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Biomedical subjects

T Wada

Publications and source records attributed to T Wada.

At least 235 records · Page 13Linked to original sources

Surgical treatment of abdominal aortic aneurysms located close to the visceral arteries: report of three cases.

The standard surgical treatment for abdominal aortic aneurysms (AAA) is in situ replacement of the infrarenal aorta, which is associated with a low mortality rate. On the other hand, thoracoabdominal aortic aneurysms (TAA) remain a formidable challenge and the complications that can occur may be severe including neurologic dysfunction and renal failure. We report herein three cases of patients with AAA located very close to the visceral arteries, for which in situ replacement of the infrarenal aorta was not feasible due to severe inflammation and adhesion. Therefore, aortic stump closure and in situ bypass grafting was performed to avoid reconstruction of the visceral arteries. No major complications or operation-related deaths occurred. Thus, while in situ replacement is usually recommended over bypass grafting for patients whose aneurysms are located very close to the visceral arteries, aortic stump closure and in situ bypass grafting should be considered as a more effective surgical option.

Aged↗

Isolation of Biopterin-alpha-glucoside from Spirulina (Arthrospira) platensis and Its Physiologic Function.

: A fluorescent substance was isolated from the cyanobacterium with a yield of 4.5 mg per 10 g of dried Spirulina (Arthrospira) platensis cells by gentle extraction and ethanol fractionation followed by column chromatography. The fluorescent substance, which has absorption maxima at 256 nm and 362 nm (pH 8.4), was identified as biopterin-alpha-glucoside by spectrophotometry and nuclear magnetic resonance spectroscopy. Biopterin-alpha-glucoside prevented decolorization of the photosynthetic pigments, chlorophyll a, phycocyanin, and carotenoids in photosynthetic vesicles of Spirulina platensis cells, by ultraviolet irradiation.

Journal Article↗

Evaluation of the malignancy of glioma using 11C-methionine positron emission tomography and proliferating cell nuclear antigen staining.

11C-methionine positron emission tomography (PET) and proliferating cell nuclear antigen (PCNA) staining were performed in 13 cases of glioma to investigate the relationship between the uptake of L-[methyl]-11C-methionine and the degree of malignancy and proliferative potential. The 11C-methionine uptake was significantly greater in high-grade gliomas compared to low-grade gliomas (P<0.05). The PCNA indexes were also significantly higher in the high-grade cases (P<0.05). Moreover, a strong positive correlation was found between the 11C-methionine values and the PCNA indexes (P<0.005), demonstrating that higher 11C-methionine uptake was associated with greater proliferative potential and greater malignancy. 11C-methionine PET is a potentially useful preoperative method to discriminate the malignancy of glioma.

Adult↗

Exacerbation of glomerulonephritis in subjects with chronic hepatitis C virus infection after interferon therapy.

We previously reported the glomerular deposition of hepatitis C virus (HCV) core antigen (Ag) in HCV-related nephropathy. In this study, we analyzed 23 HCV-positive subjects with exacerbation of proteinuria and/or hematuria during interferon (IFN) therapy and measured urinary protein selectivity. We also examined the involvement of HCV-related Ag using anti-HCV core (capside) Ag murine monoclonal antibody (Ab) and anti-core2 rabbit polyclonal Abs in nine subjects. Of 17 subjects, 13 (78%) showed low selective proteinuria. We found mesangial proliferative glomerulonephritis in 9 subjects, membranoproliferative glomerulonephritis in 1 subject, and nephrosclerosis in 1 subject. Immunofluorescence study showed the glomerular deposition of immunoglobulin G (IgG) or IgA and complements in all 9 subjects examined. Trace amounts only of HCV core Ag were detected along the glomerular capillary wall in 3 of 9 subjects (33%). Electron microscopy showed subendothelial or mesangial electron-dense deposits and also foot process effacement (20% to 72.5% of glomerular capillary walls) in all subjects and endothelial swelling in 4 subjects. In conclusion, IFN therapy for HCV may exacerbate the underlying glomerulopathies, unrelated to HCV Ags, through direct or indirect effects on glomerular endothelial and epithelial cells. Physicians should carefully distinguish HCV-related nephropathy from other glomerular diseases when they administer IFN therapy to HCV-positive subjects.

Adult↗

Possible association between delusional disorder, somatic type and reduced regional cerebral blood flow.

1. A 78-year-old female with DDST and pain disorder was treated by clomipramine 20-100 mg/day. The hypochondriacal delusion was completely resolved, while the pains were partially resolved. 2. The SPECT using Xe-133 taken at the early stage of clomipramine treatment, when she still had hypochondriacal delusions, showed markedly reduced rCBF in the temporal and parietal lobes, with predominance on the left hemisphere. Meanwhile, the SPECT taken after resolution of the hypochondriacal delusions showed a marked improvement in the reduced rCBF. 3. This report suggests that DDST has some association with reduced rCBF in the temporal and parietal lobes.

Aged↗

Effect of A1 adenosine receptor agonist upon cochlear dysfunction induced by transient ischemia.

The present study was undertaken to determine whether 2-chloro-N6-cyclopentyladenosine (CCPA), a highly selective A1 adenosine receptor agonist, attenuated cochlear dysfunction induced by transient ischemia or not. Ischemia of different durations (15, 30 or 60 min) was induced in 46 albino guinea pigs by transiently pressing the labyrinthine artery. CCPA or physiological saline solution was intraperitoneally administered to the animals 15 min prior to ischemia. The post-ischemic CAP threshold shift from the pre-administration value was measured 4 h after the onset of reperfusion to assess post-ischemic cochlear dysfunction. A statistically significant reduction in the CAP threshold shift was seen in CCPA-given animals after 15- and 30-min ischemia, whereas there was no statistical difference after 60-min ischemia. These results suggest that A1 adenosine receptor agonist exerts a protective effect on the cochlear injury induced by transient ischemia of intermediate duration.

Action Potentials↗

The protective effect of the sympathetic nervous system against acoustic trauma.

OBJECTIVE: the cochlea is innervated by the sympathetic nerve fibers. However, the functions of those fibers in the cochlea are still controversial. The present study was designed to determine whether the sympathetic nervous system (SNS) exerts a protective or enhancing effect on acoustic trauma. METHODS: acoustic overstimulation (either of 110, 115, or 130 dB SPL for 10 min) was performed in guinea pigs during electrical stimulation of the ipsilateral cervical SNS, after its surgical elimination or in the non-treated condition. The threshold shift of the compound action potential (CAP) from the pre-exposure value was measured at 1 h and at 1 week after acoustic overstimulation. Two-way analyses of variance (ANOVAs) were completed for the SNS conditions and the frequencies. RESULTS: although no significant difference was found at 1 h after overstimulation among these three groups, the CAP threshold shift at 1 week (110 and 115 dB SPL) was significantly smaller in the SNS stimulation group than in the other two groups. CONCLUSION: a protective effect was observed in the SNS stimulation group 1 week after the exposure to acoustic overstimulation of moderate intensity (from 110 to 115 dB SPL for 10 min).

Acoustic Stimulation↗

Intracellular signalling pathways of okadaic acid leading to mitogenesis in Rat1 fibroblast overexpressing insulin receptors: okadaic acid regulates Shc phosphorylation by mechanisms independent of insulin.

Okadaic acid is a powerful inhibitor of serine/threonine protein phosphatases 1 and 2A. Although it is known as a potent tumour promoter, the intracellular mechanism by which okadaic acid mediates its mitogenic effect remains to be clarified. We investigated the effect of okadaic acid on the activation of mitogenesis in Rat1 fibroblasts overexpressing insulin receptors. As previously reported, insulin induced Shc phosphorylation, Shc-Grb2 association, MAP kinase activation, and BrdU incorporation. Okadaic acid also stimulated tyrosine phosphorylation of Shc and its subsequent association with Grb2 in a time- and dose-dependent manner without affecting tyrosine phosphorylation of insulin receptor beta-subunit and IRS. However, to a lesser extent, okadaic acid stimulated MAP kinase activity and BrdU incorporation. Interestingly, preincubation of okadaic acid potentiated insulin stimulation of tyrosine phosphorylation of Shc (213% of control), Shc-Grb2 association (150%), MAP kinase activity (152%), and BrdU incorporation (148%). These results further confirmed the important role of Shc, but not IRS, in cell cycle progression in Rat1 fibroblasts. Furthermore, serine/ threonine phosphorylation appears to be involved in the regulation of Shc tyrosine phosphorylation leading to mitogenesis by mechanisms independent of insulin signalling.

Adaptor Proteins, Signal Transducing↗

Detection of acute cardiac rejection by analysis of heart rate variability in heterotopically transplanted rats.

BACKGROUND: A less-invasive method for cardiac allograft surveillance than endocardial biopsy is needed. We analyzed heart rate variability of heterotopically transplanted rat hearts as a method of detecting rejection of rat cardiac allografts. METHODS: Two kinds of heterotopic transplants were performed: 1) Brown-Norway rats received Brown-Norway rat isografts, and 2) Lewis rats received Brown-Norway rat allografts. The electrocardiogram (ECG) of the grafts were serially recorded under non-anesthetized and non-restricted conditions using a telemetric ECG transmitter implanted in the recipient's abdomen. Frequency domain analysis of the ECGs was performed using a fast Fourier algorithm. RESULTS: Total power of the heart rate variability in the isograft heart was reduced to 1.1%, compared to normal subjects without transplantation (p < .001). In the allograft heart, it was also reduced to 1.0% on days 1.5 (rejection score 0 to 1), but gradually increased thereafter up to 185% on day 6 (rejection score 3.75+/-0.50). The increase in spectral power was frequency-dependent (i.e., changes in the power in lower frequency range [LF, 0.04 to 0.67 Hz] were significantly higher than other ranges). This increase was reversible when immunosuppressive therapy was performed with the use of cyclosporine A. In the allograft group, peak-to-peak amplitudes of the QRS complex and heart rate were significantly decreased on day 5.5 or later, whereas the power of the LF was significantly increased by day 3.5 or later. CONCLUSIONS: Our data suggest that heart rate variability analysis is a promising noninvasive marker for early detection of cardiac allograft rejection. This method may also provide a sensitive means of assessing the effects of immunosuppressive therapy.

Abdomen↗

Proportions of Ca2+ channel subtypes in chick or rat P2 fraction and NG108-15 cells using various Ca2+ blockers.

The proportions of calcium (Ca2+) channel subtypes in chick or rat P2 fraction and NG 108-15 cells were investigated using selective L-, N-, P- and P/Q- type Ca2+ channel blockers. KCl-stimulated 45Ca2+ uptake by chick P2 fraction was blocked by 40-50% using N-type Ca2+ channel blockers [omega-conotoxin GVIA, aminoglycoside antibiotics and dynorphin A(1-13)], but was not inhibited by P- or P/Q-type blockers (omega-agatoxin IVA or omega-conotoxin MVIIC). On the other hand, KCl-stimulated 45Ca2+ uptake by rat P2 fraction was blocked by 30 approximately 40% using P- or P/Q-type Ca2+ channel blockers, but was not inhibited by N-type Ca2+ channel blockers. The L-type Ca2+ channel blockers 1,4-dihydropyridines, diltiazem and verapamil, but not calciseptine (CaS), inhibited both KCl-stimulated 45Ca2+ uptake and veratridine-induced 22Na+ uptake by chick or rat P2 fraction with similar IC50 values. CaS did not have any effect on 45Ca2+ uptake by either chick or rat P2 fraction. In NG108-15 cells, CaS, omega-agatoxin IVA and omega-conotoxin MVIIC, but not omega-conotoxin GVIA, inhibited KCl-stimulated 45Ca2+ uptake by 30-40%. Various combinations of these Ca2+ channel blockers had no significant additional effects in chick or rat P2 fraction or NG 108-15 cells. These findings suggest that KCl-stimulated 45Ca2+ uptake by chick or rat P2 fraction and NG 108-15 cells is a convenient and useful model for screening whether or not natural or synthetic substances have selective effects as L-, N-, P-, or P/Q- type Ca2+ channel antagonists or agonists.

Animals↗

Effect of an angiotensin II receptor antagonist, candesartan cilexetil, on canine intima hyperplasia after balloon injury.

The roles of angiotensin (Ang) II as produced by two different enzymes, angiotensin-converting enzyme (ACE) and chymase, were investigated in a canine experimental model where intima hyperplasia was induced by balloon catheterization in the common carotid and femoral arteries. The animals received oral candesartan cilexetil (3 mg/kg) or enalapril (10 mg/kg) twice a day for 5 weeks. After 1 week of active drug therapy, the common carotid and femoral arteries were unilaterally injured by balloon catheterization. In the common carotid arteries, both ACE and chymase activities were increased by the injury, with the increase in chymase activities being greater than that in ACE activities. In the femoral arteries, ACE, but not chymase, activities were significantly increased by the injury. Both candesartan cilexetil and enalapril reduced blood pressure almost equally. Enalapril increased plasma renin activity more strongly than did candesartan cilexetil, and significantly decreased vascular and plasma ACE activities. Candesartan cilexetil significantly suppressed the formation of intima hyperplasia in both the carotid and femoral arteries, while enalapril significantly suppressed intima hyperplasia in the femoral, but not in the carotid arteries. These results indicate that local Ang II production by ACE and chymase is involved in the hyperplasia seen in injured intima, and the difference in the inhibitory action of candesartan and enalapril reflects the extent of contribution of each enzyme. The effect of the ACE inhibitor, enalapril, depended on the activity of ACE, whereas that of the Ang II receptor antagonist, candesartan, was independent of ACE activity.

Angiotensin Receptor Antagonists↗

Detection of lymphocytes and granulocytes expressing the mutant WASP message in carriers of Wiskott-Aldrich syndrome.

Wiskott-Aldrich syndrome (WAS) is an X-linked recessive disease caused by mutations in the recently identified WAS protein gene (WASP). In some X-linked genetic disorders skewed X-inactivation has been observed in all cell populations or some specific cell lineages of female carriers. Recently, female carriers of WAS were also revealed to present skewed X-inactivation patterns at the haemopoietic stem cell level. However, it is not clear if all haematological cells expressing the mutant WASP allele are eliminated in WAS carriers. By reverse transcription PCR methods, we studied 14 WAS carriers from 10 different families to assess whether blood cells expressing the mutant WASP message were present in their peripheral blood. The mutations of each WAS patient were known and carrier diagnosis of their female family members was performed using specific mutation analysis. We detected circulating lymphocytes and granulocytes expressing the mutant WASP message in most of the WAS carriers, nevertheless they showed skewed X-chromosomal inactivation patterns. Interestingly, the presence of blood cells expressing the mutant WASP message seemed to correlate to the WASP genotype and the age of the carriers.

Adult↗

MIP-1alpha and MCP-1 contribute to crescents and interstitial lesions in human crescentic glomerulonephritis.

BACKGROUND: The precise molecular mechanisms of macrophage (Mphi) recruitment and activation in crescentic glomerulonephritis remain to be investigated. We hypothesized that locally produced macrophage inflammatory protein (MIP)-1alpha and monocyte chemoattractant protein (MCP)-1 via the chemokine receptors participate in the pathophysiology of human crescentic glomerulonephritis by recruiting and activating Mphi. METHODS: We investigated the levels of MIP-1alpha and MCP-1 by enzyme-linked immunosorbent assay (ELISA) in 20 healthy subjects, 20 patients with crescentic glomerulonephritis, and 41 control patients with various other renal diseases. The presence of MIP-1alpha, MCP-1, and the cognate chemokine receptor for MIP-1alpha, CCR5, in the diseased kidneys was evaluated by immunohistochemical and in situ hybridization analyses. RESULTS: MIP-1alpha-positive cells were mainly detected in crescentic lesions, whereas MCP-1 was mainly in the interstitium. In addition, we detected CCR5-positive cells in diseased glomeruli and interstitium. Urinary MIP-1alpha was detected in crescentic glomerulonephritis, even though it was below detectable levels in healthy subjects and in patients with other renal diseases without crescents. Urinary MIP-1alpha levels in the patients with crescentic glomerulonephritis were well correlated with the percentage of cellular crescents and the number of CD68-positive infiltrating cells and CCR5-positive cells in the glomeruli. However, urinary MCP-1 levels were well correlated with the percentage of both total crescents and fibrocellular/fibrous crescents and the number of CD68-positive infiltrating cells in the interstitium. Moreover, elevated urinary levels of both MIP-1alpha and MCP-1 dramatically decreased during glucocorticoid therapy-induced convalescence. CONCLUSIONS: These observations suggest that locally produced MIP-1alpha may be involved in the development of cellular crescents in the acute phase via CCR5 and that MCP-1 may be involved mainly in the development of interstitial lesions in the chronic phase when fibrocellular/fibrous crescents are present, possibly through Mphi recruitment and activation.

Adolescent↗

Fas on renal parenchymal cells does not promote autoimmune nephritis in MRL mice.

BACKGROUND: Although Fas on pancreatic islets promotes autoimmune diabetes in mice, the role of Fas expression on kidney parenchymal cells during autoimmune disease is unknown. METHODS: To determine whether Fas on renal parenchymal cells promotes autoimmune renal destruction, we compared apoptosis and pathology in Fas-intact and Fas-deficient kidneys in an autoimmune milieu. For this purpose, we transplanted single, normal kidneys from MRL-++ (Fas-intact) mice (3 months of age) into age-matched, congenic MRL-Faslpr (Fas-deficient) recipients after removal of nephritic kidneys. These Fas-intact kidneys were compared with Fas-deficient nephritic kidneys. RESULTS: There is a progressive increase of FasL on kidney-infiltrating cells and Fas and FasL on renal parenchymal cells in MRL-++ kidneys during engraftment (0, 2, 4-6, and 8 weeks). By comparison, we detected an increase in FasL in MRL-Faslpr kidneys (3 to 5 months of age), whereas Fas was not detectable. The engagement of T cells bearing FasL with Fas expressing tubular epithelial cells (TECs) induced TEC apoptosis in vitro. However, apoptosis and pathology were similar in kidneys (MRL-++, 8 weeks postengraftment vs. MRL-Faslpr, 5 months) with equivalent amounts of FasL-infiltrating cells or FasL TECs, regardless of Fas on renal parenchymal cells. CONCLUSION: The expression of Fas on renal parenchymal cells does not increase apoptosis or promote renal disease in MRL-++ mice. We speculate that the autoimmune milieu evokes mechanisms that mask, counter, or pre-empt Fas-FasL-initiated apoptosis in MRL kidneys.

Animals↗