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Biomedical subjects

S Baba

Publications and source records attributed to S Baba.

At least 757 records · Page 42Linked to original sources

Short-term estrogen test for cytodiagnosis in postmenopausal women.

A short-term estrogen test was used to obtain a correct cytologic diagnosis in 73 patients with an equivocal atrophic cellular pattern. Overestimation in cytodiagnosis was markedly eliminated, and the correct cytologic diagnosis was made in 81% of the cell samples after the estrogen test. The purpose of this study was not only to confirm the usefulness of the short-term estrogen test, but also to observe the cytomorphologic changes before and after the test. Thick cytoplasm, vacuoles in the cytoplasm, and a distinct cell border increased, while the amorphous chromatin pattern was eliminated after the estrogen test. Maturation of atypical cells in cases of dysplasia, carcinoma in situ, and invasive squamous-cell carcinoma was investigated before and after the estrogen test. Although malignant cells were not influenced by estrogen, maturation of dysplastic cells was induced after the test.

Adult↗

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↗

Possible role of cell surface insulin degrading enzyme in cultured human lymphocytes.

The kinetic changes of insulin receptors and cell surface insulin degrading enzyme were examined in Bri-7 cultured human lymphocytes after preincubation with or without insulin. The concentration of cell surface insulin degrading enzyme was determined by immunoenzymatic labeling method using a polyclonal antiserum to insulin degrading enzyme. In Bri-7 cells preincubated with 10(-10) to 10(-5) mol/l insulin for 18 h, the surface insulin receptors and insulin degrading enzyme decreased progressively as a function of the concentration of insulin in the preincubation medium. The surface insulin receptors and insulin degrading enzyme of cells preincubated with 10(-6) mol/l insulin were decreased to 25 and 35% of the control respectively. In Bri-7 cells preincubated with 10(-6) mol/l insulin for 30 min to 18 h, the loss of surface insulin degrading enzyme was slightly slower than that of the receptors; however, the curves were essentially parallel to each other. Thus, the treatment of Bri-7 cells with insulin caused down-regulation of insulin receptors in a dose- and time-dependent manner. Cell surface insulin degrading enzyme also decreased simultaneously. A combination of several insulin degradation assays (trichloroacetic acid precipitation, gel filtration and receptor rebinding) demonstrated that cell surface bound insulin remained intact, and that the degradation in Bri-7 cells seemed to be a limiting proteolysis of insulin. Furthermore, by the receptor rebinding method insulin degrading activity in cells after preincubation with 10(-6) mol/l insulin (19.6 +/- 4.6%) was decreased, although not significantly, as compared with cells after preincubation without insulin (24.6 +/- 4.8%).(ABSTRACT TRUNCATED AT 250 WORDS)

B-Lymphocytes↗

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↗

Increased cholesterol concentration in intermediate density lipoprotein fraction of normolipidemic non-insulin-dependent diabetics.

There is increasing agreement about the atherogenicity of intermediate density lipoprotein (IDL). In order to determine whether normocholesterolemic diabetics are at a higher risk of atherosclerosis, cholesterol concentrations in three subclasses of triglyceride-rich lipoprotein fraction (Sf 12-400) were examined. Their plasma triglyceride and cholesterol levels were limited to below 150 and 250 mg/dl, respectively. They were divided into 3 groups according to their treatment: insulin injection (group I), sulphonylurea (group S) and diet alone (group D). Age-matched healthy normolipidemic non-obese subjects served as controls (group C). Triglyceride-rich lipoproteins were separated by ultracentrifugation: very low density lipoprotein (VLDL), Sf 60-400; intermediate density lipoprotein (IDL1), Sf 20-60; IDL2; Sf 12-20. Cholesterol concentrations in total plasma, VLDL, IDL2 and high density lipoprotein (HDL) were all identical in every group. A significant increase in cholesterol concentration was found in IDL1 of groups S and D. Low density lipoprotein-cholesterol of group I was also increased. These findings indicate an increased risk factor in normolipidemic diabetics.

Adult↗

Effect of histamine H2-receptor antagonists on DNA synthesis in adult rat hepatocytes in primary culture. Cimetidine enhanced hepatocytes proliferation stimulated with insulin and epidermal growth factor.

The effects of three of the most widely used histamine H2-receptor antagonists, cimetidine, ranitidine and famotidine, on liver cell growth were studied in vitro using adult rat hepatocytes in primary culture, because these antagonists are commonly given to patients with hepatic cirrhosis or fulminant hepatic failure for protection against peptic ulcers and gastrointestinal hemorrhage. At their clinically effective concentrations in the blood (0.5-5 micrograms/ml cimetidine, 0.25-2.5 micrograms/ml ranitidine and 0.05-0.5 microgram/ml famotidine), these three antagonists did not have any effect on replicative DNA synthesis either in the presence or absence of insulin plus epidermal growth factor (EGF). However, unexpectedly DNA synthesis stimulated by insulin and EGF was found to be enhanced by 0.05-0.5 mg/ml cimetidine, although it was unaffected or inhibited by ranitidine and famotidine at the concentrations tested. Cimetidine caused maximal enhancement of 1.5-2 times the control level of DNA synthesis at a concentration of 0.25 mg/ml. Cimetidine also had an enhancing effect at submaximal concentrations of insulin and EGF, but neither cimetidine nor the other antagonists had any stimulatory effect on DNA synthesis in the absence of insulin plus EGF. This enhancement of DNA synthesis by cimetidine resulted in significant increase in the total DNA content of the hepatocytes in culture. Under the conditions used, cimetidine had the lowest toxicity of these three antagonists and ranitidine the highest, as judged from data on DNA synthesis and the total protein content of cultured hepatocytes, leakage of aminotransferases from the cells and morphological observations.

Animals↗

Augmentation of cell-mediated cytotoxicity against renal carcinoma cells by recombinant interleukin 2.

The effects of recombinant interleukin 2 (IL-2) on natural killer (NK) cell activity against established renal carcinoma cell lines CaKi 1, KU-2, and freshly prepared renal carcinoma cells were studied. Augmentation of NK cell activity by IL-2 was dose- and time-dependent. The results indicate that the optimal dose of IL-2 was 100 to 500 U/mL, and that cytotoxicity increased significantly even at a low concentration such as 4 U/mL. IL-2 induced significantly higher levels of cytotoxicity against renal carcinoma cells than did gamma-interferon. The influence of IL-2 on lymphocyte subpopulations was then examined using flow cytometry with monoclonal antibodies OKT3, OKT4, OKT8, Leu 7, and Leu 11. The results showed that IL-2 increased the number of cells positive to Leu 11, the so-called active NK cells. We concluded that IL-2 has an important role in the treatment of renal carcinoma.

Carcinoma, Renal Cell↗

Accelerated glycation of the aorta in diabetic rats.

Glycation of the aorta in rats with streptozotocin-induced diabetes was estimated by determining the early-stage product and the advanced product of the Maillard reaction. The early-stage product of the Maillard reaction was determined using furosine, which is derived from glycated lysine residues by acid hydrolysis. The advanced product was determined by fluorescence high-performance liquid chromatography. The levels of both early-stage and advanced products in diabetic rats were significantly higher than those in non-diabetic rats at the age of both 20 and 50 weeks. The levels of both early-stage and advanced products at 50 weeks in rats tended to be higher than those at 20 weeks. However, the level of glycated hemoglobin in both non-diabetic and diabetic rats showed no significant change between 20 and 50 weeks of age. These results suggest that tissue glycation may be involved in the development of diabetic complications and may be related to the aging mechanism.

Animals↗

Biological actions of peptide YY: effects on endocrine pancreas, pituitary-adrenal axis, and plasma catecholamine concentrations in the dog.

The present study was designed to gather information on the biological activity of peptide YY (PYY) in conscious dogs. PYY was infused intravenously at a dose of 238 pmol/kg X h, and plasma concentrations of glucose, insulin, pancreatic polypeptide (PP), ACTH, cortisol and catecholamines (norepinephrine-NE; epinephrine-E; dopamine-DA) were subsequently measured. PYY significantly increased plasma insulin levels transiently without effect on plasma glucose, but decreased plasma PP levels during all infusion periods. PYY stimulated both plasma ACTH and cortisol secretion, and this action of PYY was also shared by PP, with PP being less potent in ACTH-cortisol release. PYY further elicited specific changes in plasma catecholamine concentrations, i.e. an increase of NE but not of E, which were in contrast to the effects of insulin-induced hypoglycemia. PP failed to alter plasma insulin and catecholamine concentrations. These results suggest that PYY can affect anterior pituitary hormone secretion, sympathetic nervous outflow and pancreatic endocrine activity in addition to its known actions on gastric and pancreatic secretion in the dog.

Adrenocorticotropic Hormone↗

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↗

Continuous vs. bolus epidural morphine.

The clinical evaluation of continuous administration of epidural morphine was undertaken using an infusion pump (Act-A-Pump 1000). Eleven patients who had undergone abdominal surgical procedures were treated with this therapeutic modality for postoperative pain control, and two cancer patients for chronic pain relief. The results were satisfactory and the advantages over repeated epidural injections are discussed.

Adult↗

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↗

Coupling of guanine nucleotide inhibitory protein to somatostatin receptors on pancreatic acinar membranes.

Guanine nucleotides and pertussis toxin were used to investigate whether somatostatin receptors interact with the guanine nucleotide inhibitory protein (Ni) on pancreatic acinar membranes in the rat. Guanine nucleotides reduced 125I-[Tyr1]somatostatin binding to acinar membranes up to 80%, with rank order of potency being 5'-guanylyl imidodiphosphate [Gpp(NH)p] greater than GTP greater than GDP greater than GMP. Scatchard analysis revealed that the decrease in somatostatin binding caused by Gpp(NH)p was due to the decrease in the maximum binding capacity without a significant change in the binding affinity. The inhibitory effect of Gpp(NH)p was partially abolished in the absence of Mg2+. When pancreatic acini were treated with 1 microgram/ml pertussis toxin for 4 h, subsequent 125I-[Tyr1]somatostatin binding to acinar membranes was reduced. Gpp(NH)p further decreased somatostatin binding to islet-activating protein (IAP)-treated acinar membranes. Pertussis toxin treatment also abolished the inhibitory effect of somatostatin on vasoactive intestinal peptide-stimulated increase in cellular content of adenosine 3',5'-cyclic monophosphate (cAMP) in the acini. Furthermore, exposure of acini to IAP caused ADP ribosylation of a membrane protein with Mr = 41,000 in parallel to the inhibition of cAMP accumulation in acini. The present results suggest, therefore, that 1) somatostatin probably functions in the pancreas to regulate adenylate cyclase enzyme system via Ni, 2) the extent of modification of Ni is correlated with the ability of somatostatin to inhibit cAMP accumulation in acini, and 3) guanine nucleotides also inhibit somatostatin binding to its receptor.

Adenosine Diphosphate↗

Carbamylation of insulin and its biological activity.

A nonspecific binding reaction between cyanic acid formed from urea and protein or peptide is called carbamylation. In the present study, insulin, a peptide hormone, was subjected to carbamylation and the activity of carbamylated insulin was determined. Both immunological and biological activities of insulin changed on carbamylation. The decrease in biological activity in respect to glucose oxidation of fat cells or receptor-binding capacity of rat hepatocytes was greater than that in immunological activity.

Adipose Tissue↗