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Biomedical subjects

C Sakamoto

Publications and source records attributed to C Sakamoto.

At least 73 records · Page 4Linked to original sources

Pericholangitis with ulcerative colitis following autoimmune hepatitis over 12 years.

A 35-year-old woman was diagnosed as autoimmune hepatitis 12 years ago by abnormal findings of liver tests including lupus erythematosus (LE) cell phenomenon and liver biopsy. She was admitted in May 1990 with a history of lower gastrointestinal bleeding. Colonoscopy with biopsy and barium enema revealed chronic ulcerative colitis along the entire colon. Since liver tests did not respond well to prednisolone treatment, liver biopsy was again performed and it revealed periductal inflammation with small duct proliferation, a finding compatible with pericholangitis. We herein report this patient who was initially diagnosed as autoimmune hepatitis and thereafter found to be pericholangitis associated with ulcerative colitis.

Adult↗

[Evaluation of myometrial invasion in patients with endometrial cancer by magnetic resonance imaging].

Magnetic Resonance Imaging (MRI) has been widely used for the diagnosis of gynecologic disease. We studied the clinical usefulness of MRI in 34 patients with endometrial cancer from July, 1988 to August, 1991. Pre-operative pelvic MRI was carried out to evaluate the myometrial invasion in these patients. MRI was accurate in predicting the presence or absence of myometrial invasion in 23 of 34 cases (68%), while echo or CT (computed tomography) was accurate in 26% and 8%. In conclusion, MRI is considered to be the most useful examination for the evaluation of myometrial invasion in endometrial cancer.

Adult↗

[The inhibitory effect of cholecystokinin on phosphatidylcholine synthesis in isolated rat pancreatic acini (II)].

To better understand the mechanism underlying the inhibition induced by cholecystokinin (CCK) of phosphatidylcholine (PC) synthesis, the effects of CCK treatment on the activities of enzyme involved in PC synthesis via CDP-choline pathway were studied in isolated rat pancreatic acini. CCK treatment of acini reduced CTP: phosphocholine cytidylyltransferase activity in both cytosolic and particulate fraction. However, CCK treatment of acini did not alter the activities of choline kinase and phosphocholinetransferase in acini. When acini were labeled with [3H] myristic acid and chased, CCK8 (1 nM) reduced the synthesis of [3H] myristic acid labeled-PC to 27% of control after 60 min-chase period. This inhibition of PC synthesis induced by CCK was accompanied by a delayed disappearance of [3H] diacylglycerol (DAG), the radioactivity of which was 225% of control at 60 min. CCK also induced an increase in [3H] triacylglycerol and [3H] phosphatidic acid in acini. These results suggest that CCK inhibits PC synthesis by inducing the inhibition of CTP: phosphocholine cytidylyltransferase activity. The inhibition by CCK of PC synthesis may contribute to the sustained accumulation of DAG in pancreatic acinar cells.

Animals↗

Cholecystokinin inhibits phosphatidylcholine synthesis via a Ca(2+)-calmodulin-dependent pathway in isolated rat pancreatic acini. A possible mechanism for diacylglycerol accumulation.

The effects of cholecystokinin (CCK) and other pancreatic secretagogues on phosphatidylcholine (PC) synthesis were studied in isolated rat pancreatic acini. When acini were incubated with [3H]choline in the presence of 1 nM CCK-octapeptide (CCK8) for 60 min, the incorporations of [3H]choline into both water-soluble choline metabolites and PC in acini were reduced by CCK8 to 74 and 41% of control, respectively. Pulse-chase study revealed that CCK8 reduced both the disappearance of phosphocholine and the synthesis of PC. Other Ca(2+)-mobilizing secretagogues such as carbamylcholine, bombesin, and Ca2+ ionophore A23187 also reduced PC synthesis to the same extent as did CCK8. When combined with 1 nM CCK8, A23187 or carbamylcholine did not further inhibit PC synthesis. Furthermore, W-7 or W-5, a calmodulin antagonist, reversed the inhibition by CCK8 of PC synthesis, suggesting that a Ca(2+)-calmodulin-dependent pathway may be involved in CCK-induced inhibition of PC synthesis in acini. By contrast, neither cAMP-dependent secretagogues such as secretin and dibutyryl cAMP nor a phorbol ester had any effect on PC synthesis in acini. Staurosporine or H-7, a protein kinase C inhibitor, did not affect the inhibition by CCK of PC synthesis. The analysis of enzyme activity involved in PC synthesis via CDP-choline pathway showed that CCK treatment of acini reduced CTP:phosphocholine cytidylyltransferase activity in both cytosolic and particulate fraction, a finding consistent with the delayed disappearance of phosphocholine induced by CCK in pulse-chase study. By contrast, CCK treatment of acini did not alter the activities of choline kinase and phosphocholine transferase in acini. The extent of inhibition by CCK of cytidylyltransferase activity became much larger when subcellular fractions of acini were prepared in the presence of phosphatase inhibitors. In addition, W-7 reversed the inhibitory effect of CCK treatment on cytidylyltransferase activity in acini. When acini were labeled with [3H]myristic acid and chased, CCK8 (1 nM) reduced the synthesis of [3H]myristic acid-labeled PC to 27% of control after a 60-min chase period. This inhibition of PC synthesis induced by CCK was accompanied by a delayed disappearance of [3H]diacylglycerol, the radioactivity of which was 225% of control at 60 min. These results indicate that CCK inhibits PC synthesis by inducing both the reduction of choline uptake into acini and the inhibition of CTP:phosphocholine cytidylyltransferase activity. Furthermore, the results suggest the possibility that the activation of Ca(2+)-calmodulin-dependent kinase in response to CCK may phosphorylate cytidylyltransferase thereby decreasing this enzyme activity in pancreatic acinar cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Alkaloids↗

[Difference in effects of sodium fluoride and cholecystokinin on pepsinogen secretion from isolated guinea pig gastric chief cells].

In order to further investigate the precise mechanisms of cholecystokinin(CCK)-induced pepsinogen secretion from gastric chief cells, we compared the signal transducing mechanisms activated by CCK with those activated by sodium fluoride (NaF) in isolated guinea pig gastric chief cells. NaF stimulated a monophasic increase in diacylglycerol accumulation with a peak value observed at 15 sec, while CCK strongly stimulated its biphasic accumulation. NaF evoked an increase in initial Ca2+ influx rate with a slow and smooth increase in intracellular free Ca2+ concentration [( Ca2+]i) monitored by fura-2, while CCK stimulated a rapid increase in [Ca2+]i followed by a late sustained phase of [Ca2+]i increase. Lanthanum chloride (La3+) effectively (unlike either nifedipine or verapamil) blocked NaF-stimulated increase in [Ca2+], but it blocked only CCK-stimulated late sustained phase of [Ca2+]i increase. La3+ reduced NaF-or CCK-stimulated maximal pepsinogen secretion to 57.0 +/- 2.5% and 73.1 +/- 3.1% of control, respectively. These results suggest that NaF activates a signal transducing mechanism which seems to be distinct from that activated by CCK, thereby inducing an increase in diacylglycerol accumulation, Ca3+ influx and pepsinogen secretion in guinea pig gastric chief cells.

Animals↗

Characterization of cholecystokinin receptors on guinea pig gastric chief cell membranes.

The binding of cholecystokinin (CCK) to its receptors on guinea pig gastric chief cell membranes were characterized by the use of 125I-CCK-octapeptide (CCK8). At 30 degrees C optimal binding was obtained at acidic pH in the presence of Mg2+, while Na+ reduced the binding. In contrast to reports on pancreatic and brain CCK receptors, scatchard analysis of CCK binding to chief cell membranes revealed two classes of binding sites. Whereas, in the presence of a non-hydrolyzable GTP analog, GTP gamma S, only a low affinity site of CCK binding was observed. Chief cell receptors recognized CCK analogs, with an order of potency of: CCK8 greater than gastrin-I greater than CCK4. Although all CCK receptor antagonists tested (dibutyryl cyclic GMP, L-364718 and CR1409) inhibited labeled CCK binding to chief cell membranes, the relative potencies of these antagonists in terms of inhibiting labeled CCK binding were different from those observed in either pancreatic membranes or brain membranes. The results indicate, therefore, that on gastric chief cell membranes there exist specific CCK receptors, which are coupled to G protein. Furthermore, chief cell CCK receptors may be distinct from pancreatic or brain type CCK receptors.

Animals↗

The inhibitory effect of anti-tumor drugs on phosphatidylcholine synthesis and its reversal by geranylgeranylacetone in the isolated guinea pig gastric glands.

To clarify the mechanism by which the administration of anti-tumor drugs, antibiotics or hypoglycemic agents causes gastric mucosal injury, the effects of these drugs on phosphatidylcholine synthesis in isolated guinea pig gastric glands were examined in vitro. Anti-tumor drugs such as tegafur, cyclophosphamide, and mitomycin C decreased [3H]choline incorporation into phosphatidylcholine. Furthermore, tegafur at 0.4 mg/ml decreased [3H]choline incorporation in the glands that had been pulsed with [3H]choline incorporation, suggesting that tegafur exerts its effect by inhibiting late step of phosphatidylcholine synthesis in the stomach. On the other hand, cefaclor and glibenclamide had no effect on [3H]choline incorporation. Geranylgeranylacetone, an anti-ulcer drug partially restored tegafur-induced reduction of [3H]choline incorporation into phosphatidylcholine. These results suggest that the anti-tumor drug-induced gastric mucosal injury may be due to drug-induced decrease in phosphatidylcholine synthesis, which the restoration of phosphatidylcholine synthesis by geranylgeranylacetone may explain its anti-ulcer action on drug-induced gastric mucosal lesions in vivo.

Animals↗

Ethanol stimulates pepsinogen release by opening a Ca2+ channel of guinea pig gastric chief cells.

To better understand the mechanism by which ethanol causes gastric mucosal injury, the effects of ethanol on isolated guinea pig gastric chief cells were investigated in vitro. Ethanol at 300-900 mmol/L dose-dependently stimulated an increase in pepsinogen release without affecting chief cells' viability. Ethanol stimulated an increase in initial Ca2+ influx rate and intracellular Ca2+ concentration at the same concentrations as it stimulated pepsinogen release, whereas it did not stimulate cyclic adenosine monophosphate accumulation. Pepsinogen release stimulated by 900 mmol/L ethanol was almost equal to that stimulated by 10(-8) mol/L COOH terminal octapeptide of cholecystokinin. Ethanol did not stimulate an increase in the accumulation of inositol trisphosphates and tetrakisphosphates in [3H]inositol-labeled chief cells, whereas cholecystokinin octapeptide caused a significant increase in inositol trisphosphates and tetrakisphosphates. Ethanol-stimulated pepsinogen release and increases in the initial Ca2+ influx rate and intracellular Ca2+ concentration were inhibited by 0.5 mmol/L La3+ or 1 mmol/L ethylene glycol tetraacetic acid but were not inhibited by nifedipine or verapamil. These results suggest that the effect of ethanol on pepsinogen release from the gastric chief cells may be due to its opening of a Ca2+ channel that is sensitive to La3+ and that the pepsinogen releasing action of ethanol may be one of factors for ethanol-induced gastric mucosal injury.

Animals↗

[Protective effect of prostaglandin E2 on ethanol-induced injury of chief cells isolated from guinea pig].

The mechanism by which PGE2 directly protects individual gastric cells from ethanol-induced injury was studied by using isolated gastric chief cells from guinea pig. Ethanol dose-dependently caused chief cell injury which was estimated by the release of lactate dehydrogenase (LDH) from chief cells. Pretreatment of chief cells with PGE2 reduced the cell damage caused by ethanol in time- and dose-dependent manner. The pretreatment at 37 degrees C and pH 7.4 with PGE2 maximally reduced the cell damage. This protective effect was reduced when the pretreatment was performed at either acid or alkaline pH or at reduced temperature. PGE2 did not stimulate any increase in cytosolic free Ca2+ concentration and initial Ca2+ influx rate. On the other hand, PGE2 stimulated an increase of cAMP accumulation in chief cells. However, pretreatment of chief cells with secretion, VIP, dbcAMP or forskolin failed to reduce subsequent injury caused by ethanol. These results suggest that PGE2 may protect chief cells against ethanol-caused injury probably via PGE type receptors coupled to as yet unidentified signal in gastric chief cells.

Animals↗

[The inhibitory effect of cholecystokinin on phosphatidylcholine synthesis in isolated rat pancreatic acini].

The effects of cholecystokinin (CCK) and other pancreatic secretagogues on phosphatidylcholine (PC) synthesis were studied in isolated rat pancreatic acini. When acini were incubated with [3H] choline in the presence of 1 nM CCK-octapeptide (CCK8) for 60 min, the incorporations of [3H] choline to both water soluble choline metabolites and PC in acini were reduced by CCK8 to 74% and 41% of control, respectively. Pulse-chase study revealed that CCK reduced both the disappearance of phosphocholine and the synthesis of PC. Ca(2+)-mobilizing secretagogues such as carbamylcholine and Ca2+ ionophore A23187 also reduced PC synthesis to the same extent as CCK8. By contrast, neither cAMP-dependent secretagogues such as secretin and dibutyryl cAMP nor a phorbol ester had any effect on PC synthesis in acini. These results suggest that CCK inhibits PC synthesis by inducing both the reduction of choline uptake into acini and the inhibition of CTP: phosphocholine cytidylyltransferase activity. This hormonal regulation of PC synthesis via CDP-choline pathway appears to be mediated by Ca(2+)-dependent pathway but not by cAMP- or protein kinase C-dependent pathway.

Animals↗

[Characterization of muscarinic acetylcholine receptors in the isolated gastric chief cells from guinea pig].

The muscarinic receptor system involved in pepsinogen secretion from isolated guinea pig gastric chief cells was investigated by assessing the effect of muscarinic receptor antagonists on carbamylcholine (CCh)-induced pepsinogen secretion. CCh stimulated pepsinogen secretion in a dose dependent manner with the maximal and the half-maximal stimulatory concentrations at 10(-4) and 3 x 10(-6) M, respectively. Each of five different muscarinic receptor antagonists such as atropine, pirenzepine, 4-diphenylacetoxy-N-methylpiperidine methiodide (4-DAMP), AF-DX116 and scopolamine reduced pepsinogen secretion stimulated by graded concentration of CCh, but did not alter the maximum secretion. The increase in concentration of each antagonist caused parallel rightward shift of the dose response curve to CCh. Schild analysis of the inhibition of CCh-induced pepsinogen secretion by the antagonists showed that pA2 values of atropine, scopolamine and 4-DAMP are 8.8, 9.2 and 9.0, respectively. On the other hand, pA2 values of pirenzepine and AF-DX116 are 6.5 and 5.9, respectively, suggesting that the muscarinic receptor mediating pepsinogen secretion from chief cells has a intermediate affinity for pirenzepine and a low affinity for AF-DX116. These results suggest that the muscarinic acetylcholine receptor mediating pepsinogen secretion from gastric chief cells is the M3 subtype.

Animals↗

[Structural characterization of the somatostatin receptors on rat cerebrocortical membranes].

We characterized structurally the receptors for somatostatin in rat cerebral cortex by affinity labeling with [125I-Tyr1] somatostatin. [125I-Tyr1] somatostatin was cross-linked to cerebrocortical membranes using photoreactive cross-linker: N-5-azido-2-nitrobenzoyloxy-succinimide. Analysis by autoradiography revealed a broad band centered at Mr = 72,000 in the presence or absence of dithiothreitol. Affinity labeling of and specific [125I-Tyr1] somatostatin binding to cerebrocortical membranes were decreased similarly by adding unlabeled somatostatin or nonhydrolyzable guanine nucleotide analogue, guanyl-5'-yl imidodiphosphate, in a dose dependent manner. The pretreatment of cerebrocortical membranes with islet activating protein resulted in a decrease in subsequent affinity labeling of the protein. The cross-linked protein could be solubilized with Zwittergent 3-12 and poorly with digitonin, triton X-100 and NP-40. When exposed to agarose-coupled lectins, the solubilized labeled protein was absorbed to wheat germ agglutinin, partially to ricin communis-II, and not to concanavalin A or lentil lectin. The Mr = 72,000 protein bound to wheat germ agglutinin-agarose was eluted with not only N,N',N"-triacetylchitotriose but also N-acetylglucosamine. These results suggest that somatostatin receptors on cerebrocortical membranes are a monomeric glycoprotein with a Mr = 70,000 containing no disulfide-linked binding subunit, which is coupled to islet activating protein-sensitive guanine nucleotide regulatory protein.

Animals↗

Effects of CCK-receptor antagonists on CCK-stimulated pepsinogen secretion and calcium increase in isolated guinea pig gastric chief cells.

The effects of CCK-receptor antagonists such as dibutyryl cyclic GMP (dbcGMP), L-364,718, and CR1409 on COOH-terminal octapeptide of CCK (CCK-8)-stimulated chief cell responses were examined using isolated guinea pig gastric chief cells. L-364,718 and CR1409 inhibited CCK-8-stimulated pepsinogen secretion over the same concentration range as they inhibited CCK-8-stimulated increases in intracellular Ca2+ concentration ([Ca2+]i), respectively. Schild analysis of the CCK dose-response curve indicates that L-364,718 and CR1409 exert their inhibitory effects on CCK-8-stimulated chief cell responses in a competitive manner. By contrast, dbcGMP inhibited not only CCK-8- but also carbachol-stimulated pepsinogen secretion. Furthermore, dbcGMP inhibited CCK-8-stimulated pepsinogen secretion more potently than the increases in [Ca2+]i. These results suggest that L-364,718 and CR1409 act as CCK-receptor antagonists, but dbcGMP has another inhibitory effect on pepsinogen secretion in addition to the effect as a CCK-receptor antagonist in guinea pig gastric chief cells.

Animals↗

Difference in effects of sodium fluoride and cholecystokinin on diacylglycerol accumulation and calcium increase in guinea pig gastric chief cells.

In isolated guinea pig gastric chief cells, sodium fluoride (NaF) stimulated a monophasic increase in diacylglycerol accumulation, while cholecystokinin (CCK) strongly stimulated its biphasic accumulation. NaF evoked an increase in initial Ca2+ influx rate with a slow increase in intracellular free Ca2+ concentration [( Ca2+]i), while CCK stimulated a rapid increase in [Ca2+]i followed by a late sustained phase of the [Ca2+]i increase. Lanthanum chloride (La3+) effectively blocked NaF-stimulated increase in [Ca2+]i, but it blocked only CCK-stimulated late sustained phase of [Ca2+]i increase. The effect of NaF on pepsinogen secretion was enhanced in the presence of 100 microM AlCl3. Furthermore, pertussis toxin did not affect NaF-evoked diacylglycerol accumulation at all. These results suggest that NaF may activate a pertussis-toxin insensitive guanine nucleotide regulatory protein (G protein) coupled to a signal transducing mechanism which seems to be distinct from that activated by CCK, thereby inducing increases in diacylglycerol accumulation, Ca2+ influx and pepsinogen secretion in guinea pig gastric chief cells.

Animals↗

Placental site trophoblastic tumor: immunohistochemical and nuclear DNA study.

A rare case of placentae site trophoblastic tumor (PSTT) studied by immunohistochemistry and nuclear DNA analysis is reported. The patient, a 24-year-old Japanese female, complained of amenorrhea. Dilatation and curettage revealed a small specimen that contained trophoblastic cells and caused intractable bleeding. Pelvic sonography revealed a 5-cm mass in the posterior uterine wall with multiple cystic lesions of several sizes. The cystic lesions were shown to be dilated vessels by magnetic resonance imaging (MRI) and digital subtraction angiography (DSA). Serum beta-hCG (beta subunit of human chorionic gonadotropin) was 3.7 ng/ml. Total abdominal hysterectomy revealed a well-circumscribed, yellow, soft mass in the posterior uterine wall. Microscopic findings were consistent with PSTT and the mitotic count was extremely low. Immunohistochemically, most of the tumor cells were intensely stained with human placental lactogen, whereas few were stained with human chorionic gonadotropin. The nuclear DNA content of the trophoblastic cells showed a sharp peak at the triploid range coexistent with a few cells of higher ploidy. This is the first report of sonographic findings and nuclear DNA analysis by spot cytometry in a case of PSTT.

Adult↗

Prostaglandin protects isolated guinea pig chief cells against ethanol injury via an increase in diacylglycerol.

We studied cellular processes activated by prostaglandins (PG) that are involved in the protection of gastric chief cell injury estimated in terms of dye exclusion test, release of lactate dehydrogenase (LDH), or 51Cr from prelabeled chief cells. Pretreatment of chief cells with 3 x 10(-6) M PGE2 or PGE1 at 37 degrees C and pH 7.4 for 15 min maximally reduced not only ethanol- but also taurocholic acid-caused LDH release from chief cells. PGs equipotently stimulated increases in the accumulation of diacylglycerol and cyclic AMP without elevating intracellular Ca2+ concentrations in gastric chief cells. The rank order of the potency was equal to that of PGs to reduce the injury. Pretreatment of chief cells with synthetic 1-oleoyl-2-acetyl-sn-glycerol (OAG) or 12-o-tetradecanoyl phorbol 13-acetate (TPA) reduced the injury of chief cells, while 4 alpha-phorbol 12,13-didecanoate, an inactive phorbol ester, failed to reduce the injury and 1-(5-isouinolinylsulfonyl)-2-methylpiperazine (H7) blocked the protective action of PGE2. On the other hand, forskolin and dbcAMP had no effect on ethanol-caused LDH release and diacylglycerol formation in chief cells. These results suggest that PGE2 and PGE1 possess the direct protective action against ethanol- or taurocholic acid-caused injury in chief cells, presumably through the activation of the diacylglycerol/protein kinase C signaling pathway.

Animals↗

[Effect of teprenone and H2-receptor antagonists on phosphatidylcholine synthesis in the isolated guinea pig gastric glands].

To better understand the mechanism of phosphatidylcholine synthesis in the stomach, [3H] choline incorporation into phosphatidylcholine in response to the drugs which have been commonly used for treating the patients with gastric ulcer was examined using isolated guinea pig gastric glands. Teprenone stimulated [3H] choline incorporation into phosphatidylcholine in gastric glands, up to 146 +/- 11% of control (n = 6, P less than 0.05). On the other hand famotidine, ranitidine and cimetidine significantly decreased the incorporation to 73 +/- 8%, 72 +/- 11%, 67 +/- 11% of control, respectively (n = 6, P less than 0.05, P less than 0.05, P less than 0.05). When the glands were pulsed with [3H] choline followed by incubation in the presence of teprenone or each H2RA for 180 min to see the effects of the agents on the limiting step of the phosphatidylcholine synthesis, teprenone also significantly stimulated [3H] choline incorporation into phosphatidylcholine, but each H2RA did not affect phosphatidylcholine biosynthesis any more. Teprenone stimulated CTP:phosphocholine cytidylyltransferase (CTF) from a basal value of 0.92 +/- 0.10 to 1.69 +/- 0.39 (nmol/min/mg protein) (n = 3, P less than 0.05). These results suggest that teprenone may stimulate phosphatidylcholine biosynthesis through the activation of CTF, a late-limiting enzyme of PC biosynthesis, and H2RA may affect phosphatidylcholine synthesis by inhibiting choline transport or choline kinase in gastric glands.

Animals↗