325 tended to decrease plasma creatinine level and increase creatinine clearance rate. Morphological studies revealed that HR-325 treatment strikingly resolved infiltration of immune-related cells in perivascular and intraluminal lesions, thereby decreasing the total arterial injury score by 32%. High-dose HR-325 also attenuated glomerulosclerosis and tubular injury by 35% and 34%, respectively, as compared with untreated high-salt Dahl S rats. Reduced levels of immune-related cells resulted in a decrease in urinary nitrite excretion. These data indicate that long-term treatment with the immunosuppressant HR-325 decreases systolic blood pressure in Dahl salt-sensitive rats, and that this decrease is associated particularly with resolution of infiltration of immune-related cells in arterial lesions. Hyperimmune state is responsible in part for the susceptibility of Dahl S rats to hypertensive organ damage.

Aniline Compounds↗

Lipid metabolism and renal protection by chronic cicletanine treatment in Dahl salt-sensitive rats with salt-induced hypertension.

We investigated the role of lipid metabolism in renal protection by chronic cicletanine treatment in Dahl salt-sensitive (Dahl S) rats with salt-induced hypertension. Forty-four 6-week old Dahl S rats were divided into four groups: (1) low-salt (0.3% NaCl) control group: (2) high-salt (4% NaCl) control group; (3) low-dose (10 mg/kg/day) cicletanine (CICL)-treated group given a high-salt diet; and (4) high-dose (30 mg/kg/day) cicletanine-treated group given a high-salt diet. The rats were treated for 6 weeks; blood pressure was measured by the tail-cuff method. Cicletanine significantly reduced the systolic blood pressure in a dose-dependent manner (223 mmHg in the high-salt controls vs 195 mmHg in the high-dose, high-salt group, p < 0.01). Cicletanine treatment did not affect plasma concentration of total cholesterol or triglyceride or free fatty acid; in contrast, it significantly decreased low-density lipoprotein (LDL) cholesterol and increased high-density lipoprotein (HDL) cholesterol. Morphological examination demonstrated that glomerulosclerosis in the kidney was significantly improved by 15% with high-dose cicletanine (p < 0.01). Multivariate analysis revealed that glomerular sclerosis was determined independently by LDL cholesterol levels and arterial injury score, but not by total cholesterol or HDL cholesterol levels or blood pressures. LDL cholesterol was also an independent predictor of urinary excretion of protein. Thus, it is suggested that cicletanine treatment lowers the levels of LDL cholesterol in Dahl salt-sensitive rats, and that besides blood pressure reduction, this decrease in LDL cholesterol level contributes, in part, to regression of glomerular injury in salt-induced hypertension.

Animals↗

Restoration of endothelial cell function by chronic cicletanine treatment in Dahl salt-sensitive rats with salt-induced hypertension.

The effects of chronic cicletanine (CICL) treatment on endothelial cell function were investigated in Dahl salt-sensitive (Dahl S) rats. Forty-four six-week-old Dahl S rats were divided into four groups: i) 10 Dahl S rats fed a low-salt (0.3% NaCl) diet and given vehicle, ii) 12 Dahl S rats fed a high-salt (4% NaCl) diet and given vehicle, iii) 11 low-dose (10 mg/kg body weight/d) CICL-treated Dahl S rats fed a high-salt diet, and iv) 11 high-dose (30 mg/kg body weight/d) CICL-treated Dahl S rats fed a high-salt diet. The rats were maintained on the respective salt regimen for 12 wk and treated with cicletanine for the last 6 wk, after which various parameters of endothelial cell function were determined. Systolic blood pressure, measured by the tail-cuff method, was reduced significantly by high-dose cicletanine (223 vs. 195 mmHg, p < 0.01). Scanning electron microscopy revealed that high-dose CICL attenuated endothelial injury in the aorta of Dahl S rats. Arterial lesions in the heart and glomerulosclerosis in the kidney were significantly reduced by treatment with high-dose CICL. Moreover, prostacyclin (PGI2) and prostaglandin E2 (PGE2) generation in the aortic wall was significantly increased by 28% (p < 0.005) and by 149% (p < 0.001), respectively, by high-dose CICL. Nitric oxide (NO) generation in the aortic walls was significantly increased by high-dose CICL (0.38 vs. 15.4 pmol/cm2/30 min, p < 0.001). This effect was accompanied by a 47% increase in cGMP synthesis in the vascular walls. In contrast, the synthesis of PGI2, PGE2, and NO in the kidney slices did not differ significantly among the four experimental groups. In addition, the generation of vasodilatory substances inversely correlated with the score of vascular lesions in the heart and kidney. The results suggested that the blood pressure reduction by chronic cicletanine treatment in Dahl S rats is associated with an improvement in endothelial cell function. The increased release of vasodilatory substances from endothelial cells may contribute to the blood pressure reduction and attenuation of vascular injury observed with cicletanine treatment.

Animals↗

[Cefepime (diHCl/L-arginine blend): intravenous continuous infusion and/or single dose subcutaneous toxicity study in rats and dogs].

To investigate single dose toxicity of cefepime (CFPM diHCl/L-arginine blend), the test drug was administered to rats [Crj: CD (SD)] of both sexes at dose levels of 500, 1,000 and 2,000 mg/kg using intravenous continuous infusion or subcutaneous injection, and to male beagle dogs at 1,000 and 2,000 mg/kg using intravenous continuous infusion. As the control, two additional groups of each animals were given either saline or L-arginine alone which was used in the test formulation to adjust pH values of CFPM diHCl solutions. The obtained results are summarized as follows: 1. Rats dosed with 2,000 mg/kg CFPM through intravenous continuous infusion showed slightly decreased spontaneous physical activity. One male rat dosed with L-arginine alone via continuous infusion also showed slightly decreased activity. Slight to severe inflammatory reactions at injection sites including sloughing of the tail were prominent at doses of 1,000 or 2,000 mg/kg of CFPM, or L-arginine alone. Average body weights of rats in the test groups of either sex were comparable to the controls in all of the dose groups of the same sex during the 14-day test period. 2. Rats receiving 2,000 mg/kg CFPM in single subcutaneous injection showed slightly diminished activities. Slight to moderate reactions occurred around the injection site (viz., hardening, depilation, scab-formation and necrosis) in rats injected any of the 3 doses of CFPM. Though body weight gains were slightly retarded in male rats receiving 2,000 mg/kg CFPM during the last half of the observation period, such weight gain retardation was not observed in rats of other dose groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Four-week repeated dose oral toxicity study of BMY-28100 in juvenile beagle dogs].

Three groups, each consisting of 3 male and 3 female juvenile beagle dogs, were orally given BMY-28100 for 4 weeks at dose levels of 50, 160 and 500 mg/kg/day, respectively. Additionally, one male and one female dogs were added to each of the control and high dose groups in order to examine the recovery, and observed for 4 weeks after withdrawal of BMY-28100. The results obtained are summarized as follows: 1. BMY-28100 provoked an increased incidence of emesis in the 500 mg/kg group during the treatment period. 2. BMY-28100 sporadically brought distention of the cecum containing considerable amounts of contents in dogs sacrificed after the 4-week administration period. However, no macroscopic or microscopic changes were observed in the cecum itself after removal of the contents. In the 500 mg/kg group, hypocellularity in the sternum bone marrow was observed in a male and a female, and thymic atrophy in a male. 3. No changes ascribed to BMY-28100 treatment were detected after the 4-week recovery period. Based upon these results, the no-effect dose level of BMY-28100 was estimated to be 160 mg/kg/day, except for effects on the cecum.

Administration, Oral↗

Effects of bis (tri-n-butyltin) oxide on endocrine and lymphoid organs of male rats.

A total of 160 Sprague-Dawley rats averaging in body weight, were used for histopathological and biochemical studies of toxicity of bis (tri-n-butyltin) oxide (TBTO). Short-term effects and long-term effects were examined. LD50 of TBTO by gastric tubing was 197 mg/kg. The effects of a single dose of TBTO were transient, and rapid recovery followed. TBTO at a a single dose of 100 mg/kg, or a total dose of 390 to 780 mg/kg in 13 weeks, or 780 to 1,560 mg/kg in 26 weeks, caused adrenal hypertrophy, flattening of the thyroid epithelium and atrophy of the thymus and lymph nodes. A single or repeated administration induced swelling and vacuolation of aldehyde-fuchsin-positive cells in the adenohypophysis. The immunohistochemical stainability of the cytoplasm of ACTH-cells was markedly depressed 24 hours after TBTO treatment, and that of the cytoplasm of TSH-cells was enhanced. Analogous an inverse relationship was also manifested in the hormonal levels of serum: levels of cortisol were elevated, while those of T-4 and TSH were depressed.

Adrenal Glands↗