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Biomedical subjects

M Arai

Publications and source records attributed to M Arai.

At least 163 records · Page 9Linked to original sources

Deranged blood coagulation equilibrium as a factor of massive liver necrosis following endotoxin administration in partially hepatectomized rats.

Activated Kupffer cells provoke massive liver necrosis after endotoxin stimulation through microcirculatory disturbance caused by sinusoidal fibrin deposition in rats undergoing 70% hepatectomy. In these rats, serum activities of purine nucleoside phosphorylase (PNP) and alanine transaminase (ALT) were increased at 1 and 5 hours, respectively, following endotoxin administration. When 70% resected liver was perfused with Dulbecco's modified Eagle medium (DMEM) containing heat-inactivated fetal calf serum, the increase in both enzyme activities was not affected by addition of endotoxin during perfusion, suggesting that activated Kupffer cells injured neither sinusoidal endothelial cells nor hepatocytes. The activity of tissue factor, an initiator of blood coagulation cascade, was much higher in Kupffer cells isolated from partially hepatectomized rats than in those from normal rats. In contrast, mRNA expressions of tissue factor pathway inhibitor (TFPI) as well as thrombomodulin were almost undetectable in normal and partially resected livers. When recombinant human TFPI was injected intravenously in 70% hepatectomized rats, TFPI was markedly stained on the surfaces of sinusoidal endothelial cells and microvilli of hepatocytes on immunohistochemistry. In these rats, endotoxin-induced liver injury was significantly attenuated compared with rats given no TFPI. Similar attenuation was also found in rats receiving recombinant human thrombomodulin. These results suggest that fibrin deposition developing in 70% hepatectomized rats after endotoxin administration may be caused by deranged blood coagulation in the hepatic sinusoids through increasing tissue factor activity in Kupffer cells and minimal TFPI and thrombomodulin in endothelial cells. The destruction of sinusoidal endothelial cells as well as hepatocytes may occur as a result of microcirculatory disturbance caused by such sinusoidal fibrin deposition.

Alanine Transaminase↗

Tumor necrosis factor-alpha decreases the phosphorylation levels of phospholamban and troponin I in spontaneously beating rat neonatal cardiac myocytes.

The tumor necrosis factor (TNF) alpha level is elevated in patients with advanced heart failure, and the phosphorylation of contractile regulatory proteins is reduced in the human heart. We hypothesized that TNFalpha affects the phosphorylation of proteins involved in regulating contraction; phospholamban (PLB), myosin light chain 2 (MLC2) and troponin I (TnI). Spontaneously beating rat neonatal cardiac myocytes, prelabelled with [32P]orthophosphate, were treated with TNFalpha for 30 min, and stimulated with isoproterenol for 5 min. 32P-labelled myofibrillar proteins were isolated by 15% SDS-PAGE. Baseline phosphorylation levels of PLB, TnI and an unknown 23kDa phosphoprotein were decreased by TNFalpha in a dose-dependent manner. Moreover, TNFalpha attenuated the phosphorylation levels of PLB and TnI increased by a concentration of 0.01 microM isoproterenol, but not by 1 microM of isoproterenol. Although TNFalpha had no effect on the cAMP content or cAMP-dependent protein kinase activity in the presence or absence of isoproterenol, an inverse relationship was observed between the concentration of TNFalpha and the cGMP content in cardiac myocytes, and treatment with TNFalpha resulted in a concentration-dependent increase in type 2A protein phosphatase activity. The observation that TNFalpha decreases phosphorylation levels of PLB and TnI in cardiac myocytes suggests that the reduction of these protein phosphorylation levels is partially responsible for alterations of intracellular Ca2+-cycling and the force of contraction in TNF alpha-treated cardiac myocytes. Furthermore, TNFalpha reduces myocyte contraction and protein phosphorylation states possibly via cAMP-independent mechanisms, at least in part, by the activation of type 2A protein phosphatase.

Animals↗

Transcription of the SERCA2 gene is decreased in pressure-overloaded hearts: A study using in vivo direct gene transfer into living myocardium.

T. Takizawa, M. Arai, A. Yoguchi, K. Tomaru, M. Kurabayashi and R. Nagai. Transcription of the SERCA2 Gene is Decreased in Pressure-overloaded Hearts: A Study Using In Vivo Direct Gene Transfer into Living Myocardium. Journal of Molecular and Cellular Cardiology (1999) 31, 2167-2174. The sarcoplasmic reticulum Ca(2+)-ATPase (SERCA2) controls the myocardial relaxation process. Under pressure-overload, the expression of its mRNA decreases, thus controlling cardiac function to conform to the load. However, it is not known whether this decreased expression is caused by a decrease in the transcription of the SERCA2 gene. The object of this study was to determine the transcription control mechanism of the SERCA2 gene under pressure-overload in vivo, and to identify the pressure-overload-sensitive regions of the SERCA2 gene. Ten micrograms of a plasmid, containing the 5' upstream (-1810 bp to +350 bp) region of the SERCA2 gene and a luciferase reporter gene, were introduced into adult rat myocardium by in vivo direct gene transfer, and the luciferase activity was measured 5 days later. The transcriptional activity under pressure-overload decreased to 27+/-17% of the control. Based on this result, we concluded that the decreased mRNA expression of SERCA2 in pressure-overload cardiac hypertrophy is due to decreased gene transcription. In addition, various deletion fragments of the SERCA2 promoter region were produced, and tested for luciferase production under pressure-overload. Our data suggest that a transcription activation site is present between -685 and -284 bp, and two transcription inhibition sites are present between -1810 to -1110 bp and -284 to -72 bp. These may be the pressure-sensitive regions of the SERCA2 gene of in vivo hypertrophied myocardium under pressure-overload.

Animals↗

The effect of left-to-right shunting on coronary oxygenation during extracorporeal membrane oxygenation.

BACKGROUND/PURPOSE: Blood perfusion to the coronary artery (CA) during venoarterial (VA) extracorporeal membrane oxygenation (ECMO) was examined to determine whether it was receiving highly oxygenated ECMO blood or desaturated blood from the pulmonary circulation of diseased lungs. METHODS: In the first experiment, left ventricle output and oxygen saturation in the left ventricle (LV) and CA were measured in dogs placed on VA ECMO. In the second experiment, dogs with an artificial subclavian-pulmonary artery shunt were placed on VA ECMO at 100 mL/kg/min, and oxygen saturation was measured as the shunt flow increased. RESULTS: Without an artificial shunt, a substantial portion of coronary perfusion was found to be supplied by the left ventricle (54 + 30%), even at a high ECMO flow rate of 100 mL/kg/min and low LV output (22+/-17%) relative to ECMO flow. With a shunt, oxygen saturation in the CA was more than 95%, even when shunt flow was only 7.5% of ECMO flow and output from the left ventricle was less than 25% of the ECMO flow rate. CONCLUSIONS: These results suggest that an excessive "lung rest" strategy during VA ECMO may produce suboptimal coronary oxygenation possibly leading to myocardial damage. The presence of a small left-to-right shunt may prevent coronary hypoxia.

Animals↗

Increased severity of viral myocarditis in mice lacking lymphocyte maturation.

The role of lymphocytes in the pathogenesis of viral myocarditis is controversial. To better understand how lymphocyte maturation controls a virus-induced myocarditic process, a murine model of viral myocarditis was utilized. Encephalomyocarditis virus (EMCV) was inoculated intraperitoneally into three kinds of mice; virus-susceptible C57BL/6, virus-resistant 129/SV and recombination activity gene (RAG)-2 knockout 129/SV mice. The RAG2 participate in the maturity of T and B lymphocytes. Survival rate, heart weight (HW), HW to body weight (BW) ratio, viral genome, cardiac inflammation and myocardial necrosis were evaluated after EMCV (500 plaque forming unit/mouse) inoculation. On post-inoculation day 10, the survival rate of C57BL/6, 129/SV and RAG2 knockout mice were 42, 90 and 0%, respectively. Myocardial viral titer was significantly (P<0.05) higher in C57BL/6 and RAG2 knockout mice than in 129/SV mice. In situ hybridization demonstrated the EMCV genome in the myocardium of RAG2 knockout and C57BL/6 mice, but not in 129/SV mice. At day 8, HW and HW/BW ratios were elevated (P<0.05) in RAG2 knockout mice as well as C57BL/6 mice compared with 129/SV mice. Myocardial necroses were more severe in RAG2 knockout mice than in wild-type 129/SV mice. In conclusion, matured lymphocytes protect the development of viral myocarditis which includes viral replication and myocardial apoptosis.

Animals↗

Potentiation of the D2 mutant motor phenotype in mice lacking dopamine D2 and D3 receptors.

Within the D2-class of dopamine receptors, the D2 and D3 subtypes share the highest degree of similarity in their primary structure. However, the extent to which these two receptor subtypes have similar or different functional properties is unclear. The present study used gene targeting to generate mice deficient for D2, D3, and D2/D3 receptors. A comparative analysis of D2 and D3 single mutants and D2/D3 double mutants revealed that D2/D3 double mutants develop motor phenotypes that, although qualitatively similar to those seen in D2 single mutants, are significantly more severe. Furthermore, increased levels of the dopamine metabolites dihydroxyphenyl acetic acid and homovanillic acid are found in the dorsal striatum of D2 single mutants. The levels of these metabolites, however, are significantly higher in mice lacking D2 and D3 receptors. In addition, results of immunoprecipitation experiments revealed that D2 single mutants express higher levels of D3 receptor proteins during later stages of their postnatal development. These results suggest that D3 receptors compensate for some of the lacking D2 receptor functions and that these functional properties of D3 receptors, detected in mice with a D2 mutant genetic background, remain masked when the abundant D2 receptor is expressed.

Animals↗

P-selectin inhibition prevents early neutrophil activation but provides only modest protection against myocardial injury in dogs with ischemia and forty-eight hours reperfusion.

OBJECTIVES: This study was designed to determine whether antibody neutralization of the adhesion protein P-selectin would prevent neutrophil activation and reduce myocardial reperfusion injury. BACKGROUND: Although inhibition of P-selectin markedly reduces short-term myocardial injury after ischemia and reperfusion, it is unknown whether it can provide meaningful long-term protection and preserve left ventricular function. METHODS: Closed-chest dogs underwent 90 min left anterior descending coronary artery occlusion and 48 h reperfusion, and were randomized to 1) a treatment group (n = 11) receiving 1 mg/kg of the blocking anti-P-selectin antibody PB1.3, or 2) a control group receiving 1 mg/kg PNB1.6 (nonblocking antibody against P-selectin, n = 7) or an equivalent volume of saline (n = 2) 10 min before reperfusion. Infarct size was assessed postmortem by triphenyl tetrazolium chloride staining. Contrast left ventriculography was used to measure left ventricular function. Activation of circulating polymorphonuclear neutrophils (PMNs) was assessed by an increase in surface CD18 expression. RESULTS: Neutrophil activation was observed at 30 min after reperfusion in the control group, but was abolished in the treatment group. Infarct size was reduced about 25% in the treatment group after controlling for variations in ischemic blood flow (p = 0.003, by analysis of covariance). However, this protective effect was not associated with preservation of blood flow to the ischemic-reperfused myocardium, nor with any improvement in global or regional left ventricular function. CONCLUSIONS: The anti-P-selectin antibody PB1.3 prevented early PMN activation, but had only a modest long-term infarct-limiting effect over 48 h reperfusion. Adhesion molecules other than P-selectin may mediate delayed PMN activation and accumulation in reperfused myocardium.

Animals↗

Isolation of azo-dye-degrading microorganisms and their application to white discharge printing of fabric.

Three bacterial strains, which degraded azo dyes, were isolated from soil and sewage samples. The strains were identified as Bacillus sp. OY1-2, Xanthomonas sp. NR25-2 and Pseudomonas sp. PR41-1. The bacteria produced azo-dyes-degrading enzymes. That catalyzed the reduction of methyl red and produced dimethyl p-phenylenediamine and o-aminobenzoic acid. The enzymes could thus be applied to white discharge printing of azo-dyed fabric by owing to there.

Journal Article↗

A novel anti-diabetic drug, miglitol, markedly reduces myocardial infarct size in rabbits.

1. We examined whether N-hydroxyethyl-1-deoxynojirimycin (miglitol), a new human anti-diabetic drug with effects to inhibit alpha-1, 6-glucosidase glycogen debranching enzyme and reduce the glycogenolytic rate as well as to inhibit alpha-1,4-glucosidase, could reduce infarct size in the rabbit heart. Rabbits were subjected to 30-min coronary occlusion followed by 48-h reperfusion. 2. The infarct size as a percentage of area at risk was not reduced by pre-ischaemic treatment with 1 mg kg(-1) miglitol (42.7+/-4.0%, n=10) compared with the saline control group (41.7+/-2.3%, n=10). However, it was significantly and dose-dependently reduced by pre-ischaemic treatment with 5 or 10 mg kg(-1) of miglitol (25.7+/-4. 5%, n=10, and 14.6+/-2.4%, n=10, respectively) without altering the blood pressure, heart rate or blood glucose level. However, there was no evidence of an infarct-size reducing effect after pre-reperfusion treatment with 10 mg kg(-1) of miglitol (35.0+/-3.0%, n=10). 3. Another 40 rabbits given 1, 5 and 10 mg kg(-1) of miglitol or saline before ischaemia (n=10 in each) were sacrificed at 30 min of ischaemia for biochemical analysis. Miglitol preserved significantly the glycogen content, and attenuated significantly the lactate accumulation in a dose dependent manner in the ischaemic region at 30 min of ischaemia. 4. Pre-ischaemic treatment, but not pre-reperfusion treatment, with miglitol markedly reduced the myocardial infarct size, independently of blood pressure and heart rate. A dose-dependent effect of miglitol on infarct size, glycogenolysis and lactate formation suggests that the mechanism may be related to the inhibition of glycogenolysis. Thus, miglitol may be beneficial for coronary heart disease as well as diabetes mellitus.

1-Deoxynojirimycin↗

Endothelium-dependent vasodilatation mechanisms by histamine in simian but not in canine femoral arterial branches.

1. The vascular response of isolated, perfused canine and simian femoral arteries, which distribute blood to deep skeletal muscles, were investigated. 2. The vascular responses to histamine, 2-pyridylethylamine (2-PEA), dimaprit and alpha-methylhistamine were pharmacologically analyzed in canine and simian vessels, using diphenhydramine (DPH, a histamine H1 receptor antagonist), cimetidine (a histamine H2 antagonist) and saponin which readily removed the endothelium. 3. In canine arteries, alpha-methylhistamine showed no vascular response, but in simian preparations, it caused a slight vasoconstriction. 4. In canine arteries, histamine and 2-PEA consistently induced a vasoconstriction in preconstricted and non-preconstricted preparations. However, in simian arteries histamine usually produced a vasodilatation at small doses (less than 10(-7) mol) and a vasoconstriction at large doses in preconstricted preparations. 5. Vasoconstrictor responses to histamine and 2-PEA were significantly inhibited by DPH in both species. In simian vessels, histamine- and dimaprit-induced vasodilatations were significantly inhibited by cimetidine. 6. After removal of the endothelium by intraluminal treatment with saponin in canine femoral arteries, the vascular responses to histamine, 2-PEA and dimaprit were not significantly affected. On the other hand, in simian femoral arteries, the vasodilatation responses to histamine and 2-PEA were significantly depressed by the removal of endothelium. 7. It is concluded that (1) in both simian and canine femoral arterial branches, there are abundant histamine H1 and H2 receptors (2) in simian but not in canine arteries, there exist histamine H3 receptors, although their role is not clear (3) histamine induces a vasoconstriction mediated via histamine H1 receptors and a vasodilatation via H2 receptors which exist in vascular smooth muscle, and (4) in simian but not in canine arteries, there are endothelium-dependent vasodilatation mechanisms.

Animals↗

Posture correction as part of behavioural therapy in treatment of myofascial pain with limited opening.

In this study, we applied cognitive behavioural intervention to subjects who had painful limited mouth opening, with or without posture correction in daily life. The efficacy of non-intervention control was then compared with it in order to study the effectiveness of posture correction as part of a biobehavioural therapy. The visual analogue scale (VAS) value of pain intensity at maximum mouth opening and disturbance in daily life sharply declined in the group which received only cognitive behavioural intervention and those who received it together with posture correction in daily life compared to the non-intervention control group although there was little difference between the intervention groups. Moreover, pain-free unassisted mouth opening was restored earlier in the group which had added posture correction. This suggests that posture correction in daily life has a positive effect in alleviating myofascial pain with limited mouth opening.

Adult↗

Linear IgA bullous dermatosis associated with ulcerative colitis.

A 41-year-old woman developed skin vesicles one week before examination. She had been suffering from ulcerative colitis since the age of 30. Histologic examination of a vesicle showed a subepidermal bulla accompanied by mononuclear leukocyte infiltration intermingled with eosinophils and neutrophils. Eosinophilia was also noted. Direct immunofluorescent test revealed linear deposits of IgA in the basement membrane zone.

Adult↗

Androgen-producing ovarian tumors: a clinicopathological study of 3 cases.

The clinical course and pathological findings of 3 rare cases of androgen-producing ovarian tumors are presented. The ages of the 3 patients (Cases 1, 2, and 3, respectively) were 43, 34, and 57 years, respectively. Their preoperative serum testosterone levels were 506, 491, and 231 ng/dl, respectively. The pathological diagnoses of Cases 1, 2, and 3 were a Sertoli-stromal cell tumor of intermediate differentiation, a stromal tumor containing Leydig cells, and a stromal tumor with minor sex cord elements, respectively. Patient 1 experienced a recurrence, of a lesion at the vaginal stump 1 year and 2 months after the initial surgery. The clinical courses of Cases 2 and 3 have been non-contributory.

Adult↗

Induction of Bcl-x(L) expression by human T-cell leukemia virus type 1 Tax through NF-kappaB in apoptosis-resistant T-cell transfectants with Tax.

Human T-cell leukemia virus type 1 (HTLV-1) Tax is thought to play a pivotal role in immortalization of T cells. We have recently shown that the expression of Tax protected the mouse T-cell line CTLL-2 against apoptosis induced by interleukin-2 (IL-2) deprivation and converted its growth from being IL-2 dependent to being IL-2 independent. In this study, we demonstrate that constitutive expression of bcl-xl but not bcl-2, bcl-xs, bak, bad, or bax was associated with apoptosis resistance after IL-2 deprivation in CTLL-2 cells that expressed Tax. Transient-transfection assays showed that bcl-x promoter was transactivated by wild-type Tax. Similar effects were observed in mutant Tax retaining transactivating ability through NF-kappaB. Deletion or substitution of a putative NF-kappaB binding site identified in the bcl-x promoter significantly decreased Tax-induced transactivation. This NF-kappaB-like element was able to form a complex with NF-kappaB family proteins in vitro. Furthermore, Tax-induced transactivation of the bcl-x promoter was also diminished by the mutant IkappaBalpha, which specifically inhibits NF-kappaB activity. Our findings suggest that constitutive expression of Bcl-x(L) induced by Tax through the NF-kappaB pathway contributes to the inhibition of apoptosis in CTLL-2 cells after IL-2 deprivation.

Animals↗

Human T-cell leukemia virus type 1 tax protein abrogates interleukin-2 dependence in a mouse T-cell line.

Human T-cell leukemia virus type 1 (HTLV-1) is the etiologic agent of adult T-cell leukemia. Tax, the viral protein, is thought to be crucial in the development of the disease, since it transforms healthy T cells in vitro and induces tumors in transgenic animals. We examined the effect of Tax activity on the growth of the interleukin-2 (IL-2)-dependent T-cell line CTLL-2. Stable expression of Tax in CTLL-2 transformed cell growth from being IL-2 dependent to IL-2 independent. Tax stimulated transcription through NF-kappaB and the cyclic AMP-responsive element-like sequence in the HTLV-1 promoter. The finding of Tax mutants segregating these two pathways suggested that the NF-kappaB pathway was essential for IL-2-independent growth of CTLL-2 cells while the CRE pathway was unnecessary. However, both pathways were necessary for another transformation-related activity (colony formation in soft agar) of CTLL-2/Tax. Our results show that Tax has at least two distinct activities on T cells, and suggest that Tax plays a crucial role in IL-2-independent T-cell transformation induced by HTLV-1, in addition to its well-known IL-2-dependent cell transformation.

Animals↗

Angiotensin II and mechanical stretch induce production of tumor necrosis factor in cardiac fibroblasts.

To determine whether ANG II as well as mechanical stress affect the production of tumor necrosis factor (TNF) in the heart, neonatal rat cardiac myocytes and fibroblasts were cultured separately and treated for 6 h with ANG II, lipopolysaccharide (LPS), or cyclic mechanical stretch. LPS induced the production of TNF in cardiac myocytes and fibroblasts. However, TNF synthesis in fibroblasts was 20- to 40-fold higher than in myocytes. ANG II (>/=10(-8) M) and mechanical stretch stimulated the production of TNF in cardiac fibroblasts but not in myocytes. Furthermore, both ANG II and LPS increased the expression of TNF-alpha mRNA in cardiac fibroblasts. Isoproterenol inhibited both LPS- and ANG II-induced production of TNF in cardiac fibroblasts with increasing intracellular cAMP level. Moreover, both isoproterenol and dibutyryl cAMP inhibited LPS-induced TNF-alpha mRNA expression. Thus activation of the renin-angiotensin system, as well as mechanical stress, can stimulate production of TNF in cardiac fibroblasts. Furthermore, beta-adrenergic receptors may be responsible for the regulation of TNF synthesis at the transcriptional level by elevating intracellular cAMP.

Angiotensin II↗