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Shinichi Matsuyama

Publications and source records attributed to Shinichi Matsuyama.

5 recordsLinked to original sources

Survival of mitomycin C-treated pancreatic islet xenografts is mediated by increased expression of transforming growth factor-beta.

BACKGROUND: Mitomycin C (MMC) can trigger various intracellular signals. The authors previously showed that pretreatment of highly immunogenic crude pancreatic islets with MMC improved their survival in a rat-to-mouse transplantation model. The aim of this study was to investigate the role of transforming growth factor (TGF)-beta in mediating MMC-induced survival of islet xenografts. METHODS: : Collagenase-digested islets obtained from WS rats (RT1k) were incubated for 30 min with 10 microg/mL MMC and then transplanted into streptozotocin-induced diabetic C57BL/6 (H-2b) mice after 20 hr of culture at 37 degrees C. RESULTS: Survival of xenografts was enhanced by pretreatment of islets with MMC. MMC-treated xenografts showed a mild inflammatory cell response and significantly minimal infiltration of macrophages, CD4 T cells, and CD8 T cells compared with untreated grafts. TGF-beta mRNA was increased at 20 hr after MMC treatment, and TGF-beta protein expression was also increased compared with untreated islet xenografts. TGF-beta concentration in blebs formed around the xenografts (but not in the serum) was higher in animals that underwent transplantation with MMC-treated islets than with untreated islets. Simultaneous transplantation of MMC-treated and untreated islets separately in each kidney of recipient mice showed that protection was only found in MMC-treated islets. Treatment of islets before transplantation by neutralizing anti-TGF-beta antibody suppressed the MMC-protective effects on graft survival, whereas no such effect was noted with isotype-matched immunoglobulin. CONCLUSIONS: : The authors' results indicate that MMC treatment effectively reduces local inflammatory response and that such effects are mediated by increase of TGF-beta during the early period of islet transplantation.

Animals↗

Universality and flexibility in gene expression from bacteria to human.

Highly parallel experimental biology is offering opportunities to not just accomplish work more easily, but to explore for underlying governing principles. Recent analysis of the large-scale organization of gene expression has revealed its complex and dynamic nature. However, the underlying dynamics that generate complex gene expression and cellular organization are not yet understood. To comprehensively and quantitatively elucidate these underlying gene expression dynamics, we have analyzed genome-wide gene expression in many experimental conditions in Escherichia coli, Saccharomyces cerevisiae, Arabidopsis thaliana, Drosophila melanogaster, Mus musculus, and Homo sapiens. Here we demonstrate that the gene expression dynamics follows the same and surprisingly simple principle from E. coli to human, where gene expression changes are proportional to their expression levels, and show that this "proportional" dynamics or "rich-travel-more" mechanism can regenerate the observed complex and dynamic organization of the transcriptome. These findings provide a universal principle in the regulation of gene expression, show how complex and dynamic organization can emerge from simple underlying dynamics, and demonstrate the flexibility of transcription across a wide range of expression levels.

Animals↗

[Experimental study for a combination chemo-immunotherapy using dendritic cells].

This study was designed to seek for the optimal anticancer agents for a combination of chemotherapy and specific immunotherapy using dendritic cells (DC) in gastric cancer. We investigated the immuno-suppressive activity of anticancer agents on human peripheral blood mononuclear cells (PBMC), apoptosis inducing activity on gastric cancer cells and expression of Toll-like receptor (TLR)-4 mRNA on immatureDCs (iDCs) by paclitaxel (TXL) and docetaxel (TXT). We further compared the cytotoxicity of cytotixic T lymphocytes (CTLs) induced by DCs pulsed with tumor cell lysate and apoptotic cells induced by TXT. Although most of the anticancer agents demonstrated the suppression activity on proliferation of PBMC in a dose dependent manner, TXT, doxifluridine and irinotecan did not show the suppressive activity on PBMC even in the highest drug concentration. About 60% of gastric cancer cells demonstrated apoptosis after a 24-48 hour treatment with both TXL and TXT. Expression of TLR-4 mRNA in iDCs was up-regulated by TXT, not by TXL, and peaked at 2 hours after the treatment. CTLs induced by DCs pulsed with tumor cell lysate and apoptotic cells showed a similar killing activity to target cells. These results suggest that TXT appears to be an optimal anticancer agent for a combination therapy with chemotherapy and tumor specific immunotherapy using dendritic cells in gastric cancer.

Adult↗

Permanent acceptance of mitomycin C-treated islet allograft.

BACKGROUND: Mitomycin C (MMC) treatment produces genotoxic stress and exerts various biologic effects on cell function. This study determines the feasibility of MMC pretreatment of islet grafts as a sole immunomodulatory regimen to protect murine crude-digested islet allografts. METHODS: Collagenase-digested BALB/c (H-2d) islets were incubated for 30 min with MMC at different doses (0, 3.2, 10, 32, and 100 microg/mL; n=20, 15, 55, 15, 15, respectively), cultured for 20 hr, and transplanted into the renal subcapsular space of streptozotocin-induced diabetic C57BL/6 (B6; H-2b) mice. RESULTS: All mice that received MMC-treated islets showed restoration of normoglycemia within 5 days postgrafting, which was maintained until rejection. All untreated islets were acutely rejected with a mean survival time of 15.1+/-3.5 days. Significant prolongation of graft survival was noted in mice undergoing transplantation with islets treated with 10 microg/mL MMC compared with untreated islets (58.9+/-37.7 days, P<0.01). Notably, the grafts of 24 of 55 animals (43%) that received islets treated with 10 microg/mL MMC survived more than 100 days without any other treatment. Furthermore, antigen-specific prolongation of graft survival of secondary untreated islets was observed in mice bearing long-term functioning islet grafts. CONCLUSIONS: Our results indicate that pretreatment of islets with MMC alone protects the graft against rejection and produces long-term graft survival with normal blood glucose levels, and that pretreatment with MMC offers a new strategy for allogeneic islet transplantation.

Animals↗

Understanding the response of dendritic cells to activation by streptococcal preparation OK-432.

BACKGROUND: The streptococcal preparation OK-432 induces maturation of T cells and dendritic cells (DCs). However, the mechanisms by which OK-432 induces DC maturation are not well understood. MATERIALS AND METHODS: The effects of OK-432 and TNF-alpha on peripheral blood mononuclear cells (PBMCs) were compared. Antibody-based approaches were used to detect proteins characteristic of antigen-presenting cells and cytokines. Cytotoxicity was evaluated by measuring the release of LDH after incubation of effector and target cells. The TLR-4 levels were measured by real-time quantitative PCR. RESULTS: Changes in cell surface marker levels were detected in both treatment groups but OK-432 had a greater effect on induction of Th-1-type cytokines. Furthermore, TLR-4 mRNA was up-regulated in cells from two out of five patients in response to OK-432, but not in response to TNF-alpha. CONCLUSION: OK-432 has a more profound effect on human DCs than TNF-alpha and may act through multiple signaling pathways.

Adult↗