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Biomedical subjects

K Kaji

Publications and source records attributed to K Kaji.

At least 19 recordsLinked to original sources

Identification of a novel autoantibody reactive with 155 and 140 kDa nuclear proteins in patients with dermatomyositis: an association with malignancy.

OBJECTIVE: Myositis-specific autoantibodies (MSAs) are a useful tool in diagnosis, defining clinical subsets and predicting prognosis of dermatomyositis (DM) and polymyositis (PM). In this study, we identified a novel MSA reactive with 155 and 140 kDa nuclear proteins [anti-155/140 antibody (Ab)] and determined the clinical feature of DM patients positive for this autoantibody (autoAb). METHODS: Sera from 52 Japanese patients with DM, 9 with PM, 48 with systemic lupus erythematosus (SLE), 126 with systemic sclerosis and 18 with idiopathic interstitial pneumonia were examined by immunoprecipitation assays. Positive sera were further characterized by immunodepletion and immunofluorescence staining. RESULTS: Seven of the 52 (13%) Japanese patients with DM immunoprecipitated 155 and 140 kDa proteins from 35S-labelled K562 leukaemia cell extract. No patients with SLE, systemic sclerosis or idiopathic interstitial pneumonia as well as healthy controls were positive for this autoAb. Patients with anti-155/140 Ab developed heliotrope rash, Gottron's papules or sign and flagellate erythema significantly more frequently than those negative. Notably, internal malignancy was found at significantly higher frequency in those positive than those negative (71 vs 11%; P < 0.005). In contrast, none of these patients positive for this autoAb had interstitial lung disease. CONCLUSIONS: This novel MSA is associated with cancer-associated DM and may serve as a diagnostic serological marker for this specific subset.

Adult↗

Upper thoracic disc herniation followed by acutely progressing paraplegia.

STUDY DESIGN: Case report. OBJECTIVE: To report a rare thoracic intervertebral disc herniation followed by acutely progressing paraplegia. SETTING: Spinal Injuries Center, Fukuoka, Japan. METHOD: A 37-year-old man presented with sudden severe backache and acutely progressing motor impairments of both lower extremities after antecedent backache lasting about 5 days. Neurological examination showed analgesia and hypoesthesia below the T4 dermatome level, dysesthesia to pinprick below right inguinal level, and severe motor impairments of the lower extremities (Frankel classification C). Magnetic resonance (MR) imaging demonstrated spinal cord compression due to a postero-laterally existing epidural mass at the T2-T3 level. After laminectomy at the T2-T3 level, the sequestrated disc material was detected and excised as one piece through the right side of the dura. The excised herniated mass had a ring-like form and was thought to originate from the annulus fibrosis. RESULT: After the emergency surgery, he had complete relief from the backache and control of both lower extremities recovered gradually. At 4 weeks after the emergent operation, motor power of both lower extremities recovered almost completely. He was able to walk without any assistance. MR imaging study after surgery did not reveal the sequestrated mass, except for a mild disc bulging at the T2-T3 level. CONCLUSION: Accurate diagnosis of acute symptomatic thoracic disc herniation is occasionally difficult. However, timely and successful surgery could result in complete symptom relief and satisfactory results.

Acute Disease↗

Little effects of low dosage of levomepromazine on plasma risperidone levels.

In the present study, we investigated the effects of levomepromazine on plasma risperidone concentrations in a steady state. Twenty patients taking risperidone at a stable dose for more than 2 weeks who were considered to require levomepromazine coadministration were selected. The scores of excitement in BPRS significantly decreased 2 weeks after the coadministration of levomepromazine. Plasma risperidone concentrations and the ratio of risperidone and 9-hydroxyrisperidone (risperidone/9-hydroxyrisperidone) did not change between before and 2 weeks after the coadministration of levomepromazine. The extrapyramidal symptoms were not worsened by the coadministration of levomepromazine. These results suggest that a low dosage of levomepromazine, use as a sedative adjuvant to risperidone treatment, have no statistically significant effect on the trough plasma concentrations of risperidone.

Adolescent↗

Functional changes induced by chronic UVA irradiation to cultured human dermal fibroblasts.

Ultraviolet (UV) irradiation induces damage of the skin, and in particular, photoageing is known to be the result of chronic UV irradiation. Many investigations have attempted to clarify the mechanisms of photoageing induced by chronic UVA irradiation, but consensus has not been achieved yet by in vivo experiments, mostly due to differences among UV sources and animals used for experiments. In vitro experiments have shown that a single exposure to UVA irradiation causes overexpression of matrix metalloproteinases and denaturation of collagen, but the mechanisms of the photoageing effects of chronic UVA irradiation are still unclear. To examine the effects of chronic UVA irradiation, we used an in vitro fibroblast cellular ageing system as a model of photoageing. Chronic UVA irradiation of normal human fibroblasts induced shortening of the cellular life span and an increase of cellular diameter, in parallel with expression of senescence-associated beta-galactosidase. Extracellular degradation enzyme, matrix metalloproteinase 1 (MMP-1) was overexpressed after repeated UVA irradiation, but tissue inhibitor of metalloproteinase 1 (TIMP-1) expression was hardly changed by chronic UVA irradiation. We conclude that chronic UVA irradiation of normal human fibroblasts induces cellular functional changes, leading to accelerated cellular ageing and MMP-1 overexpression.

Biomarkers↗

Desmutagenic and bio-antimutagenic activity of docosahexaenoic acid and eicosapentaenoic acid in cultured Chinese hamster V79 cells.

The antimutagenic activities of docosahexaenoic acid (DHA) and eicosapentaenoic acid (EPA) were examined by studying their effects on induction of 6-thioguanine (6TG)-resistant mutations by ethyl methanesulfonate (EMS) in cultured Chinese hamster V79 cells. DRA had a remarkable inhibitory effect against the cytotoxicity of EMS, when cells were simultaneously-treated with EMS, showing a blocking or scavenging activity of DHA in reduction of surviving fraction of cells. DHA had not so significant effect, when cells were treated before and after treatment with EMS. On the other hand, EPA had marked inhibiting effects against cytotoxicity of EMS, when cells were treated with EPA, before, simultaneous and after treatment with EMS. Against the induction of mutations by EMS, an antimutagenic activity of DHA was found when cells were pre-treated, simultaneously-treated or post-treated with DHA. EPA was also effective in reducing EMS-induced 6TG-resistant mutations when the cells were treated using the three different treatment procedures described above. The results suggest that in cultured Chinese hamster V79 cells, DHA and EPA may have both desmutagenic activity, which inactivates EMS chemically and/or enzymatically and bio-antimutagenic activity which suppresses mutation fixation after DNA is damaged by EMS.

Animals↗

Resveratrol and quercetin inhibit angiogenesis in vitro.

Resveratrol and quercetin are polyphenolic compounds found in grapes, red wine and other food products. In this study, we examined the effect of resveratrol and quercetin on the inhibition of angiogenesis in vitro. Resveratrol and quercetin inhibited the growth of bovine aorta endothelial (BAE) cells in a concentration-dependent manner (6-100 microM).The migration of BAE was obviously inhibited by resveratrol and weakly inhibited by quercetin. When the lengths of all tubes constructed in the 3-D culture system with or without resveratrol or quercetin were measured, resveratrol was found to inhibit the tube formation of BAE cells in a concentration-dependent manner (6-100 microM). On the other hand, quercetin at concentrations above 100 microM significantly inhibited the tube formation of vascular endothelial cells. From these results, we suggest that resveratrol and quercetin may prove useful in the development of useful therapeutic agents or preventive food factors for tumor angiogenesis.

Angiogenesis Inhibitors↗

Oxidative DNA damage induced by high glucose and its suppression in human umbilical vein endothelial cells.

In order to investigate the mechanism of the production of oxidative DNA damage by hyperglycemia, we measured formamidopyrimidine N-glycosylase (FPG)-sensitive sites by the comet assay in human umbilical vein endothelial cells (HUVECs) cultured under various conditions including high glucose. Mean values of FPG-sensitive sites were higher in HUVECs cultured for 5 days in high glucose (45 mM) compared with normal glucose (5mM) medium (P<0.001). FPG-sensitive sites increased in a time-dependent manner under high glucose treatment (3 days: P<0.05, 5 days: P<0.001), whereas L-glucose, which is taken up poorly into the cells, gave a slight increase in FPG-sensitive sites (P<0.05). Flow cytometric analysis using 6-carboxy-2',7'-dichlorodihydrofluorescein diacetate, di(acetoxymethyl ester) showed that incubation with L-glucose produced more reactive oxygen species than incubation with D-glucose. However, these increases were slight (1.22- and 1.12-folds, respectively). Incubation of HUVECs with aminoguanidine (100 microM) or pyridoxamine (1mM), which are inhibitors of glycation, decreased the levels of FPG-sensitive sites (P<0.001). However, these inhibitors did not suppress the intracellular generation of reactive oxygen species induced by high glucose. These results indicate that FPG-sensitive sites induced by high glucose are not due to intracellular reactive oxygen species. In order to clarify what caused the induction of FPG-sensitive sites, we investigated the effect of glyoxal and 3-deoxyglucosone (3-DG) on the induction of FPG-sensitive sites and the intracellular production of reactive oxygen species in HUVECs. Glyoxal and 3-DG at a concentration of 100 microg/ml induced FPG-sensitive sites (P<0.001, P<0.01, respectively). In contrast, glyoxal did not generate reactive oxygen species inside HUVECs. The results shown in this study suggest that glyoxal formed intracellularly or extracellularly during high glucose treatment might induce FPG-sensitive sites by a mechanism not involving reactive oxygen species.

Binding Sites↗

Apoptosis induction by epigallocatechin gallate involves its binding to Fas.

Epigallocatechin gallate (EGCG) is known to induce apoptosis in various types of tumor cells, but the precise mechanism by which EGCG induces apoptosis remains to be elucidated. The Fas-Fas ligand system is one of the major pathways operating in the apoptotic cascade. The aim of this study was to examine the possibility that EGCG-binding to Fas triggers the Fas-mediated apoptosis. The EGCG treatment of human monocytic leukemia U937 cells resulted in elevation of caspase 8 activity and fragmentation of caspase 8. The DNA ladder formation caused by the EGCG treatment was inhibited by the caspase 8 inhibitor. These findings suggested the involvement of the Fas-mediated cascade in the EGCG-induced apoptosis in U937 cells. Affinity chromatography revealed the binding between EGCG and Fas. Thus, the results suggest that EGCG-binding to Fas, presumably on the cell surface, triggers the Fas-mediated apoptosis in U937 cells.

Apoptosis↗

Functional association of CD9 with the Fc gamma receptors in macrophages.

CD9, a member of the tetraspan family of proteins, is highly expressed on macrophages. Although a clear function for the molecule has yet to be described, we have found that the anti-CD9 mAb activates mouse macrophages. The rat anti-CD9 mAb, KMC8.8, but not the F(ab')(2), induced tyrosine phosphorylation of proteins including syk and cbl and induced cell aggregation in the mouse macrophage cell line, J774, suggesting that co-cross-linking of CD9 and Fc gamma R was required for the signal. Co-cross-linking of CD9-Fc gamma R with KMC8.8 on macrophages from three different FcR-deficient mice, FcR gamma-chain(-/-), Fc gamma RIIB(-/-), and Fc gamma RIII(-/-), revealed that Fc gamma RIII is specific and crucial for syk phosphorylation. Although both KMC8.8 and the anti-Fc gamma RIIB/III mAb, 2.4G2, evoked similar phosphorylation patterns, only KMC8.8 induced cell aggregation. Additionally, KMC8.8 treatment led to reduce levels of TNF-alpha production and p42/44 extracellular signal-related kinase phosphorylation relative to 2.4G2 stimulation. Immunofluorescence staining showed that co-cross-linking of CD9-Fc gamma R with KMC8.8 induced filopodium extension before cell aggregation, which was followed by simultaneous colocalization of CD9, Fc gamma RIIB/III, Mac-1, ICAM-1, and F-actin at the cell-cell adhesion site. Moreover, KMC8.8 treatment of Fc gamma R-deficient macrophages revealed that the colocalization of CD9, Fc gamma RIII, Mac-1, and F-actin requires co-cross-linking of CD9-Fc gamma RIII, whereas co-cross-linking of CD9-Fc gamma RIIB induced the colocalization of only CD9 and Fc gamma RIIB. Our results demonstrate that co-cross-linking of CD9 and Fc gamma Rs activates macrophages; therefore, CD9 may collaborate with FcRs functioning in infection and inflammation on macrophages.

Actins↗

Pemphigus foliaceus developing after metastasis of cutaneous squamous cell carcinoma to regional lymph nodes.

We describe a patient in whom pemphigus foliaceus developed after cutaneous squamous cell carcinoma (SCC) metastasized to regional lymph nodes. Immunologic analysis revealed that production of anti-desmoglein 1 autoantibodies started when SCC metastasized, and the SCC expressed desmoglein 1, suggesting a pathogenic role of metastasized SCC in developing pemphigus foliaceus.

Aged↗

Apoptosis induction associated with cell cycle dysregulation by rice bran agglutinin.

Effects of rice bran agglutinin (RBA) on human monoblastic leukemia U937 cells were examined in comparison with those of wheat germ agglutinin (WGA) and Viscum album agglutinin (VAA). These lectins inhibit cell growth, and several lines of evidence indicate that the growth inhibition is caused by the induction of apoptosis. We observed that RBA induces chromatin condensation, externalization of membrane phosphatidylserine, and DNA ladder formation, features of apoptosis. DNA ladder formation was inhibited by a general inhibitor against caspases, which are known to play essential roles in apoptosis. Flow cytometric analysis revealed that RBA and WGA cause G2/M phase cell cycle arrest with increased expression of Waf1/p21, while cell cycle arrest was not observed for VAA. These data indicate that RBA induces apoptosis associated with cell cycle arrest in U937 cells, and suggest that the induction mechanism for RBA is similar to that for WGA, but different from that for VAA.

Apoptosis↗

Tumor necrosis factor alpha-induced osteoclastogenesis requires tumor necrosis factor receptor-associated factor 6.

Although tumor necrosis factor receptor-associated factor 6 (TRAF6) is required in receptor activator of NF-kappaB-receptor activator of NF-kappaB ligand (RANK-RANKL) signaling for osteoclastogenesis, it has remained unclear whether TRAF6 is crucial in tumor necrosis factor alpha (TNF-alpha)-induced osteoclastogenesis. We examined TRAF6 function in the TNF-alpha-induced osteoclastogenesis by using osteoclast progenitor cells from TRAF6-deficient mice. The results indicated that TNF-alpha did not effectively induce osteoclast differentiation from osteoclast progenitor cells derived from these mice into mature multinucleated osteoclasts, although c-jun N-terminal kinase (JNK) and TNF-alpha activation was observed in osteoclast progenitor cells. Thus, we have provided the first evidence showing that TRAF6 is involved in TNF-alpha-induced osteoclastogenesis.

Animals↗

Acid-base status and blood gas arterial values in free-ranging sika deer hinds immobilized with medetomidine and ketamine.

Ten free-ranging female sika deer (Cervus nippon) were captured to obtain the reference values for acid-base status and blood gas when immobilized with the combination of medetomidine and ketamine. The mean +/- SE of PaCO2, PaO2, and HCO3- were 58.1 +/- 6.1 mmHg, 58.8 +/- 6.4 mmHg, and 36.0 +/- 4.4 mmol/l, respectively. Although acidosis and alkalosis occurred in three and two animals, respectively, no serious conditions were observed. The blood values, however, suggest that some degree of hypoxemia and respiratory acidosis with metabolic alkalosis are developed. The trapped deer showed a significantly higher than normal rectal temperature reflective of exertion.

Acid-Base Equilibrium↗

cDNA cloning and characterization of vascular apoptosis-inducing protein 1.

Hemorrhagic snake venom induces apoptosis in vascular endothelial cells (VEC). In previous reports, we described the purification from crude venom of Crotalus atrox of two vascular apoptosis-inducing proteins (VAP1 and VAP2) that specifically induce apoptosis in vascular endothelial cells. We report here the cDNA cloning and characterization of VAP1. VAP1 cDNA encoded a protein with 610 amino acid residues. The amino acid sequence predicted from the cDNA indicated that VAP1 belongs to the metalloprotease/disintegrin family and that it is a multidomain polypeptide with a proprotein domain, a metalloprotease domain, a disintegrin-like domain, and a cysteine-rich domain. In the disintegrin-like domain, the sequence DECD replaces the RGD sequence that has frequently been found in such domains. We demonstrated that VAP1 has Zn(2+)-dependent metalloprotease activity and degrades fibrinogen. After incubation in the presence of either EDTA or EGTA, VAP1 was hardly able to degrade fibrinogen and to induce apoptosis in VEC. Our results indicated that VAP1 is a new type of snake venom metalloprotease/disintegrin and suggest that the metalloprotease activity of VAP1 might be involved in the induction of apoptosis by VAP1 in VEC.

Amino Acid Sequence↗

Tumor necrosis factor-alpha induces differentiation of and bone resorption by osteoclasts.

Osteoclast progenitors differentiate into mature osteoclasts in the presence of receptor activator of NF-kappaB (RANK) ligand on stromal or osteoblastic cells and monocyte macrophage colony-stimulating factor (M-CSF). The soluble RANK ligand induces the same differentiation in vitro without stromal cells. Tumor necrosis factor-alpha (TNF-alpha), a potent cytokine involved in the regulation of osteoclast activity, promotes bone resorption via a primary effect on osteoblasts; however, it remains unclear whether TNF-alpha can also directly induce the differentiation of osteoclast progenitors into mature osteoclasts. This study revealed that TNF-alpha directly induced the formation of tartrate-resistant acid phosphatase (TRAP)-positive multinucleated cells (MNCs), which produced resorption pits on bone in vitro in the presence of M-CSF. The bone resorption activity of TNF-alpha-induced MNCs was lower than that of soluble RANK ligand-induced MNCs; however, interleukin-1beta stimulated this activity of TNF-alpha-induced MNCs without an increase in the number of MNCs. In this case, interleukin-1beta did not induce TRAP-positive MNC formation. The osteoclast progenitors expressed TNF receptors, p55 and p75; and the induction of TRAP-positive MNCs by TNF-alpha was inhibited completely by an anti-p55 antibody and partially by an anti-p75 antibody. Our findings presented here are the first to indicate that TNF-alpha is a crucial differentiation factor for osteoclasts. Our results suggest that TNF-alpha and M-CSF play an important role in local osteolysis in chronic inflammatory diseases.

Animals↗

Metabolic fate of luteolin and its functional activity at focal site.

Luteolin has been shown to possess potent antioxidant and anti-inflammatory/anti-allergic activities. In order to evaluate a chemopreventive role of luteolin in inflammatory responses involved in the pathogenesis of atherosclerosis and cancer etc., the metabolic fate of luteolin in rats and humans was investigated by HPLC analysis, and its effect on cell surface expression of adhesion molecules in human umbilical vein endothelial cells(HUVECs) was examined by ELISA. Luteolin monoglucuronide, which was a main metabolite, and free luteolin were detected in rat plasma and human serum. Luteolin monoglucuronide was hydrolyzed to free luteolin by beta-glucuronidase released from neutrophils stimulated with lonomycin and Cytocharasine B. Luteolin suppressed the TNF-alpha induced ICAM-1 expression significantly. Among nine flavonoids (40 microM) examined, chrysin, apigenine, quercetin and galangin also demonstrated suppressive effct on it. These results suggest the posssibility that deconjugation of luteolin monoglucuronide occurs and that free luteolin showed functional acyivities such as suppression of TNF-alpha induced ICAM- 1 expression at inflammation site.

Animals↗

The gamete fusion process is defective in eggs of Cd9-deficient mice.

The cell-surface molecule Cd9, a member of the transmembrane-4 superfamily, interacts with the integrin family and other membrane proteins. and is postulated to participate in cell migration and adhesion. Expression of Cd9 enhances membrane fusion between muscle cells and promotes viral infection in some cells. Fertilization also involves membrane fusion, between gametes. In mammals, the sperm binds to microvilli on the egg surface, and sperm-egg membrane fusion first occurs around the equatorial region of the sperm head12. The fused membrane is then disrupted, and the sperm nucleus as well as the cytoplasm is incorporated into the egg. Cd9 is expressed on the plasma membrane of the mouse egg, and an anti-Cd9 monoclonal antibody inhibits sperm-egg surface interactions. We generated Cd9 mice and found that homozygous mutant females were infertile. Sperm-egg binding was normal, but sperm-egg fusion was almost entirely inhibited in eggs from Cd9 females. Intracellular Ca2 oscillations, which signal fertilization, were absent in almost all mutant eggs; in rare cases, a response occurred after a long time period. In normal animals, Cd9 molecules were expressed on the egg microvilli and became densely concentrated at the sperm attachment site. Thus, our results show that Cd9 is important in the gamete fusion process at fertilization.

Animals↗