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Biomedical subjects

N Morikawa

Publications and source records attributed to N Morikawa.

At least 19 recordsLinked to original sources

Calcitonin gene-related peptide and somatostatin releases correlated with the area under the lafutidine concentration-time curve in human plasma.

OBJECTIVE: To examine the effects of the histamine H(2)-receptor antagonist, lafutidine, at clinical dosage (10 mg tablet after a standardized meal) on plasma levels of the gastrointestinal peptides, calcitonin gene-related peptide (CGRP), somatostatin and gastrin. METHODS: Six healthy male volunteers ate a standardized meal, and received either lafutidine orally at a dose of 10 mg or water only (control). Blood samples were taken before and up to 4 h after the drug administration. Plasma lafutidine concentrations were determined by high pressure liquid chromatography. Pharmacokinetic analysis of lafutidine was performed using one-compartmental model. The levels of immunoreactive substances of plasma CGRP, somatostatin and gastrin were measured by enzyme immunoassay, and the amount of peptide release was calculated by the trapezoidal method. Lafutidine significantly increased plasma CGRP levels at 1, 1.5, 2.5 and 4 h and the total amount of CGRP release (192 +/- 14.0 pg.h/mL) compared with the control group (128 +/- 21.5 pg.h/mL). RESULTS: Lafutidine significantly increased the plasma somatostatin levels at 1 and 1.5 h, and the total amount of somatostatin released (107 +/- 18.2 pg.h/mL) compared with the control (78.4 +/- 7.70 pg.h/mL). The area under the drug concentration-time curve (AUC) from 0 to 4 h after administration correlated well with the Delta-CGRP and Delta-somatostatin release but not with total amount of gastrin released. However, plasma gastrin levels were significantly elevated at 1.5 h after drug administration. CONCLUSION: Lafutidine at clinical dosage increases plasma CGRP and the somatostatin. The amounts released correlated with the AUC of lafutidine in humans. These results suggest that the increased release of CGRP and somatostatin may contribute to its gastroprotective and anti-acid secretory effect.

Acetamides↗

Combined fibrolamellar carcinoma and cholangiocarcinoma exhibiting biphenotypic antigen expression: a case report.

Fibrolamellar carcinoma (FLC), a variant of hepatocellular carcinoma (HCC), very rarely occurs in association with cholangiocarcinoma (CC). This report describes the first case of FLC coexisting with CC (FLC-CC) from Japan. Although the major part of the tumour located in the right lobe of the liver showed the typical features of FLC, CC was admixed with the FLC, not only in the primary hepatic tumour, but also in the lymph node metastases. Immunohistochemical analysis revealed that, although carcinoembryonic antigen (CEA), which can be detected with monoclonal antibodies in the cytoplasm and the cell surface of CC cells but not HCC cells, was expressed in only the CC cells in the primary tumour, it was expressed extensively in the cytoplasm of both CC and FLC cells in the metastatic and recurrent tumours. Furthermore, Hep Par 1, a hepatocyte specific antigen, was also expressed in both the FLC and CC cells. These findings suggest that, in this case, both FLC and CC were possibly derived from the same cancer stem cell with the capacity to differentiate into both hepatocytes and bile duct epithelium, and that both the cellular components, therefore, exhibited biphenotypic antigen expression.

Adolescent↗

Rat costochondral cell characteristics on poly (L-lactide-co-epsilon-caprolactone) scaffolds.

This study was designed to examine the adhesion, proliferation, and morphology of chondrocytes on new scaffolds; and to examine these cells histologically for the ability of the chondrocytes to maintain chondrogenic properties after subcutaneous implantation into nude mice. Both 75:25 poly (L-lactide-co-epsilon-caprolactone) (75PLC) and 50:50 poly (L-lactide-co-epsilon-capro-lactone) scaffold (50PLC) were tested as a scaffold for rat costochondral resting zone chondrocytes in comparison with a type I collagen sponge scaffold (collagen scaffold). Both of the poly (L-lactide-co-epsilon-caprolactone) scaffolds (75PLC and 50PLC) were coated with type I collagen solution and the effects of the collagen coat (hybrid-PLC) were also examined. The hybrid-75PLC bound the same number of cells as the collagen scaffold, whereas the 75PLC and the 50PLC bound 60% and 50% fewer cells than the collagen scaffold, respectively. The cell growth on the scaffolds progressed with culture time in all scaffolds. Cell morphology was assessed by scanning electron microscopy for differences in the structure of cellular interaction. Chondrocytes on every scaffold maintained a spherical shape. The hybrid-PLCs were superior to the PLCs with respect to the number of cells attached. The PLCs had an advantageous degradation characteristic in that they retained their original shape better than the collagen scaffold. Additionally, in the PLCs seeded, the cells retained their integrity 4 weeks after implantation, although the volume of collagen scaffold decreased by 50%.

Animals↗

Expression of arginine vasopressin and vasopressin V1a receptor mRNA in diabetic (db/db) mice.

To assess the involvement of arginine vasopressin (AVP) in genetical diabetic (db/db) mice, we examined the mRNA expression levels of AVP and vasopressin V(1a) receptors (V(1a)R) in brain and liver of db/db mice. In 10 week-old db/db mice, a significant elevation in blood sugar levels and plasma osmolality were observed, showing obvious diabetic symptoms. There was a significant increase in brain AVP mRNA levels in db/db mice. The expression level of liver V(1a)R mRNA in db/db mice was significantly down-regulated, presumably as a consequence of ligand-receptor interaction. This is in contrast to results that show no significant reduction in brain V(1a)R mRNA levels when comparing db/db and control mice. Thus, it is possible that in the progress of genetic diabetes mellitus, AVP acts in liver than in brain through V(1a)R.

Animals↗

SRYand architectural gene regulation: the kinetic stability of a bent protein-DNA complex can regulate its transcriptional potency.

Protein-directed DNA bending is proposed to regulate assembly of higher-order DNA-multiprotein complexes (enhanceosomes and repressosomes). Because transcriptional initiation is a nonequilibrium process, gene expression may be modulated by the lifetime of such complexes. The human testis-determining factor SRY contains a specific DNA-bending motif, the high-mobility group (HMG) box, and is thus proposed to function as an architectural factor. Here, we test the hypothesis that the kinetic stability of a bent HMG box-DNA complex can in itself modulate transcriptional potency. Our studies employ a cotransfection assay in a mammalian gonadal cell line as a model for SRY-dependent transcriptional activation. Whereas sex-reversal mutations impair SRY-dependent gene expression, an activating substitution is identified that enhances SRY's potency by 4-fold. The substitution (I13F in the HMG box; fortuitously occurring in chimpanzees) affects the motif's cantilever side chain, which inserts between base pairs to disrupt base pairing. An aromatic F13 cantilever prolongs the lifetime of the DNA complex to an extent similar to its enhanced function. By contrast, equilibrium properties (specific DNA affinity, specificity, and bending; thermodynamic stability and cellular expression) are essentially unchanged. This correlation between potency and lifetime suggests a mechanism of kinetic control. We propose that a locked DNA bend enables multiple additional rounds of transcriptional initiation per promoter. This model predicts the occurrence of a novel class of clinical variants: bent but unlocked HMG box-DNA complexes with native affinity and decreased lifetime. Aromatic DNA-intercalating agents exhibit analogous kinetic control of transcriptional elongation whereby chemotherapeutic potencies correlate with drug-DNA dissociation rates.

Amino Acid Sequence↗

Pharmacokinetics of nimustine, cytosine arabinoside, and methotrexate in cerebrospinal fluid during cerebrospinal fluid perfusion chemotherapy.

This report investigates the pharmacokinetics of nimustine (ACNU), cytosine arabinoside (Ara-C), and methotrexate (MTX) in cerebrospinal fluid (CSF) during CSF perfusion chemotherapy. A 47-year-old Japanese man with spinal cord, cerebellum and brain stem dissemination of oligo-astrocytoma received nine courses of CSF perfusion chemotherapy with ACNU, Ara-C, and MTX. A CSF perfusion chemotherapy solution was perfused via an Ommaya reservoir in the ventricle, and was discharged by drainage though another Ommaya reservoir in the lumbar spinal canal. CSF samples via Ommaya reservoirs in the lumbar spinal canal were obtained during the fifth and eighth courses of treatment. The concentrations of ACNU and Ara-C in CSF were measured by HPLC, and the MTX concentrations by fluorescence polarization immunoassay. In the fifth course of treatment, a CSF injection chemotherapy solution, consisting of 5 mg of ACNU dissolved in 20 ml of artificial CSF, was injected over a few minutes using the Ommaya reservoir. Next, a CSF perfusion chemotherapy solution, consisting of 10 mg of Ara-C and 5 mg of MTX dissolved in 100 ml of artificial CSF, was perfused over 2 h. In the eighth course of treatment, a CSF perfusion chemotherapy solution, consisting of 5 mg of ACNU, 10 mg of Ara-C and 5 mg of MTX dissolved in 100 ml of artificial CSF, was perfused over 2 h. In both treatments, the highest concentrations of Ara-C and MTX in CSF were observed 1 or 2 h after the end of perfusion, with the values of each drug being similar. The CSF AUCs of Ara-C and MTX in each treatment were of similar values. Although the highest concentration of ACNU in CSF was observed in the fifth treatment 1 h after injection (an injection chemotherapy of ACNU plus a perfusion chemotherapy of Ara-C and MTX), the concentration of ACNU in CSF was undetectable in the eighth treatment (a perfusion chemotherapy of ACNU, Ara-C and MTX). We were successful in administering all anticancer drugs, and reaching a level of over 1.0 microg/ml concentration in CSF of the lumbar spinal canal, using an injection chemotherapy of ACNU plus a perfusion chemotherapy of Ara-C and MTX; this was done even though the drugs, in particular ACNU, underwent some perfusion-period dependent decomposition.

Adult↗

Acclimatization and response of minipigs toward humans.

As a first step toward making an efficient acclimatization methodology for minipigs, the reaction of Göttingen minipigs, 3-24 months of age, toward humans was investigated. All minipigs were kept in an individual cage, and the reaction toward humans (acclimatization index) was evaluated by simple observations. The acclimatization index was evaluated as the total number of points scored (0-30 points) based on the following criteria: (1) the position of the minipig when the cage door was opened; (2) the reaction of the minipig when the observer approached; and (31 the reaction of the minipig when the observer touched it. Subsequently, each animal was ranked by total points scored: 30 points = AA, 20 points < or = A < 30 points, 10 points < or = B < 20 points, 0 points < or = C < 10 points. Based on this evaluation, the reactions of minipigs under three conditions were investigated. The following findings were confirmed: first, minipig reaction to humans was influenced by monthly age; second, taming was possible under ordinary conditions of care, but we had to wait until 10 months of age on average for this to occur; third, if simple contact was made during care time, minipigs became tame within less than 4 weeks after the commencement of contact. We therefore consider it possible to artificially control the reaction of minipigs toward humans, and to make minipigs more available for experiments by adding control of the hereditary factors that influence this reaction.

Acclimatization↗

Molecular cloning and characterization of a novel type of histamine receptor preferentially expressed in leukocytes.

Recently cDNA encoding the histamine H3 receptor was isolated after 15 years of considerable research. However, several studies have proposed heterogeneity of the H3 receptor. We report here the molecular cloning and characterization of a novel type of histamine receptor. A novel orphan G-protein-coupled receptor named GPRv53 was obtained through a search of the human genomic DNA data base and analyzed by rapid amplification of cDNA ends (RACE). GPRv53 possessed the features of biologic amine receptors and had the highest homology with H3 receptor among known G-protein-coupled receptors. Mammalian cells expressing GPRv53 were demonstrated to bind and respond to histamine in a concentration-dependent manner. In functional assays, not only an H3 receptor agonist, R-(alpha)-methylhistamine, but also a H3 receptor antagonist, clobenpropit, and a neuroleptic, clozapine, activated GPRv53-expressing cells. Tissue distribution analysis revealed that expression of GPRv53 is localized in the peripheral blood leukocytes, spleen, thymus, and colon, which was totally different from the H3 receptor, whose expression was restricted to the brain. The discovery of the GPRv53 receptor will open a new phase of research on the physiological role of histamine.

Amino Acid Sequence↗

Human Müllerian-inhibiting substance promoter contains a functional TFII-I-binding initiator.

Müllerian-inhibiting substance (MIS) plays an essential role in mammalian male sexual development; thus, it is important to determine how the tightly regulated expression of the MIS gene is transcriptionally controlled. Transcription of eukaryotic genes is dependent on regulatory elements in the enhancer and one or both distinct elements in the core promoter: the TATA box, and the initiator (Inr) element. Because the human MIS gene does not contain a consensus TATA and has not been reported to contain an Inr element, we hypothesized that the initiator region of the core promoter was essential for promoter activity. Transient transfection assays were conducted using an immortalized Embryonic Day 14.5 male rat urogenital ridge cell line (CH34) that expresses low levels of MIS. These studies revealed that promoter activity is dependent on the region around the start site (-6 to +10) but not on the nonconsensus TATA region. Electrophoretic mobility shift assays demonstrated that the human MIS initiator sequence forms a specific DNA-protein complex with CH34 cell nuclear extract, HeLa cell nuclear extract, and purified TFII-I. This complex could be blocked or supershifted by the addition of antibodies directed against TFII-I. These data suggest that the human MIS gene contains a functional initiator that is specifically recognized by TFII-I.

Animals↗

Methotrexate concentration in cerebrospinal fluid of the space created by tumor removal.

This paper investigates the post-surgical pharmacokinetics of methotrexate (MTX) in the plasma, the cerebrospinal fluids (CSF), and the spaces created by tumor removal (STR) in patients with glioblastoma, during hyperosmotic disruption of the blood brain barrier (HODBBB) and intra-arterial chemotherapy with MTX. Eight Japanese patients with glioblastoma, three with open STRs and five with closed STRs, received a total of thirteen courses of HODBBB and intra-arterial combination chemotherapy with MTX. The patients were initially administered mannitol, then the anticancer drugs were infused into the carotid artery. Samples of blood and CSF from the STRs were obtained. MTX concentrations were measured by fluorescence polarization immunoassay and the pharmacokinetic parameters of MTX in plasma and CSF were estimated. The plasma concentrations of MTX peaked at the end of drug infusion, and then decayed bi-exponentially during the remainder of the treatment period. The CSF concentration of MTX in the STR peaked 2 h after drug administration, then mono-exponentially decreased. The area under the concentration-time curve (AUC) for plasma and CSF MTX concentrations increased in parallel with the MTX dose. In patients with open STRs, the mean AUC of MTX in CSF was 4.44% of that found in plasma, while in patients with closed STRs, the mean was 61.2% of that found in plasma. In the latter group, the MTX administered using HODBBB and intra-arterial chemotherapy was maintained in the STRs for long periods.

Area Under Curve↗

Pharmacokinetics of cytosine arabinoside, methotrexate, nimustine and valproic acid in cerebrospinal fluid during cerebrospinal fluid perfusion chemotherapy.

This report investigates the pharmacokinetics of cytosine arabinoside (Ara-C), methotrexate (MTX), nimustine (ACNU) and valproic acid (VPA) in cerebrospinal fluid (CSF) during CSF perfusion chemotherapy. A 28-year-old Japanese woman with disseminated glioblastoma was, on admission, on a stable oral regimen of prolonged-release VPA tablets (Depakene-R), 400 mg twice a day, for seizure control. Twelve courses of CSF perfusion chemotherapy with Ara-C, MTX, and ACNU were administered. Plasma samples and CSF samples via Ommaya reservoirs were obtained during the eleventh course of treatment. The Ara-C and ACNU concentrations were measured by HPLC. The MTX and VPA concentrations were measured by fluorescence polarization immunoassay. During CSF perfusion chemotherapy, the highest CSF concentrations of Ara-C, MTX, and ACNU were observed at the end of the perfusion and decreased in a monoexponential pattern. The half-lives of Ara-C, MTX, and ACNU were 2.65, 3.52, and 0.71 h, respectively. No anticancer drugs were detectable in plasma during CSF perfusion chemotherapy. Before CSF perfusion chemotherapy, the free VPA concentration in plasma was 14.4% of the total VPA concentration. The mean total and free VPA concentrations in plasma were 78.0+/-0.8 and 10.9-0.3 microg/ml, respectively. The free VPA concentrations in plasma and in CSF were of similar values. At the end of perfusion, the lowest free VPA concentration in CSF was 30.3% of that at the initiation of perfusion. The free VPA concentrations in CSF at 3, 7, 23, and 47 h after the end of perfusion were 79.8, 94.5, 100.9, and 100.9% respectively of that at the initiation of perfusion. During CSF perfusion chemotherapy, the ratio of free VPA concentrations to the total VPA in CSF was 86.3+/-6.9%. The VPA concentrations in CSF rapidly decreased during the CSF perfusion but recovered to pre-treatment levels within 7 h.

Adult↗

Intrauterine volvulus without malrotation associated with segmental absence of small intestinal musculature.

A case of intrauterine intestinal volvulus without malrotation is presented, and 9 other cases from the world literature are reviewed. Bloody diarrhea, bluish discoloration of the abdominal wall (Cullen's sign), and a tense abdomen in neonates suggest midgut volvulus requiring prompt surgical management. On pathological examination, the neck of the twisted bowel in this case showed a half-circle defect of the intestinal muscle. This suggests that a segmental defect of the intestinal musculature could be secondary to volvulus.

Female↗

Nonpeptide mimic of bradykinin with long-acting properties.

Kinins, members of a family of peptides released from kininogens by the action of kallikreins, have been implicated in a variety of biological activities including vasodilation, increased vascular permeability, contraction of smooth muscle cells and activation of sensory neurons. However, investigation of the physiological actions of kinins have been greatly hampered because its effects are curtailed by rapid proteolytic degradation. We examined the pharmacological characteristics of the first nonpeptide bradykinin receptor agonist 8-[2,6-dichloro-3-[N-[(E)-4-(N-methylcarbamoyl)cinnamidoacetyl+ ++]-N-methylamino]benzyloxy]-2-methyl-4-(2-pyridylmethoxy)quinolin e (FR190997). FR190997, whose structure is quite different from the natural peptide ligand, but is similar to the nonpeptide antagonists FR165649, FR167344 and FR173657, potently and selectively interacts with the human B2 receptor and markedly stimulates inositol phosphate formation in transfected Chinese hamster ovary (CHO) cells. FR190997 induces concentration-dependent contraction of isolated guinea pig ileum. In vivo, FR190997 mimics the biological action of bradykinin and induces hypotensive responses in rats with prolonged duration, presumably as a consequence of its resistance to proteolytic degradation. Therefore, FR190997 is a highly potent and subtype-selective nonpeptide agonist which displays high intrinsic activity at the bradykinin B2 receptor. This compound represents a powerful tool for further investigation of the physiology and pathophysiology of bradykinin receptors.

Animals↗

Pharmacokinetics of etoposide and carboplatin in cerebrospinal fluid and plasma during hyperosmotic disruption of the blood brain barrier and intraarterial combination chemotherapy.

The present paper investigates the pharmacokinetics of etoposide (VP-16) and carboplatin (CBDCA) in plasma and the cerebrospinal fluid (CSF), in the space left by tumor removal, of patients with glioma. Eight Japanese patients with glioma received a course of hyperosmotic disruption of the blood-brain barrier (HODBBB) and intraarterial combination chemotherapy with 60 mg/m2 of VP-16 and 300 mg/m2 of CBDCA. All patients were initially administered mannitol, followed by infusion of the anticancer drugs into the right internal carotid artery. Blood samples and samples of CSF in the space left by tumor removal were obtained. VP-16 and CBDCA concentration were measured by HPLC, and the pharmacokinetic parameters of these drugs estimated in CSF and plasma. The plasma concentrations of VP-16 and CBDCA peaked at the end of infusion, then decreased in a bi-exponential decay pattern during the remainder of the treatment period. Both VP-16 and CBDCA were detectable in CSF beginning 0.5 h after the initiation of each infusion, and were then slowly eliminated from the space left by tumor removal. The mean maximum CSF concentration of VP-16 and CBDCA was 0.17 and 15.25% of that in plasma, respectively. The mean area under the time-CSF concentration curve from 0 to 24 h after VP-16 and CBDCA infusion was 1.91 and 113.6% of plasma, respectively. In two of the eight patients, the clinical response to treatment was a partial response and other patients showed no change. HODBBB and intraarterial combination chemotherapy with VP-16 and CBDCA may be useful in patients with brain tumors for maintenance chemotherapy.

Aged↗

Dose-related increases in cerebrospinal fluid concentrations of methotrexate in a postoperative patient with glioblastoma.

OBJECTIVE: To investigate the postoperative pharmacokinetics of methotrexate in the plasma and cerebrospinal fluid (CSF) in the space created by tumor removal of a patient with glioblastoma during hyperosmotic disruption of the blood-brain barrier (BBB) and intraarterial chemotherapy with a stepwise increase in the methotrexate dosage. CASE SUMMARY: A 30-year-old Japanese woman with glioblastoma received four courses of hyperosmotic disruption of the BBB and intraarterial chemotherapy with a combination of peplomycin, vindesine, nimustine, pirarubicin, and methotrexate. The patient was initially administered mannitol; anticancer drugs were then infused into the left internal carotid artery. Following the first, second, third, and fourth courses of treatment, methotrexate 350, 700, 1000, and 1500 mg, respectively, were administered for 30 minutes. Samples of blood and CSF from the space created by tumor removal were obtained. Methotrexate concentrations were measured by fluorescence polarization immunoassay and the pharmacokinetic parameters of methotrexate in plasma and CSF were estimated. RESULTS: The plasma concentration of methotrexate peaked at the end of drug infusion, then decreased in a biexponential decay manner during the remainder of the treatment period. The CSF concentration of methotrexate in the space created by tumor removal peaked two hours after drug administration, then monoexponentially decreased. Although the maximal CSF concentration of methotrexate in the space created by tumor removal was lower than that in the plasma, the CSF concentration of methotrexate in the space created by tumor removal exceeded that in the plasma six hours after drug infusion. The half-life of methotrexate in the CSF exceeded that in the plasma. The AUC for the plasma and CSF methotrexate concentration increased parallel with the methotrexate dosage. The mean CSF AUC of methotrexate was 59.4% of that found in plasma. CONCLUSIONS: The CSF AUC of methotrexate in the space created by tumor removal increased parallel with the methotrexate dosage during hyperosmotic disruption of the BBB and intraarterial chemotherapy.

Adult↗