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Biomedical subjects

Toshihiko Nagata

Publications and source records attributed to Toshihiko Nagata.

At least 19 recordsLinked to original sources

An open trial of paroxetine for the "offensive subtype" of taijin kyofusho and social anxiety disorder.

The taijin kyofusho (TKS) offensive subtype is thought to be a culture-bound syndrome similar to social anxiety disorder (SAD). In Western countries, such patients would be diagnosed as having delusional disorder, somatic subtype, or body dysmorphic disorder. Recently, open trials for the TKS offensive subtype and a randomized controlled trial for body dysmorphic disorder demonstrated that selective serotonin reuptake inhibitors (SSRIs) might be as effective in TKS as in SAD. This study investigated the efficacy of the SSRI paroxetine in patients with the TKS offensive subtype, both on anxiety and fears, as well as insight. This study was a 12-week open trial using paroxetine in 22 patients with TKS. Subjects were diagnosed based on the original diagnostic criteria for the TKS offensive subtype. Insight regarding TKS symptoms was assessed by the 11th supplement subscale "Insight into obsessions and compulsions" of the Yale-Brown Obsessive Compulsive Scale (Y-BOCS). The Liebowitz Social Anxiety Scale (LSAS), the Beck Depression Inventory (BDI), the State-Trait Anxiety Inventory (STAI), Rosenberg's Self-Esteem Scale, and the Interpersonal Distrust subscale of the Eating Disorder Inventory were also administered. Offensive anxiety was assessed by the original TKS offensive anxiety subscale (0-3 points). The primary efficacy variable was the Clinical Global Impression scale (CGI) global improvement item. Nineteen patients completed the study. Forty-seven percent (9/19) were responders to the drug treatment (scoring 2 or less on the CGI). Last observation carried forward (LOCF) analysis (N=22) demonstrated a statistically significant reduction in LSAS total score and offensive anxiety in TKS, and the insight scale score of the Y-BOCS also significantly improved. Interpersonal distrust showed a trend toward improvement.

Adult↗

High-turnover osteoporosis is induced by cyclosporin A in rats.

Cyclosporin A (CsA) is used widely as an immunosuppressive agent, but it induces osteoporosis as a prominent side effect. To elucidate the mechanisms involved in CsA-induced osteoporosis, the effects of CsA on bone metabolism were investigated in a rat experimental model. Fifteen-day-old rats were fed a powdered diet containing or lacking CsA for 8-30 days. Analysis was performed by micro-computed tomography (muCT) and light microscopy to examine histomorphometric changes in rat tibiae on days 8, 16, and 30. Plasma parathyroid hormone (PTH) and osteocalcin (OCN) levels were determined by enzyme-linked immunosorbent assay (ELISA) on days 8, 16, and 30. The expression of OCN, osteopontin (OPN), and cathepsin K mRNAs in tibial bone marrow was examined by Northern blot analysis on days 8 and 16. Although no significant differences were observed in tibial length during the experimental periods, or in histomorphometric parameters on day 8, an apparent decrease in bone volume was observed in the CsA-treated group after day 16. Histologic analysis showed that the number of osteoblasts and osteoclasts on the surface of trabecular bone in the CsA-treated group had increased significantly on day 16. Plasma PTH and OCN levels in CsA-treated rats were significantly higher than those in control animals on day 8. Northern blot analysis revealed that the CsA-treated group showed an increase in the expression of OCN, OPN, and cathepsin K mRNAs on day 8 compared with the controls. These findings suggest that bone resorption in CsA-treated rats is induced by high-turnover osteoporosis and that bone remodeling activity may be activated by PTH.

Animals↗

Relationship between plasma concentrations of cytokines, ratio of CD4 and CD8, lymphocyte proliferative responses, and depressive and anxiety state in bulimia nervosa.

OBJECTIVE: Immunological dysfunction in participants with bulimia nervosa (BN) might be due to not only chaotic eating behavior but also psychological state, such as depression and anxiety, because studies have found a close relationship between depression, anxiety, and immunological dysfunction. METHOD: Participants included 20 females with BN and 14 control females. In eight BN participants, immune function was measured twice, before and after inpatient treatment. Cytokines [interleukin (IL)-1 receptor antagonist, IL-2 soluble receptor alpha, IL-6 soluble receptor (sIL-6r), and tumor necrosis factor soluble receptor II (sTNF-rII)], lymphocyte subsets (CD4 and CD8), and lymphocyte proliferative responses were measured. RESULTS: There were no differences in plasma cytokine levels or lymphocyte subsets between the BN participants and the controls. Conversely, lymphocyte proliferative responses were significantly lower in BN participants than in the controls. Lymphocyte proliferative responses negatively correlated with anxiety trait and improved with an improvement of bulimic state. CONCLUSION: The comorbid nonspecific anxiety trait significantly contributes to suppressing lymphocyte proliferative responses in BN participants.

Adult↗

VDAC1, having a shorter N-terminus than VDAC2 but showing the same migration in an SDS-polyacrylamide gel, is the predominant form expressed in mitochondria of various tissues.

The voltage-dependent anion channel (VDAC) is a pore-forming protein expressed in the outer membrane of eukaryotic mitochondria. Three isoforms of it, i.e., VDAC1, VDAC2, and VDAC3, are known to be expressed in mammals; however, the question as to which is the main isoform in mitochondria is still unanswered. To address this question, we first prepared standard VDACs by using a bacterial expression system and raised various antibodies against them by using synthetic peptides as immunogens. Of the three bacterially expressed VDAC isoforms, VDAC3 showed faster migration in SDS-polyacrylamide gels than VDAC1 and VDAC2, although VDAC2 is longer than VDAC1 and VDAC3, due to a 12-amino acid extension of its N-terminal region. Even with careful structural characterization of the expressed VDACs by LC-MS/MS analysis, serious structural modifications of VDACs causing changes in their migration in SDS-polyacrylamide gels were not detected. Next, immunoreactivities of the raised antibodies toward these bacterially expressed VDAC isoforms were evaluated. Trials to prepare specific antibodies against the three individual VDAC isoforms were not successful except in the case of VDAC1. However, using a synthetic peptide corresponding to the highly conserved region among the three VDACs, we were successful in preparing an antibody showing essentially equal immunoreactivities toward all three VDACs. When mitochondrial outer membrane proteins of various rat tissues were subjected to 2-dimensional electrophoresis followed by immunoblotting with this antibody, six immunoreactive protein spots were detected. These spots were characterized by LC-MS/MS analysis, and the signal intensities among the spots were compared. As a result, the signal intensity of the spot representing VDAC1 was the highest, and thus, VDAC1 was concluded to be the most abundantly expressed of the three VDAC isoforms in mammalian mitochondria.

Amino Acid Sequence↗

Norepinephrine stimulates calprotectin expression in human monocytic cells.

BACKGROUND AND OBJECTIVE: Calprotectin is composed of two proteins, S100A8 and S100A9, which are S100 family members, and is detected in gingival crevicular fluid and gingival tissue with inflammation. The release and production of calprotectin are regulated by lipopolysaccharides of periodontopathic bacteria and cytokines. Emotional or psychological stress, a risk factor of periodontal disease, is transmitted by stress modulators including norepinephrine and cortisol. The aim of the present study was to investigate the effect of stress on calprotectin expression using norepinephrine and cortisol. METHODS: U-937 cells, a human monocytic cell line, were incubated with norepinephrine in the presence or absence of beta- or alpha-adrenergic receptor antagonists, or with cortisol. The expression of S100A8/S100A9 mRNAs was examined by northern blotting and the amount of calprotectin was measured by enzyme-linked immunosorbent assay (ELISA). The DNA binding activity of C/EBPalpha (CCAAT enhancing binding protein), a transcription factor, was examined by electrophoretic mobility shift assay. RESULTS: Norepinephrine stimulated the expression of S100A8/S100A9 mRNAs via beta-adrenergic receptors in U-937 cells and significantly increased calprotectin production to about 3.6-fold that of the control. However, cortisol had no effect on calprotectin expression at the mRNA and protein levels. Norepinephrine elevated C/EBPalpha DNA binding activity, but cortisol did not increase the activity. CONCLUSION: Norepinephrine, a stress modulator, stimulated calprotectin expression in human monocytic cells. Calprotectin expression may be regulated by stress in addition to inflammatory factors.

Adrenergic alpha-Agonists↗

[Alveolar bone resorption in animal models of periodontitis].

Periodontitis is a chronic inflammatory disease caused by infection of periodontopathic bacteriae, which induces alveolar bone resorption, tooth mobility, and finally tooth loss. In order to clarify the pathogenesis and to develop prevention and treatment of periodontitis, it is important to establish animal models of periodontitis. In this article, we showed several types of experimental models previously reported, and also showed a rat model using ligature and a hamster model using periodontopathic bacteria, both we used in our laboratory. Micro computed tomography (CT) analysis and histological observation revealed the inflammatory localization and osteoclast appearance in periodontal tissues. The usefulness of animal models of periodontitis is demonstrated by exhibiting an inhibitory effect of bisphosphonate and prostaglandin E(2) on alveolar bone resorption in our experimental systems.

Alveolar Bone Loss↗

[Prevention of osteoporosis by foods and dietary supplements. Milk basic protein (MBP) induces alveolar bone formation in rat experimental periodontitis].

Periodontitis is a chronic inflammatory disease caused by infection of periodontopathic bacteriae, which induced alveolar bone resorpotion. Milk basic protein (MBP) has been reported to be useful as a supplement because of increasing bone formation in animal and human studies. We examined the effect of MBP for alveolar bone formation in rat experimental periodontitis. After alveolar bone resorption was induced by ligature technique, the diets containing low and high dose of MBP were given to rats for 90 days. Micro-focus computed tomography and histological observation revealed a recovery of alveolar bone in high-dose MBP group compared to the control group. Osteoid thickness of alveolar bone crest significantly increased in low and high-dose MBP groups. These findings indicate that MBP may be effective for the recovery of alveolar bone resorption in periodontitis.

Alveolar Bone Loss↗

Is "relationship fear" unique to Japan? Symptom factors and patient clusters of social anxiety disorder among the Japanese clinical population.

BACKGROUND: There have been only a limited number of cross-cultural studies of social anxiety disorder (SAD), especially as diagnosed with modern operationalized diagnostic criteria and as measured with recently developed assessment instruments. We examined the symptomatological structure and clinical subtypes of patients with DSM-IV SAD among the Japanese clinical population. METHODS: We performed confirmatory and exploratory factor analyses of the joint Social Interaction Anxiety Scale and Social Phobia Scale from 149 psychiatric patients diagnosed with SAD. Based on the derived symptom factors, we further ran cluster analysis to identify patient subgroups. RESULTS: Factor analyses revealed three factors which were named "scrutiny fears", "conversation fears" and "relationship fears". The first two appeared common to Western clinical populations but the third appeared unique to the Japanese. Cluster analysis based on these three factor scores yielded three subgroups, which were externally validated and which overall corresponded with mild, moderate and pervasive subtypes of social phobia. LIMITATIONS: Both factor analysis and cluster analysis employed in the present study are exploratory in nature. Further empirical examination in different settings and cultures is necessary to provide definitive answers. CONCLUSIONS: It is suggested that we may need three symptom subscales and three subtypes in order to better account for cultural variations in the presentation of SAD.

Adolescent↗

Drug-induced gingival overgrowth--a review.

Drug-induced gingival overgrowth is a side effect associated with 3 types of drugs: anticonvulsants (phenytoin), immunosuppressive agents (cyclosporine A), and various calcium channel blockers for cardiovascular diseases. Gingival overgrowth is characterized by the accumulation of extracellular matrix in gingival connective tissues, particularly collagenous components with various degrees of inflammation. Although the mechanisms of these disorders have not been elucidated, recent studies suggest that these disorders seem to be induced by the disruption of homeostasis of collagen synthesis and degradation in gingival connective tissue, predominantly through the inhibition of collagen phagocytosis of gingival fibroblasts. The integrins are a large family of heterodimeric transmembrane receptors for extracellular matrix molecules. alpha2beta1 integrin serves as a specific receptor for type I collagen on fibroblasts, and alpha2 integrin has been shown to play a crucial role in collagen phagocytosis. Actin filaments, which are assembled from monomers and oligomers, are involved in collagen internalization after binding to integrins. Furthermore, the implication of intracellular calcium in the regulation of integrin-mediated binding activity and gelsolin activity, known as a calcium-dependent actin-severing protein, is also described. In this review, we focus on collagen metabolism in drug-induced gingival overgrowth, focusing on the regulation of collagen phagocytosis in fibroblasts.

Anticonvulsants↗

Calprotectin expression in human monocytes: induction by porphyromonas gingivalis lipopolysaccharide, tumor necrosis factor-alpha, and interleukin-1beta.

BACKGROUND: Calprotectin is a major cytosolic protein of monocytes and granulocytes. It is increased in inflammatory tissues and is detected at high levels in the gingival crevicular fluid (GCF) of periodontitis patients. We previously reported that lipopolysaccharide of Porphyromonas gingivalis (P-LPS) and cytokines induced the release of calprotectin from monocytes isolated from human peripheral blood. The mechanisms of calprotectin expression and presence of its regulation factors in periodontal disease are unknown. On the other hand, P-LPS and cytokines are significant etiologic factors in the initiation and progression of periodontal diseases. In this study, we investigated the expression and production of calprotectin from human monocytes by examining the effects of lipopolysaccharide of P-LPS, tumor necrosis factor-alpha (TNF-alpha) and interleukin-1beta (IL-1beta). METHODS: Monocytes were isolated from the peripheral blood of healthy donors and cultured in the presence or absence of P-LPS, TNF-alpha, or IL-1beta. The expressions of calprotectin mRNAs (MRP8 and MRP14) were detected by Northern blotting. The contents of calprotectin in the cells and medium fractions were determined by enzyme-linked immunosorbent assay (ELISA). The DNA binding activity of C/EBPalpha, a transcription factor of MRP14, was assessed by electrophoretic mobility shift DNA-binding assay (EMSA). RESULTS: P-LPS, TNF-alpha, and IL-1beta induced MRP8/14 mRNAs and calprotectin production in monocytes. These factors also induced DNA CEBPalpha binding activity in monocytes. P-LPS increased MRP14 mRNA expression in monocytes to the maximum level, about two times the control level after 24 hours treatment, but did not enhance the basal level of MRP8. When the effects of TNF-alpha and IL-1beta on those mRNAs were investigated, both MRP8 and MRP14 significantly increased to about 2- and 2.5-fold the control level, respectively. Increases of MRP8/14 mRNA expression were followed by their protein production at about 2-fold the basal amount. DNA binding activity of C/EBPalpha was increased in P-LPS, TNF-alpha, and IL-1beta-treated monocytes. CONCLUSIONS: These results demonstrate that P-LPS, TNF-alpha, and IL-1beta induce calprotectin production from human monocytes and that this production is associated with the activation of DNA C/EBPalpha binding complex.

Blotting, Northern↗

Regulation of tenascin expression in cultured rat dental pulp cells.

Tenascin (TN) is a glycoprotein of extracellular matrix abundantly present in embryonic mesenchymal tissues. Transforming growth factor-beta1 (TGF-beta1), basic fibroblast growth factor (bFGF), epidermal growth factor (EGF), hepatocyte growth factor (HGF), and retinoic acid (RA) are important regulators of dentinogenesis. Dental pulp cells have the capacity to differentiate into odontoblast-like cells. In this study, we investigated the effects of growth factors on TN expression and adhesive function using rat clonal dental pulp cells, RPC-C2A. Analyses of reverse transcription-polymerase chain reaction (RT-PCR) and Western blotting revealed that RPC-C2A cells expressed TN molecules and that TGF-beta1, HGF, and RA increased expression of TN at the mRNA and protein level, while bFGF and EGF showed a weak effect. An adhesion assay revealed that treatment with TGF-beta1, HGF, and RA induced a marked reduction of cell attachment to fibronectin (FN)-coated surfaces, whereas there was no change with bFGF and EGF. Functional blocking of growth factor-stimulated TN protein by pretreating cells with anti-TN antibodies restored cell attachment to control levels. These findings suggest that TGF-beta1, HGF, and RA may regulate pulpal cell adhesion to FN-coated surfaces and that this effect is mediated by TN.

Animals↗

Irreversible subcortical dementia following high altitude illness.

In this report, we present the cases of two 63-year-old women who developed high altitude cerebral edema complicated by the occurrence of permanent neuropsychiatric sequelae. They shared a similar clinical course, in that both developed disturbance of consciousness shortly after their arrival at Cuzco, Peru (3500 m), and both developed persistent neuropsychiatric symptoms after resolution of the acute illness. Interestingly, in case 2 there was a 1-month lucid interval between remission of high altitude illness and occurrence of the irreversible neuropsychiatric sequelae. Brain computerized tomography in case 1 and brain magnetic resonance imaging in case 2 disclosed lesions in the globus pallidus bilaterally, suggesting that the neuropsychiatric symptoms in these patients were manifestations of subcortical dementia. The development of high altitude illness was considered to be attributable to mild restrictive lung impairment in case 1 and to a deficient ventilatory response to hypoxia in case 2. It must therefore be borne in mind that irreversible subcortical dementia may be associated with high altitude cerebral edema.

Acute Disease↗

Substance P enhances the inhibition of osteoblastic cell differentiation induced by lipopolysaccharide from Porphyromonas gingivalis.

BACKGROUND: Substance P (SP) is a multifunctional neuropeptide that transmits pain signals, regulates the immune system, and may modulate emotional stress. SP stimulates bone resorption activity of osteoclasts, and SP level in gingival crevicular fluid is correlated with the degree of periodontal inflammation. However, the exact roles of SP in bone metabolism and periodontal diseases are poorly understood. To elucidate the effect of stress on bone metabolism, we investigated the effect of SP on osteoblastic cell differentiation in the presence of lipopolysaccharide from Porphyromonas gingivalis (P-LPS). METHODS: The primary osteoblastic cells were isolated from fetal rat calvaria (RC) and cultured with SP, P-LPS, and an SP antagonist (SPa). The effects of SP on bone nodule (BN), alkaline phosphatase (ALPase) activity, mRNA expressions of SP receptor, bone matrix proteins, and Cbfa 1 were investigated. RESULTS: SP stimulated the expression of SP receptor mRNA in RC cells and enhanced its expression in the presence of P-LPS (50 ng/ml). SP inhibited BN formation and ALPase activity in a dose-dependent manner (10(-7) to 10(-5) M) and further suppressed mRNA expression of bone sialoprotein, osteopontin, and osteocalcin but not of type I collagen mRNA. The inhibitory effects were enhanced in the presence of P-LPS and blocked by Spantide III. Furthermore, the expression of Cbfa 1 mRNA was also markedly suppressed in the presence of SP and P-LPS. CONCLUSION: These findings suggest that SP inhibits osteoblastic cell differentiation and may be related to bone metabolism in periodontal diseases under conditions of stress.

Alkaline Phosphatase↗

Effect of menatetrenone (vitamin K2) treatment on bone loss in patients with anorexia nervosa.

Osteoporosis is a common complication of anorexia nervosa (AN). Although weight recovery and resumption of menses are important goals in AN treatment, they are often achieved only after a prolonged period of recovery. Therefore, it becomes important to find therapies with the potential to prevent further decreases in bone mineral density (BMD). We conducted a non-randomized study of the effects of menatetrenone (vitamin K2) on bone loss in patients with AN. Lumbar BMD was longitudinally measured by Dual Energy X-ray Absorptiometry (DXA) in 10 patients with AN who chose to receive menatetrenone treatment (MED+ group) and 11 patients who did not (MED- group). During the mean 0.9-year follow-up period, the BMD of the lumbar vertebrae of the MED+ group decreased significantly less than that of the MED- group (-2.8% and -6.9%, respectively). Among bone metabolism markers, gamma-carboxyglutamic acid osteocalcin significantly increased (128.6% and 28.3%, respectively) and urine deoxypyridinoline significantly decreased (-44.5% and -13.7%, respectively) more in the MED+ group than in the MED- group. These differences in BMD and bone metabolism markers may be attributable to menatetrenone treatment. The results suggest that menatetrenone may be beneficial in the prevention of bone loss in patients with AN. Randomized placebo-controlled studies are needed to confirm these findings.

Adult↗

Calprotectin release from human neutrophils is induced by Porphyromonas gingivalis lipopolysaccharide via the CD-14-Toll-like receptor-nuclear factor kappaB pathway.

OBJECTIVES: Calprotectin is a cytosolic protein with antibacterial action in leukocytes and its level increases in some inflammatory diseases, including periodontal diseases, rheumatoid arthritis and ulcerative colitis. Recently, we found that the lipopolysaccharide of Porphyromonas gingivalis (P-LPS) induced calprotectin release from human neutrophils. P-LPS, a major virulence factor of periodontal pathogens, is known to induce the production and release of inflammatory cytokines through CD14, Toll-like receptor (TLR) and nuclear factor kappaB (NF-kappaB). In the present study, we investigated whether calprotectin release by P-LPS is induced via the CD14-TLR-NF-kappaB pathway and the cellular mechanism of calprotectin release in human neutrophils. MATERIAL AND METHODS: Human neutrophils were isolated from the peripheral blood of healthy donors and pre-incubated in medium containing antibodies against CD14, TLR2 and TLR4, or several inhibitors of NF-kappaB, microtubules and microfilaments, and then incubated with P-LPS. The calprotectin amount in the culture medium was determined using ELISA, and the nuclear extracts from cells were used for the examination of NF-kappaB binding activity using electrophoretic mobility shift assays. RESULTS: P-LPS increased calprotectin release from neutrophils and its induction was inhibited by anti-CD14 and anti-TLR2 antibodies, but not by two anti-TLR4 antibodies. NF-kappaB inhibitors suppressed P-LPS-induced NF-kappaB binding activity and calprotectin release. The inhibitors of microtubule and microfilament polymerization significantly decreased P-LPS-induced calprotectin release. CONCLUSION: These results suggest that calprotectin release is induced by P-LPS via the CD14-TLR2-NF-kappaB signal pathway in human neutrophils and may be dependent on microtubule and microfilament systems.

Actin Cytoskeleton↗

Decreased expression of alpha2 integrin in fibroblasts isolated from cyclosporin A- induced gingival overgrowth in rats.

OBJECTIVES: Cyclosporin A (CsA), an immunosuppressive agent, induces fibrous gingival overgrowth through reduction of collagen phagocytosis by fibroblasts. Distinct receptors are involved in the binding of collagen to fibroblasts in collagen phagocytosis, and alpha2beta1 integrin serves as a specific receptor for type I collagen on fibroblasts. To elucidate the role of alpha2beta1 integrin in CsA-induced gingival overgrowth, we investigated collagen phagocytosis and alpha2beta1 integrin expression in rat gingival fibroblasts. MATERIALS AND METHODS: Fibroblats were isolated from gingiva of rats fed a powdered diet containing or lacking CsA for 30 d. Flow cytometric analysis were performed to measure the collagen phagocytosis and the alpha2 integrin expression in fibroblasts. Furthermore, total RNAs were isolated from fibroblasts, and the reverse transcriptase-polymerase chain reaction was employed to investigate the mRNA levels of alpha2 integrin. RESULTS: In vitro collagen phagocytosis assay revealed that CsA-treated and control fibroblasts contained a mean of 13.5% and 36.1% phagocytic cells, respectively. CsA-treated fibroblasts had 28% lower expression of alpha2 integrin than that of control. and mRNA expression of alpha2 integrin in CsA-treated fibroblasts was apparently lower than in the controls, but the mRNA expression of beta1 integrin was not affected. CONCLUSION: These findings suggest that one etiological factor of gingival overgrowth may be inhibition of collagen phagocytosis by reducing alpha2 integrin expression in gingival fibroblasts.

Animals↗