Curriculum Vitaes
Profile Information
- Affiliation
- professor, Faculty of Medical Sciences, Fujita Health University
- Degree
- 医学博士(群馬大学)
- Researcher number
- 00535651
- J-GLOBAL ID
- 201201071868339045
- researchmap Member ID
- 7000003002
Research Interests
1Research Areas
3Research History
10-
Apr, 2024 - Present
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Jul, 2021 - Present
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Jul, 2021 - Mar, 2024
Education
4-
- Mar, 2002
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- Mar, 1998
Committee Memberships
2Awards
9-
Oct, 2024
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Jun, 2022
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Dec, 2019
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Apr, 2016
Papers
108-
Microbiology and immunology, May 15, 2025Antibiotic-resistant bacteria have become a significant global threat to public health due to the increasing difficulty in treatment. These bacteria acquire resistance by incorporating various antibiotic resistance genes (ARGs) through specialized gene transfer mechanisms, allowing them to evade antibiotic attacks. Conjugation, transformation, and transduction are well-established mechanisms that drive the acquisition and dissemination of ARGs in Gram-negative bacteria. In particular, the horizontal transfer of plasmids carrying multiple ARGs is highly problematic, as it can instantly convert susceptible bacteria into multidrug-resistant ones. Transduction, mediated by bacteriophages that package ARG-containing chromosomal DNA from host cells, also plays a crucial role in ARG spread without requiring direct cell-to-cell contact. Recently, a novel horizontal gene transfer (HGT) mechanism involving outer membrane vesicles (OMVs) has been identified as a key player in ARG dissemination. OMVs-nanoscale, spherical structures produced by bacteria during growth-have been found to carry small plasmids and chromosomal DNA fragments containing ARGs from their host bacteria. This newly discovered transfer process, termed "vesiduction," enables intercellular DNA exchange and further contributes to the spread of antibiotic resistance. Additionally, mobile genetic elements such as transposons, insertion sequences, and site-specific recombination systems like integrons facilitate rearrangement of ARGs, including their translocation between chromosomes and plasmids. This review explores the molecular mechanisms underlying the HGT of ARGs, with a particular focus on clinically isolated antibiotic-resistant Gram-negative bacteria.
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Antimicrobial Agents and Chemotherapy, 68(4), Apr 3, 2024ABSTRACT Streptococcus mitis/oralis group isolates with reduced carbapenem susceptibility have been reported, but its isolation rate in Japan is unknown. We collected 356 clinical α-hemolytic streptococcal isolates and identified 142 of them as S. mitis/oralis using partial sodA sequencing. The rate of meropenem non-susceptibility was 17.6% (25/142). All 25 carbapenem-non-susceptible isolates harbored amino acid substitutions in/near the conserved motifs in PBP1A, PBP2B, and PBP2X. Carbapenem non-susceptibility is common among S. mitis/oralis group isolates in Japan.
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Microbiology Spectrum, Feb 5, 2024The number and type of metallo-β-lactamase (MΒL) are increasing over time. Carbapenem resistance conferred by MΒL is a significant threat to our antibiotic regimen, and the development of MΒL inhibitors is urgently required to restore carbapenem efficacy. Microbial natural products have served as important sources for developing antimicrobial agents targeting pathogenic bacteria since the discovery of antibiotics in the mid-20th century. MΒL inhibitors derived from microbial natural products are still rare compared to those derived from chemical compound libraries. Hydroxyhexylitaconic acids (HHIAs) produced by members of the genus Aspergillus have potent inhibitory activity against clinically relevant IMP-type MBL. HHIAs may be good lead compounds for the development of MBL inhibitors applicable for controlling carbapenem resistance in IMP-type MBL-producing Enterobacterales .
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Japanese Journal of Infectious Diseases, Jan 31, 2024
Misc.
151-
日本バイオフィルム学会学術集会プログラム・抄録集, 34回 49-49, Aug, 2020
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日本細菌学雑誌(Web), 75(1), 2020
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日本細菌学雑誌(Web), 75(1), 2020
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第47回 薬剤耐性菌研究会発表抄録集(2018年11月16日-11月17日:松本、長野), Nov, 2018
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首都圏支部・関甲信支部医学検査学会プログラム・講演抄録集, 55回 132-132, Oct, 2018
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日本細菌学雑誌, 73(1) 153-153, Feb, 2018
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第46回 薬剤耐性菌研究会発表抄録集(2017年11月10日-11月11日:水上、群馬), Nov, 2017
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第46回 薬剤耐性菌研究会発表抄録集(2017年11月10日-11月11日:水上、群馬), Nov, 2017
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日本細菌学雑誌, 72(1) 133-133, Feb, 2017
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第45回 薬剤耐性菌研究会発表抄録集(2016年10月21日-10月22日:宮島、広島), Oct, 2016
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化学療法の領域, 31(7) 1502-1508, Jun, 2015
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日本細菌学雑誌, 70(1) 184-184, Feb, 2015
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日本細菌学雑誌, 70(1) 204-204, Feb, 2015
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日本細菌学雑誌, 70(1) 202-202, Feb, 2015
Presentations
3Teaching Experience
12Professional Memberships
5Research Projects
16-
科学研究費助成事業, 日本学術振興会, Apr, 2024 - Mar, 2027
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公益財団法人 日東学術振興財団 第41回研究助成金, Jan, 2025
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研究奨励金, 公益信託臨床検査医学研究振興基金, Mar, 2023
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公益財団法人 大幸財団 自然科学系学術研究助成, Oct, 2022
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科学研究費助成事業 基盤研究(B), 日本学術振興会, Apr, 2021