Teixobactin, a recently discovered depsipeptide that binds to bacterial lipid II and lipid III, provides a promising molecular scaffold for the design of new antimicrobials. Herein, we describe the synthesis and antimicrobial evaluation of systematically modified teixobactin analogues. The replacement of Ile11 residue with aliphatic isosteres, the modification of the guanidino group at residue 10 and the introduction of a rigidifying residue, dehydroamino acid into the macrocyclic ring generated useful structure‐activity information. Extensive antimicrobial susceptibility assessment against a panel of clinically relevant Staphylococcus aureus and Propionibacterium acnes led to the identification of a new lead compound, [Arg(Me)10,Nle11]teix...
A series of lipopeptidomimetics derived from teixobactin have been prepared that probe the role of r...
The cyclic depsipeptide, teixobactin kills a number of Gram positive bacteria including Methicillin-...
The discovery of the new antibiotic teixobactin has been timely in the race for unearthing novel ant...
Teixobactin, a recently discovered depsipeptide that binds to bacterial lipid II and lipid III, prov...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
The development of bacterial resistance over time combined with the lack of novel compounds has resu...
Multi-drug resistant bacteria that are primarily unresponsive towards the available marketed antibio...
The cyclic depsipeptide, teixobactin, kills a number of Grampositive bacteria, including methicillin...
Following the widespread use and abuse of antibiotics, bacteria have evolved a diverse array of stra...
The cyclic depsipeptide, teixobactin, kills a number of Gram-positive bacteria, including methicilli...
The prevalence of life‐threatening, drug‐resistant microbial infections has challenged researchers t...
Teixobactin is a highly promising antibacterial depsipeptide consisting of four Damino acids and a r...
Increasing bacterial resistance against current antibiotics and lack of new molecules to combat bact...
Teixobactin, targeting lipid II, represents a new class of antibiotics with novel structures and has...
A series of lipopeptidomimetics derived from teixobactin have been prepared that probe the role of r...
The cyclic depsipeptide, teixobactin kills a number of Gram positive bacteria including Methicillin-...
The discovery of the new antibiotic teixobactin has been timely in the race for unearthing novel ant...
Teixobactin, a recently discovered depsipeptide that binds to bacterial lipid II and lipid III, prov...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
The development of bacterial resistance over time combined with the lack of novel compounds has resu...
Multi-drug resistant bacteria that are primarily unresponsive towards the available marketed antibio...
The cyclic depsipeptide, teixobactin, kills a number of Grampositive bacteria, including methicillin...
Following the widespread use and abuse of antibiotics, bacteria have evolved a diverse array of stra...
The cyclic depsipeptide, teixobactin, kills a number of Gram-positive bacteria, including methicilli...
The prevalence of life‐threatening, drug‐resistant microbial infections has challenged researchers t...
Teixobactin is a highly promising antibacterial depsipeptide consisting of four Damino acids and a r...
Increasing bacterial resistance against current antibiotics and lack of new molecules to combat bact...
Teixobactin, targeting lipid II, represents a new class of antibiotics with novel structures and has...
A series of lipopeptidomimetics derived from teixobactin have been prepared that probe the role of r...
The cyclic depsipeptide, teixobactin kills a number of Gram positive bacteria including Methicillin-...
The discovery of the new antibiotic teixobactin has been timely in the race for unearthing novel ant...