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Biomedical subjects

M Kanno

Publications and source records attributed to M Kanno.

At least 91 records · Page 5Linked to original sources

mel-18 negatively regulates cell cycle progression upon B cell antigen receptor stimulation through a cascade leading to c-myc/cdc25.

mel-18 is a mammalian Polycomb group gene encoding a transcriptional repressor with tumor suppressive activity. Overexpression of mel-18 in mice results in cell cycle arrest of B cells upon B cell receptor stimulation with downregulation of c-myc. This phenotype is rescued in mel-18/c-myc double-transgenic mice, suggesting that c-myc locates downstream of mel-18. In mel-18 transgenic mice, the downregulation of cyclins D2 and E; CDK4, -6, and -7; and CDC25A causes the impairment in the activities of cyclin-dependent kinases, resulting in hypophosphorylation of the retinoblastoma protein. In contrast, the upregulation of c-Myc, CDC25, and CDC2/CDK2 kinase activities results in the augmentation of B cell proliferation in mel-18-deficient mice. We therefore propose that mel-18 negatively regulates the cell cycle through a c-myc/cdc25 cascade.

Animals↗

Functional and morphological damage of endothelium in rabbit ear artery following irradiation with cobalt60.

1. The relaxant actions of acetylcholine and A23187 were examined in the rabbit central ear artery at different intervals following exposure to different doses of radiation with a cobalt60 unit. The artery was irradiated with a dose of 10 Gy, 20 Gy and 45 Gy. Radiation caused dose- and time-dependent impairment of the endothelium-dependent relaxations. The impaired endothelium-dependent relaxations occurred as early as 1 week postirradiation and persisted throughout the experimental period (10 weeks). 2. The endothelium-independent response to sodium nitroprusside was well preserved up to 6 weeks after irradiation. The contractile response to noradrenaline was unaltered by irradiation throughout the experimental period, but in contrast to control vessels, an increase in the sensitivity to noradrenaline in the presence of the nitric oxide synthase (NOS) inhibitor N(G)-nitro-L-arginine was not observed in the irradiated vessels. 3. The impaired endothelium-dependent relaxations in the irradiated vessels were not improved by pretreatment with the NOS substrate L-arginine, the cyclo-oxygenase inhibitor indomethacin or the free radical scavengers superoxide dismutase and catalase. 4. Scanning electron microscopy indicated morphologically intact endothelial cells within the first 4 weeks after irradiation. 5. Western blot analysis showed a significant decrease in the expression of endothelial NOS (eNOS) in the irradiated vessels. 6. These data indicate that endothelial cell function is specifically impaired in the irradiated vessels before morphological endothelial cell damage can be detected. This impairment may be related to diminished eNOS expression.

Animals↗

Histamine H1-receptor-mediated increase in the Ca2+ transient without a change in the Ca2+ current in electrically stimulated guinea-pig atrial myocytes.

The effects of histamine on the intracellular Ca2+ concentration ([Ca2+]i), action potential and membrane currents were assessed in single atrial myocytes prepared from guinea-pigs. Histamine caused a concentration-dependent increase in the [Ca2+]i transient in indol/AM loaded myocytes when stimulated electrically at 0.5 Hz. However, the maximum increase in [Ca2+]i transient produced by histamine was less than 50% of that elicited by isoprenaline. The histamine-induced increase in [Ca2+]i transient was significantly inhibited by chlorpheniramine, but not by cimetidine. Pretreatment with nifedipine nearly completely suppressed the histamine-induced increase in [Ca2+]i transient. Cyclopiazonic acid did not affect the histamine response. In the whole-cell current-clamp mode of the patch-clamp method, both histamine and isoprenaline prolonged action potential duration (APD) in atrial myocytes. In the presence of Co2+ or nifedipine, the isoprenaline-induced APD prolongation was abolished and an APD shortening effect was manifested, while histamine still increased APD. The APD prolongation elicited by histamine was reversed by chlorpheniramine. In the voltage-clamp mode, the histamine-sensitive membrane current was inwardly rectifying and reversed close to the calculated value of the K+ equilibrium potential. Histamine had no apparent effect on L-type Ca2+ current, in contrast to the pronounced effect of isoprenaline. These results indicate that in guinea-pig atrial myocytes stimulation of H1-receptors with histamine does not directly activate Ca2+ channels but causes an elevation of [Ca2+]i transient by increasing Ca2+ influx through the channels during the prolonged repolarization of action potentials resulting from inhibition of the outward K+ current.

Action Potentials↗

Tyrosine phosphorylation as a convergent pathway of heterotrimeric G protein- and rho protein-mediated Ca2+ sensitization of smooth muscle of rabbit mesenteric artery.

1. The aim of this study was to determine whether different signal transduction mechanisms underlie the Ca2+ sensitizing effects of guanosine 5'-O-(3-thiotriphosphate) (GTP(gamma)S) and receptor agonists on beta-escin-skinned smooth muscle of rabbit mesenteric artery. 2. In the homogenate of the beta-escin-skinned arterial strip, C3 exoenzyme of Clostridium botulinum catalyzed the [32P]-ADP-ribosylation of only one protein that had the same molecular mass as the protein detected in Western blots with anti-rho p21 antibody. Pretreatment of preparations with C3 resulted in great inhibition of GTP(gamma)S-induced Ca2+ sensitization, although the effect of GTP(gamma)S at higher concentrations (> or = 30 microM) was not completely blocked by this treatment. In contrast, the enhancement by phenylephrine and histamine, in the presence of guanosine 5'-triphosphate, of the Ca2+-induced contraction was not affected by C3 pretreatment. 3. The protein kinase C (PKC) inhibitors calphostin C and staurosporine completely eliminated the enhancement by phorbol ester 12,13-dibutyrate of the Ca2+-induced contraction. However, these PKC inhibitors had no effect on GTP(gamma)S- and receptor agonist-induced Ca2+ sensitization. 4. The tyrosine kinase inhibitors genistein and tyrphostin 25 caused an irreversible and complete block of the enhancement by GTP(gamma)S of the Ca2+-induced contraction without affecting this Ca2+ contraction. The inactive genistein analogue daidzein did not modify the effect of GTP(gamma)S. The Ca2+ sensitizing effects of phenylephrine and histamine were also blocked by these tyrosine kinase inhibitors. 5. These results suggest that rho p21 predominantly mediates GTP(gamma)S-induced Ca2+ sensitization of beta-escin-skinned smooth muscle of rabbit mesenteric artery, while the Ca2+ sensitizing actions of heterotrimeric G protein-coupled receptor agonists do not involve this small G protein. However, it seems that tyrosine phosphorylation, but not PKC activation, plays an important role in both of the rho p21 protein- and heterotrimeric G protein-mediated Ca2+ sensitization mechanisms.

ADP Ribose Transferases↗

Effects of sevoflurane and isoflurane on renal function and on possible markers of nephrotoxicity.

BACKGROUND: Low-flow sevoflurane anesthesia is associated with increasing circuit concentrations of compound A, which is nephrotoxic in rats, but the effect of compound A and low-flow sevoflurane anesthesia on renal function in humans is unclear. The authors compared the effects of high- and low-flow sevoflurane and isoflurane anesthesia on renal function and on several possible markers of nephrotoxicity in humans. METHODS: Forty-two patients without preexisting renal disease underwent either low-flow isoflurane (1 l/min, n = 14), low-flow sevoflurane (1 l/min, n 14), or high-flow sevoflurane (6 l/min, n = 14) anesthesia for body-surface-area surgery scheduled to last at least 4 h. Twenty-four-hour urinary excretion of N-acetyl-beta-glucosaminidase (NAG), beta2-microglobulin, protein, glucose, blood urea nitrogen (BUN), and serum creatinine concentrations were measured before and after anesthesia. RESULTS: There were no differences in blood urea nitrogen, creatinine, and creatinine clearance among the three groups after anesthesia. Increased urinary N-acetyl-beta-glucosaminidase excretions were seen in the low-flow and high-flow sevoflurane groups, but not in the low-flow isoflurane group (P < 0.01). Ten patients in the low-flow sevoflurane group had 24-h urinary excretion of protein that exceeded the normal ranges after anesthesia, but only one patient in the isoflurane and none in the high-flow sevoflurane groups had this. CONCLUSIONS: Low-flow sevoflurane anesthesia was associated with mild and transient proteinuria. However, the observed proteinuria was not associated with any changes in blood urea nitrogen, creatinine, and creatinine clearance in these patients with no preexisting renal disease.

Acetylglucosaminidase↗

Effects of beta-adrenoceptor stimulation on contractility, [Ca2+]i, and Ca2+ current in diabetic rat cardiomyocytes.

The mechanism of the diminished inotropic response to beta-adrenoceptor stimulation in diabetic hearts was studied in enzymatically isolated diabetic rat ventricular myocytes in comparison with age-matched controls. The increases in contractions and intracellular Ca2+ concentration ([Ca2+]i) transients produced by isoproterenol were markedly diminished in diabetic myocytes. The inotropic and [Ca2+]i responses to forskolin and dibutyryl cAMP (DBcAMP) were also reduced. No significant difference was found in the stimulating effects of isoproterenol, forskolin, and DBcAMP on the L-type Ca2+ current (ICa) between control and diabetic myocytes. The rise of [Ca2+]i in response to rapid caffeine application, an index of sarcoplasmic reticulum (SR) Ca2+ content, was significantly decreased in diabetic myocytes. Isoproterenol, forskolin, and DBcAMP enhanced this [Ca2+]i response to caffeine in control myocytes more markedly than in diabetic myocytes. The changes in the isoproterenol responses observed in diabetic myocytes were prevented by insulin therapy. We conclude that 1) diabetes causes an impairment of the contractile and [Ca2+]i responses of cardiac myocytes when stimulated at both beta-adrenoceptors and the postreceptor level without affecting the ICa response and 2) altered SR functions of uptake and/or release of Ca2+ may primarily contribute to the diminished beta-adrenergic response.

Adrenergic beta-Agonists↗

Effects of topical nipradilol, a beta-blocking agent with alpha-blocking and nitroglycerin-like activities, on aqueous humor dynamics and fundus circulation.

PURPOSE: To study the effects of nipradilol, a nonselective beta-blocker with alpha 1-blocking activity and nitroglycerin-like activity, on aqueous humor dynamics and optic nerve head (ONH) circulation in albino rabbits. METHODS: Experiments were carried out during the dark phase, in conscious rabbits conditioned to a schedule of alternating 12-hour periods of light and dark. The blood-aqueous barrier permeability and the aqueous flow rate were determined fluorophotometrically. The effect on outflow to general blood circulation and uveoscleral outflow were determined by using the fluorophotometric Diamox technique, and the effect on the uveoscleral outflow was further assessed by using the anterior chamber perfusion method. The ONH circulation was estimated by using the laser speckle method. RESULTS: Unilateral topical administration of 0.25% nipradilol solution lowered intraocular pressure (IOP) with relatively weak contralateral effects in a dose-dependent manner with a maximum reduction of 6 mm Hg and an effect duration of 6 hours. Twice-daily instillation for 14 days showed no attenuation of the effects. Single instillation of 0.25% nipradilol showed no significant effect on blood-aqueous barrier permeability and decreased aqueous flow rate in the treated eye (17%; P < 0.01) and in the contralateral eye (9%, P < 0.05). Nipradilol produced no significant effect on outflow facility to general blood circulation, whereas it substantially increased uveoscleral outflow. Twice-daily 0.25% nipradilol instillation increased ONH tissue blood velocity by 13% (P < 0.01), which was probably attributable to locally penetrating drug. CONCLUSIONS: Because of its ability to lower IOP and to increase uveoscleral outflow and optic nerve head circulation in rabbits, further studies are warranted to determine whether nipradilol has potential as an antiglaucoma agent in humans.

Administration, Topical↗

[Correlation between apoptotic index, bcl-2 protein expression and progression and prognosis in breast carcinoma].

Apoptosis is considered to play a critical role in tumorigenesis. It has been shown that apoptosis is controlled by both pro-oncogenes bcl-2, c-myc and tumor-suppressor genes p53. We determined the apoptotic index (AI) on light microscopy and detected immunohistochemically the expression of bcl-2 and p53 in patients with breast cancer. The correlations between AI and clinicopathological factors, bcl-2 and p53 were also analyzed. Our results showed that bcl-2 expression was down-regulated in the process from normal breast epithelial cells to intraductal carcinoma and from intraductal carcinoma to invasive carcinoma. We failed to detect p53 protein in normal breast epithelial cells, and p53 positivity was 24% and 30% in intraductal and invasive cancer tissues, respectively. Moreover, AI was significantly associated with histological grade, mitotic index, and bcl-2 and p53 expression. In univariate analyses, lower AI and bcl-2 expression was significantly predictive of a better prognosis for both disease-free survival and overall survival. These results suggest that apoptosis and apoptosis-related gene (bcl-2, p53) are related to progression and prognosis in breast cancer.

Adult↗

Clinical characteristics of breast cancer patients with family history.

This study was conducted to acquire information as to the clinicopathological characteristics of breast cancer patients with family history. Of 583 patients with breast cancer, 60 (10.3%) had family history in at least one relative within the second-degree. The affected family member was most frequently a sister (43%), followed by the mother (23%) and an aunt (20%). Comparison of the data for the patients between with and without family history revealed no significant differences for any of mean age, menopausal status, histological type, histological staging, and estrogen receptor status. Although the sample size was small, neither the survival rate nor the bilaterality of disease was influenced by the family history of breast cancer.

Adult↗

Clinicopathological Features of Hereditary Breast Cancer.

The possible role of germline mutations of BRCA1 and BRCA2 as causative agents of familial breast cancer was assessed. Their possible involvement in the carcinogenesis of hereditary breast cancer was investigated using 63 clinically suspect families. Twenty-one lineages (33.3%) had mutations in one of the two BRCA genes. This relatively low incidence suggested that germline mutations in unknown genes are involved in the carcinogenesis of hereditary breast cancer in the Japanese population. However, the clinicopathological features characteristic of hereditary breast cancer, such as early disease onset, a high incidence of bilateral breast cancer, and a high incidence of multiple primary carcinomas in other organs were confirmed in the present study.

Journal Article↗

Tumor necrosis factor enhancement of transient outward potassium currents in cultured rat cortical neurons.

The effect of recombinant human tumor necrosis factor-alpha (TNF) on voltage-gated membrane currents of cultured neurons derived from embryonic rat cerebral cortex was studied using the whole-cell patch-clamp technique. Treatment of neurons with TNF resulted in an increase in outward potassium current density, dependent upon the concentration of TNF and the incubation time, without affecting other membrane currents such as barium and N-methyl-D-aspartate (NMDA). Long exposures (12-48 hr) to TNF (10-100 ng/ml) increased transient outward potassium current (A-current) density without affecting the parameters of activation and inactivation of the current. Prolonged exposures to TNF diminished its increasing effect on the A-current. Since the increase of A-current density induced by TNF is inhibited by both the anti-TNF receptor antibody and cycloheximide treatment, the effect of TNF might be mediated through receptors and by de novo synthesis of the channel protein itself and/or modulating proteins associated with the channel activities. Results indicate that phosphatidylcholine-specific phospholipase C and protein kinase C, but not ceramide, are involved in the signal transduction. In toxicological experiments, TNF had no neurotoxicity. Moreover, a 12 hr pretreatment of TNF protected neurons against NMDA-induced neurotoxicity. This protective effect of TNF was cancelled by 4-aminopyridine, an A-current blocker, suggesting that the increase of A-current densities induced by TNF contributes to the neuroprotection.

Animals↗

Requirement for Valpha14 NKT cells in IL-12-mediated rejection of tumors.

A lymphocyte subpopulation, the Valpha14 natural killer T (NKT) cells, expresses both NK1.1 and a single invariant T cell receptor encoded by the Valpha14 and Jalpha281 gene segments. Mice with a deletion of the Jalpha281 gene segment were found to exclusively lack this subpopulation. The Valpha14 NKT cell-deficient mice could no longer mediate the interleukin-12 (IL-12)-induced rejection of tumors. Although the antitumor effect of IL-12 was thought to be mediated through natural killer cells and T cells, Valpha14 NKT cells were found to be an essential target of IL-12, and they mediated their cytotoxicity by an NK-like effector mechanism after activation with IL-12.

Animals↗

Involvement of alpha1B-adrenoceptors in the positive inotropic effect of endogenous noradrenaline in rabbit myocardium.

We studied the alpha1-adrenoceptor subtypes mediating the positive inotropic effects of phenylephrine and noradrenaline as well as endogenous noradrenaline released by tyramine in rabbit papillary muscle. In the presence of propranolol, both phenylephrine and tyramine produced a positive inotropic effect in a concentration-dependent manner. WB4101 (N-[2-(2,6-dimethoxyphenoxy]ethyl]-2,3-dihydro-1,4-benzodioxin+ ++-2-methanamine) and chlorethylclonidine each antagonized the positive inotropic effect of phenylephrine. On the other hand, only chlorethylclonidine significantly blocked the positive inotropic effect of tyramine. However, the presence of both antagonists was needed to block the positive inotropic effect elicited by the exogenous addition of the low concentration of noradrenaline. These data suggest that after extensive blockade of beta-adrenoceptors the positive inotropic effects of phenylephrine and exogenous noradrenaline result from stimulation of the alpha1A- and alpha1B-adrenoceptor subtypes, whereas that of endogenous noradrenaline is mediated via the alpha1B-adrenoceptor subtype. This could be explained by assuming that the alpha1B-adrenoceptor subtype population may be located on a space confronting more closely to the sympathetic nerve endings than the alpha1A-adrenoceptor subtype population.

Adrenergic alpha-Agonists↗

Different regulation of myofilament Ca2+ sensitivity in beta-escin-skinned cardiac and vascular smooth muscles.

We compared the effects of guanosine 5'-O-(3-thiotriphosphate) (GTPgammaS, an activator of G-protein), phorbol 12,13-dibutylate (PDB, an activator of protein kinase C) and pimobendan (an inotropic agent with Ca2+-sensitizing action) on the Ca2+ sensitivity of the contractile proteins in beta-escin-skinned muscle preparations obtained from rabbit left ventricles and mesenteric arteries. After the skinning procedure, when GTPgammaS (100 microM) or PDB (1 microM) was added to the Ca2+ solutions, pCa50 were significantly increased in preparations obtained from vascular smooth muscle, but not from cardiac muscle, indicating that G-protein- and protein kinase C-mediated direct Ca2+ sensitization may occur only in smooth muscle, but not in cardiac muscle. In contrast, pimobendan (50 microM) increased the Ca2+ responsiveness only in cardiac muscle. Therefore, we conclude that, in addition to the common regulatory factors affecting Ca2+ sensitivity such as intracellular pH and phosphorylation by protein kinase A, there are other means of regulation of Ca2+ sensitivity working differently in cardiac and in vascular smooth muscles.

Actin Cytoskeleton↗

Attention deficits assessed by Continuous Performance Test and Span of Apprehension Test in Japanese schizophrenic patients.

To examine whether attention deficits in the Continuous Performance Test (CPT) and in the Span of Apprehension Test (SPAN) are observed in Japanese schizophrenics, 49 chronic medicated schizophrenics and 43 normal controls were administered the UCLA version of CPT and SPAN. To investigate whether each measure of the CPT and the SPAN is independently correlated to symptoms, a hierarchical multiple regression was conducted with the attentional measures and age as independent variables and with the conceptual disorganization scores on the Brief Psychiatric Rating Scale (BPRS) as a dependent variable in schizophrenic subjects. Decreased performance on the CPT and SPAN measures was observed in the Japanese patients. This indicates that the CPT and the SPAN can detect the attention deficits of schizophrenics in Japan as well as Europe and the US. The SPAN scores in the present study were lower than in previous studies. This may be due to a lower level of familiarity of Japanese subjects with the Roman alphabet. Each measure of the CPT and the SPAN was significantly correlated with the conceptual disorganization scores after controlling for the other measure and age. We concluded that each deficit in sustained attention and processing capacity was independently related to formal thought disorder in schizophrenia.

Analysis of Variance↗

Agonist-independent tonic inhibitory influence of Gi on adenylate cyclase activity in rabbit ventricular myocardium and its removal by pertussis toxin: a role of empty receptor-mediated Gi activation.

We evaluated whether Gi has a tonic inhibitory influence on myocardial adenylate cyclase (AC) in an agonist-independent way, and, if so, whether this is attributable to substantial coupling between agonist-free, empty inhibitory receptors and G. Rabbits received pertussis toxin (PTX, 10 micrograms/kg i.v.) 40 h before preparing ventricular myocardial membranes, which was associated with virtually complete in vivo ADP-ribosylation and inactivation of the 41-kDa substrate. Pretreatment with PTX had no influence on basal AC activity but significantly enhanced AC activity elicited by 100 microM GTP. Furthermore, it markedly increased AC activity stimulated with 5'-guanylyl imidodiphosphate (GppNHp) and isoproterenol through a wide range of concentrations of these stimulants. These findings indicate that Gi has a tonic influence on he stimulatory effects of guanine nucleotides and beta-adrenoceptor stimulation on AC even in the absence of the inhibitory receptor agonists. The muscarinic receptor antagonists atropine and AF-DX 116 significantly enhanced isoproterenol-stimulated AC activity, as PTX pretreatment did, except that statistically significant increasing effects of these antagonists on GppNHp-stimulated AC activity was observed only at higher concentrations of GppNHp. The enhancement by atropine was not detected in PTX-pretreated membranes. The selective beta 2-adrenoceptor antagonist ICI 118,551 did not modify the stimulatory effects of guanine nucleotides and isoproterenol on AC in either control or PTX-pretreated membranes, excluding the possible involvement of beta 2-adrenoceptors in tonic activation of Gi. We conclude that Gi is tonically activated by agonist-free, empty muscarinic receptors, which leads to attenuation of Gs-mediated or beta-adrenoceptor-mediated activation of AC. The potentiating effect of PTX pretreatment on GppNHp-stimulated AC activity may be at least partially due to the direct action of PTX on the Gi heterotrimeric complex, independently of the coupled receptors.

Adenosine Diphosphate↗

Restoration of action potential duration and transient outward current by regression of left ventricular hypertrophy.

The presence of left ventricular hypertrophy (LVH) is associated with an increased incidence of arrhythmias. Our previous study on hypertrophied rat hearts has demonstrated that regression of LVH prevents ischemia-induced lethal arrhythmias. To elucidate the underlying mechanism of the reduced incidence of arrhythmias in regression of LVH, we examined electrophysiological properties of both hypertrophied and regressed left ventricular cells. Hearts from spontaneously hypertensive rats (SHR) were used as LVH, and those from Wistar-Kyoto rats (WKY) served as control. SHR with regression of LVH (REG) was produced by captopril treatment. Action potentials and membrane currents of subendocardial left ventricular cells were compared by the whole-cell patch-clamp techniques. Although the membrane capacitance of SHR cells was significantly greater than that of WKY cells, that of REG cells was normalized to the control level. Prolonged action potential duration (APD) and reduced density of transient outward current (ito) in SHR cells was normalized by LVH regression (APD at 75% repolarization (ms) and ito density at +60 mV (pA/pF): WKY 36.1 +/- 4.2, 11.9 +/- 1.3, SHR 73.1 +/- 12.9, 5.2 +/- 0.7, REG 29.5 +/- 3.9, 10.4 +/- 2.0, P = 0.015, P = 0.001 v WKY). No significant differences were observed in the densities of steady-state outward current, inward rectifier current, and L-type Ca2+ current. The restoration of ito density by regression of LVH could normalize the prolonged APD in hypertensive LVH, which may be causally related to the reduced incidence of arrhythmias in LVH regression.

Action Potentials↗