2025/07/12 更新

写真a

タムラ ヒカル
田村 光
TAMURA Hikaru
所属
教育研究院 医歯学系 歯学系列 助教
医歯学総合研究科 口腔生命科学専攻 摂食環境制御学 助教
職名
助教
外部リンク

学位

  • 博士(歯学) ( 2021年3月   新潟大学 )

研究分野

  • ライフサイエンス / 保存治療系歯学

経歴(researchmap)

  • 新潟大学   大学院医歯学総合研究科 歯周診断・再建学分野   助教

    2025年4月 - 現在

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  • Tufts University School of Medicine   Immunology   日本学術振興会 海外特別研究員

    2022年4月 - 2025年4月

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  • 新潟大学   大学院医歯学総合研究科   学振特別研究員 PD

    2021年4月 - 2022年4月

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  • 新潟大学   大学院医歯学総合研究科   大学院生、学振特別研究員 DC2

    2020年4月 - 2021年4月

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経歴

  • 新潟大学   医歯学総合研究科 口腔生命科学専攻 摂食環境制御学   助教

    2025年4月 - 現在

  • 新潟大学   教育研究院 医歯学系 歯学系列   助教

    2025年4月 - 現在

学歴

  • 新潟大学   Graduate School of Medical and Dental Sciences

    2017年4月 - 2021年3月

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  • 新潟大学   Faculty of Dentistry   School of Dentistry

    2010年4月 - 2016年3月

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所属学協会

 

論文

  • A novel macrolide–Del-1 axis to regenerate bone in old age 査読

    Kridtapat Sirisereephap, Hikaru Tamura, Jong-Hyung Lim, Meircurius Dwi Condro Surboyo, Toshihito Isono, Takumi Hiyoshi, Andrea L. Rosenkranz, Yurie Sato-Yamada, Hisanori Domon, Akari Ikeda, Tomoyasu Hirose, Toshiaki Sunazuka, Nagako Yoshiba, Hiroyuki Okada, Yutaka Terao, Takeyasu Maeda, Koichi Tabeta, Triantafyllos Chavakis, George Hajishengallis, Tomoki Maekawa

    iScience   27 ( 2 )   108798 - 108798   2024年2月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Elsevier BV  

    DOI: 10.1016/j.isci.2024.108798

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  • Degradation of EGFR on lung epithelial cells by neutrophil elastase contributes to the aggravation of pneumococcal pneumonia

    Toshihito Isono, Satoru Hirayama, Hisanori Domon, Tomoki Maekawa, Hikaru Tamura, Takumi Hiyoshi, Kridtapat Sirisereephap, Shoji Takenaka, Yuichiro Noiri, Yutaka Terao

    Journal of Biological Chemistry   104760 - 104760   2023年4月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Elsevier BV  

    DOI: 10.1016/j.jbc.2023.104760

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  • Ozone ultrafine bubble water exhibits bactericidal activity against pathogenic bacteria in the oral cavity and upper airway and disinfects contaminated healthcare equipment. 査読 国際誌

    Takizawa F, Domon H, Hiyoshi T, Tamura H, Shimizu K, Maekawa T, Tabeta K, Ushida A, Terao Y

    PLOS ONE   18 ( 4 )   e0284115   2023年4月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    DOI: 10.1371/journal.pone.0284115

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  • Erythromycin restores osteoblast differentiation and osteogenesis suppressed by Porphyromonas gingivalis lipopolysaccharide. 査読

    Tamura H, Maekawa T, Domon H, Sirisereephap K, Isono T, Hirayama S, Hiyoshi T, Sasagawa K, Takizawa F, Maeda T, Terao Y, Tabeta K

    Pharmaceuticals   16 ( 2 )   303   2023年2月

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    担当区分:筆頭著者   記述言語:英語  

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  • Triosephosphate isomerase of Streptococcus pneumoniae is released extracellularly by autolysis and binds to host plasminogen to promote its activation. 国際誌

    Satoru Hirayama, Hisanori Domon, Takumi Hiyoshi, Toshihito Isono, Hikaru Tamura, Karin Sasagawa, Fumio Takizawa, Yutaka Terao

    FEBS open bio   12 ( 6 )   1206 - 1219   2022年6月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Recruitment of plasminogen is an important infection strategy of the human pathogen Streptococcus pneumoniae to invade host tissues. In Streptococcus aureus, triosephosphate isomerase (TPI) has been reported to bind plasminogen. In this study, the TPI of S. pneumoniae (TpiA) was identified through proteomic analysis of bronchoalveolar lavage fluid from a murine pneumococcal pneumonia model. The binding kinetics of recombinant pneumococcal TpiA with plasminogen were characterized using surface plasmon resonance (SPR, Biacore), ligand blot analyses, and enzyme-linked immunosorbent assay. Enhanced plasminogen activation and subsequent degradation by plasmin were also shown. Release of TpiA into the culture medium was observed to be dependent on autolysin. These findings suggest that S. pneumoniae releases TpiA via autolysis, which then binds to plasminogen and promotes its activation, thereby contributing to tissue invasion via degradation of the extracellular matrix.

    DOI: 10.1002/2211-5463.13396

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  • Neutrophil elastase aggravates periodontitis by disrupting gingival epithelial barrier via cleaving cell adhesion molecules. 国際誌

    Takumi Hiyoshi, Hisanori Domon, Tomoki Maekawa, Hikaru Tamura, Toshihito Isono, Satoru Hirayama, Karin Sasagawa, Fumio Takizawa, Koichi Tabeta, Yutaka Terao

    Scientific reports   12 ( 1 )   8159 - 8159   2022年5月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Neutrophil elastase (NE) functions as a host defense factor; however, excessive NE activity can potentially destroy human tissues. Although NE activity is positively correlated to gingival crevicular fluid and clinical attachment loss in periodontitis, the underlying mechanisms by which NE aggravates periodontitis remain elusive. In this study, we investigated how NE induces periodontitis severity and whether NE inhibitors were efficacious in periodontitis treatment. In a ligature-induced murine model of periodontitis, neutrophil recruitment, NE activity, and periodontal bone loss were increased in the periodontal tissue. Local administration of an NE inhibitor significantly decreased NE activity in periodontal tissue and attenuated periodontal bone loss. Furthermore, the transcription of proinflammatory cytokines in the gingiva, which was significantly upregulated in the model of periodontitis, was significantly downregulated by NE inhibitor injection. An in vitro study demonstrated that NE cleaved cell adhesion molecules, such as desmoglein 1, occludin, and E-cadherin, and induced exfoliation of the epithelial keratinous layer in three-dimensional human oral epithelial tissue models. The permeability of fluorescein-5-isothiocyanate-dextran or periodontal pathogen was significantly increased by NE treatment in the human gingival epithelial monolayer. These findings suggest that NE induces the disruption of the gingival epithelial barrier and bacterial invasion in periodontal tissues, aggravating periodontitis.

    DOI: 10.1038/s41598-022-12358-3

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  • Osteoimmunology in Periodontitis: Local Proteins and Compounds to Alleviate Periodontitis

    Kridtapat Sirisereephap, Tomoki Maekawa, Hikaru Tamura, Takumi Hiyoshi, Hisanori Domon, Toshihito Isono, Yutaka Terao, Takeyasu Maeda, Koichi Tabeta

    International Journal of Molecular Sciences   23 ( 10 )   5540 - 5540   2022年5月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:MDPI AG  

    Periodontitis is one of the most common oral diseases resulting in gingival inflammation and tooth loss. Growing evidence indicates that it results from dysbiosis of the oral microbiome, which interferes with the host immune system, leading to bone destruction. Immune cells activate periodontal ligament cells to express the receptor activator of nuclear factor kappa-B (NF-κB) ligand (RANKL) and promote osteoclast activity. Osteocytes have active roles in periodontitis progression in the bone matrix. Local proteins are involved in bone regeneration through functional immunological plasticity. Here, we discuss the current knowledge of cellular and molecular mechanisms in periodontitis, the roles of local proteins, and promising synthetic compounds generating a periodontal regeneration effect. It is anticipated that this may lead to a better perception of periodontitis pathophysiology.

    DOI: 10.3390/ijms23105540

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  • Matcha green tea exhibits bactericidal activity against <i>Streptococcus pneumoniae</i> and inhibits functional pneumolysin. 査読

    Sasagawa K, Domon H, Sakagami R, Hirayama S, Maekawa T, Isono T, Hiyoshi T, Tamura H, Takizawa F, Fukushima Y, Tabeta K, Terao Y

    Antibiotics 10(12) 1550   2021年12月

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  • Clarithromycin Inhibits Pneumolysin Production via Downregulation of ply Gene Transcription despite Autolysis Activation. 国際誌

    Hisanori Domon, Toshihito Isono, Takumi Hiyoshi, Hikaru Tamura, Karin Sasagawa, Tomoki Maekawa, Satoru Hirayama, Katsunori Yanagihara, Yutaka Terao

    Microbiology spectrum   e0031821   2021年9月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Streptococcus pneumoniae, the most common cause of community-acquired pneumonia, causes severe invasive infections, including meningitis and bacteremia. The widespread use of macrolides has been reported to increase the prevalence of macrolide-resistant S. pneumoniae (MRSP), thereby leading to treatment failure in patients with pneumococcal pneumonia. However, previous studies have demonstrated that several macrolides and lincosamides have beneficial effects on MRSP infection since they inhibit the production and release of pneumolysin, a pneumococcal pore-forming toxin released during autolysis. In this regard, we previously demonstrated that the mechanisms underlying the inhibition of pneumolysin release by erythromycin involved both the transcriptional downregulation of the gene encoding pneumolysin and the impairment of autolysis in MRSP. Here, using a cell supernatant of the culture, we have shown that clarithromycin inhibits pneumolysin release in MRSP. However, contrary to previous observations in erythromycin-treated MRSP, clarithromycin upregulated the transcription of the pneumococcal autolysis-related lytA gene and enhanced autolysis, leading to the leakage of pneumococcal DNA. On the other hand, compared to erythromycin, clarithromycin significantly downregulated the gene encoding pneumolysin. In a mouse model of MRSP pneumonia, the administration of both clarithromycin and erythromycin significantly decreased the pneumolysin protein level in bronchoalveolar lavage fluid and improved lung injury and arterial oxygen saturation without affecting bacterial load. Collectively, these in vitro and in vivo data reinforce the benefits of macrolides on the clinical outcomes of patients with pneumococcal pneumonia. IMPORTANCE Pneumolysin is a potent intracellular toxin possessing multiple functions that augment pneumococcal virulence. For over 10 years, sub-MICs of macrolides, including clarithromycin, have been recognized to decrease pneumolysin production and release from pneumococcal cells. However, this study indicates that macrolides significantly slowed pneumococcal growth, which may be related to decreased pneumolysin release recorded by previous studies. In this study, we demonstrated that clarithromycin decreases pneumolysin production through downregulation of ply gene transcription, regardless of its inhibitory activity against bacterial growth. Additionally, administration of clarithromycin resulted in the amelioration of lung injury in a mouse model of pneumonia induced by macrolide-resistant pneumococci. Therefore, therapeutic targeting of pneumolysin offers a good strategy to treat pneumococcal pneumonia.

    DOI: 10.1128/Spectrum.00318-21

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  • Effects of erythromycin on osteoclasts and bone resorption via DEL-1 induction in mice 査読

    Tamura H, Maekawa T, Domon H, Hiyoshi T, Hirayama S, Isono T, Sasagawa K, Yonezawa D, Takahashi N, Oda M, Maeda T, Tabeta K, Terao Y

    Antibiotics   10 ( 312 )   2021年3月

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    担当区分:筆頭著者   記述言語:英語   掲載種別:研究論文(学術雑誌)  

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  • Treatment of severe pneumonia by hinokitiol in a murine antimicrobial-resistant pneumococcal pneumonia model 査読

    Isono T, Domon H, Nagai K, Maekawa T, Tamura H, Hiyoshi T, Yanagihara K, Kunitomo E, Takenaka S, Noiri Y, Terao Y

    15 ( 10 )   e0240329   2020年9月

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  • Animal model of periodontitis — Analysis of experimental ligature-induced periodontitis model in mice —. 招待 査読

    Tamura H, Maekawa T, Hiyoshi T, Terao Y

    Methods in Molecular Biology (published by Springer Nature)   2020年8月

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    担当区分:筆頭著者  

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  • Erythromycin inhibits neutrophilic inflammation and mucosal disease by upregulating DEL-1. 査読 国際誌

    Tomoki Maekawa, Hikaru Tamura, Hisanori Domon, Takumi Hiyoshi, Toshihito Isono, Daisuke Yonezawa, Naoki Hayashi, Naoki Takahashi, Koichi Tabeta, Takeyasu Maeda, Masataka Oda, Athanasios Ziogas, Vasileia Ι Alexaki, Triantafyllos Chavakis, Yutaka Terao, George Hajishengallis

    JCI insight   5 ( 15 )   2020年6月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Macrolide antibiotics exert anti-inflammatory effects; however, little is known regarding their immunomodulatory mechanisms. In this study, using two distinct mouse models of mucosal inflammatory disease (LPS-induced acute lung injury and ligature-induced periodontitis), we demonstrated that the anti-inflammatory action of erythromycin (ERM) is mediated through upregulation of the secreted homeostatic protein DEL-1. Consistent with the anti-neutrophil recruitment action of endothelial cell-derived DEL-1, ERM inhibited neutrophil infiltration in the lungs and the periodontium in a DEL-1-dependent manner. Whereas ERM (but not other antibiotics such as josamycin and penicillin) protected against lethal pulmonary inflammation and inflammatory periodontal bone loss, these protective effects of ERM were abolished in Del1-deficient mice. By interacting with the growth hormone secretagogue receptor (GHSR) and activating JAK2 in human lung microvascular endothelial cells, ERM induced C/EBPβ-dependent DEL-1 transcription, which was mediated by MAPK p38. Moreover, ERM reversed IL-17-induced inhibition of DEL-1 transcription, in a manner that was not only dependent on JAK2 but also on PI3K/AKT signaling. As DEL-1 levels are severely reduced in inflammatory conditions and with aging, the ability of ERM to upregulate DEL-1 may be a novel approach for the treatment of inflammatory and aging-related diseases.

    DOI: 10.1172/jci.insight.136706

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  • Antibacterial activity of hinokitiol against both antibiotic-resistant and -susceptible pathogenic bacteria predominant in the oral cavity and upper airways. 査読

    Domon H, Hiyoshi T, Maekawa T, Yonezawa D, Tamura H, Kawabata S, Yanagihara K, Kimura O, Kunitomo E, Terao Y

    Microbiology and immunology   2019年5月

  • Aggregatibacter actinomycetemcomitans induces detachment and death of human gingival epithelial cells and fibroblasts via elastase release following leukotoxin-dependent neutrophil lysis. 査読 国際誌

    Takumi Hiyoshi, Hisanori Domon, Tomoki Maekawa, Kosuke Nagai, Hikaru Tamura, Naoki Takahashi, Daisuke Yonezawa, Tomohiro Miyoshi, Akihiro Yoshida, Koichi Tabeta, Yutaka Terao

    Microbiology and immunology   63 ( 3-4 )   100 - 110   2019年3月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Aggregatibacter actinomycetemcomitans is considered to be associated with periodontitis. Leukotoxin (LtxA), which destroys leukocytes in humans, is one of this bacterium's major virulence factors. Amounts of neutrophil elastase (NE), which is normally localized in the cytoplasm of neutrophils, are reportedly increased in the saliva of patients with periodontitis. However, the mechanism by which NE is released from human neutrophils and the role of NE in periodontitis is unclear. In the present study, it was hypothesized that LtxA induces NE release from human neutrophils, which subsequently causes the breakdown of periodontal tissues. LtxA-treatment did not induce significant cytotoxicity against human gingival epithelial cells (HGECs) or human gingival fibroblasts (HGFs). However, it did induce significant cytotoxicity against human neutrophils, leading to NE release. Furthermore, NE and the supernatant from LtxA-treated human neutrophils induced detachment and death of HGECs and HGFs, these effects being inhibited by administration of an NE inhibitor, sivelestat. The present results suggest that LtxA mediates human neutrophil lysis and induces the subsequent release of NE, which eventually results in detachment and death of HGECs and HGFs. Thus, LtxA-induced release of NE could cause breakdown of periodontal tissue and thereby exacerbate periodontitis.

    DOI: 10.1111/1348-0421.12672

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  • Peptides from rice endosperm protein restrain periodontal bone loss in mouse model of periodontitis. 査読 国際誌

    Hikaru Tamura, Tomoki Maekawa, Hisanori Domon, Takumi Hiyoshi, Daisuke Yonezawa, Kosuke Nagai, Akihito Ochiai, Masayuki Taniguchi, Koichi Tabeta, Takeyasu Maeda, Yutaka Terao

    Archives of oral biology   98   132 - 139   2019年2月

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    担当区分:筆頭著者   記述言語:英語   掲載種別:研究論文(学術雑誌)  

    OBJECTIVE: Food-derived peptides have been reported to exhibit antibacterial activity against periodontal pathogenic bacteria. However, no effect has been shown on inflammation and bone resorption in periodontal pathology. The overall objective of the current study was to investigate how rice peptides influence biological defense mechanisms against periodontitis-induced inflammatory bone loss, and identify their novel functions as a potential anti-inflammatory drug. DESIGN: The expression of inflammatory and osteoclast-related molecules was examined in mouse macrophage-derived RAW 264.7 cell cultures using qPCR. Subsequently, the effect of these peptides on inflammatory bone loss in mouse periodontitis was examined using a mouse model of tooth ligation. Briefly, periodontal bone loss was induced for 7 days in mice by ligating the maxillary second molar and leaving the contralateral tooth un-ligated (baseline control). The mice were microinjected daily with the peptide in the gingiva until the day before euthanization. One week after the ligation, TRAP-positive multinucleated cells (MNCs) were enumerated from five random coronal sections of the ligated sites in each mouse. RESULTS: Rice peptides REP9 and REP11 significantly inhibited transcription activity of inflammatory and osteoclast-related molecules. Local treatment with the rice peptides, in mice subjected to ligature-induced periodontitis, inhibited inflammatory bone loss, explaining the decreased numbers of osteoclasts in bone tissue sections. CONCLUSION: Therefore, these data suggested that the rice peptides possess a protective effect against periodontitis.

    DOI: 10.1016/j.archoralbio.2018.11.021

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  • Immunization with pneumococcal elongation factor Tu enhances serotype-independent protection against Streptococcus pneumoniae infection. 査読 国際誌

    Kosuke Nagai, Hisanori Domon, Tomoki Maekawa, Takumi Hiyoshi, Hikaru Tamura, Daisuke Yonezawa, Rie Habuka, Akihiko Saitoh, Yutaka Terao

    Vaccine   37 ( 1 )   160 - 168   2019年1月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Vaccination is an effective strategy to prevent pneumococcal diseases. Currently, licensed vaccines include the pneumococcal polysaccharide vaccine (PPSV) and the pneumococcal conjugate vaccine (PCV), which target some of the most common of the 94 serotypes of S. pneumoniae based on their capsular composition. However, it has been reported that PPSV is not effective in children aged less than 2 years old and PCV induces serotype replacement, which means that the pneumococcal population has changed following widespread introduction of these vaccines, and the non-vaccine serotypes have increased in being the cause of invasive pneumococcal disease. Therefore, it is important that there is development of novel pneumococcal vaccines to either replace or complement current polysaccharide-based vaccines. Our previous study suggested that S. pneumoniae releases elongation factor Tu (EF-Tu) through autolysis followed by the induction of proinflammatory cytokines in macrophages via toll-like receptor 4, that may contribute to the development of pneumococcal diseases. In this study, we investigated the expression of EF-Tu in various S. pneumoniae strains and whether EF-Tu could be an antigen candidate for serotype-independent vaccine against pneumococcal infection. Western blotting and flow cytometry analysis revealed that EF-Tu is a common factor expressed on the surface of all pneumococcal strains tested, as well as intracellularly. In addition, we demonstrate that immunization with recombinant (r) EF-Tu induced the production of inflammatory cytokines and the IgG1 and IgG2a antibodies in mice, and increased the CD4+ T-cells proportion in splenocytes. We also reveal that anti-EF-Tu serum increased the phagocytic activity of mouse peritoneal macrophages against S. pneumoniae infection, independent of their serotypes. Finally, our results indicate that mice immunized with rEF-Tu were significantly and non-specifically protected against lethal challenges with S. pneumoniae serotypes (2 and 15A). Therefore, pneumococcal EF-Tu could be an antigen candidate for the serotype-independent vaccine against pneumococcal infection.

    DOI: 10.1016/j.vaccine.2018.11.015

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  • Pneumococcal DNA-binding proteins released through autolysis induce the production of proinflammatory cytokines via toll-like receptor 4. 査読 国際誌

    Kosuke Nagai, Hisanori Domon, Tomoki Maekawa, Masataka Oda, Takumi Hiyoshi, Hikaru Tamura, Daisuke Yonezawa, Yoshiaki Arai, Mai Yokoji, Koichi Tabeta, Rie Habuka, Akihiko Saitoh, Masaya Yamaguchi, Shigetada Kawabata, Yutaka Terao

    Cellular immunology   325   14 - 22   2018年3月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Streptococcus pneumoniae is a leading cause of bacterial pneumonia. Our previous study suggested that S. pneumoniae autolysis-dependently releases intracellular pneumolysin, which subsequently leads to lung injury. In this study, we hypothesized that pneumococcal autolysis induces the leakage of additional intracellular molecules that could increase the pathogenicity of S. pneumoniae. Liquid chromatography tandem-mass spectrometry analysis identified that chaperone protein DnaK, elongation factor Tu (EF-Tu), and glyceraldehyde-3-phosphate dehydrogenase (GAPDH) were released with pneumococcal DNA by autolysis. We demonstrated that recombinant (r) DnaK, rEF-Tu, and rGAPDH induced significantly higher levels of interleukin-6 and tumor necrosis factor production in peritoneal macrophages and THP-1-derived macrophage-like cells via toll-like receptor 4. Furthermore, the DNA-binding activity of these proteins was confirmed by surface plasmon resonance assay. We demonstrated that pneumococcal DnaK, EF-Tu, and GAPDH induced the production of proinflammatory cytokines in macrophages, and might cause host tissue damage and affect the development of pneumococcal diseases.

    DOI: 10.1016/j.cellimm.2018.01.006

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  • Neutrophil Elastase Subverts the Immune Response by Cleaving Toll-Like Receptors and Cytokines in Pneumococcal Pneumonia. 査読 国際誌

    Hisanori Domon, Kosuke Nagai, Tomoki Maekawa, Masataka Oda, Daisuke Yonezawa, Wataru Takeda, Takumi Hiyoshi, Hikaru Tamura, Masaya Yamaguchi, Shigetada Kawabata, Yutaka Terao

    Frontiers in immunology   9   732 - 732   2018年

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    記述言語:英語  

    Excessive activation of neutrophils results in the release of neutrophil elastase (NE), which leads to lung injury in severe pneumonia. Previously, we demonstrated a novel immune subversion mechanism involving microbial exploitation of this NE ability, which eventually promotes disruption of the pulmonary epithelial barrier. In the present study, we investigated the effect of NE on host innate immune response. THP-1-derived macrophages were stimulated with heat-killed Streptococcus pneumoniae or lipopolysaccharide in the presence or absence of NE followed by analysis of toll-like receptor (TLR) and cytokine expression. Additionally, the biological significance of NE was confirmed in an in vivo mouse intratracheal infection model. NE downregulated the gene transcription of multiple cytokines in THP-1-derived macrophages through the cleavage of TLRs and myeloid differentiation factor 2. Additionally, NE cleaved inflammatory cytokines and chemokines. In a mouse model of intratracheal pneumococcal challenge, administration of an NE inhibitor significantly increased proinflammatory cytokine levels in bronchoalveolar lavage fluid, enhanced bacterial clearance, and improved survival rates. Our work indicates that NE subverts the innate immune response and that inhibition of this enzyme may constitute a novel therapeutic option for the treatment of pneumococcal pneumonia.

    DOI: 10.3389/fimmu.2018.00732

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▶ 全件表示

MISC

  • 高齢者に対する歯肉剥離掻爬術の有効性についての後ろ向き研究

    保苅 崇大, 野中 由香莉, 松川 由実, 佐藤 圭祐, 原 実生, 竹内 麻衣, 高見澤 圭, 山崎 恭子, 都野 隆博, 田村 光, 日吉 巧, 目黒 史也, 干川 絵美, 松岸 葵, 金子 千尋, 峯尾 修平, 山下 萌, 多部田 康一

    日本歯周病学会会誌   65 ( 春季特別 )   134 - 134   2023年4月

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    記述言語:日本語   出版者・発行元:(NPO)日本歯周病学会  

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  • 歯肉上皮細胞における抗酸化ストレス応答を活性化させる食物由来ペプチドの探索

    峯尾 修平, 高橋 直紀, 都野 隆博, 野中 由香莉, 田村 光, 多部田 康一

    特定非営利活動法人日本歯科保存学会学術大会プログラムおよび講演抄録集   152回   144 - 144   2020年6月

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    記述言語:日本語   出版者・発行元:(NPO)日本歯科保存学会  

    J-GLOBAL

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  • 米由来ペプチドによる炎症制御機構の検索と歯周病治療への応用研究

    田村 光, 前川 知樹, 土門 久哲, 日吉 巧, 米澤 大輔, 前田 健康, 多部田 康一, 寺尾 豊

    新潟歯学会雑誌   49 ( 2 )   82 - 82   2019年12月

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    記述言語:日本語   出版者・発行元:新潟歯学会  

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  • 令和元年度 新潟大学国際会議研究発表支援事業 採択

    田村 光

    2019年9月

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  • 令和元年度 新潟大学論文投稿支援事業 採択

    田村 光

    2019年9月

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  • エリスロマイシンのDel-1再誘導による炎症性骨吸収抑制効果の検証

    田村 光, 前川 知樹, 土門 久哲, 日吉 巧, 米澤 大輔, 永井 康介, 前田 健康, 寺尾 豊, 多部田 康一

    日本歯周病学会会誌   61 ( 春季特別 )   126 - 126   2019年5月

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    記述言語:日本語   出版者・発行元:(NPO)日本歯周病学会  

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  • 新聞報道 「もっと知りたい あの記事あの人」

    田村 光

    新潟日報モア おとなプラス   2019年3月

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  • 新聞報道 「米成分が歯周病抑制 安全な薬開発も」

    田村 光

    日本農業新聞   2019年2月

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  • 新聞報道 「コメ成分 歯周病を抑制」

    田村 光

    新潟日報   2019年1月

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  • 新聞報道 「コメ成分に歯周病の抑制効果」

    田村 光

    日本経済新聞   2018年11月

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  • 肺炎球菌性肺炎の病態発症メカニズムの解析と新規肺炎予防法への展開

    永井 康介, 土門 久哲, 前川 知樹, 日吉 巧, 田村 光, 米澤 大輔, 荒井 良明, 横地 麻衣, 多部田 康一, 寺尾 豊

    新潟歯学会雑誌   48 ( 1 )   57 - 58   2018年6月

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    記述言語:日本語   出版者・発行元:新潟歯学会  

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  • 食物由来ペプチドを用いた炎症と骨吸収の制御法の検索

    田村光, 田村光, 田村光, 前川知樹, 前川知樹, 米澤大輔, 土門久哲, 土門久哲, 永井康介, 日吉巧, 日吉巧, 多部田康一, 多部田康一, 前田健康, 寺尾豊, 寺尾豊, 吉江弘正

    日本歯周病学会会誌(Web)   60   125   2018年5月

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    記述言語:日本語  

    J-GLOBAL

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  • 食物由来ペプチドを用いた炎症と骨吸収の制御法の検索

    田村 光, 前川 知樹, 米澤 大輔, 土門 久哲, 永井 康介, 日吉 巧, 多部田 康一, 前田 健康, 寺尾 豊, 吉江 弘正

    日本歯周病学会会誌   60 ( 春季特別 )   125 - 125   2018年5月

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    記述言語:日本語   出版者・発行元:(NPO)日本歯周病学会  

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  • Aggregatibacter actinomycetemcomitansによる歯周組織破壊メカニズムの解析

    日吉 巧, 土門 久哲, 永井 康介, 前川 知樹, 高橋 直紀, 米澤 大輔, 田村 光, 吉田 明弘, 寺尾 豊, 吉江 弘正

    日本歯周病学会会誌   60 ( 春季特別 )   128 - 128   2018年5月

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    記述言語:日本語   出版者・発行元:(NPO)日本歯周病学会  

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講演・口頭発表等

  • エリスロマイシンによるDEL-1誘導を介した破骨細胞の制御

    田村 光, 前川知樹, 土門久哲, 日吉 巧, 磯野俊仁, 米澤大輔, 前田健康, 寺尾 豊, 多部田康一

    第63回秋季歯周病学会学術大会 SUNSTAR Young Investigator Award 口演  2020年10月 

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    開催年月日: 2020年10月 - 2020年11月

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  • エリスロマイシンによるDel-1誘導を介した骨代謝の制御

    田村 光, 前川知樹, 土門久哲, 日吉 巧, 前田 健康, 寺尾 豊

    第62回歯科基礎医学会学術大会  2020年9月 

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    開催年月日: 2020年9月 - 2020年10月

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  • エリスロマイシンのDel-1誘導による骨免疫制御作用の解析

    田村 光, 土門久哲, 日吉 巧, 前田 健康, 多部田康一, 寺尾 豊, 前川知樹

    第6回日本骨免疫学会  2021年7月 

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  • 学振特別研究員申請勉強会 ゲスト講師

    田村 光

    2021年3月 

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  • エリスロマイシンのDel-1誘導による炎症性骨吸収抑制効果の検証

    田村 光

    第62回春季歯周病学会学術大会  2019年5月 

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  • 炎症および骨吸収の制御作用を有する新規食物由来ペプチドの検索

    田村 光

    第60回歯科基礎医学会学術大会  2018年9月 

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  • 食物由来ペプチドを用いた炎症と骨吸収の制御法の検索

    田村 光

    第61回春季日本歯周病学会学術大会  2018年6月 

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  • 食物由来ペプチドを用いた炎症と骨吸収制御機構の検索

    田村 光

    第5回五大学・口腔微生物研究会  2017年9月 

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受賞

  • 優秀演題賞

    2021年6月   日本骨免疫学会  

    田村 光

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  • Young Investigator Award

    2021年5月   日本歯周病学会  

    田村 光

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  • 新潟歯学会学術賞(奨励賞)

    2020年2月  

    田村 光

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