Graphene oxide as antibacterial sensitizer: Mechanically disturbed cell membrane for enhanced poration efficiency of melittin

S Xiao, X Lu, L Gou, J Li, Y Ma, J Liu, K Yang, B Yuan - Carbon, 2019 - Elsevier
Natural antimicrobial peptides (AMPs) promise a fundamental solution to the devastating
threat of multidrug-resistant bacteria, while drawbacks such as limited antibacterial efficiency …

Graphene oxide as antibacterial sensitizer: Mechanically disturbed cell membrane for enhanced poration efficiency of melittin

S Xiao, X Lu, L Gou, J Li, Y Ma, J Liu, K Yang… - …, 2019 - ui.adsabs.harvard.edu
Natural antimicrobial peptides (AMPs) promise a fundamental solution to the devastating
threat of multidrug-resistant bacteria, while drawbacks such as limited antibacterial efficiency …

Graphene oxide as antibacterial sensitizer: Mechanically disturbed cell membrane for enhanced poration efficiency of melittin

S Xiao, X Lu, L Gou, J Li, Y Ma, J Liu, K Yang, B Yuan - 2019 - dro.deakin.edu.au
© 2019 Elsevier Ltd Natural antimicrobial peptides (AMPs) promise a fundamental solution
to the devastating threat of multidrug-resistant bacteria, while drawbacks such as limited …

[PDF][PDF] Graphene oxide as antibacterial sensitizer: Mechanically disturbed cell membrane for enhanced poration efficiency of melittin

S Xiao, X Lu, L Gou, J Li, Y Ma, J Liu, K Yang, B Yuan - Carbon, 2019 - drive.google.com
abstract Natural antimicrobial peptides (AMPs) promise a fundamental solution to the
devastating threat of multidrug-resistant bacteria, while drawbacks such as limited …

Graphene oxide as antibacterial sensitizer: Mechanically disturbed cell membrane for enhanced poration efficiency of melittin

S Xiao, X Lu, L Gou, J Li, Y Ma, J Liu, K Yang, B Yuan - 2019 - dro.deakin.edu.au
© 2019 Elsevier Ltd Natural antimicrobial peptides (AMPs) promise a fundamental solution
to the devastating threat of multidrug-resistant bacteria, while drawbacks such as limited …

[引用][C] Graphene oxide as antibacterial sensitizer: Mechanically disturbed cell membrane for enhanced poration efficiency of melittin

S Xiao, X Lu, L Gou, J Li, Y Ma, J Liu, K Yang, B Yuan - 2019