Suzuki, K.; Inoue, K.; Namiguchi, R.; Morita, S.; Hayakawa, S.; Yokota, M.; Sakai, K.; Matsumoto, K.; Aoki, S.
Identification of Novel Compounds That Bind to the HGF β-Chain In Silico, Verification by Molecular Mechanics and Quantum Mechanics, and Validation of Their HGF Inhibitory Activity In Vitro. Molecules 2025, 30, 1801.
https://doi.org/10.3390/molecules30081801
AMA Style
Suzuki K, Inoue K, Namiguchi R, Morita S, Hayakawa S, Yokota M, Sakai K, Matsumoto K, Aoki S.
Identification of Novel Compounds That Bind to the HGF β-Chain In Silico, Verification by Molecular Mechanics and Quantum Mechanics, and Validation of Their HGF Inhibitory Activity In Vitro. Molecules. 2025; 30(8):1801.
https://doi.org/10.3390/molecules30081801
Chicago/Turabian Style
Suzuki, Ko, Keitaro Inoue, Ryota Namiguchi, Seiya Morita, Suzuho Hayakawa, Mikuri Yokota, Katsuya Sakai, Kunio Matsumoto, and Shunsuke Aoki.
2025. "Identification of Novel Compounds That Bind to the HGF β-Chain In Silico, Verification by Molecular Mechanics and Quantum Mechanics, and Validation of Their HGF Inhibitory Activity In Vitro" Molecules 30, no. 8: 1801.
https://doi.org/10.3390/molecules30081801
APA Style
Suzuki, K., Inoue, K., Namiguchi, R., Morita, S., Hayakawa, S., Yokota, M., Sakai, K., Matsumoto, K., & Aoki, S.
(2025). Identification of Novel Compounds That Bind to the HGF β-Chain In Silico, Verification by Molecular Mechanics and Quantum Mechanics, and Validation of Their HGF Inhibitory Activity In Vitro. Molecules, 30(8), 1801.
https://doi.org/10.3390/molecules30081801