研究者
J-GLOBAL ID:201801004389105353
更新日: 2026年01月08日
マーニ クエノ
Cueno Marni
所属機関・部署:
その他の所属(所属・部署名・職名) (1件):
研究キーワード (14件):
Infectious Disease
, AI
, Machine Learning
, Brain
, Microbiology
, Data Analytics
, Imaging Analytics
, Protein Structure
, Network Analysis
, Oral disease
, Influenza
, Immunology
, Vaccines
, Ageing
競争的資金等の研究課題 (5件):
- 2022 - 2025 高齢者における安全で 特異免疫誘導効果の高い歯肉経由免疫法の開発
- 2019 - 2022 高齢者における歯肉溝経由ワクチンの有効性とその実際
- 2016 - 2019 高齢者における歯肉溝経由ワクチン接種法の開発とその応用
- 2014 - 2016 Gel-encapsulated influenza vaccine for the elderly
- 2012 - 2014 Intraoral influenza vaccine targeting hemagglutinin glycosylation
論文 (50件):
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Marni E. Cueno, Haruka Tamura, Felix Sugiyama, Kenichi Imai. Machine learning-based insights on the structural variations found in the C-terminal domains of differing human papillomavirus E6 and E7 protein models across geography, variants, and risk type. In Silico Research in Biomedicine. 2026. 100176-100176
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Hideki Nishiura, Muneaki Tamura, Rieko Matsuike, Marni E. Cueno, Tomoka Ito, Yasuhiro Namura, Toshimitsu Iinuma, Kenichi Imai. Allyl isothiocyanate suppresses the growth and pathogenicity of Candida albicans. Cell Stress and Chaperones. 2025. 30. 6. 100125-100125
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Marni E. Cueno, Kenichi Imai. Structural insights on the differentiation and reversion of conformational changes in SARS-CoV-2 spike protein models across variants occurring from December, 2019 to November, 2021. ImmunoInformatics. 2025. 19. 100055-100055
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Marni E. Cueno, Noa Shintaku, Noe Hayasaki, Yuna Migita, Kenichi Imai. Network modeling of the different SARS-CoV-2 spike protein infection points within the human hematopoietic network. Journal of Theoretical Biology. 2025. 609. 112139-112139
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Noriaki Kamio, Marni E. Cueno, Asako Takagi, Kenichi Imai. Porphyromonas gingivalis gingipain potentially activates influenza A virus infectivity through proteolytic cleavage of viral hemagglutinin. Journal of Biological Chemistry. 2025. 108166-108166
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書籍 (1件):
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腸内細菌・口腔細菌と全身疾患 (バイオテクノロジー)
シーエムシー 2015 ISBN:4781311393
講演・口頭発表等 (8件):
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Extracellular HIV-1 TAT (ExTat) regulates bacterial superoxide dismutase (SOD) allowing upregulation of reactive oxygen species (ROS) in Porphyromonas gingivalis
(17th ISG (International Society of Gnotobiology)/ 34th Congress of the Society for Microbial Ecology and Disease (SOMED) 2011)
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Human immunodeficiency virus-1 Tat induces oxidative stress in tomato plants
(International Union of Microbiological Societies 2011 2011)
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Differential expression of cytokinin oxidase: a plant response to the environment
(International Symposium on Biodiversity Sciences 2010 2010)
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Plant-based approach towards understanding the influenza A virus antigenic drift
(OzBio 2010 2010)
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Comparative study of HIV-1 Tat transiently and transgenically expressed in tomato
(OzBio 2010 2010)
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学位 (1件):
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