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Biomedical subjects

S Inoue

Publications and source records attributed to S Inoue.

At least 469 records · Page 26Linked to original sources

Persistent primitive trigeminal artery associated with absence of internal carotid artery.

BACKGROUND: Both a persistent primitive trigeminal artery (PTA) and the absence of an internal carotid artery are rare developmental anomalies. METHODS AND RESULTS: Two cases with the unusual association of a persistent PTA and absence of the internal carotid artery on the left side are reported. The left anterior cerebral artery territory was supplied from the right internal carotid artery via the anterior communicating artery, and the left middle cerebral artery territory was supplied from the vertebrobasilar system via the persistent PTA antidromically. CONCLUSION: This is the first report of such an association of developmental anomalies of cerebral vessels. Our cases are instructive for gaining insight into the involution and evolution processes of primitive cerebral arteries in the human embryo.

Aged↗

Metal-mediated DNA damage induced by diabetogenic alloxan in the presence of NADH.

Alloxan is known to induce diabetes in experimental animals through destruction of insulin-producing 3-cells of pancreas. The mechanism of DNA damage induced by alloxan was investigated using 32P-labeled human DNA fragments. Cu(II)-dependent DNA damage increased with the concentration of alloxan and NADH. Alloxan induced DNA cleavage frequently at thymine and cytosine residues in the presence of NADH and Cu(II). Catalase and bathocuproine, a Cu(I)-specific chelator, almost completely inhibited DNA damage, suggesting the involvement of H2O2 and Cu(I). Alloxan induced Cu(II)-dependent production of 8-oxodG in calf thymus DNA in the presence of NADH. UV-visible and electron spin resonance (ESR) spectroscopic studies showed that superoxide anion radical and alloxan radical were generated by the reduction of alloxan by NADH, and also by the autoxidation of dialuric acid, the reduced form of alloxan. These results suggest that the copper-oxygen complex derived from the reaction of H2O2 with Cu(I) participates in Cu(II)-dependent DNA damage by alloxan plus NADH and dialuric acid. The mechanism of DNA damage is discussed in relation to diabetogenic action of alloxan.

8-Hydroxy-2'-Deoxyguanosine↗

Alpha-tocopherol induces oxidative damage to DNA in the presence of copper(II) ions.

There is currently much interest in the possibility that dietary antioxidants may confer protection from certain diseases, such as atherosclerosis and cancer. The importance of alpha-tocopherol (vitamin E) as a biological antioxidant is widely recognized. However, pro-oxidant properties of alpha-tocopherol have been observed in chemical systems, and it has been reported that the vitamin can induce tumor formation and act as a complete tumor promotor in laboratory animals. In the present communication, we find that alpha-tocopherol can act as a potent DNA-damaging agent in the presence of copper(II) ions, using a simplified, in vitro model. alpha-Tocopherol was found to promote copper-dependent reactive oxygen species formation from molecular oxygen, resulting in DNA base oxidation and backbone cleavage. Neither alpha-tocopherol nor Cu(II) alone induced DNA damage. Bathocuproine, a Cu(I)-specific chelator, and catalase inhibited the DNA damage, whereas free hydroxyl radical scavengers did not. The order of DNA cleavage sites was thymine, cytosine > guanine residues. Examinations using an oxygen electrode and cytochrome c indicate that molecular oxygen was consumed in the reaction of alpha-tocopherol and Cu(II) and that superoxide was formed. Stoichiometry studies showed that two Cu(II) ions could be reduced by each alpha-tocopherol molecule. Electron spin resonance spin-trapping investigations were then used to demonstrate that hydrogen peroxide interacts with Cu(I) to generate the reactive species responsible for DNA damage, which is either the hydroxyl radical or a species of similar reactivity. These findings may be of relevance to the tumorigenic properties of the vitamin reported in the literature. However, further studies are required to establish the significance of these reactions under in vivo conditions.

Antioxidants↗

Three-month effects of candesartan cilexetil, an angiotensin II type 1 (AT1) receptor antagonist, on left ventricular mass and hemodynamics in patients with essential hypertension.

Using cine magnetic resonance imaging (MRI) and echocardiography, we investigated the effects of candesartan cilexetil, a specific angiotensin II type 1 (AT1) receptor antagonist, on left ventricular (LV) mass and hemodynamics in patients with essential hypertension. Ten patients (four men and six women) with essential hypertension received candesartan cilexetil 2-8 mg/day orally for 8-12 weeks. After drug administration, systolic blood pressure (BP) decreased from 178.9 +/- 17.2 mmHg (mean +/- SD) to 150.2 +/- 14.3 mmHg (P < 0.0001) and diastolic BP from 101.4 +/- 6.5 mmHg to 87.8 +/- 11.9 mmHg (P = 0.0021). Both MRI and echocardiography revealed a significant decrease in LV mass index (LVMI) after candesartan cilexetil. MRI indicated that LVMI decreased from 111.3 +/- 31.3 g/m2 to 102.6 +/- 32.1 g/m2 (P = 0.0484) and echocardiography that LVMI decreased from 123.9 +/- 31.1 g/m2 to 115.8 +/- 31.4 g/m2 (P = 0.0316). Total systemic vascular resistance decreased significantly during treatment with candesartan cilexetil in both MRI and echocardiography assessment, from 1847.2 +/- 636.3 dynes.s.cm-5 to 1540.4 +/- 432.0 dynes.s.cm-5 (P = 0.0034) on MRI and from 1820.4 +/- 318.8 dynes.s.cm-5 to 1659.0 +/- 317.7 dynes.s.cm-5 (P = 0.0060) on echocardiography. These findings suggest that candesartan cilexetil 2-8 mg/day orally for 8-12 weeks is beneficial in the regression of cardiac hypertrophy in patients with essential hypertension.

Adult↗

Effect of insulin therapy on body fat distribution in NIDDM patients with secondary sulfonylurea failure: a preliminary report.

OBJECTIVE: To clarify the influence of insulin therapy on body weight and fat distribution, we compared these parameters in five non-insulin dependent diabetes mellitus (NIDDM) patients, with secondary sulfonylurea failure, before and after insulin therapy. Body weight increased significantly after instituting insulin treatment. However, the visceral to subcutaneous fat (V/S) ratio decreased significantly due to a marked increase in S-fat without a change in V-fat. Insulin therapy necessitated by sulfonylurea failure does not appear to accelerate the atherogenic process in NIDDM patients as there is no increase in visceral fat.

Adipose Tissue↗

Regulation of matrix metalloproteinase (MMP) expression in cutis laxa fibroblasts: upregulation of MMP-1, MMP-3 and MMP-9 genes but not of the MMP-2 gene.

A major histopathological abnormality in cutis laxa (CL) is a paucity of elastic structures. The aim of this study was to investigate the gene expression levels of the major matrix degrading factors matrix metalloproteinase (MMP) 1, MMP-2, MMP-3 and MMP-9 in CL. The gene expression levels of MMP-1, MMP-2, MMP-3 and MMP-9 in cultured CL fibroblasts were measured by northern blot, immunoblot and gelatin zymographic analysis. Markedly increased mRNA levels of MMP-1 (8.4-fold), MMP-3 (7.2-fold) and MMP-9 (more than 10-fold) were found in CL fibroblasts, whereas MMP-2 mRNA levels in these fibroblasts were unaltered. Increased protein production levels of MMP-1 (4.6-fold) and MMP-3 (5.1-fold) in CL fibroblasts were shown by immunoblot analysis. On gelatin zymographic analysis, the gelatinolytic activities of MMP-9 but not of MMP-2 were increased (2.2-fold). These results suggest that increased gene expression levels of MMP-1, MMP-3 and MMP-9 in CL fibroblasts may contribute to the histopathological abnormality in CL.

Blotting, Northern↗

Putative hyaluronan synthase mRNA are expressed in mouse skin and TGF-beta upregulates their expression in cultured human skin cells.

We examined in situ expression of putative hyaluronan synthase genes, Has1 and Has2, and effects of transforming growth factor-beta on their expression. In situ mRNA hybridization showed that mouse skin expressed both Has1 and Has2 mRNA in dermis and epidermis. In dermis, the number of cells expressing the Has1 mRNA was less than that of the Has2 mRNA, and in epidermis, some strong signals from both mRNA were seen in stratum granulosum. Northern blot analysis showed that cultured human skin fibroblasts expressed Has1 mRNA of 2.4 kb and Has2 mRNA of 3.2 and 4.8 kb, whereas human keratinocytes expressed Has1 mRNA of 4.8 but not 2.4 kb and a trace of Has2 mRNA. When the cultures were stimulated with transforming growth factor-beta, both Has1 and Has2 mRNA were upregulated in fibroblasts, and only Has1 mRNA of 2.4 but not 4.8 kb was induced in keratinocytes. The maximal amount of the upregulated Has1 mRNA in keratinocytes at 2 h after stimulation decreased time-dependently to the nonstimulated level at 18 h, although the stimulation for 18 h of fibroblasts was effective on the expression of both Has mRNA. Differences in expression pattern of Has and Has2 mRNA in mouse skin and a higher response of fibroblasts to transforming growth factor-beta suggest that Has1 and Has2 genes are regulated independently and synthesized hyaluronan may have a different function in epidermis and dermis.

Animals↗

In situ expression of platelet-activating factor (PAF)-receptor gene in rat skin and effects of PAF on proliferation and differentiation of cultured human keratinocytes.

Platelet-activating factor (PAF) is a potent lipid mediator that exhibits versatile biologic activities in many diverse systems by binding to a specific cell-surface receptor (PAFR). Although the production of PAF in cultured keratinocytes and fibroblasts has been reported, physiologic roles of this mediator in skin remain unclear. In this study, we examined in situ expression of PAFR gene in rat skin and the effects of PAF on the proliferation and differentiation of cultured human keratinocytes. In rat epidermis, PAFR mRNA expression was found from the basal cells to the granular cells, and strong signals were seen in the stratum spinosum. In cultured human keratinocytes, a 3.8 kb PAFR mRNA expression was demonstrated by northern blotting, and two distinct type transcripts driven by different promoters were detected by reverse transcriptase polymerase chain reaction analysis. Addition of PAF (30-100 nM) to cultured keratinocytes during a growth phase inhibited the proliferation. This effect was receptor dependent, because the inhibition was completely blocked by a PAFR antagonist, WEB 2086 (100 nM). On the other hand, whereas PAF (30-100 nM) alone did not affect the cornified envelope formation during the process of keratinocyte differentiation, WEB 2086 (30-300 nM) accelerated it in a concentration-dependent manner. Addition of PAF (100 nM) reversed the effect of WEB 2086, suggesting that WEB 2086 induced cornification by inhibiting PAF endogeneously produced by keratinocytes in an autocrine manner. Thus, we propose that PAF is an intrinsic regulator of keratinocyte during proliferation and differentiation.

Animals↗

Listeria monocytogenes in Crohn's disease.

BACKGROUND: In an immunohistochemical study a higher rate of reactivity of intestinal tissues to the antibody against Listeria monocytogenes was reported in Crohn's disease as compared with controls. METHODS: Seventy-six intestinal tissues, either therapeutically resected or biopsied, from 31 patients with Crohn's disease, 20 with ulcerative colitis, and 21 with non-inflammatory bowel disease were studied. DNA extracted from intestinal tissues by proteinase K treatment was used for nested polymerase chain reaction (PCR), using two sets of primers. PCR products were analyzed with agarose gel electrophoresis and subsequent Southern blot analysis. RESULTS: Our amplification system could detect 9 pg of L. monocytogenes DNA. L. monocytogenes was detected in only one sample, that from a patient with ulcerative colitis. CONCLUSIONS: Our study does not support the etiologic significance of L. monocytogenes in Crohn's disease.

Adult↗

Effects of lightwand (Trachlight) compared with direct laryngoscopy on circulatory responses to tracheal intubation.

We compared the effects of the lightwand technique on circulatory responses to tracheal intubation with those of direct-vision laryngoscopy. Forty adult patients received propofol and vecuronium, and their lungs were ventilated for 2 min via a mask with 5% sevoflurane in oxygen, after which the trachea was intubated orally using either the lightwand (Trachlight, n = 20) or the Macintosh laryngoscope (n = 20). Maximum mean arterial pressure changes did not differ between groups during (lightwand group, 25 (SD 21) mm Hg vs laryngoscopy group, 23 (19) mm Hg) and after (21 (24) mm Hg vs 21 (16) mm Hg) tracheal intubation. Maximum heart rate changes were similar for groups during (16 (14) beat min-1 vs 16 (15) beat min-1) and after (2 (11) beat min-1 vs 7 (19) beat min-1) tracheal intubation. There were no differences between the lightwand technique and direct-vision laryngoscopy in changes in mean arterial pressure and heart rate during and after tracheal intubation. We conclude that the effects of the lightwand technique on circulatory responses to tracheal intubation were similar to those of direct-vision laryngoscopy.

Adult↗

Differential etoposide sensitivity of cells deficient in the Ku and DNA-PKcs components of the DNA-dependent protein kinase.

Etoposides block cell division by interfering with the action of topoisomerase II, leaving enzyme-DNA double-strand breaks. We found that certain components of the trimeric DNA-dependent protein kinase influence cell survival following etoposide damage. Interestingly, either Ku70- or Ku80-deficient cell lines, but not mutant cell lines of the DNA-PK catalytic sub-unit (DNA-PKcs), were found to be hypersensitive to the effects of etoposide VP16. Ku70- and Ku80-deficient cells can be complemented to an etoposide resistant phenotype by introducing wildtype Ku70 or Ku80 cDNAs. Mutational analysis of introduced Ku70 cDNAs into murine embryonic stem cells deleted for Ku70 (-/-) showed that mutants where heterodimerization and DNA binding functions of Ku were disrupted, also blocked the restoration of etoposide resistance. In contrast with the differential etoposide sensitivity of DNA-PK mutants, both Ku- and DNA-PKcs-deficient cell lines showed G2 ionizing radiation-induced delays, a cell cycle phase where topoisomerase II function is critical. Thus, the topoisomerase II cleaved complexes may be an example of DNA lesions requiring the Ku heterodimer, but not DNA-PK for DNA repair.

Animals↗

Increased plasma concentration of adrenomedullin in patients with subarachnoid hemorrhage.

UNLABELLED: Adrenomedullin (AM) is a potent hypotensive peptide originally identified in pheochromocytoma tissues. Impaired cardiovascular conditions, such as hypertension, myocardial infarction, and septic shock, stimulate production of AM. This study was performed to determine whether subarachnoid hemorrhage (SAH) altered plasma AM concentration. Plasma concentrations of AM in 17 patients with SAH were measured for 2 wk after the onset of SAH by AM-specific radioimmunoassay. Plasma concentrations of AM were increased in patients with SAH throughout the study period, compared with those in control subjects. Plasma concentrations of AM in patients classified as Hunt and Kosnik grade III or IV were significantly higher than those classified as Hunt and Kosnik grade I or II on the day of and the day after the onset of SAH. However, plasma concentrations of AM were unaffected by angiographic vasospasm. These findings suggest that plasma concentrations of AM are increased in patients with SAH and may reflect the severity of SAH. IMPLICATIONS: Adrenomedullin has been reported to affect the cerebral circulation. This study was performed to determine whether subarachnoid hemorrhage, a typical cerebrovascular disorder, altered plasma adrenomedullin concentrations. We found that plasma adrenomedullin concentrations increased in patients with subarachnoid hemorrhage, although no relationship was found between plasma adrenomedullin concentration and angiographic vasospasm. Plasma adrenomedullin concentration may reflect the severity of hemorrhage.

Adrenomedullin↗

Comparison of antimelanoma effects of 4-S-cysteaminylphenol and its homologues.

4-S-Cysteaminylphenol (4-S-CAP), a phenolic thioether, has been evaluated for melanocytotoxicity. We have recently shown that dihydro-1,4-benzothiazine-6,7-dione (benzothiazine BQ) is the ultimate toxic metabolite produced by tyrosinase oxidation of 4-SCAP. In this study we compared the antimelanoma effects of 4-SCAP and its two homologues, alpha-methyl-4-S-cysteaminylphenol (alpha-Me-4-SCAP) and 4-S-homocysteaminylphenol (4-S-Homo-CAP). Biochemical experiments showed that upon tyrosinase oxidation alpha-Me-S-CAP and 4-S-Homo-CAP also produced homologues of BQ which reacted rapidly with reduced glutathione (GSH) and also inhibited alcohol dehydrogenase, an SH enzyme. In vitro experiments showed that 4-S-CAP and its two homologues were taken up into B16-F1 melanoma cells at comparable rates but that 4-S-Homo-CAP was least effective in GSH deprivation, which was reflected in the low cytotoxicity of this phenol, and that the cytotoxicity of the phenols was tyrosinase dependent, as proved by the negligible effects on B16-G4F cells which have a much lower tyrosinase activity. In vivo experiments showed that direct intratumoral administration of these phenols inhibited the subcutaneous growth of B16 melanoma, with 4-S-Homo-CAP being the least effective, and that indirect Intraperitoneal administration of 4-S-CAP inhibited melanoma growth much more effectively than the two homologues. These results indicate that 4-S-CAP is the most promising antimelanoma agent among the three phenols examined.

Animals↗