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Biomedical subjects

M Satoh

Publications and source records attributed to M Satoh.

At least 775 records · Page 43Linked to original sources

Optimization of cell culture conditions for G-CSF (granulocyte-colony stimulating factor) production by genetically engineered Namalwa KJM-1 cells.

An expression vector for G-CSF, pASLB3-3, was constructed and introduced into Namalwa KJM-1 cells (Hosoi et al., 1988), and cells resistant to 100 nM of methotrexate (MTX) were obtained. Among them, the highest producer, clone SC57, was selected and the productivity of this clone was further characterized. The maximal production of G-CSF was at the most 1.8 micrograms/ml/day using a 25 cm2 tissue culture flask, even though the cell number was above 7 x 10(5) cells/ml. The limiting factors at high density were analyzed as the deficiency of nutrients, such as glucose, cysteine and serine, and pH control. The depression of specific G-CSF productivity per cell under the batch culture conditions was overcome by using a perfusion culture system, Biofermenter (Sato, 1983) with modifications of nutrients supplementation by a dialysis membrane and/or dissolved oxygen (DO) supplementation by microsilicone fibers. ITPSGF medium was modified to elevate concentrations of amino acids and glucose by 2.0- and 2.5-times, respectively. Under the control of pH at 7.4 and DO at 4 ppm, the specific G-CSF productivity was not depressed even at high cell density (above 1 x 10(7) cells/ml), and the amount of G-CSF reached 41 micrograms/ml. These results indicated the possibility of finding the optimum culture conditions for the production of recombinant proteins by Namalwa KJM-1 cells.

Base Sequence↗

Effects of dietary calcium, magnesium and phosphorus on the formation of struvite stones in the urinary tract of rats.

After feeding various diets we studied the effects of dietary calcium, magnesium and phosphorus on the formation of struvite stones in rats with urinary tract infections, and also studied the effects of the administration of vitamin D3 and aluminium gel on stone formation. A low-magnesium diet decreased urinary magnesium and prevented stone formation, but a medium-calcium diet did not significantly decrease stone weight. A high-calcium diet decreased urinary phosphorus and inhibited stone formation. A high-calcium and high-phosphorus diet decreased urinary excretion of magnesium and inhibited stone formation. Although the administration of vitamin D3 did not inhibit stone formation, aluminium gel decreased the urinary level of phosphorus and prevented stone formation. A marked decrease in urinary magnesium and/or phosphorus may prevent struvite stone formation in rats with urinary tract infections.

Aluminum↗

Effect of bismuth nitrate given in combination with cis-diamminedichloroplatinum(II) on the antitumor activity and renal toxicity of the latter in nude mice inoculated with human bladder tumor.

The effects of bismuth nitrate pretreatment on the toxicity and antitumor activity of cis-diamminedichloroplatinum (cisplatin, CDDP) were examined in nude mice that had been inoculated with human bladder-tumor tissue. Pretreatment with bismuth nitrate depressed the renal toxicity of CDDP without compromising its activity against a transplantable human bladder tumor. Renal metallothionein (MT) and bismuth (Bi) levels in nude mice were markedly increased by Bi preadministration, but no significant MT induction was observed in inoculated human bladder-tumor tissue in which only a trace amount of Bi was incorporated. Furthermore, it was confirmed that tumor platinum (Pt) concentrations in CDDP-treated mice were not affected by Bi pretreatment. Thus, the administration of Bi compounds prior to chemotherapy with CDDP may provide an effective mode of treatment for advanced bladder tumors.

Animals↗

Effect of 2-guanidinoethanol on levels of monoamines and their metabolites in the rat brain.

The contents of monoamines and their metabolites in rat brains 3 hours after the intracerebroventricular injection of 6 mumol of 2-guanidino-ethanol (GEt) were measured by HPLC. GEt which is a configurational analogue of 4-aminobutanoic acid (GABA) induced severe running fits and tonic-clonic convulsions as well as epileptic discharges. In GEt-administered rats, dopamine (DA) decreased in the cortex, hippocampus and hypothalamus. 3,4-Dihydroxyphenylacetic acid (DOPAC) increased to about the same level in all brain regions, therefore the distribution of DOPAC appeared to be homogeneous in the brain. The homovanillic acid levels also increased in the striatum and hippocampus. No significant change in the norepinephrine contents was observed in any region. The turnover ratio of DA increased significantly except in the striatum. Serotonin levels increased in the hypothalamus and midbrain by GEt administration, though 5-hydroxyindoleacetic acid levels showed no change in any of the brain regions. These data suggest that the activity of dopaminergic and serotonergic neurons are increased by GEt.

3,4-Dihydroxyphenylacetic Acid↗

A study of ventricular contraction sequence in complete right bundle branch block by phase analysis.

Twenty-four patients with complete right bundle branch block (CRBBB) combined with and without left axis deviation (LAD) on ECG, were compared with 17 normal subjects to evaluate the right ventricular contraction sequence and pattern in detail. Blood pool scintigrams were obtained in the left anterior oblique projection, and these images were analyzed by first component Fourier harmonics. In the normal subjects, the phase value distribution representing the pattern of ventricular contraction was almost homogeneous in both the right and left ventricles (RV & LV). In the CRBBB patients without LAD, the phase images showed apparent phase delay in the right ventricle. In the CRBBB patients with LAD, the phase images showed many different contraction patterns varying from normal to RV phase delay, owing to the effects of the hemi-block. Quantitative analysis of the absolute values, showed that the mean (RV-LV) value was 6.6 +/- 8.4 msec in the normal subjects. In the CRBBB patients without LAD, the duration of the QRS complex correlated with the mean (RV-LV) value, whereas no difference was observed between the duration of the QRS complex and the standard deviation of the right ventricle. Using phase analysis the degree of the RBBB can be determined from the phase images, and can be quantitatively analyzed as in electrical studies.

Adult↗

Low-energy catheter electrical ablation for sustained ventricular tachycardia.

Catheter electrical ablation using a relatively low level of energy--40 to 100 joules--was attempted in 12 consecutive patients with drug-refractory sustained ventricular tachycardia (VT). They had 19 monomorphic VTs, and ischemic heart disease was found as the underlying heart disease in one, nonischemic heart disease was found in nine, and no structural heart disease was seen in two patients. Electrical discharge was delivered at the site of the earliest endocardial activation in 17 VTs, and at the slow conduction area in two VTs. Among 19 VTs in 12 patients, 12 VTs (63%) in seven patients (58%) were successfully ablated and became noninducible during electrophysiologic study. There were no major complications, but transient atrioventricular block occurred in one patient and transient friction rub occurred in another. Delivered electrical energy and the time interval between the local electrogram and the surface QRS did not correlate with the clinical outcome of the procedure. However, "excellent" pace-mapped QRS morphology was obtained from the site of earliest activation or from the slow conduction area in 9 of 12 VTs in the successful cases but in only one of seven VTs in the unsuccessful cases. Low-energy catheter electrical ablation seems to be a satisfactory therapeutic procedure compared with the conventional method that uses an energy level of 200 joules or higher.

Adult↗

Organization of multiple nucleoids and DNA molecules in mitochondria of a human cell.

Mitochondrial nucleoids (mt-nucleoids) of the A2780 line of cultured human cells were stained with DAPI and observed using an epifluorescence microscope. The mt-nucleoids appeared to be organized compactly in mitochondria. Numbers of mt-nucleoids per mitochondrion ranged from 1 to more than 10, and 70% were "multinucleated" mitochondria. Intensities of fluorescence of mt-nucleoids in each mitochondrion were measured by a video-intensified microscope system (VIM system) and copy numbers of mitochondrial DNA (mtDNA) in each mitochondria were determined. The copy numbers of mtDNA per mitochondrion ranged from 1 to 15, and the average was 4.6. Because the cells had 107 mitochondria on average, the copy number of mtDNA per cell was estimated to be about 500.

Cell Line↗

Production of platelet-like particles by a human megakaryoblastic leukemia cell line (MEG-01).

The distribution of microtubules and platelet-specific glycoproteins (GPIIb/IIIa) in particles was probed by an immunofluorescence method using anti-tubulin and anti-GPIIb/IIIa antibodies to identify whether particles released from a human megakaryoblastic cell line (MEG-01) are platelets. The fluorescence image showing anti-tubulin staining of the particles revealed a characteristic ring structure observed in platelets. Anti-platelet GPIIb/IIIa antibody staining showed an image in which small patches or spots were seen throughout the particle with brighter staining at the periphery. No significant difference was observed between these particles and human blood platelets under immunofluorescent staining. These results show that MEG-01 cells released platelet-like particles.

Blood Platelets↗

Specific binding sites for bifemelane in the hippocampus of the guinea pig, relevant to its pharmacological actions.

Bifemelane has an anti-amnesic effect, produces the translocation of protein kinase C in the hippocampal CA3 region but not in CA1 and enhances long-term potentiation in the mossy fibre-CA3 system but not in the Schaffer collateral-CA1 system. The present study examined the specific binding of [3H]bifemelane in membrane preparations of guinea pig hippocampus and regional differences in such a binding. The binding of [3H]bifemelane was reversible and greater when incubated at 4 degrees C than at 25 or 37 degrees C. The binding of [3H]bifemelane appeared to be composed of at least 2 different affinity components. Imipramine significantly suppressed the binding of [3H]bifemelane at 1 microM and, in the presence of 1 microM imipramine, the low-affinity component of the binding of [3H]bifemelane was eliminated. The density of specific binding sites for 1 nM [3H]bifemelane was significantly higher in the hippocampal CA3 region than in the CA1. The specific binding of 1 nM [3H]bifemelane was not inhibited by other nootropic drugs, such as idebenone, calcium hopantenate, vinpocetine, indeloxazine and piracetam. The present results suggest that there are specific binding sites for bifemelane in hippocampus, which are different from those for other nootropic drugs tested and that the regional differences in the pharmacological susceptibilities to bifemelane are at least, in part, attributed to those in the density of binding sites for bifemelane.

Animals↗

Tumor necrosis factor attenuates beta agonist-evoked Cl- secretion in canine tracheal epithelium.

We examined the effect of human recombinant TNF alpha on the potential difference (PD) and short circuit current (SCC) of canine tracheal epithelium using an Ussing chamber. Luminal or submucosal TNF (2 to 200 U/ml) produced no significant alterations in the basal PD or SCC values. Pretreatment with luminal TNF significantly reduced isoproterenol (ISOP, 10(-6) M)-evoked increases in SCC and PD to 57% and 66% of that with ISOP alone, respectively, with a significant decrease in conductance (G) to 87% of that with ISOP alone in a dose-dependent fashion, from 10 to 200 U/ml. Even after ISOP (10(-6) M)-evoked PD and SCC had reached a plateau, TNF produced significant decreases in PD and SCC up to 79% and 83% of that with ISOP alone, respectively, in a dose-dependent fashion, from 50 to 200 U/ml. Amiloride did not alter the inhibitory action of TNF on ISOP-evoked SCC and PD values. Antiserum against TNF abolished the inhibitory action of TNF on ISOP-evoked response. In contrast, submucosal TNF did not alter PD, SCC or G. These findings indicate that TNF attenuates beta agonist-evoked increases in chloride secretion across airway epithelium.

Animals↗

Involvement of substance P in hyperalgesia induced by intrathecal galanin.

Previously we have demonstrated that an intrathecal injection of galanin (GAL) decreases the nociceptive threshold for mechanical stimulation without effect on thermal nociceptive responses. The present experiments were conducted to determine whether substance P (SP) would be involved in such a decrease in the nociceptive threshold produced by GAL. An intrathecal injection of anti-SP monoclonal antibody inhibited the nociceptive threshold-decreasing effect of intrathecal GAL (0.1 nmol/rat). This antibody significantly suppressed the contractile action of SP (3 nM) on the longitudinal muscle and that of neurokinin A (3 nM) to a lesser degree. Binding of [125I]Tyr8-SP to this antibody was inhibited by SP in a concentration-dependent manner in the range 0.1-33 nM without suppression by GAL at a concentration of 3300 nM. In addition, an intrathecal injection of the anti-SP monoclonal antibody increased the nociceptive threshold for mechanical stimulation in carrageenin-inflamed rats without effect on thermal nociceptive behaviors. The capsaicin (0.5 microM)-evoked release of immunoreactive SP from dorsal-half slices of the spinal cord was increased by galanin (1 microM, but not 0.1 microM) without effects on basal release. An intrathecal injection of GAL did not produce aversive responses (biting, licking and scratching) at doses of 0.1 and 1 nmol/rat. GAL (0.1 nmol/rat) did not affect biting/licking behaviors evoked by SP (1 nmol/rat), but inhibited SP-evoked scratching behavior. These results suggest that the nociceptive threshold-decreasing action of intrathecal GAL is at least in part mediated by SP, and that GAL may act on primary afferent terminals to increase the release of SP evoked by stimulation.

Animals↗

Serotonin, but neither noradrenaline nor GABA, inhibits capsaicin-evoked release of immunoreactive somatostatin from slices of rat spinal cord.

It has been suggested that somatostatin is involved in nociceptive transmission in the dorsal horn and that it is contained in small primary afferent neurons. In the present experiments, to elucidate neural systems inhibiting the release of somatostatin from the primary afferent terminals, we examined the effects of serotonin, noradrenaline and gamma-aminobutyric acid on the capsaicin-evoked, dorsal-rhizotomy-sensitive and tetrodotoxin-insensitive release of immunoreactive somatostatin, 98.7% of which was somatostatin itself, from the dorsal-half slices of lumbar and cervical enlargements of rat spinal cord. Serotonin (30-100 microM) suppressed the evoked release in a concentration-dependent manner, and the suppression was antagonized by methysergide (100 microM). The evoked release of immunoreactive somatostatin was not inhibited by noradrenaline (100 microM) or gamma-aminobutyric acid (100 microM). The present results suggest that the serotonergic systems exert an inhibitory effect on the release of somatostatin from the central terminals of primary sensory neurons.

Animals↗

Separate mechanisms of long-term potentiation in two input systems to CA3 pyramidal neurons of rat hippocampal slices as revealed by the whole-cell patch-clamp technique.

Excitatory synaptic transmission from two input systems to hippocampal CA3 pyramidal neurons was investigated by the whole-cell patch-clamp technique for thin slice preparation, with special reference to long-term potentiation (LTP) in these systems. Excitatory postsynaptic currents (EPSCs) evoked by fimbrial stimulation consisted of two components; one was blocked by 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) and the other was persistent at depolarized membrane potentials and blocked by D-2-amino-5-phosphonovalerate (D-AP5). The contribution of the D-AP5-sensitive component to EPSCs evoked by stimulation of mossy fibers was much less than that to fimbrial EPSCs. High-frequency stimulation of afferent fibers, under current-clamp conditions, elicited LTP. Bath application of D-AP5 blocked the induction of LTP in the fimbrial but not in the mossy fiber synapses. Induction of fimbrial LTP was completely blocked by 10 mM BAPTA applied intracellularly. In contrast, mossy fiber LTP was not blocked by 10 mM BAPTA. Furthermore, mossy fiber LTP, but not fimbrial LTP, was elicited by high-frequency stimulation under voltage-clamp (-80 mV) conditions. These results suggest that activation of NMDA receptors, increase in postsynaptic [Ca2+]i, and postsynaptic membrane depolarization are required for the induction of fimbrial but not for mossy fiber LTP.

2-Amino-5-phosphonovalerate↗

Involvement of central beta-adrenoceptors in the induction of hypothalamic interleukin-1 beta mRNA by methamphetamine.

Methamphetamine (2-15 mg/kg, i.p.) has been shown to induce interleukin-1 beta (IL-1 beta) mRNA in the rat hypothalamus. The induction of IL-1 beta mRNA was blocked by intraperitoneal pretreatment with beta-blockers propranolol (0.1-1 mg/kg, but not 0.01 mg/kg) and pindolol (0.3 and 1 mg/kg). Prazosin (1 and 5 mg/kg) and yohimbine (1 and 5 mg/kg), alpha-blockers and haloperidol (1 mg/kg), a dopamine antagonist, produced partial and little suppression, respectively. When injected intracerebroventricularly (i.c.v.), propranolol, but neither prazosin nor yohimbine, significantly suppressed the methamphetamine-induced expression of IL-1 beta mRNA at a dose of 1 nmol/rat. An i.c.v. injection of the beta-adrenoceptor agonist isoproterenol (1 and 3 micrograms/rat) dose-dependently increased the hypothalamic level of IL-1 beta mRNA. The present results suggest that the induction of hypothalamic IL-1 beta mRNA by methamphetamine is mediated by beta-adrenoceptors in the brain.

Adrenergic alpha-Antagonists↗

Intrathecal injections of galanin and its antiserum affect nociceptive response of rat to mechanical, but not thermal, stimuli.

To ascertain the involvement of galanin in nociceptive transmission in the spinal dorsal horn, we examined the effects of intrathecal injections of porcine galanin and its antiserum on behavioral nociceptive responses of the rat, using the paw-pressure and paw-radiant heat tests. An intrathecal injection of antiserum against porcine galanin reversed the decreased nociceptive threshold for mechanical, but not thermal, stimulation of the carrageenin-treated hind paw of rat, with no effect on the nociceptive threshold of the non-inflamed hind paw. Rat galanin as well as porcine galanin suppressed the binding of [125I]porcine galanin to the antiserum, a finding suggesting that the antiserum can bind rat galanin. An intrathecal injection of porcine galanin (0.1 and 1 nmol, but not 0.01 nmol) decreased the mechanical nociceptive threshold of the rat hind paw with no effect on thermal nociception. These results suggest that galanin present in the dorsal horn is involved in the facilitation of mechanical, but not thermal, nociceptive transmission.

Animals↗

Characterization of muscarine receptors in rabbit ciliary body smooth muscle using propylbenzilylcholine mustard.

1. A piece of rabbit ciliary body was mounted in organ bath and used as a test organ containing muscarine receptors. 2. A concentration response curve of carbachol was completely inhibited by a 50 min treatment of the smooth muscle preparation with propylbenzilylcholine mustard(PrBCM; 10(-6) M). This treatment was reported to block PrBCM-sensitive muscarine receptors in intestinal smooth muscle completely. 3. It is suggested that an existance of only PrBCM-sensitive muscarinic receptors, though there are two subtypes of muscarine receptors; PrBCM-sensitive and -resistant ones in intestinal smooth muscles.

Animals↗

Interactions of N-cyclopropylmethyl(-)-6 beta-acetylthionormorphine with mu-, kappa-, delta- and sigma-opioid receptors.

1. Affinities of N-cyclopropylmethyl(-)-6 beta-acetylthionormorphine (KT-90) to mu-, kappa-, delta- and sigma-receptors were tested in rat brain membrane fractions using radioligand-receptor assays. 2. Though KT-90 had nonselectively high affinities to mu-, kappa- and delta-receptors, affinity of KT-90 to sigma-receptors was lower than those to the other three receptors. 3. Affinity of KT-90 to sigma-receptors was 1000 times lower than that of buprenorphine.

Animals↗

High energy underwater shock wave treatment on implanted urinary bladder cancer in rabbits.

The effects of focused high energy shock waves (SW) on the implanted urinary bladder cancer in rabbits were examined. The bladder cancer was exposed to 2000 to 8000 shots of focused SW under ultrasound guidance. Although only focal necrosis of the tumor was seen in the one day SW exposure, wider and deeper tumor necrosis was observed in the tumors following serial SW (2000 to 6000 shots, for two to three days). Eight to 10 day serial SW exposure (6000 to 8000 shots) decreased the tumor growth in comparison with that of the control. Lung metastases examined by periodic chest X-ray after SW treatment revealed that SW did not promote lung metastases. Pathological findings were also in accord with the X-ray examinations. Polyclonal antibody type 4 collagen was used for immunohistochemical staining of vascular wall in bladder cancer. Vascular wall destruction, not found in spontaneous necrotic tumor, were clearly visible in SW induced necrotic area. SW induces vascular damage in the tumor, which may be the primary cause promoting the tumor necrosis.

Animals↗