The prospects of automation in drug discovery research using silkworms
Author:
Affiliation:
1. Teikyo University Institute of Medical Mycology, Tokyo, Japan.
Publisher
International Research and Cooperation Association for Bio & Socio-Sciences Advancement (IRCA-BSSA)
Link
https://www.jstage.jst.go.jp/article/ddt/18/2/18_2024.01013/_pdf
Reference29 articles.
1. 1. Kaito C, Yoshikai H, Wakamatsu A, Miyashita A, Matsumoto Y, Fujiyuki T, Kato M, Ogura Y, Hayashi T, Isogai T, Sekimizu K. Non-pathogenic Escherichia coli acquires virulence by mutating a growth-essential LPS transporter. PLoS Pathog. 2020; 16:e1008469.
2. 2. Matsumoto Y, Ishii M, Hasegawa S, Sekimizu K. Enterococcus faecalis YM0831 suppresses sucrose-induced hyperglycemia in a silkworm model and in humans. Commun Biol. 2019; 2:157.
3. 3. Paudel A, Panthee S, Urai M, Hamamoto H, Ohwada T, Sekimizu K. Pharmacokinetic parameters explain the therapeutic activity of antimicrobial agents in a silkworm infection model. Sci Rep. 2018; 8:1578.
4. 4. Ishii M, Matsumoto Y, Yamada T, Abe S, Sekimizu K. An invertebrate infection model for evaluating anti-fungal agents against dermatophytosis. Sci Rep. 2017; 7:12289.
5. 5. Miyashita A, Takahashi S, Ishii K, Sekimizu K, Kaito C. Primed immune responses triggered by ingested bacteria lead to systemic infection tolerance in silkworms. PLoS One. 2015; 10:e0130486.
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