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Biomedical subjects

M Otsuki

Publications and source records attributed to M Otsuki.

At least 235 records · Page 13Linked to original sources

Effects of CS-514 on plasma lipids and lipoprotein composition in hypercholesterolemic subjects.

The effect of CS-514 (eptastatin, Sankyo Co., Tokyo), a competitive inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A reductase, was investigated in 47 patients with hypercholesterolemia (WHO type IIa: 27, IIb: 20). Ten or 20 mg of CS-514 was administered daily for 3 months. In both types of patient, total cholesterol and phospholipid levels were significantly reduced by CS-514. The triglyceride, cholesterol and phospholipid content of low density lipoprotein (LDL) and the plasma levels of apolipoprotein B were also decreased in both groups. In contrast, total triglyceride, very low density lipoprotein (VLDL)-triglyceride and apolipoprotein C-II were decreased only in type IIb subjects. Also the levels of high density lipoprotein (HDL)-cholesterol and apolipoproteins A-I and A-II were increased by CS-514 in IIb but not in IIa patients. In both groups, no change occurred in either the cholesterol/triglyceride or phospholipid ratio in any lipoprotein fraction, nor in the ratio of HDL-cholesterol to apolipoprotein A-I or A-II, respectively. Therefore, CS-514 suppresses plasma levels of cholesterol in hypercholesterolemic patients without modifying lipoprotein composition. Moreover, this drug has different effects on the levels of plasma triglyceride and HDL-cholesterol of type IIa and IIb patients.

Adult↗

Pancreatic endocrine function in cirrhotic rats.

Pancreatic endocrine function in liver cirrhosis was examined in rats both in vivo and in vitro. Experimental liver cirrhosis was induced by subcutaneous injections of 50% carbon tetrachloride in a dose of 2 mL/kg body weight twice a week for 16 weeks. Control rats received a similar dose of olive oil during the same period. In cirrhotic rats, immunoreactive insulin contents in the pancreas were significantly lower, whereas immunoreactive glucagon contents were about threefold higher than those of control rats. In the first part of this study, insulin and glucagon concentrations in both jugular and portal venous blood at basal conditions and after oral glucose loading were simultaneously determined in vivo. Peripheral insulin levels, both before and after glucose loading, were higher, whereas portal insulin concentrations were lower in cirrhotic rats than in the control rats. In contrast, glucagon levels in both the peripheral and portal veins were significantly higher in cirrhotic rats than in control rats. In the second part, isolated perfused pancreata were prepared from cirrhotic and control rats to further characterize the endocrine function of cirrhotic rat pancreas. Insulin secretion in response to 16.7 mmol/L glucose and 100 pmol/L cholecystokinin-octapeptide both were 40% lower in cirrhotic rats than in controls. In contrast, there was no significant difference in arginine-stimulated insulin release between the two groups. However, glucagon secretion in response to 20 mmol/L arginine was 40% higher in cirrhotic rats. If sensitivity is defined as the hormone release proportional to the pancreatic contents, then A and B cells in the cirrhotic rats had normal sensitivity to both glucose and cholecystokinin-octapeptide.(ABSTRACT TRUNCATED AT 250 WORDS)

Ammonia↗

In-vitro and in-vivo activities of T-3262, a new pyridone carboxylic acid.

T-3262[p-toluenesulfonic acid salt of dl-7-(3-amino-1-pyrrolidinyl)-1-(2,4-difluorophenyl)-6-fluoro-1, 4-dihydro-4-oxo-1, 8-naphthyridine-3-carboxylic acid monohydrate] is a new pyridone carboxylic acid with a broad spectrum of antibacterial activity against Gram-positive and Gram-negative bacteria. The activity of T-3262 against most Enterobacteriaceae was comparable with that of ciprofloxacin except Proteus spp. and Providencia rettgeri and exceeded that of ofloxacin and norfloxacin. The activity of T-3262 against Pseudomonas aeruginosa was comparable with that of ciprofloxacin, and T-3262 was more active than the other new quinolones against Acinetobacter calcoaceticus, Branhamella catarrhalis and Haemophilus influenzae, and also against staphylococci, streptococci, and Bacteroides fragilis. The protective effects of a single oral dose of T-3262 on systemic infection in mice were greater than norfloxacin. T-3262 was as effective as ofloxacin and ciprofloxacin against systemic infections in an animal model with Escherichia coli and Klebsiella pneumoniae, and more active against Ps. aeruginosa infections. T-3262 showed excellent activity against staphylococcal and streptococcal infections.

4-Quinolones↗

Effects of hydrocortisone on glucose- and cholecystokinin-induced insulin release from the isolated perfused rat pancreas.

The acute and chronic effects of hydrocortisone on insulin secretion were examined in the isolated perfused rat pancreas. In the first part of this study, the chronic effects of hydrocortisone on insulin release were examined using isolated perfused pancreas prepared from rats that had been given subcutaneous injections of hydrocortisone at doses of 1.25, 2.5, 5.0, and 10.0 mg/kg body weight once daily for 7 days. Hydrocortisone treatment led to a dose-dependent increase in insulin secretion in response to 8.3 mM glucose. The insulin response to 100 pM cholecystokinin (CCK-8) was also significantly higher in the hydrocortisone-treated rats than in the control group. However, the increment of insulin level over the value before CCK-8 addition in rats treated with hydrocortisone was not significantly different from that in the control rats. In the second part, the acute effects of hydrocortisone on insulin release were studied. Hydrocortisone (17-hydroxycorticosterone) at a concentration of 100 microM caused significant inhibition of the stimulatory effect of CCK-8 on insulin secretion. The inhibition started within 1 min of the beginning of hydrocortisone administration and ceased immediately after the termination of its infusion. We have demonstrated in this study a dual effect of hydrocortisone on insulin release: first, the potentiation of the insulin secretion stimulated by glucose but not by CCK-8 and, second, the inhibition of CCK-8-stimulated insulin secretion.

Animals↗

The protective effect of the trypsin inhibitor urinastatin on cerulein-induced acute pancreatitis in rats.

We examined the protective effects of the trypsin inhibitor, urinastatin, extracted from human urine in experimental acute pancreatitis in conscious rats. Acute pancreatitis was induced by four subcutaneous injections of 20 micrograms/kg body weight of cerulein at hourly intervals. Urinastatin at a dose of 50,000 U/kg body weight/6.5 h was given by continuous i.v. infusion beginning 0.5 h before the first cerulein injection and continuing until 3 h after the last one, for a total of 6.5 h. Urinastatin significantly reduced serum levels of amylase, lipase, and anionic trypsin(ogen) but did not affect pancreatic wet weight or protein or enzyme content. Urinastatin also significantly reduced the degree of acinar cell vacuolization, interstitial edema, and cellular infiltration. These results suggest that urinastatin does not block the induction of acute pancreatitis by cerulein but does substantially reduce its severity.

Acute Disease↗

Severe acute exacerbation in chronic hepatitis B virus infection in Sendai, Japan.

In order to examine the clinical features of severe acute exacerbation in chronic hepatitis B virus (HBV) infection, 297 hepatitis B surface antigen (HBsAg) carriers were followed for 35 +/- 22 months (mean +/- S.D.) in Tohoku University Hospital from 1976 to 1987. Of these, 10 experienced severe acute exacerbation with hepatic decompensation. All of these patients had intense subjective symptoms related to the hepatitis. They were all icteric and 8 had ascites. Three developed to fulminant hepatic failure, eventually died. Histology after the exacerbation showed severe hepatic damage such as massive hepatic necrosis and bridging hepatic necrosis in a half of them. Six cases were suspected to result from spontaneous reactivation and 2 from drug-induced reactivation of chronic HBV infection, and the other 2 from superinfection with non-A, non-B hepatitis agent (s). These results suggest that the reactivation of chronic HBV infection is an important factor of severe acute exacerbations in chronic HBV infection in Japan.

Adult↗

Secretin-induced exocrine secretion in perfused pancreas isolated from diabetic rats.

Exocrine secretory function in response to 10 pM to 10 nM synthetic secretin was evaluated in perfused pancreas isolated from control, streptozocin-induced diabetic (STZ-D), alloxan-induced diabetic (ALX-D), and insulin-treated STZ-D rats. In STZ-D rats, the basal rate of pancreatic juice flow was significantly increased (10.3 +/- 1.0 microliters/20 min) compared with control rats (4.4 +/- 0.2 microliters/20 min). The basal rate of amylase output as well as pancreatic amylase content were significantly decreased to less than 5% of control values. The basal rates of protein and trypsinogen outputs were similar in both groups. In both control and diabetic rats, secretin caused a dose-dependent increase in exocrine secretion. Secretin (10 pM to 10 nM) induced 1.1- to 11.7-fold increases in exocrine secretion in STZ-D rats. These increases were significantly lower than the 2.1- to 20.8-fold increases in control rats. Furthermore, there was no significant increase in exocrine secretion from STZ-D rats in response to 10 pM secretin, although this concentration of secretin caused a significant increase in control rats. Secretin-induced exocrine secretion in ALX-D rats was similar to that in STZ-D rats. In insulin-treated STZ-D rats, the basal rates of pancreatic secretion were not significantly different from those of control rats. These results suggest that insulin resistance in this patient was due to a circulating factor of low molecular weight that uncoupled insulin stimulation of glucose transport from receptor binding and phosphorylation. The factor appears to increase the binding activity of the alpha-subunit of the insulin receptor without affecting the kinase activity of the beta-subunit.

Amylases↗

Inhibitory effects of pirenzepine on cholecystokinin and secretin stimulation on exocrine and endocrine rat pancreas.

Effects of pirenzepine, a newly developed anticholinergic drug, on exocrine and endocrine pancreatic functions stimulated by cholecystokinin octapeptide and secretin were studied in both isolated pancreatic acini and the isolated perfused pancreas of rats. In the isolated acini, pirenzepine did not have any significant effect on cholecystokinin-induced amylase release but caused an inhibition of amylase secretion initiated by secretin and shifted the dose-response curve for amylase secretion to the right. In the isolated perfused pancreas stimulated with 100 pM cholecystokinin octapeptide, addition of 10 microM pirenzepine before as well as after 20 min of perfusion significantly inhibited pancreatic juice flow but not enzyme output. In contrast, pirenzepine caused an inhibition of secretin-stimulated enzyme secretion, but not pancreatic juice flow. The stimulatory effect of both cholecystokinin octapeptide and secretin on insulin secretion was also inhibited by pirenzepine. The present data indicate that pirenzepine may have an influence on pancreatic exocrine and endocrine function by inhibiting endogenous cholinergic activity of the pancreas when a large dose is given.

Amylases↗

Dual effects of hydrocortisone on exocrine rat pancreas.

The acute and chronic effects of hydrocortisone on exocrine pancreatic function were examined in the isolated perfused rat pancreas. In the first part of this study, rats were given subcutaneous injections of hydrocortisone at doses of 1.25, 2.5, 5, and 10 mg/kg body wt once daily for 7 days. Trypsin and lipase secretion in response to 100 pM cholecystokinin-octapeptide was significantly increased in rats with the two highest doses of hydrocortisone compared with controls, irrespective of whether calculated as the total amount of stimulated output of enzymes or related to the secretion of enzyme to the pancreas content. On the other hand, the secretory responsiveness of amylase to 100 pM cholecystokinin-octapeptide was maximal at the 5-mg dose, and decreased with higher doses. In the second part, 100 microM hydrocortisone was superimposed for 20 min on 100 pM cholecystokinin-octapeptide stimulation to examine the acute effects of hydrocortisone on exocrine pancreatic function in the isolated perfused rat pancreas. Addition of hydrocortisone caused a significant inhibition of the secretion of pancreatic juice and amylase. The present study has clearly demonstrated the dual effects of glucocorticoids on the pancreas: inhibition and potentiation. There is a possibility that chronic treatment with large doses of glucocorticoid may sensitize the acinar cells an induce hypersecretion of trypsin and lipase, whereas acute treatment inhibits secretory function of exocrine pancreas.

Amylases↗

Effect of synthetic protease inhibitor camostate on pancreatic exocrine function in rats.

Pancreatic exocrine function in rats given synthetic protease inhibitor camostate (200 mg/kg body weight) perorally once daily for 10 days was investigated. Pancreatic wet weight was significantly increased in the camostate-treated rats. The increase in pancreatic weight was associated with pronounced hypertrophy and moderate hyperplasia. Total amylase, trypsin, and lipase contents in the pancreas were also increased in the camostate-treated group compared with the control rats. Secretory patterns of pancreatic juice and amylase in response to caerulein were similar in both groups, whereas the dose-response curve for pancreatic juice secretion in the camostate-treated rats was shifted tenfold toward higher concentrations of caerulein. Basal and caerulein-stimulated flow rates of pancreatic juice were significantly greater in the camostate-treated rats than the control rats, although both groups showed a threefold increase over basal secretion in response to maximal stimulation. Amylase outputs in basal state and in response to submaximal doses of caerulein were significantly lower, whereas those to maximal and supramaximal doses were significantly greater in the camostate-treated animals than that in the control rats. These results indicate that treatment with camostate induces pancreatic hypertrophy and hyperplasia, and that the secretory function of the hypertrophied pancreas is quantitatively but not qualitatively altered.

Animals↗

Actions of neuromedin-B and neuromedin-C on amylase release from isolated rat pancreatic acini.

Neuromedin-B and neuromedin-C are novel decapeptides which have recently been isolated from porcine spinal cord and canine intestinal muscle, and show striking sequence homology with gastrin-releasing peptide (GRP-27) at the carboxyl-terminal region. The effects of synthetic neuromedin-B and neuromedin-C on exocrine pancreatic function were examined using isolated rat pancreatic acini. Neuromedin-B and neuromedin-C were able to cause full stimulation of amylase release. The relative efficacy of neuromedin-B and neuromedin-C was the same as that of GRP-27. Neuromedin-C was about twofold more potent, whereas, neuromedin-B was about 10-fold less potent than GRP-27. Both neuromedin-B and neuromedin-C potentiated the stimulation of amylase release caused by vasoactive intestinal peptide, secretin, or forskolin. Potentiation of amylase secretion did not occur with neuromedin-B or neuromedin-C plus cholecystokinin (CCK), carbamylcholine, or Ca2+ ionophore A23187. The effects of neuromedin-B and neuromedin-C on enzyme secretion were inhibited neither by dibutyryl cyclic GMP, nor atropine. The present study suggests that neuromedin-B and neuromedin-C act on different receptors than CCK and cholinergic agents, but appear to activate a common intracellular mechanism.

Amylases↗

Synthetic neuromedin C stimulates exocrine pancreatic secretion in dogs and rats.

We have examined the effect of neuromedin C on exocrine pancreatic secretion both in vivo and in vitro, and compared its bioactivity with those of related peptides. In anesthetized dogs, neuromedin C caused a dose-dependent initial reduction of pancreatic blood flow and an increase in secretin-stimulated exocrine pancreatic secretion, and had almost the same potency as gastrin-releasing peptide (GRP) in decreasing pancreatic blood flow. A potent stimulatory effect on exocrine pancreatic secretion was found in conscious dogs accompanied by a significant elevation in the circulating cholecystokinin (CCK) levels. In isolated rat pancreatic acini, amylase was released dose-dependently in response to neuromedin C. This study demonstrates that neuromedin C (a smaller molecular form of GRP) possesses potent bioactivity on exocrine pancreas and suggests that two factors may be involved in the mechanism by which this peptide effects exocrine secretion, namely; direct stimulation on acinar cells and stimulation of CCK release.

Amino Acid Sequence↗

Effects of neuromedin B and neuromedin C on exocrine and endocrine rat pancreas.

Neuromedin B and neuromedin C are novel decapeptides that have recently been isolated from porcine spinal cord and canine intestinal mucosa and show striking sequence homology with bombesin and gastrin-releasing peptide (GRP-27) at the carboxyl-terminal region. The effects of synthetic neuromedin B and C on exocrine pancreatic function and insulin release have been compared with bombesin and GRP-27 in isolated pancreatic acini and isolated perfused pancreas in rat. Neuromedin B and C as well as bombesin and GRP-27 were able to cause stimulation of amylase release. The relative efficacy of neuromedin B, C, bombesin, and GRP-27 was the same as that of cholecystokinin octapeptide (CCK-8). Bombesin and GRP-27 were equipotent, and both were approximately 15-fold less potent than CCK-8. Neuromedin C was approximately 2-fold more potent, whereas neuromedin B as approximately 10-fold less potent than bombesin and GRP-27. All of these peptides stimulated insulin release that was limited to the first 3 min of a 20-min perfusion. However, GRP-27 and its related peptides were weak stimulants of insulin release compared with their abilities to stimulate exocrine pancreatic secretion. Bombesin and neuromedin B id not stimulate insulin release at doses stimulating pancreatic exocrine secretion. Neuromedin B was also approximately 10-fold less potent than neuromedin C, bombesin, and GRP-27 in eliciting insulin secretion. Because bombesin-like immunoreactivity is found to be present in nerves in the pancreas, neuromedin B and C may be neurotransmitters or neuromodulators and exert a direct local neurocrine action on enzyme secretion by acinar cells and insulin secretion by the islets.

Amylases↗