[HTML][HTML] Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS pathogens, 2018 - journals.plos.org
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS Pathogens, 2018 - go.gale.com
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

[PDF][PDF] Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS Pathog, 2018 - academia.edu
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens.

D Pletzer, SC Mansour, REW Hancock - 2018 - agris.fao.org
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

[引用][C] Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLOS Pathogens, 2018 - cir.nii.ac.jp
Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous
abscess model caused by recalcitrant ESKAPE pathogens | CiNii Research CiNii 国立情報学 …

[PDF][PDF] Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS Pathog, 2018 - pdfs.semanticscholar.org
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS Pathogens, 2018 - research.sahmri.org.au
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

[PDF][PDF] Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS Pathog, 2018 - scienceopen.com
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens.

D Pletzer, SC Mansour, REW Hancock - Plos Pathogens, 2018 - europepmc.org
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …

Synergy between conventional antibiotics and anti-biofilm peptides in a murine, sub-cutaneous abscess model caused by recalcitrant ESKAPE pathogens

D Pletzer, SC Mansour, REW Hancock - PLoS Pathogens, 2018 - search.proquest.com
With the antibiotic development pipeline running dry, many fear that we might soon run out
of treatment options. High-density infections are particularly difficult to treat due to their …