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Biomedical subjects

K Kohno

Publications and source records attributed to K Kohno.

At least 235 records · Page 13Linked to original sources

Increased cathepsin L levels in serum in some patients with ovarian cancer: comparison with CA125 and CA72-4.

Our purpose was to determine the correlation between cathepsin L mRNA levels and serum cathepsin L levels of patients with ovarian cancer. Moreover, we compared serum cathepsin L levels with cancer antigen 125 (CA125) and cancer antigen 72-4 (CA72-4) levels. Using an ELISA assay, serum samples of 30 patients with gynecological tumors were analyzed for cathepsin L, CA125, and CA72-4. We also examined whether cathepsin L gene expression was enhanced in ovarian cancer samples, by quantitative Northern blot analysis with a human cathepsin L complementary DNA (cDNA) probe. Significantly increased serum levels of cathepsin L in patients with ovarian cancer (P < 0.05) were observed. We also measured serum levels of CA125 and CA72-4 in the same patients. Compared with CA125 and CA72-4, cathepsin L showed a lower false-positive rate (27.2%) in gynecological diseases, and no correlation was observed between cathepsin L and CA125 or CA72-4 values. Moreover, ovarian cancer samples were found to express higher levels of cathepsin L mRNA than those of uterine cancer, benign ovarian tumor, and normal ovary samples. Our data demonstrated that serum cathepsin L may be useful in the early detection of ovarian cancer. Furthermore, the combination assay consisting of cathepsin L, CA125, and CA72-4 may be a more useful method than those currently in use for the detection of ovarian cancer.

Adolescent↗

Interlaboratory quality control and status of n-hexane biological monitoring in Japan.

This paper reports the problem of interlaboratory quality control and the actual condition of biological monitoring of n-hexane among the seven major laboratories specializing in clinical chemistry tests, where more than 80% of the total urine specimens in Japan have been analyzed after the beginning of biological monitoring of n-hexane in 1989. First, transportation conditions of urine specimens and transportation effects on measurement results were studied. The seven major laboratories carried urine specimens at distances of more than 450 km from the University of Occupational and Environmental Health (UOEH) to the respective laboratories and had at least one transit terminal where specimens from various areas were collected and transferred to the analytical laboratories. All laboratories used cooler boxes with dry ice or ice bars and stored the specimens in freezers or refrigerators. Specimens arrived at the final destinations within 24 hours. The transportation from institutes for health examination to the laboratories did not affect the measurement results of 2,5-hexanedione (HD), a determinant of n-hexane biological monitoring. Interlaboratory cross-checks were performed among the seven major laboratories and four institutes for occupational health examination that have their own analytical laboratories. All of the laboratories analyzed HD by acid hydrolysis (pH < 1.0); interlaboratory differences were recognized at the first cross-check. After some laboratories intensified gas chromatography (GC) maintenance and changed to a new column, the interlaboratory variation lessened.(ABSTRACT TRUNCATED AT 250 WORDS)

Environmental Monitoring↗

Oxytocinergic innervation to the upper thoracic sympathetic preganglionic neurons in the rat. A light and electron microscopical study using a combined retrograde transport and immunocytochemical technique.

A combination of retrograde cell body labeling and immunohistochemistry was employed to elucidate how oxytocinergic fibers make contact with sympathetic preganglionic neurons (SPNs) in the rat spinal cord from T1 to T4. SPNs were labeled retrogradely using cholera toxin subunit B (CTb) or horseradish peroxidase-conjugated CTb. Oxytocin-immunoreactive (ir) fibers were found in the intermediate zone, including the sympathetic preganglionic subnuclei. In the central autonomic nucleus and the intercalated nucleus, brown-stained oxytocin-ir varicosities or terminals were frequently observed to stud black-stained dendrites of SPNs. Electron microscopical observations showed that oxytocin-ir terminals form synapses with dendrites or soma of the sympathetic preganglionic neurons. The terminals contained numerous small clear round vesicles and a few large, cored vesicles. These results clearly show that a large proportion of SPNs are innervated by oxytocin-containing fibers. The origin of these fibers is discussed, and it is concluded that they are probably descending fibers from the paraventricular nucleus of the hypothalamus.

Animals↗

Ibudilast, an anti-allergic and cerebral vasodilator, modulates superoxide production in human neutrophils.

We evaluated the effect of ibudilast on superoxide generation in human neutrophils by chemiluminescence development using luciferine analog, FCLA. By incubating neutrophils with ibudilast (2-200 microM) for more than 10 minutes, fMLP- or PMA-induced chemiluminescence was enhanced. However, the fMLP-induced chemiluminescence was suppressed by incubation for less than 10 minutes. This suppressed effect was missing with PMA-induced chemiluminescence. On the both fMLP- and PMA-induced chemiluminescence, the priming effect of ibudilast was further enhanced by the treatment with H-7, a protein kinase C inhibitor. In contrast, the priming effect of ibudilast on the fMLP-induced chemiluminescence was abolished by the treatment with ST-638, a selective inhibitor of tyrosine kinase. Ibudilast showed a transient stimulatory effect on cyclic AMP accumulation which continued for only a few minutes. Ibudilast showed no significant effect on phospholipase D dependent chemiluminescence, 1,4,5 trisphosphate level, or protein kinase C activity. Ibudilast inhibited extracellular calcium influx. These results suggest that ibudilast acts on or through tyrosine kinase to achieved its priming effect on the fMLP-induced chemiluminescence. The early and transient increase in cyclic AMP level may explain the inhibitory effect of ibudilast on the fMLP-induced chemiluminescence after short time of incubation.

Calcium↗

Opioid receptor interaction and adenylyl cyclase inhibition of dihydroetorphine: direct comparison with etorphine.

To find out the reason of weak addiction property of dihydroetorphine, we compared the affinities of dihydroetorphine to the type selective opioid receptor and inhibition effect on the adenylyl cyclase activity with those of etorphine. Dihydroetorphine and etorphine have almost the same binding affinities to all types (mu, delta, and kappa) of opioid receptors and antagonist binding sites, and have similar inhibition activities to forskolin stimulated adenylyl cyclase. However, dihydroetorphine showed significantly smaller value of DTNB-index compared with that of etorphine. This differentiation may explain partly the high analgesic with low dependence properties of dihydroetorphine.

Adenylyl Cyclase Inhibitors↗

Comparison of axonemal proteins from two kinds of Tetrahymena. I. Different characteristics of dyneins in heat stability.

Tetrahymena thermophila could still swim after incubation of the cell body at 40 degrees C for 30 min, whereas Tetrahymena pyriformis did not show any motility after the treatment. Turbidity measurements revealed that axonemes of T. pyriformis lost ATP-dependent sliding activity by the heat treatment, whereas those of T. thermophilia still had the activity under the same conditions. In connection with this difference in susceptibility to high temperature, the biochemical characteristics of dyneins were compared between the two species of Tetrahymena. Axonemal dyneins from the two species had significant vanadate-sensitive ATPase activity even after the heat treatment. Native gel electrophoresis and the following two-dimensional electrophoresis showed that the outer arm dynein of T. thermophilia is more stable in maintaining native configuration than that of T. pyriformis against the heat treatment, although both treated dyneins keep three (alpha, beta and gamma) subunits. Analysis by peptide mapping demonstrated that beta- and gamma-subunits of the outer arm dynein are considerably different in amino acid sequences between the two species. These results imply that dynein of T. thermophilia changed their amino acid sequences and biochemical characteristics to adapt to high temperature.

Amino Acid Sequence↗

Relationship between diffusion-weighted MR images, cerebral blood flow, and energy state in experimental brain infarction.

The regional evolution of brain infarction was studied in Wistar rats submitted to remotely controlled thread occlusion of the middle cerebral artery. Occlusion was performed in the magnet of an NMR tomography system to allow continuous recording of diffusion-weighted images. After 30 min (n = 6) or 2 h (n = 9), cerebral blood flow was measured by [14C] iodoantipyrine autoradiography while the regional distribution of ATP, glucose, lactate, and pH was imaged using pictorial bioluminescence and fluoroscopic methods. In diffusion-weighted images, the hemispheric lesion area (HLA) at the level of caudate-putamen amounted to 54.2 +/- 10.9% after 30 min and to 67.0 +/- 5.9% after 2 h vascular occlusion. These areas corresponded to the regions exhibiting tissue acidosis (60.8 +/- 9.3% and 70.4 +/- 4.5%), but were clearly larger than those in which ATP was depleted (22.3 +/- 20.8% and 49.6 +/- 12.9% after 30 min and 2 h, respectively). The threshold of blood flow for the increase of signal intensity in diffusion-weighted images increased between 30 min and 2 h occlusion from 34 to 41 ml/100 g per minute, the threshold of acidosis from 40 to 47 ml/100 g per minute, and the threshold for ATP depletion from 13 to 19 ml/100 g per minute. Our study demonstrates that diffusion-weighted imaging detects both the core and the penumbra of the evolving infarction but is not able to differentiate between the two parts. It further shows that the ischemic lesion grows during the initial 2 h of vascular occlusion, and that the size of the infarct core increases more rapidly than that of the penumbra.

Adenosine Triphosphate↗

A modified rat model of middle cerebral artery thread occlusion under electrophysiological control for magnetic resonance investigations.

Previous magnetic resonance (MR) investigations of middle cerebral artery (MCA) occlusion in rats were limited by the lack of early post-occlusion MR measurements and/or electrophysiological monitoring. Therefore, we have developed a technique which allows to perform MCA occlusion inside the magnet under simultaneous recording of EEG and direct current (DC) potentials for monitoring the ischemic insult. Rats underwent intraluminal thread occlusion of the right MCA inside the MR tomograph via a catheter extension device, while EEG and DC potentials were recorded by non-magnetic graphite electrodes. The thread was slowly advanced until electrophysiological changes appeared. Diffusion-weighted MR images (DWI) were obtained before and repeatedly after MCA occlusion for up to 7 h. Thereafter, rat brains were frozen in situ or fixed by transcardiac perfusion and investigated by biochemical and histological techniques. In 15 of 18 animals (83%), MCA thread insertion caused immediate EEG changes and a negative DC potential shift at 4.4 +/- 1.8 min (mean +/- SD) after occlusion. In all animals with electrophysiological changes, signal intensity of DWI began to increase within the MCA territory at 12-14 min post-occlusion (the end of the first measurement), and continued to rise throughout the observation period. Ischemia was confirmed by demonstrating focal areas of energy depletion on ATP images. In the animals without electrophysiological changes, DWI or biochemical alterations were absent or confined to the central part of caudate-putamen. The histological lesion area of successfully occluded animals amounted to 70.1 +/- 5.8% of the ipsilateral hemisphere at the level of caudate-putamen.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

Chemosensitisation of spontaneous multidrug resistance by a 1,4-dihydropyridine analogue and verapamil in human glioma cell lines overexpressing MRP or MDR1.

Multidrug resistance phenotypes in human tumours are associated with the overexpression of the 170 kDa P-glycoprotein encoded by the multidrug resistance 1 (MDR1) gene, and also with that of the non-P-glycoprotein-mediated multidrug resistance gene, MRP, which encodes a 190 kDa membrane ATP-binding protein. We have previously reported that overexpression of MRP appears to be responsible for spontaneous multidrug resistance in some human glioma cell lines (Abe et al., Int. J. Cancer, 58, 860-864, 1994). In this study, we investigated whether chemosensitising agents of P-glycoprotein-mediated multidrug resistance such as verapamil, a biscoclaurine alkaloid (cepharanthine), and a dihydropyridine analogue (NIK250) could also reverse multidrug resistance in human glioma cells. The glioma cell lines were the two MRP-expressing cell lines, T98G and IN500, an MDR1-expressing cell line, CCF-STTG1, and the MRP1 MDR1-non-expressing cell line, IN157. Verapamil and NIK250 almost completely reversed drug resistance to vincristine, etoposide and doxorubicin in T98G cells, while they also reversed drug resistance to vincristine and etoposide, but only partially to doxorubicin in IN500 cells. Cepharanthine as well as verapamil and NIK250 reversed vincristine resistance in CCF-STTG1 cells, but cepharanthine only partially reversed drug resistance in T98G and IN500 cells. The cellular accumulation of [3H]etoposide increased about 2- and 3-fold compared with control in T98G cells in the presence of verapamil and NIK250 respectively. Furthermore, the release of doxorubicin from the nuclei of T98G cells was blocked by NIK250. However, NIK250 and verapamil caused no apparent increase in vincristine accumulation in T98G cells. NIK250 or verapamil might exert inhibitory effects upon MRP function, resulting in a reversal of MRP-mediated spontaneous multidrug resistance in cultured human glioma cells.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Evolution of regional changes in apparent diffusion coefficient during focal ischemia of rat brain: the relationship of quantitative diffusion NMR imaging to reduction in cerebral blood flow and metabolic disturbances.

Middle cerebral artery occlusion was performed in rats while the animals were inside the nuclear magnetic resonance (NMR) tomograph. Successful occlusion was confirmed by the collapse of amplitude on an electrocorticogram. The ultrafast NMR imaging technique UFLARE was used to measure the apparent diffusion coefficient (ADC) immediately after the induction of cerebral ischemia. ADC values of normal cortex and caudate-putamen were 726 +/- 22 x 10(-6) mm2/s and 659 +/- 17 x 10(-6) mm2/s, respectively. Within minutes of occlusion, a large territory with reduced ADC became visible in the ipsilateral hemisphere. Over the 2 h observation period, this area grew continuously. Quantitative analysis of the ADC reduction in this region showed a gradual ADC decrease from the periphery to the core, the lowest ADC value amounting to about 60% of control. Two hours after the onset of occlusion, the regional distribution of ATP and tissue pH were determined with bioluminescence and fluorescence techniques, respectively. There was a depletion of ATP in the core of the ischemic territory (32 +/- 20% of the hemisphere) and an area of tissue acidosis (57 +/- 19% of the hemisphere) spreading beyond that of ATP depletion. Regional CBF (rCBF) was measured autoradiographically with the iodo[14C]antipyrine method. CBF gradually decreased from the periphery to the ischemic core, where it declined to values as low as 5 ml 100 g-1. When reductions in CBF and in ADC were matched to the corresponding areas of energy breakdown and of tissue acidosis, the region of energy depletion corresponded to a threshold in rCBF of 18 +/- 14 ml 100 g-1 min-1 and to an ADC reduction to 77 +/- 3% of control. Tissue acidosis corresponded to a flow value below 31 +/- 11 ml 100 g-1 min-1 and to an ADC value below 90 +/- 4% of control. Thus, the quantification of ADC in the ischemic territory allows the distinction between a core region with total breakdown of energy metabolism and a corona with normal energy balance but severe tissue acidosis.

Adenosine Triphosphate↗

Carbohydrate structures of the glycoprotein allergen Cry j I from Japanese cedar (Cryptomeria japonica) pollen.

The glycoprotein allergen Cry j I from Japanese cedar (Cryptomeria japonica) pollen was treated with pepsin and glycopeptidase A to release asparagine-linked oligosaccharides. The reducing ends of the oligosaccharides were aminated with the fluorescent reagent 2-aminopyridine. The oligosaccharide derivatives were purified by gel permeation chromatography and reversed-phase HPLC. Their structures were determined by sequential exoglycosidase digestion and 500 MHz 1H-NMR spectroscopy. Four oligosaccharide structures, A, B, C, and D, were identified as the xylose-containing complex-type. They were present at a molar ratio of 8:1:6:1. By amino acid sequence analyses of the tryptic peptides, Asn-170 and Asn-333 of Cry j I were found to carry asparagine-linked oligosaccharides. [formula: see text]

Allergens↗

Thermosensitivity of green fluorescent protein fluorescence utilized to reveal novel nuclear-like compartments in a mutant nucleoporin NSP1.

Tagging proteins with the green fluorescent protein (GFP) from Aequorea victoria is a good means of analyzing protein localization in living cells. Nevertheless, GFP and a chimeric protein, GFP-nucleoplasmin, expressed in Saccharomyces cerevisiae were less fluorescent at high culture temperatures. Proteins synthesized at a low temperature retained their fluorescence despite a shift to a higher temperature. Hence, when a temperature-sensitive nsp1 mutant expressing GFP-nucleoplasmin was cultured at 23 degrees C and then shifted to 35 degrees C, we were able to exclusively monitor the localization of the protein synthesized prior to the temperature shift. This protein accumulated in novel nuclear-like compartments devoid of DNA.

Amino Acid Sequence↗

A YAC-based contig of 1.5 Mb spanning the human multidrug resistance gene region and delineating the amplification unit in three human multidrug-resistant cell lines.

A contig of 21 nonchimeric yeast artificial chromosomes (YACs) has been assembled across 1.5 Mb of the multidrug resistance (MDR) gene region located at 7q21, and formatted with four previously reported probes, six newly isolated probes, and three sequence-tagged sites (STSs) from internal and end fragments of YACs. A physical map of rare cutter restriction enzyme sites across the region was also constructed by pulsed-field gel electrophoretic (PFGE) analysis of four overlapping YAC clones. The amplification unit of this region in different cell lines was then determined by Southern blot analysis on the basis of the physical map and probes. Amplified DNA was located in extrachromosomal elements in human MDR cell lines studied here, and the size of the amplification unit was determined to be discrete in one MDR amplification but variable in others.

ATP Binding Cassette Transporter, Subfamily B↗

Functional expression of yeast artificial chromosome-human multidrug resistance genes in mouse cells.

Multidrug resistance (MDR) genes, which are ATP-binding cassette family genes, encode the cell surface glycoprotein, P-glycoprotein, which functions as an energy-dependent drug efflux pump. Two relevant human genes, PGY1 and PGY3, are located on human chromosome 7, and three relevant mouse genes, mdr1a, mdr1b, and mdr2, are located on mouse chromosome 5. An LMD1 cell line was established after the transfer of a 580-kb yeast artificial chromosome (YAC) clone carrying the human MDR locus into mouse L cells; the cell line was shown to have stably integrated YAC DNA in an apparent intact form. Using LMD1 cells as the parental cell line, five vincristine-resistant sublines, designated LMD1-V50, LMD1-V100, LMD1-V200, LMD1-V500, and LMD1-V1000, were isolated by exposure to increasing concentrations of the drug. LMD1-V50, LMD1-V100, LMD1-V200, LMD1-V500, and LMD1-V1000 showed 3-, 7-, 13-, 45-, and 110-fold higher resistance to the cytotoxic effects of vincristine, respectively, than their parental counterpart, LMD1. Immunofluorescence, Western blot, and Northern blot analyses revealed that the human PGY1 gene or its product was overexpressed, accompanied by gene amplification. The human PGY3 gene was also overexpressed in the LMD1-V20, LMD1-V100, and LMD1-V1000 cell lines. Southern blot and fluorescence in situ hybridization (FISH) analyses demonstrated that although essentially the entire YAC DNA was integrated in mouse genome and amplified, the endogenous mouse mdr genes were not amplified in these drug-resistant cell lines. Similar results were obtained by the analyses of vincristine-resistant cell lines isolated from four independent subclones of LMD1 cells. Thus, in contrast to their mouse counterparts, the integrated human MDR genes retained susceptibility to both gene activation and amplification, during the selection of drug-resistant mouse cell lines. The possibility that transferred YACs may retain regulatory properties observed in the cells of origin, and may have a chromatin structure that favors augmented expression, is discussed.

ATP Binding Cassette Transporter, Subfamily B↗

Biomodulation by hyperthermia of topoisomerase II-targeting drugs in human colorectal cancer cells.

We examined whether heat stress could enhance the sensitivity of human colon cancer WiDr cells to topoisomerase II-targeting anticancer agents, etoposide (VP-16) and teniposide (VM-26), and also determined the most effective timing for the drug administration after exposure to hyperthermia. Both topoisomerase II contents and topoisomerase II activity were significantly increased in WiDr cells 3 to 12 h after heat stress at 43 degrees C for 1 h, in comparison with those immediately after the heat stress. Cytotoxicity by VP-16 was most significantly enhanced 3 to 12 h after exposure to 43 degrees C for 1 h, but no synergistic effect was observed when the drug was administered immediately after the heat stress. A combination of VM-26 with heat stress, but not that of a topoisomerase I-targeting camptothecin derivative (CPT-11), or vincristine, showed a synergistic cytotoxic effect on WiDr cells. VP-16 alone induced cellular accumulation at the G2 + M phase, whereas the combination of VP-16 and heat stress further increased the cell population at the G2 + M phase, and decreased S-phase cells. A possible application of the combination of VP-16 and hyperthermia in clinical use is discussed.

Adenocarcinoma↗

Cry j 2, a major allergen of Japanese cedar pollen, shows polymethylgalacturonase activity.

We examined Cry j 2, a major allergen of Japanese cedar (Cryptomeria japonica) pollen, for polygalacturonase enzyme activity, since a nucleotide sequence of cDNA of Cry j 2 showed a significant homology with that of tomato polygalacturonase. Polygalacturonase is well known to depolymerize preferentially polygalacturonic acid (PGA) by hydrolysis. However, Cry j 2 did not act on PGA, but was found to depolymerize pectin and methylesterified PGA in a dose-dependent manner. The substrate specificity of Cry j 2 was different from that of polygalacturonase derived from Aspergillus niger. The depolymerizing activity of Cry j 2 reached a maximum at 50%-60% of methylesterification of PGA. In contrast, polygalacturonase showed its maximum activity of PGA, and the activity decreased as the degree of methylesterification increased. Interestingly, the pectin-depolymerizing activity of Cry j 2 was due to a hydrolysis, but not a lyase, activity which splits the glycosidic bonds by beta-elimination, since no unsaturated uronides were found by measurement of absorbance at 235 nm in the reaction mixture. The enzyme activity was markedly inhibited by anti-Cry j 2 antibodies. These results indicate that Cry j 2 probably has polymethylgalacturonase enzyme activity, as postulated by von Neukom in 1963, although existence of this activity has not yet been proven.

Allergens↗

Cry j I, a major allergen of Japanese cedar pollen, has pectate lyase enzyme activity.

In the course of analyzing the partial amino acid sequences of Cry j I, a major allergen of Japanese cedar (Cryptomeria japonica) pollen, we found a peptide fragment which has a significant homology to some pectate lyase isozymes secreted by plant pathogenic bacteria. Therefore, we investigated whether Cry j I has pectate lyase activity. Cry j I reacted with polygalacturonic acid, resulting in the release of unsaturated uronide products. The optimum temperature and pH for the reaction were 60-70 degrees C and pH 10. The enzymatic reaction had an absolute Ca2+ ion requirement. These characteristics were very compatible with the character of the pectate lyase isozymes reported previously. These results clearly show that Cry j I has pectate lyase activity.

Allergens↗

Mutations in the core promoter/enhancer II regions of naturally occurring hepatitis B virus variants and analysis of the effects on transcription activities.

The regulatory regions for transcription and replication of several hepatitis B virus (HBV) genomes from 19 patients having various forms of HBV infection were sequenced. Predominant mutations were found to occur naturally in nucleotide positions 1762 (A to T) and 1764 (G to A) in chronic hepatitis patients and in asymptomatic carriers after seroconversion, but were not observed in HBeAg-positive healthy carriers. Since these positions were located in the basic core promoter and the overlapping enhancer II regions situated within the core upstream region, transcriptional activity was examined by chloramphenicol acetyltransferase assay to determine if there was a possible difference between the mutant and wild-type HBV. However, no significant difference was detected upon comparison of the promoter and enhancer activities between mutant and wild-type HBV.

Base Sequence↗