Highly active antibacterial ferrocenoylated or ruthenocenoylated Arg-Trp peptides can be discovered by an l-to-d substitution scan
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Selective ruthenium labeling of the tryptophan residue in the bee venom Peptide melittinProgress with peptide scanning to study structure-activity relationships: the implications for drug discovery.Towards Profiles of Resistance Development and Toxicity for the Small Cationic Hexapeptide RWRWRW-NH2.Influence of the Multivalency of Ultrashort Arg-Trp-Based Antimicrobial Peptides (AMP) on Their Antibacterial Activity.Quaternized and Thiazole-Functionalized Free Radical-Generating Organometallic Dendrimers as Antimicrobial Platform against Multidrug-Resistant Microorganisms.Exploring Structure-Activity Relationships in Synthetic Antimicrobial Peptides (synAMPs) by a Ferrocene ScanSynthesis and antibacterial activity of trivalent ultrashort Arg-Trp-based antimicrobial peptides (AMPs)Synthesis of bisarylethyne–peptide conjugates
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Highly active antibacterial ferrocenoylated or ruthenocenoylated Arg-Trp peptides can be discovered by an l-to-d substitution scan
description
im Januar 2014 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована у 2014
@uk
name
Highly active antibacterial fe ...... by an l-to-d substitution scan
@en
Highly active antibacterial fe ...... by an l-to-d substitution scan
@nl
type
label
Highly active antibacterial fe ...... by an l-to-d substitution scan
@en
Highly active antibacterial fe ...... by an l-to-d substitution scan
@nl
prefLabel
Highly active antibacterial fe ...... by an l-to-d substitution scan
@en
Highly active antibacterial fe ...... by an l-to-d substitution scan
@nl
P2093
P2860
P356
P1433
P1476
Highly active antibacterial fe ...... by an l-to-d substitution scan
@en
P2093
Nils Metzler-Nolte
Pascal Prochnow
Sandra Bobersky
P2860
P304
P356
10.1039/C4SC01822B
P577
2014-01-01T00:00:00Z