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Biomedical subjects

M Fujimura

Publications and source records attributed to M Fujimura.

At least 397 records · Page 22Linked to original sources

Effect of aging on gastric acid secretion, serum gastrin, and antral gastrin content in rats.

The purpose of this study was to characterize the effects of aging on gastric acid secretion and on serum and antral concentrations of gastrin in rats. Young and old Fischer 344 rats were prepared with gastric fistulas. Twenty-four hours after surgery, graded doses of human synthetic gastrin-17 (SHG-17) (2, 5, 10, 20, and 40 micrograms/kg) were given intravenously in random order. Gastric secretions were collected for gastric acid measurement before and at 15-min intervals after each dose of gastrin. In a separate study, blood was collected and the stomachs were removed for antral gastrin extraction from fed young and old rats. Serum and antral gastrin was measured by radioimmunoassay. The basal and gastrin-stimulated acid secretions were significantly decreased in aged rats compared to the young rats. The basal acid output was 0.4 +/- 0.2 microeq/15 min in the aged rats and 1.5 +/- 0.5 microeq/15 min in the young. The maximal acid output stimulated by gastrin was 11.1 +/- 1.8 microeq/15 min in the aged rats and 24.2 +/- 2.8 microeq/15 min in the young. Both serum and antral concentrations of gastrin were significantly decreased in aged rats. Serum gastrin concentration was 114.8 +/- 7.4 pg/ml in the aged rats and 192.0 +/- 14.4 pg/ml in the young. Antral gastrin concentration was 3.9 +/- 0.5 micrograms/g tissue in the aged rats, which was significantly less than the concentration in the young (6.5 +/- 0.4 micrograms/g tissue). Antral gastrin content did not change with aging.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Peptide YY inhibits pancreatic secretion by inhibiting cholecystokinin release in the dog.

Peptide YY inhibits the pancreatic exocrine secretion (bicarbonate, water, and protein) that is stimulated by cholecystokinin, secretin, or neurotensin in the dog, but whether peptide YY inhibits the release of gut peptides that stimulate pancreatic exocrine secretion is not known. Six dogs were prepared with gastric, pancreatic, and cecal cannulas. On separate days, a single dose of sodium oleate (3, 6, 7.5, 9, 12, 15, or 18 mmol/h) was given intraduodenally for 90 min, either alone (control) or in combination with peptide YY (25, 50, 100, 200, or 400 pmol/kg.h, i.v.). We measured plasma levels of cholecystokinin-33/39, secretin, neurotensin, and peptide YY by radioimmunoassay. During infusion of peptide YY, the integrated release of cholecystokinin (3.3 +/- 0.5 ng-[0-90] min/ml) was decreased significantly (p less than 0.05) when compared with control values (5.6 +/- 0.6). Release of secretin and neurotensin was not affected. A positive correlation (p less than 0.05) was found between the release of cholecystokinin and pancreatic protein output in both control (r = 0.68) and peptide YY-treated (r = 0.67) groups. Release of peptide YY was significant after intraduodenal or intracolonic administration of sodium oleate. These studies demonstrate that inhibition of pancreatic protein secretion by peptide YY in dogs is mediated, at least in part, by an inhibition of the release of cholecystokinin.

Animals↗

Peptide YY and gallbladder contraction. Studies in vivo and in vitro.

The purpose of this study was to examine the effect of peptide YY on contraction of the gallbladder in vivo and in vitro and on contraction of the sphincter of Oddi in vitro. In conscious dogs that were prepared with strain-gauge force transducers implanted in the gallbladder wall, peptide YY (400 ng/kg, bolus; 800 pmol/kg.h, infusion) did not affect the resting contractile pattern of the gallbladder, nor did it inhibit cholecystokinin-octapeptide (CCK-8)-stimulated gallbladder contraction. In contrast, the cholecystokinin antagonist proglumide (5, 10, 20, 40, or 80 mg/kg), given in vivo, inhibited CCK-8-stimulated gallbladder contraction in a dose-related manner. The highest dose of proglumide (80 mg/kg) completely abolished contraction of the gallbladder stimulated by CCK-8. In vitro studies showed that peptide YY (0.25, 0.5, or 1 microgram/ml) did not affect the resting tension of rabbit gallbladder strips, and it did not inhibit CCK-8-stimulated contraction of gallbladder strips. Proglumide (0.4, 0.8, 1.6, or 3.2 mg/ml) inhibited CCK-8-stimulated tension of gallbladder strips in a dose-related manner. Peptide YY and CCK-8 had no effect on the motility of the canine sphincter of Oddi in vitro, whereas acetylcholine caused contraction and adrenergic agonists caused relaxation. These results suggest that peptide YY and pancreatone (a peptidelike substance, extracted from ileal and colonic mucosa, that inhibits CCK-8-stimulated gallbladder contraction in vivo) do not appear to be identical.

Ampulla of Vater↗

Secondary release of thromboxane A2 in aerosol leukotriene C4-induced bronchoconstriction in guinea pigs.

Effect of a thromboxane synthetase inhibitor (OKY-046) on bronchoconstriction induced by aerosol leukotriene C4 and histamine was studied in anesthetized, artificially ventilated guinea pigs in order to examine whether secondary release of thromboxane A2 is produced by aerosol leukotriene C4 or not. 0.01-1.0 micrograms/ml of leukotriene C4 and 12.5-400 micrograms/ml of histamine inhaled from ultrasonic nebulizer developed for small animals caused dose-dependent increase of pressure at airway opening (Pao) which is considered to be an index representing bronchial response. Pretreatment of the animals with intravenous OKY-046 (100mg/kg) significantly reduced the airway responses produced by inhalation of 0.1, 0.33 and 1.0 micrograms/ml of leukotriene C4, while the pretreatment did not affect the histamine dose-response curve. Based on these findings and previous reports (6,7), it is suggested that aerosol leukotriene C4 activates arachidonate cyclooxygenase pathway including thromboxane A2 synthesis and the released cyclooxygenase products have bronchodilating effect as a whole.

Aerosols↗

Colocalization of calcitonin gene-related peptide and somatostatin in pancreatic islet cells and inhibition of insulin secretion by calcitonin gene-related peptide in the rat.

Calcitonin gene-related peptide (CGRP)- and somatostatin (SRIF)-containing cells were identified by immunocytochemical techniques in pancreatic islet cells of the rat. CGRP-containing cells were found primarily in the peripheral portion of the pancreatic islets. In addition, CGRP-containing cells also contained somatostatin, which identifies the islet CGRP-containing cells as D cells. In the present study, we also tested the effect of CGRP on gastrin-releasing peptide (GRP; 10(-9) M)- or cholecystokinin (CCK-8, 10(-9) M)-stimulated release of insulin from isolated rat islets in vitro. At concentrations of 10(-8)-10(-11) M, CGRP inhibited GRP- and CCK-8-stimulated release of insulin significantly when compared with GRP or CCK-8 alone. At the lowest concentration of CGRP (10(-11) M), the inhibitory effect of CGRP on CCK-8-stimulated release of insulin was statistically significant (p less than 0.05) and exceptionally potent (65-90% inhibition). We have also found that CGRP does not stimulate the release of SRIF from isolated islet cells. These findings suggest that CGRP may play a regulatory role in the release of insulin.

Animals↗

[Hydronephrosis presenting as the first sign of malignant lymphoma of the small intestine: report of a case].

A 45-year-old man was admitted to hospital on November 26, 1985 with the chief complaint of left hypochondrial pain. Excretory and retrograde pyelography revealed left hydronephrosis due to extrinsic obstruction of ureter. Computerized tomography and angiography revealed that a tumor of the small intestine was the cause of ureteral obstruction. In addition to the presence of a tumor, a fistula in the small intestine was disclosed on the upper gastrointestinal series. During the operation, a large mass which involved several organs was identified without mobility. The sophisticated operation was composed of wide resection of small intestine including the tumor, left hemicolectomy, left nephroureterectomy, splenectomy, partial pancreatectomy, duodeno-ileostomy and transverse sigmoidostomy was done on December 19, 1985. Pathological diagnosis was malignant lymphoma, diffuse small cell type infiltrating ureter, kidney and perirenal connective tissue. Because of poor postoperative course systemic chemotherapy was not performed and he died of disseminated intravascular coagulation on April 2, 1986.

Humans↗

Interaction of neurotensin, secretin and cholecystokinin on pancreatic exocrine secretion in conscious dogs.

The results of previous studies from our laboratory have shown that neurotensin can stimulate pancreatic secretion of bicarbonate and protein. This study was done to compare the stimulatory action of neurotensin on pancreatic exocrine secretion in conscious dogs to those of secretin and cholecystokinin (CCK). Six dogs with chronic pancreatic and gastric fistulas were given hydrochloric acid intraduodenally or CCK-8 intravenously to produce maximal bicarbonate or protein secretion. Neurotensin was then given intravenously in combination with intraduodenal hydrochloric acid or intravenous CCK-8. Incremental bicarbonate outputs in response to intraduodenal hydrochloric acid alone were measured and compared with intraduodenal hydrochloric acid plus intravenous neurotensin. Intravenous administration of neurotensin augmented pancreatic bicarbonate and protein secretory responses to a maximal dose of intraduodenal hydrochloric acid. Incremental protein responses to intravenous CCK-8 alone were measured and compared to intravenous CCK-8 plus intravenous neurotensin. Incremental bicarbonate responses to intravenous CCK-8 alone were compared with intravenous CCK-8 plus intravenous neurotensin. Similarly, intravenous neurotensin augmented pancreatic protein and bicarbonate secretory responses to a maximal dose of intravenous CCK-8. The results of this study indicate that neurotensin may stimulate pancreatic secretion of protein and bicarbonate by mechanisms which are different from those of CCK and secretin. Neurotensin apparently exerts its action through specific neurotensin receptors.

Animals↗

Peptide YY interacts with secretin and duodenal acidification to inhibit gastric acid secretion.

Previous studies have indicated that plasma levels of peptide YY (PYY) increase significantly after a meal. The purpose of this study was to characterize the interaction of PYY and secretin in the inhibition of gastric acid secretion, and to determine whether PYY can influence acid-induced inhibition of gastric acid secretion in conscious dogs. I.v. administration of PYY at 200 pmol/kg/h inhibited pentagastrin (1 microgram/kg/h)-stimulated gastric acid output (P less than 0.05). PYY further augmented i.v. secretin-induced inhibition of pentagastrin-stimulated gastric acid output by 32 +/- 7%, and intraduodenal hydrochloric acid-induced inhibition of pentagastrin-stimulated gastric acid output by 40 +/- 12%. The mean integrated release of secretin response to duodenal acidification (3.9 +/- 1.0 ng-[0-60] min/ml) was not affected by PYY (3.3 +/- 0.9 ng-[0-60] min/ml). The present study demonstrates that PYY can interact with secretin and duodenal acidification in an additive fashion to inhibit pentagastrin-stimulated gastric acid secretion. Our results suggest that several hormones that are released postprandially can interact with each other to inhibit gastric acid secretion.

Animals↗

Peptide YY inhibits nutrient-, hormonal-, and vagally-stimulated pancreatic exocrine secretion.

Peptide YY (PYY) is a recently isolated gut peptide that is found primarily in the mucosal endocrine cells of the terminal ileum, colon, and rectum of several mammalian species, including humans. The purpose of this study was to characterize the effect of PYY on pancreatic exocrine secretion in six conscious dogs prepared with pancreatic and gastric fistulas. In control experiments, pancreatic exocrine secretion was stimulated by either intravenous (i.v.) administration of secretin (100 ng/kg/h), cholecystokinin-8 (50 ng/kg/h), neurotensin (5 micrograms/kg/h), or 2-deoxy-D-glucose (75 mg/kg); or by the intraduodenal infusion of hydrochloric acid (4 mEq/h), a mixture of amino acids (phenylalanine + tryptophan at 5 mmol/h), sodium oleate (9 mmol/h), or a liquid meal. On separate days, PYY (12.5, 25, 50, 100, 200, or 400 pmol/kg/h) was given intravenously in combination with one of the above pancreatic secretagogues. Intravenous PYY at 200 and 400 pmol/kg/h inhibited secretin-stimulated pancreatic bicarbonate output significantly (p less than 0.05). Pancreatic bicarbonate and protein responses to all pancreatic secretagogues were reduced significantly (p less than 0.05) by PYY at 400 pmol/kg/h. Intravenous administration of atropine (0.6 mg bolus, followed by 0.02 mg/kg/h) did not abolish the ability of PYY to inhibit secretin-stimulated pancreatic bicarbonate secretion. This study demonstrates that PYY can inhibit nutrient-, hormonal-, and vagally-stimulated pancreatic exocrine secretion in the dog; its mechanism of action appears to be independent of cholinergic innervation.

Amino Acids↗

Inhibitory action of peptide YY on gastric acid secretion.

The purpose of this study is to investigate the effect of peptide YY (PYY) on pentagastrin-, histamine-, and bethanechol-stimulated gastric acid secretion and the possible mechanisms by which PYY inhibits gastric acid secretion. Six mongrel dogs with chronic gastric and duodenal fistulas were given an intravenous infusion of pentagastrin (0.5 microgram . kg-1 . h-1), histamine (18 micrograms . kg-1 . h-1), or bethanechol (80 micrograms . kg-1 . h-1) either alone or simultaneously with intravenous PYY (100, 200, 400, pmol . kg-1 . h-1). PYY (100, 200, 400 pmol . kg-1 . h-1) inhibited pentagastrin-stimulated gastric acid secretion in a dose-dependent manner. PYY (400 pmol . kg-1 . h-1) did not depress bethanechol-stimulated gastric acid secretion. PYY (400 pmol . kg-1 . h-1) also failed to inhibit histamine-stimulated gastric acid secretion. Furthermore, PYY inhibit pentagastrin-stimulated gastric acid secretion in the face of atropine, vagotomy, or indomethacin treatment. These findings indicate that the inhibitory action of PYY on gastric acid secretion is in part independent of long and short cholinergic pathways. These findings also indicate that the inhibitory mechanism of PYY is independent of prostaglandin synthesis. Our findings are discussed in relation to previous reports regarding the effects of PYY on gastric acid secretion.

Animals↗

Primary hemangiopericytoma of the heart associated with pseudoaneurysm of the pulmonary artery--a case report.

A thirty-three-year-old male with malignant hemangiopericytoma of the right ventricular outflow tract and the pulmonary artery associated with pseudoaneurysm formation at the latter is presented. Contrast computed tomography was helpful in diagnosing the pseudoaneurysm of the pulmonary artery. The positional change of the murmur, with a tumor plop caused by the pedunculated tumor of the right ventricular outflow tract, was detected.

Adult↗

[Malignant hemangiopericytoma of the right ventricular outflow tract and the pulmonary artery: a case report].

A case of malignant hemangiopericytoma of the right ventricular outflow tract and the pulmonary artery associated with formation of a pseudoaneurysm in the latter is presented. This 33 year-old man had a four month history of illness. From the surgical point of view, all non-invasive modalities including phonocardiography, M-mode and two-dimensional echocardiography, radionuclide angiocardiography and contrast computed tomography underestimated the extent of the tumor as compared with the selective cineangiographic estimation. Therefore, it was suggested that in some situations where surgery is contemplated, a combination of non-invasive methods and cineangiography is essential to obtain sufficient diagnostic information, although the introduction of catheters into the right-sided cardiac chambers containing a mass might be hazardous because of potentiality dislodging portions of a tumor or adherent thrombus. Concerning pericardial abnormalities, contrast computed tomography was the most sensitive and specific method among the diagnostic techniques used in this case.

Adult↗