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Biomedical subjects

Mitsunobu Sato

Publications and source records attributed to Mitsunobu Sato.

At least 19 recordsLinked to original sources

S-1 inhibits tumorigenicity and angiogenesis of human oral squamous cell carcinoma cells by suppressing expression of phosphorylated Akt, vascular endothelial growth factor and fibroblast growth factor-2.

It has been reported that S-1 can exert antitumor effects on various human cancers including oral squamous cell carcinoma (OSCC). However, little is known about the detailed mechanisms of the antitumor activity of S-1. In the present study, we determined whether S-1 could suppress the angiogenesis and growth of human OSCC cells in vitro and in vivo. The S-1 component (5-FU plus CDHP) significantly suppressed the growth and migration of OSCC cells and BAEC, which inhibited tubule formation in HUVECs in vitro. Also, S-1 inhibited the nuclear factor-kappaB (NF-kappaB) activity in human OSCC cells in vitro. Moreover, S-1 inhibited the expression of survival signal, phosphorylated Akt (p-Akt), and of two major proangiogenic molecules, vascular endothelial growth factor (VEGF) and fibroblast growth factor-2 (FGF-2), in cells implanted into the subcutaneous tissue of nude mice. The decreased expression of p-Akt, VEGF and FGF-2 correlated with decreased tumorigenicity and decreased vascularization of lesions in vivo. These findings suggest that S-1 can suppress the angiogenesis and growth of OSCC cells by inhibiting the expression of p-Akt, VEGF and FGF-2 involved in the blockade of Akt/NF-kappaB pathway.

Animals↗

Lipoteichoic acid-related molecule derived from the streptococcal preparation, OK-432, which suppresses atopic dermatitis-like lesions in NC/Nga mice.

Bacterial stimulation may serve to control atopic disorders such as atopic dermatitis (AD) through inducement of Th1 cell-mediated immune response. The lipoteichoic acid (LTA)-related molecule (okLTA) from streptococcal preparation, OK-432, has been shown to be a potent Th1 inducer through the action of IL-12. Examination was made of the therapeutic effects of this okLTA injected intra- and/or subcutaneously into AD-like lesions in NC/Nga mice, particularly in the vicinity of the suppressor of cytokine signaling (SOCS) regulatory pathways. Using immunohistochemical staining with IL-4/IL-12p40 and phosphorylated STAT6/p-STAT4 and RT-PCR for IL-4/IL-12p40, STAT6/STAT4 and mRNA expression and in situ hybridization of SOCS3 and 5, evaluation was made of the immunoregulatory effects of this okLTA in the treatment of spontaneous AD-like lesions in NC/Nga mice. Following the injection of okLTA, remarkable improvement in the lesions of NC/Nga mice was noted. In okLTA-treated skin, IL-12p40/p-STAT4 positive cellular infiltration was extensive while IL-4/p-STAT6 positive cell infiltration was seen to diminish considerably, compared to untreated NC mice. SOCS3 in situ expression in okLTA-treated mice was noted to be significantly less compared to untreated NC mice, in which the expression was prominent. SOCS5 in situ expression was rather, though not significantly, strong in okLTA-treated mice. okLTA treatment is clearly shown to induce Th1 cellular response and down-regulate immune response in the Th2 pathway through SOCS3 reduction in AD-like lesions of NC/Nga mice. The present results demonstrate that bacterial wall components such as okLTA should serve as an effective new therapeutic approach for treating AD.

Animals↗

Immunosuppressive diacetylenes, ceramides and cerebrosides from Hydrocotyle leucocephala.

Three C-17 diacetylenic compounds (1-3), one monoterpenoid (4), seven ceramides (leucoceramides A-G, 5a-g), six cerebrosides (leucocerebrosides A-F, 6a-f) and nine known compounds were isolated from the methanolic extract of Hydrocotyle leucocephala. Their structures were established by spectroscopic methods. The isolated compounds 1-3, 5a-g, 6a-f and 7 were shown to be active in the lipopolysaccharide (LPS) induced cytokine production assay for IL-10, IL-12, and TNF-alpha.

Acetylene↗

A proteomics approach to characterizing human submandibular gland cell lines by fluorescent two-dimensional differential in-gel electrophoresis.

The human salivary glands have a variety of histologic features such as intercalated duct cells, myoepithelial cells and acinar cells. A neoplastic human salivary intercalated duct cell line (HSG) and its derivatives, HSG with a myoepithelial cell phenotype (HSG-AZA1) and HSG with an acinar cell phenotype (HSG-AZA3) induced by 5-aza-2'-dC treatment of HSG cells, have been reported. To identify characterization of intercalated duct cells, myoepithelial cells and acinar cells in the salivary gland, we selected HSG, HSG-AZA1 and HSG-AZA3 cell lines to perform two-dimensional electrophoresis analysis. We used a fluorescent two-dimensional differential in-gel electrophoresis (2-D-DIGE) for comparative proteomics, which improved the reproducibility and reliability of differential protein expression analysis between the samples. Furthermore, matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) peptide mass fingerprinting (PMF) was used to identify the proteins. These methods were combined to approach the protein profiles associated with characterization between HSG, HSG-AZA1 and HSG-AZA3 cells. Using these strategies, we identified seven HSG associated proteins, such as actin-beta, hydrocephalus inducing protein, L-plastin, KIAA0657 protein, septin 6 isoform A, lamin A/C isoform 2 and superoxide dismutase 2, three HSG-AZA1 associated proteins such as ubiquitin carboxyl-terminal esterase L1, myosin light chain 2 and muscle creatine kinase, and two HSG-AZA3 associated proteins, microtubule-associated protein 6 and Annexin A3. These results suggest that the proteins are associated with characterization of the salivary gland.

Amino Acid Sequence↗

WISP-2 expression in human salivary gland tumors.

This study was designed to disclose detailed genetic mechanisms in salivary gland tumors (SGTs) for development of novel independent marker. We constructed an in-house cDNA microarray carrying 2,201 cDNA clones derived from SGT and oral squamous cell carcinoma cDNA libraries. Four cell lines that originated from the SGT-derived cell lines were analyzed using this microarray system. The genes identified by our microarray system were further analyzed at the mRNA or protein expression level in other types of human cancer cell lines and clinical samples (ten normal salivary glands [NSGs], eleven pleomorphic adenomas, ten adenoid cystic carcinomas and three adenocarcinomas). Two up-regulated genes and six down-regulated genes were identified in common when compared with the control RNA. Of the up-regulated genes, WISP-2, which plays an important role in breast carcinogenesis, was selected for further analyses. We found a higher expression of the WISP-2 gene in the SGT-derived cell lines compared with other types of human cancer cell lines. Furthermore, WISP-2 mRNA and protein expression levels in NSGs were significantly higher than those in SGTs. These results suggest that WISP-2 could be a reliable independent marker and that down-regulation or loss of the WISP-2 gene may be associated with the development of SGTs.

CCN Intercellular Signaling Proteins↗

Cepharanthin, a biscoclaurine alkaloid, prevents destruction of acinar tissues in murine Sjögren's syndrome.

OBJECTIVE: Our previous study suggested that suppression by cepharanthin of tumor necrosis factor-a (TNF-a)-induced matrix metalloproteinase-9 (MMP-9) could prevent destruction of the acinar structure in the salivary glands of patients with Sjögren's syndrome (SS). In this study, we observed that in vivo administration of cepharanthin prevented severe damage to acinar tissues in the murine model of human SS. METHODS: Cepharanthin was intraperitoneally administered to thymectomized female NFS/sld mice. Inflammatory lesions in the salivary and lacrimal glands were then examined histologically. Expression of phosphorylated IkB-a, MMP-9, and type IV collagen was analyzed immunohistochemically. The apoptotic cell death of acinar cells was determined. RESULTS: Although extensive mononuclear cell infiltration and destruction of acinar tissue in salivary and lacrimal glands were observed in control mice, significant improvement of these lesions was evident in mice treated with cepharanthin. Immunohistochemical analysis revealed that p65, phosphorylated IkB-a, and MMP-9 were more strongly stained in the acinar cells of control mice than in cepharanthin-treated mice. Although no staining for type IV collagen was observed in the acinar tissues of control mice, continuity of staining for type IV collagen was observed in acinar tissues of cepharanthin-treated mice. Destruction of acinar tissues was attributed to the induction of apoptosis, suggesting that cepharanthin inhibits apoptosis by suppressing phosphorylation of IkB-a, followed by prevention of MMP-9 activation. CONCLUSION: Our findings suggest that cepharanthin may be a promising agent for use in preventing destruction of acinar tissues in murine SS.

Alkaloids↗

Thymidylate synthase expression in oral squamous cell carcinoma predicts response to S-1.

The purpose of this research was to evaluate the predictive value of expression of thymidylate synthase (TS), dihydropyrimidine dehydrogenase (DPD), thymidine phosphorylase (TP), or orotate phosphoribosyltransferase (OPRT) genes for response to S-1. Twenty-five patients with oral squamous cell carcinoma (OSCC) received S-1 80 mg/m2/day. Pretreatment tumor biopsies were analyzed for TS, DPD, TP or OPRT mRNA expression by real-time reverse transcription-PCR. TS protein expression was evaluated by immunohistochemistry using a polyclonal TS antibody. Twenty-five patients were evaluable for response and gene expression. Six of the 25 (24%) achieved complete remission and 4 of the 25 (16%) had a partial response. Median TS/beta-actin was 2.51 (range 0.98-7.07). Median TS/beta-actin was 1.26 in responding patients and 3.43 in non-responders (P=0.0001). Ten of 11 patients with TS/beta-actin <1.80 and 0 of 15 with higher values responded (P<0.0001). Overall survival was 29.7 months in patients with TS/beta-actin <1.80 and 41.7 months in patients with higher values (P=0.0013). No correlations were seen between expression of DPD, TP or OPRT mRNA and response or survival. Weak TS staining was seen in 6 of 25 tumors evaluable for immunohistochemistry, including 5 responders. All 4 of the patients with both weak staining and TS/beta-actin <1.80 responded. High TS mRNA expression predicts non-response to S-1. On the other hand, high levels of DPD or TP mRNA and low levels of OPRT mRNA are not associated with S-1 resistance. TS mRNA expression is considered to be a useful prognostic factor in OSCC patients with S-1 single-agent therapy.

Adult↗

[Phase I study of concurrent radiotherapy with S-1 for oral squamous cell carcinoma].

S-1 is a novel oral fluoropyrimidine inhibitory for dihydropyrimidine dehydrogenase (DPD). In the present study, we have examined the appropriate dose of S-1 in the combination with radiation and the safety and clinical efficacy. Radiation was given (2 Gy/day; 5 days/week) for a total of 60 Gy. S-1 was given orally every day for 2 weeks and then S-1 was stopped for 1 week. The levels were divided accordingly to the S-1 application as follows; level 0, 50 mg/m2/day; level 1, 65 mg/m2/day; level 2, 80 mg/m2/day. grade 3 toxicity of anorexia and the grade 3 toxicity increase in bilirubin level were observed in 2 cases of level 2. We decided that level 1 (65 mg/m2/day) was the recommended dose of the S-1 application as observed in compliance and efficacy. This therapy is a useful concurrent chemo-radiotherapy which may improve the response rate and quality of life (QOL) of patients with oral squamous cell carcinoma.

Adult↗

Epithelial-mesenchymal transition induced by the stromal cell-derived factor-1/CXCR4 system in oral squamous cell carcinoma cells.

Epithelial-mesenchymal transition (EMT) refers to critical events occasionally observed during tumor progression, including invasion and metastasis, by which cancer cells acquire a fibroblast-like phenotype. Since the stromal cell-derived factor-1 (SDF-1)/CXCR4 system can facilitate lymph node metastasis in oral squamous cell carcinoma (SCC), we have explored the possibility that this system might be involved in EMT. Oral SCC cells, B88 and HNt, which have functional CXCR4 and lymph node metastatic potential, were found to lose their epithelial cell morphology due to SDF-1. In this context, the downregulation of epithelial markers, cytokeratin, E-cadherin and beta-catenin, and the upregulation of mesenchymal marker, vimentin and snail were detected. Furthermore, upregulation of vimentin by treatment with SDF-1 was impaired by phosphatidylinositol 3 kinase (PI3K) inhibitor Wortmannin, but not by mitogen-activated protein kinase/extracellular signal-regulated kinase inhibitor U0126. In the type I collagen embedding culture, SDF-1-treated B88 cells formed protruding extensions, but the effect was impaired by treatment with Wortmannin. These results suggested that EMT induced by the SDF-1/CXCR4 system might be involved in the lymph node metastasis of oral SCCs via activation of PI3K-Akt/PKB pathway.

Biomarkers, Tumor↗

[The relationship between gene expression of Bcl-2 and Bax and the therapeutic effect in oral cancer patients].

We have investigated the relationship between gene expression of Bcl 2 and Bax and the therapeutic effect in oral cancer patients. A significant correlation between Bcl-2/Bax gene expression ratio in the peripheral blood mononuclear cells (PBMCs) from the patients, and the therapeutic effect of radiation therapy in combination with UFT and OK-432, as well as survival rate, was observed. In addition, the statistically significant correlation was also observed between Bcl-2/Bax ratio and IFN-gamma and NK activity induced with OK-432. These findings suggest that Bcl-2 and Bax gene expression in PBMCs may be useful as a prognostic factor in oral cancer patients.

Antineoplastic Combined Chemotherapy Protocols↗

Involvement of nitric oxide in anti-tumor effects of OK-432, a streptococcal anti-tumor immunotherapeutic agent.

We examined the role of nitric oxide (NO) induced by OK-432, a streptococcal immunotherapeutic agent, in anti-tumor effects of the OK-432 by in vitro and in vivo experiments using an NO synthase inhibitor, N-monomethyl-l-arginine acetate (NMA). The in vitro treatment of mouse splenocytes with OK-432 increased the expression of inducible NO synthase (iNOS) gene and NO production in a dose-dependent manner. Although it is well known that OK-432 induces cytokines such as interferon (IFN)-gamma and tumor necrosis factor (TNF)-alpha, both of which are known to be potent NO inducers, we observed only a partial reduction of OK-432-induced NO production with the addition of anti-IFN-gamma and/or anti-TNF-alpha neutralizing antibodies. The cytotoxicity of the splenocytes increased by in vitro OK-432 stimulation was almost completely inhibited by the treatment with NMA. OK-432 administration resulted in a marked prolongation of survival and a significant inhibition of tumor growth in syngeneic tumor-bearing mice, whereas NMA significantly inhibited the anti-tumor effects of OK-432. Although the increased cytotoxicity of adherent splenocytes derived from OK-432-treated tumor-bearing mice was almost completely inhibited by NMA, only partial inhibition by NMA was observed in the cytotoxicity of the nonadherent splenocytes. These findings strongly suggest that the iNOS/NO induced by OK-432 is intimately involved in the anti-tumor effects of OK-432.

Animals↗

TX-1877, a bifunctional hypoxic cell radiosensitizer, enhances anticancer host response: immune cell migration and nitric oxide production.

We investigated in the current study the effect of TX-1877, a bifunctional hypoxic cell radiosensitizer, in augmenting anticancer host response. In the syngeneic squamous cell carcinoma-bearing mouse model, a single administration of TX-1877 significantly inhibited the primary tumor growth as well as lung metastasis. TX-1877 administration resulted in a significant infiltration of immune cells, such as CD4+T, CD8+T cells, macrophages and dendritic cells (DCs), and an increased expression of chemokines for cytotoxic T lymphocytes (CTLs), helper T-cell 1 (Th1) cells, monocytes/macrophages and DCs, in tumor tissues. Nitric oxide (NO) production and the expression of inducible NO synthase (iNOS) and interferon-gamma, a major Th1 cytokine that plays a major role in anticancer immunity, were also enhanced. Furthermore, neutralization of NO by N-monomethyl-L-arginine acetate resulted in a marked inhibition of the antitumor effect of TX-1877. In tumor-draining lymph nodes, MHC class I-restricted CD8+ memory CTLs specific for inoculated cancer cells were induced by TX-1877. In in vitro experiments, TX-1877 induced chemokines and iNOS/NO in several types of culture cells. These findings strongly suggested that TX-1877 induces migration of CD8+CTLs, CD4+Th1 cells, macrophage/monocytes and dendritic cells into the tumor site, and that this migration is mediated by chemokine induction. In addition, it was suggested that NO produced by several types of cells stimulated by TX-1877 in the tumor sites plays a major role in the anticancer effect of TX-1877. TX-1877 was thus shown to be an effective immunopotentiator as well as a hypoxic cell radiosensitizer.

Animals↗

S-1, an oral fluoropyrimidine anti-cancer agent, enhanced radiosensitivity in a human oral cancer cell line in vivo and in vitro: involvement possibility of inhibition of survival signal, Akt/PKB.

To examine the effect of an oral fluoropyrimidine anti-cancer agent (S-1) on the radiosensitivity of a human oral cancer cell line with focusing on inhibition of survival signal, Akt/PKB. A human oral cell cancer cell line B88 was used. Activation of Akt/PKB in vivo was examined by immunohistochemistry, and apoptotic cells were detected by TUNEL method. Activation of Akt/PKB in vitro was investigated by Western blot and ELISA, and apoptotic cells were detected by Hoechst 33258 staining. S-1 (10 mg/kg/day or 50 microg/ml) greatly enhanced radiosensitivity in B88 cells by suppressing the activation of Akt/PKB. Significant increase in the percentage of apoptotic cells was observed in S-1 treated B88 cells. Survival signals Akt/PKB may be involved in determining radiosensitivity. S-1, an oral fluoropyrimidine anti-cancer agent can exert the enhancing effect on radiation by suppressing the activation of Akt/PKB.

Animals↗

Biyouyanagin A, an anti-HIV agent from Hypericum chinense L. var. salicifolium.

[structure: see text] A structurally unique hydrophobic compound, biyouyanagin A, was isolated from the MeOH extract of the leaves of Hypericum chinense L. var. salicifolium. The structure of biyouyanagin A was elucidated on the basis of spectroscopic evidence. Biyouyanagin A showed a significant activity against HIV and inhibited cytokine production.

Anti-HIV Agents↗

Effect of YM529 on a model of mandibular invasion by oral squamous cell carcinoma in mice.

PURPOSE: This study examined the mechanisms of osteoclast-mediated bone invasion in a model of oral squamous cell carcinoma (OSCC). C3H/HeN mice were inoculated with SCC VII cells into the masseter region to establish an animal model of mandibular invasion by OSCC. EXPERIMENTAL DESIGN: The mice were divided into three groups: a control group, given daily s.c. injections of saline; group 1, given 2 microg per mouse per day of the bisphosphonate YM529; and group 2, given 10 microg per mouse per day of YM529. After 3 weeks of treatment, the lesions were studied by micro-computed tomography. After tartrate-resistant acid phosphatase (TRAP) staining, the osteoclasts were easily identified, and the percentages of the area occupied by osteoclasts were calculated by computer for each sample. The tumors were analyzed by RT-PCR to determine the mRNA expression of interleukin-6 (IL-6), parathyroid hormone-related protein (PTHrP), tumor necrosis factor-alpha (TNF-alpha), receptor activator of nuclear factor-kappaB (RANK), RANK ligand (RANKL), and osteoprotegerin. RESULTS: SCC VII cells rapidly multiplied in the masseter muscle of the mice. Bone invasion was evident only in the control group on micro-computed tomography. On TRAP-stained slices, the percentages of osteoclasts in groups 1 and 2 were significantly lower than that in the control group. The mRNA expressions of IL-6, PTHrP, THF-alpha, and RANK decreased as the concentration of YM529 increased. CONCLUSIONS: We conclude that various cancer-derived cytokines play important roles in the invasion of bone by OSCC. YM529, a third-generation bisphosphonate, can suppress osteoclast-mediated bone invasion by OSCC. The mechanism of this effect might involve inhibition of cytokines such as IL-6, PTHrP, TNF-alpha, and RANK by YM529.

Animals↗

Down-regulation of S-phase kinase associated protein 2 (Skp2) induces apoptosis in oral cancer cells.

S-phase kinase associated protein 2 (Skp2) is a member of an F-box family of substrate-recognition subunits of SCF ubiquitin-protein ligase complexes that has been implicated in the ubiquitin-mediated degradation of several key regulators of mammalian G1 progression, including the cyclin-dependent kinase inhibitor p27Kip1, a dosage-dependent tumor suppressor protein. The anti-sense effect was confirmed in two cell lines of oral cancer cells that also exhibited over-expression of the Skp2 protein. In this study, we examined the mechanism responsible for anti-sense-mediated growth inhibition of oral cancer cells in vitro and in vivo. Skp2-anti-sense treatment induced apoptosis characterized by an increase in the early apoptosis, fragmentation of nuclei and activation of caspase-3, -8 and -9. Moreover, the growth of xenograft tumors was markedly suppressed by Skp2-anti-sense treatment. Furthermore, histological specimen revealed apoptotic cell death was increased in Skp2-anti-sense treated tumors. Our results suggest that down-regulation of Skp2 appears to induce apoptosis in oral cancer cells, targeting this molecule could represent a promising new therapeutic approach for this type of cancer.

Animals↗