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Biomedical subjects

K Takuma

Publications and source records attributed to K Takuma.

At least 19 recordsLinked to original sources

CV-2619 protects cultured astrocytes against reperfusion injury via nerve growth factor production.

In this study, we examined the effect of the neuroprotective agent 2, 3-dimethoxy-5-methyl-6-(10-hydroxydecyl)-1,4-benzoquinone (CV-2619) on reperfusion injury in cultured rat astrocytes after exposure to hydrogen peroxide (H(2)O(2))-containing medium. CV-2619 (10 nM to 10 microM) significantly attenuated the reperfusion-induced decrease in cell viability. The compound showed an anti-apoptotic effect in this astrocyte injury model. Antioxidants such as ascorbic acid, alpha-tocopherol and reduced glutathione also inhibited H(2)O(2) exposure-induced cytotoxicity. CV-2619 did not affect the levels of reactive oxygen species, but it increased nerve growth factor (NGF) production. The effect of CV-2619 on H(2)O(2) exposure-induced cytotoxicity was blocked by cycloheximide and anti-NGF antibody. The protective effect of CV-2619 was antagonized by the mitogen-activated protein (MAP)/extracellular signal-regulated kinase (ERK) kinase inhibitor 2'-amino-3'-methoxyflavone and the phosphatidylinositol-3 kinase inhibitor wortmannin. These findings suggest that the effect of CV-2619 is mediated at least partly by NGF production in astrocytes and that ERK and phosphatidylinositol-3 kinases play a role in the downstream mechanism.

Animals↗

T-588 inhibits astrocyte apoptosis via mitogen-activated protein kinase signal pathway.

The effect of (1R)-1-benzo[b]thiophen-5-yl-2-[2-(diethylamino)ethoxy]ethan -1-ol hydrochloride (T-588), a cognition enhancer, on reperfusion injury was studied in cultured rat astrocytes. T-588 at 1-10 microM partially protected astrocytes against reperfusion injury after exposure to Ca(2+)-free medium or hydrogen peroxide. Nerve growth factor (NGF) had a similar protective effect. Addition of both T-588 and NGF resulted in complete protection against Ca(2+) reperfusion injury. T-588 did not stimulate NGF production in astrocytes. The effect of T-588 on Ca(2+) reperfusion injury including apoptosis was inhibited by the mitogen-activated protein (MAP)/extracellular signal-regulated kinase (ERK) kinase inhibitor 2'-amino-3'-methoxyflavone (PD98059), but not by the phosphoinositide 3-kinase inhibitor wortmannin. The effect of NGF was inhibited by PD98059 and wortmannin. T-588 stimulated rapidly the phosphorylation of ERK, but did not affect that of Akt in astrocytes. These findings suggest that the ERK MAP kinase pathway has a role in the protective effects of T-588 and NGF.

Androstadienes↗

Apoptosis in Ca2 + reperfusion injury of cultured astrocytes: roles of reactive oxygen species and NF-kappaB activation.

We previously reported that incubation of cultured astrocytes in Ca2 + -containing medium after exposure to Ca2 + -free medium caused Ca2 + influx followed by delayed cell death. Here, we studied the mechanisms underlying the Ca2 + -mediated injury of cultured astrocytes. Our results show that Ca2 + reperfusion injury of astrocytes appears to be mediated by apoptosis, as demonstrated by DNA fragmentation and prevention of death by caspase-3 inhibitors. Paradoxical Ca2 + challenge stimulated rapidly reactive oxygen species (ROS) production. Ca2 + reperfusion injury of astrocytes was influenced by several reagents which modified ROS production. When astrocytes were exposed to hydrogen peroxide (H2O2) for 30 min and then incubated without H2O2 for 1-5 days, cell toxicity including apoptosis was observed. Ca2 + reperfusion injury induced by Ca2 + depletion or H2O2 exposure was blocked by the iron chelator 1, 10-phenanthroline, the NF-kappaB inhibitor pyrrolidinedithiocarbamate and the calcineurin inhibitor FK506. Incubation in normal medium after H2O2 exposure rapidly increased the level of nuclear NF-kappaB p65 subunit, and the effect was blocked by 1,10-phenanthroline, pyrrolidinedithiocarbamate and FK506. These findings indicate that Ca2 + reperfusion-induced apoptosis is mediated at least partly by ROS production and ROS cause NF-kappaB activation in cultured astrocytes.

Animals↗

[Cell injury and its protection in astrocytes].

Incubation of cultured astrocytes in Ca(2+)-containing medium after exposure to Ca(2+)-free medium causes Ca2+ influx followed by delayed cell death. Here, we summarize the mechanisms underlying the Ca(2+)-mediated injury of cultured astrocytes and the protective effects of drugs against Ca(2+)-reperfusion injury. Our results show that Ca(2+)-reperfusion injury of astrocytes appears to be mediated by apoptosis as evidenced by DNA fragmentation and nuclear condensation. Calpain, reactive oxygen species (ROS) production, calcineurin, caspase-3, and NF-kappa B activation are involved in Ca(2+)-reperfusion injury. Several drugs including T-588 and idebenone protect astrocytes against Ca(2+)-reperfusion injury. The protective effect of idebenone is mediated by nerve growth factor production, whereas that of T-588 is mediated mainly by the mitogen-activated protein/extracellular signal-regulated kinase signal cascade.

Animals↗

Involvement of calcineurin in Ca2+ paradox-like injury of cultured rat astrocytes.

The Ca2+/calmodulin-dependent phosphatase calcineurin may have physiological and pathological roles in neurons, but little is known about the roles of the enzyme in glial cells. We have previously reported that reperfusion of cultured astrocytes in Ca2+-containing medium after exposure to Ca2+-free medium caused Ca2+ influx followed by delayed cell death. In this study, we examined if calcineurin is involved in this Ca2+-mediated astrocytic injury. FK506, an inhibitor of calcineurin, protected cultured rat astrocytes against paradoxical Ca2+ challenge-induced injury in a dose-dependent manner (10(-10)-10(-8) M). Cyclosporin A at 1 microM mimicked the effect of FK506. Rapamycin (1 microM) did not affect astrocyte injury, but it blocked the protective effect of FK506. Deltamethrin (20 nM), another calcineurin inhibitor, had a similar protective effect, whereas okadaic acid did not. FK506 affected neither paradoxical Ca2+ challenge-induced increase in cytosolic Ca2+ level nor Na+-Ca2+ exchange activity in the cells, suggesting that the calcineurin is involved in processes downstream of increased cytosolic Ca2+ level. Immunochemical studies showed that both calcineurin A (probably the A beta2 isoform) and B subunits were expressed in the cells. It is concluded that calcineurin is present in cultured astrocytes and it has a pathological role in the cells.

Animals↗

Usefulness and limitations of ultrasonography in the initial evaluation of blunt abdominal trauma.

BACKGROUND: In the assessment of blunt abdominal trauma, the reliability of ultrasonography (US) in identifying individual organ injuries remains uncertain, in spite of its usefulness in detecting hemoperitoneum. This study was designed to evaluate the overall diagnostic value of US, including identification of individual organ injuries. METHODS: The accuracy of US in the detection of intra-abdominal injuries and the identification of individual organ injuries was evaluated in 1,239 patients seen during a 15-year period. Accuracy was based on detection of intraperitoneal fluid, free air, or irregular parenchymal lesions. RESULTS: For the detection of injuries, US was 94.6% sensitive, 95.1% specific, and 94.9% accurate. Individual organ injuries were identified with sensitivities of 92.4, 90.0, 92.2, 71.4, and 34.7% for the liver, spleen, kidneys, pancreas, and intestine, respectively. CONCLUSION: US is reliable for the detection of injuries and the identification of solid-organ injuries despite its poor sensitivity for intestinal injuries.

Abdominal Injuries↗

[Apoptosis of astroglial cells].

Astrocytes, the most abundant glial cell type in the brain, are considered to have physiological and pathological roles in neuronal activities. We found that reperfusion of cultured astrocytes after Ca2+ depletion causes delayed cell death and that the Na(+)-Ca2+ exchanger in the reverse mode is responsible for this Ca(2+)-mediated cell injury (Ca2+ paradox injury). The Ca2+ paradox injury of cultured astrocytes is considered to be an in vitro model of ischemia/reperfusion injury, since a similar paradoxical change in extracellular Ca2+ concentration is reported in ischemic brain tissue. Furthermore, we demonstrated that heat shock proteins, glutathione and calcineurin inhibitors protected astrocytes against Ca2+ paradox-induced cell toxicity. We also observed DNA fragmentation, a typical apoptotic ladder, 2-3 days after hydrogen peroxide exposure. In addition, laser microscopic observation showed that reperfusion after the exposure to hydrogen peroxide caused nuclear condensation of astrocytes. Hydrogen peroxide-induced cell injury and DNA fragmentation were attenuated by the NF-kappa B inhibitor ammonium pyrrolidinedithiocarbamate, 1,10-phenanthroline and a caspase 3 inhibitor. These findings suggest that astrocytes are one of the targets for ROS and the oxidative stress-induced delayed death of astrocytes is at least due to apoptosis.

Animals↗

[Sepsis in extensive burned patients].

The prognosis of extensively burned patients is dependent upon the presence of sepsis. The more extensive the burns, the more likely patients are to become septic. Although recently the frequency of burn wound sepsis has been decreased due to the early excision of necrotic tissue, that of sepsis resulting from respiratory tract infection has increased. Staphylococcus aureus (methicillin-resistant S. aureus) and Pseudomonas aeruginosav are the agents most likely to cause infections. Sepsis syndrome also results from bacterial translocation (BT), in which gut bacteria and/or endotoxins are thought to enter the portal bloodstream and/or lymphosystem. The pathophysiological mechanism of sepsis is the increased release of inflammatory mediators and resulting imbalances between these substances and their antagonists. In cases of severe sepsis, the sequelae of the imbalance between inflammatory mediators and their antagonists can lead to endothelial injury, DIC, and finally MODS. Strategies against the occurrence of sepsis include hospital-wide infection control measures, blockage of infection routes, and administration of antibiotics. The early initiation of nutritional management, preferably by the enteral route, to enhance immune system function and minimize the occurrence of BT is recommended. Several drugs to control inflammatory mediator release are currently under development and are expected to be used clinically in future.

Burns↗

Relationship between pupil size and acetylcholinesterase activity in patients exposed to sarin vapor.

OBJECTIVE: To elucidate the effect of sarin vapor on pupil size and erythrocyte acetylcholinesterase activity (AchE). DESIGN: Retrospective observational survey. SETTING: Emergency department of an urban teaching hospital. PATIENTS: 80 patients who were exposed to sarin in a terrorist attack in Tokyo subways. MEASUREMENTS AND RESULTS: Pupil size and AchE activity on the day of exposure were measured. Among the 80 patients, the pupils were miotic (< 3 mm) in 50 patients (62.5%), while AchE activity was below the normal range (< 1.2 U) in 34 patients (42.5%). AchE was significantly lower in the miotic group than in the group with normal pupils (1.0 +/- 0.5 U vs 1.5 +/- 0.3 U, p < 0.01). In the miotic group, AchE activity was lower than normal in 32 patients (64.0%) but was decreased in only 2 patients in the normal pupil group (6.7%) (p < 0.01). CONCLUSIONS: Miosis is a more sensitive index of exposure to sarin vapor than erythrocyte AchE. Systemic poisoning is apparently less likely to develop if the patient's pupil size is normal on arrival at the hospital.

Acetylcholinesterase↗

Isoform-specific up-regulation by ouabain of Na+,K+-ATPase in cultured rat astrocytes.

There are two alpha-subunit isoforms (alpha1 and alpha2) and two beta-subunit isoforms (beta1 and beta2) of Na+,K+-ATPase in astrocytes, but the functional heterodimer composition is not known. Ouabain (0.5-1.0 mM) increased the levels of alpha1 and beta1 mRNAs, whereas it decreased those of alpha2 and beta2 mRNAs in cultured rat astrocytes. The increases in alpha1 and beta1 mRNAs were observed at 6-48 h after addition of the inhibitor. Immunochemical analyses showed that ouabain increased alpha1 and beta1, but not alpha2 and beta2, proteins, and that the isoforms in control and ouabain-treated cultures were of glial origin. Low extracellular K+ and monensin (20 microM) mimicked the effect of ouabain on alpha1 mRNA. The ouabain-induced increase in alpha1 mRNA was blocked by the protein synthesis inhibitor cycloheximide (10 microM), the intracellular Ca2+ chelator 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid tetraacetoxymethyl ester (30 microM), and the calcineurin inhibitor FK506 (1 nM). These findings indicate that chronic inhibition of Na+,K+-ATPase up-regulates the alpha1 and beta1, but not alpha2 and beta2, isoforms in astrocytes, suggesting a functional coupling of alpha1beta1 complex. They also suggest that intracellular Na+, Ca2+, and calcineurin may be involved in ouabain-induced up-regulation of the enzyme in astrocytes.

Animals↗

Na(+)-Ca2+ exchanger: physiology and pharmacology.

The Na(+)-Ca2+ exchanger in the plasma membrane is a bidirectional electrogenic ion transporter that couples the translocation of Na+ in one direction with that of Ca2+ in the opposite direction. This system is involved in regulation of intracellular Ca2+ concentration via the forward mode (Ca2+ extrusion) or the reverse mode (Ca2+ influx). There are two types of the plasma membrane Na(+)-Ca2+ exchanger in an animal, and they are called the cardiac type and rod outer segment type. In addition, there is an electroneutral Na(+)-Ca2+ exchanger present in mitochondria. Recent studies by the molecular biology technique show that there are at least 8 isoforms of the cardiac type (NCX1), and there are two other exchangers in the brain (NCX2 and NCX3). Due to new techniques of molecular biology and electrophysiology, much evidence is accumulating with respect to the structure, mechanism, regulation, and physiological and pathological roles of the Na(+)-Ca2+ exchanger. This review summarizes recent progress in this research field that is of pharmacological interest.

Animals↗

[Bacteria isolated from surgical infections and their susceptibilities to antimicrobial agents. Special references to bacteria isolated between July 1995 and June 1996].

Isolated bacteria from infections in general surgery during the period from July 1994 to June 1995 were investigated in a multicenter study in Japan, and the following results were obtained. One hundred and sixty-four strains were isolated from primary infections, and 202 strains were isolated from postoperative infections. From primary infections, anaerobic Gram-positive bacteria were predominant, while from post operative infections, aerobic Gram-positive bacteria were predominant. Among aerobic Gram-positive bacteria, the isolation rate of Enterococcus faecalis was the highest, followed by that of Staphylococcus aureus from postoperative infections. Among anaerobic Gram-positive bacteria, the isolation rate of Peptostreptococcus spp. was the highest from both types of infections. Among anaerobic Gram-negative, Escherichia coli was the most predominantly isolated from primary infections, followed by Klebsiella pneumoniae and Pseudomonas aeruginosa in this order, and from postoperative infections, P. aeruginosa was the most predominantly isolated, followed by Enterobacter spp. and Klebsiella spp. Among anaerobic Gram-negative bacteria, the isolation rate of Bacteroides fragilis group was the highest from both types of infections. We noticed that MICs of cefazolin against three out of 23 strains of E. coli were higher than 100 micrograms/ml. Among anaerobic bacteria, there were many resistant strains against penicillins and cephems with MICs higher than 100 micrograms/ml, and the same trend was observed among other Bacteroides spp. and Prevotella spp.

Bacterial Infections↗

[Isolation rate of Enterococcus spp. from surgical infections and their susceptibilities].

Enterococcus spp. isolated from surgical infections during the period from July 1982 to June 1995 were investigated in a multicenter study involving 19 hospitals in Japan, and the following results were obtained. 1. Though the isolation rate of Enterococcus faecalis and other Enterococcus spp. were not high from primary infections, and from postoperative infections the isolation rate of other Enterococcus spp. was also low, the isolation rate of E. faecalis was highest from postoperative infections after 1993. 2. Vancomycin (VCM) showed strongest activity against E. faecalis, and followed by those of ampicillin (ABPC), imipenem. levofloxacin (LVFX) and meropenem in this order. Against other Enterococcus spp., VCM showed strongest activity, and followed by those of ABPC and LVFX. There were no resistant strains against VCM.

Ampicillin↗

Heat shock protects cultured rat astrocytes in a model of reperfusion injury.

We have previously found that incubation of cultured rat astrocytes in Ca(2+)-free medium caused an increase in intracellular Ca2+ ([Ca2+]i) followed by delayed cell death. Here, we examined whether thermal stress protects astrocytes from cell death in this model system of reperfusion injury. Cultured astrocytes were preincubated at 40-44 degrees C for 10-20 min in fetal calf serum-free medium, incubated at 37 degrees C for 24 h in serum-containing medium, and subjected to the in vitro reperfusion experiment. Thermal stress attenuated reperfusion-induced cell toxicity. Furthermore, the stress increased cell viability after incubation with serum-free medium containing Ca2+. These effects of heat shock required incubation in serum-containing medium for at least 12 h after heat shock, and it was blocked by the protein synthesis inhibitor cycloheximide. Thermal stress increased synthesis of several proteins, and one of the inducible proteins was identified as the 72-kDa heat shock protein by an immunoblot analysis. Neither the increase in [Ca2+]i nor the Na(+)-Ca2+ exchange activity in astrocytes induced in this model were affected by thermal stress. These findings suggest that heat shock proteins protect astrocytes from cell death in a model of reperfusion injury and they may affect processes down stream of the increase in [Ca2+]i.

Animals↗

Protective effect of taurine against reperfusion injury in cultured rat astrocytes.

Reperfusion of cultured rat astrocytes with Ca(2+)-containing medium after exposure to Ca(2+)-free medium for a short time caused an increase in intracellular Ca2+ ([Ca2+]i), and delayed cell death (Ca2+ paradox-like injury). Exposure of astrocytes to Ca(2+)-free medium caused a marked release of taurine. Taurine (3-30 mM) reduced the reperfusion-induced increase in [Ca2+]i and attenuated the delayed glial cell death. Glycine, GABA and beta-alanine did not affect reperfusion-induced cell toxicity. The protective effect of taurine required addition at an early time during reperfusion. Ouabain and monensin mimicked reperfusion injury and their toxicity was also reduced by taurine. Taurine (3-30 mM) inhibited dose-dependently 45Ca2+ uptake stimulated by ouabain and monensin in astrocytes. These findings suggest that taurine has a protective effect against reperfusion injury via an inhibition of Na+/Ca2+ exchange activity in the reverse mode.

Animals↗

Serum MIP-1 alpha and IL-8 in septic patients.

UNLABELLED: We studied blood MIP-1 alpha and IL-8 in 38 septic patients and 5 healthy volunteers. Both chemokines were undetectable in the healthy volunteers. In sepsis, serum MIP-1 alpha was detected in 45% of the patients and Il-8 in 84%. The levels of MIP-1 alpha, but not of IL-8, correlated with CRP, IL-6 and TNF alpha levels. Complications, including various organ failures and mortality, showed no correlation with serum MIP-1 alpha levels. In contrast, we found increased levels of serum IL-8 in septic patients with disseminated intravascular coagulation, central nervous system (CNS) dysfunction or renal failure, and the mortality rate was higher in the IL-8 detectable group than in the IL-8 undetectable group (50% vs 0%, p < 0.05). In conclusion, the production of both MIP-1 alpha and IL-8 was increased and initially detectable levels of circulating IL-8 predicted high mortality in sepsis. OBJECTIVE: To determine the significance of the C-C chemokine MIP-1 alpha and the C-X-C chemokine IL-8 in sepsis. DESIGN: Prospective study. SETTING: Clinical investigation, emergency department and general intensive care unit of university hospital. PATIENTS AND PARTICIPANTS: 38 septic patients and 5 healthy volunteers were studied. Sepsis was diagnosed following the criteria formulated by ACCP/SCCM. INTERVENTIONS: 10-20 ml of blood was drawn from each patient at the time of initial diagnosis of sepsis. MEASUREMENTS AND RESULTS: MIP-1 alpha and IL-8 were determined by sandwich ELISA. Both chemokines were undetectable in the healthy volunteers. In sepsis, serum MIP-1 alpha was detected in 45% of the patients and IL-8 was detected in 84%. The levels of MIP-1 alpha, but not of IL-8, correlated with CRP, IL-6 and TNF alpha levels. Complications, including various organ failures and mortality, showed no correlation with serum MIP-1 alpha levels. In contrast, we found increased levels of serum IL-8 in patients with disseminated intravascular coagulation (DIC) (p < 0.05), central nervous system (CNS) dysfunction (p < 0.05), renal failure (p < 0.01) and the mortality rates were higher in the IL-8 detectable group than in the IL-8 undetectable group (50% vs 0%, p < 0.05). CONCLUSIONS: The production of MIP-1 alpha and IL-8 was increased in sepsis. Furthermore, an initially detectable level of circulating IL-8, but not MIP-1 alpha, predicted a high mortality in sepsis diagnosed according to the ACCP/SCCM criteria.

Biomarkers↗

Involvement of Na+,K(+)ATPase in the mitogenic effect of insulin-like growth factor-I on cultured rat astrocytes.

We have previously reported that insulin/insulin-like growth factor (IGF)-I induced the alpha 1 isoform of Na+,K(+)-ATPase in cultured astrocytes. In this study the effects of insulin/IGF-I on Na+,K(+)-ATPase activity and cell proliferation were examined in astrocytes cultured under the various conditions, to test the possible involvement of the enzyme activity in the mitogenic action of IGF-I on astrocytes. Insulin increased Na+,K(+)-ATPase activity and stimulated cell proliferation in subconfluent astrocytes (cultured for 7-14 days in vitro). In contrast, these effects were not observed in confluent cells (cultured for 28 days). Furthermore, insulin stimulated neither the enzyme activity nor [3H]thymidine incorporation in astrocytes preincubated in fetal calf serum-free medium for 2 days (quiescent cells) and treated with dibutyryl cyclic AMP (differentiated cells). The increases in Na+,K(+)-ATPase activity and expression of the alpha 1 mRNA preceded the mitogenic effect. 125I-IGF-I binding experiment showed that all the cells used here had similar binding characteristics. The insulin-induced increase in enzyme activity was not affected by 1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H-7), and it was observed even in Ca(2+)-free medium. The stimulation by IGF-I of [3H]thymidine incorporation was attenuated by ouabain and a low external K+ level. These findings suggest that stimulation of Na+,K(+)-ATPase activity is involved in the mitogenic action of IGF-I on cultured astrocytes.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Role of Na(+)-Ca2+ exchanger in agonist-induced Ca2+ signaling in cultured rat astrocytes.

We have previously demonstrated that activation of the Na(+)-Ca2+ exchanger in the reverse mode causes Ca2+ influx in astrocytes. In addition, we showed that the exchange activity was stimulated by nitric oxide (NO)/cyclic GMP and inhibited by ascorbic acid. The present study demonstrates that the Na(+)-Ca2+ exchanger is involved in agonist-induced Ca2+ signaling in cultured rat astrocytes. The astrocytic intracellular Ca2+ concentration ([Ca2+]i) was increased by L-glutamate, noradrenaline (NA), and ATP, and the increases were all attenuated by the NO generator sodium nitroprusside (SNP). SNP also reduced the ionomycin-induced increase in [Ca2+]i. The NA-induced Ca2+ signal was also attenuated by S-nitroso-L-cysteine and 8-bromo cyclic GMP, whereas it was enhanced by 3,4-dichlorobenzamil, an inhibitor of the Na(+)-Ca2+ exchanger. Treatment of astrocytes with antisense, but not sense, deoxynucleotides to the sequence encoding the Na(+)-Ca2+ exchanger enhanced the ionomycin-induced increase in [Ca2+]i and blocked the effects of SNP and 8-bromo cyclic GMP in reducing the NA-induced Ca2+ signal. Furthermore, the ionomycin-induced Ca2+ signal was enhanced by removal of extracellular Na+ and pretreatment with ascorbic acid. These findings indicate that the Na(+)-Ca2+ exchanger is a target for NO modulation of elevated [Ca2+]i and that the exchanger plays a role in Ca2+ efflux when [Ca2+]i is raised above basal levels in astrocytes.

Adenosine Triphosphate↗