| Literature DB >> 22690153 |
Yan Liu1, Nina M Haste2, Wdee Thienphrapa3, Victor Nizet2,3, Mary Hensler3, Rongshi Li1.
Abstract
Infections caused by drug-resistant pathogens are on the rise. The ongoing spread of methicillin-resistant Staphylococcus aureus (MRSA) strains exemplifies the urgent need for new antibiotics. The marine natural product, marinopyrrole A, was previously shown to have potent antibiotic activity against Gram-positive pathogens, including MRSA. However, its minimum inhibitory concentration (MIC) against MRSA was increased by >500 fold in the presence of 20% human serum, thus greatly limiting therapeutic potential. Here we report our discovery of a novel derivative of marinopyrrole A, designated 1a, featuring a 2-4 fold improved MIC against MRSA and significantly less susceptibility to serum inhibition. Importantly, compound 1a displayed rapid and concentration-dependent killing of MRSA. Compared to the natural product counterpart, compound 1a provides an important natural product based scaffold for further Structure Activity Relationship (SAR) and optimization.Entities:
Keywords: MRSA; SAR; antibiotics; asymmetrical marinopyrroles; marinopyrrole
Mesh:
Substances:
Year: 2012 PMID: 22690153 PMCID: PMC3366685 DOI: 10.3390/md10040953
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 6.085
Chart 1Chemical structures of marinopyrrole A.
Scheme 1Synthesis of Novel Asymmetrical Marinopyrrole Derivatives .
Minimum inhibitory concentration (MIC) of Marinopyrrole Derivatives against methicillin-resistant Staphylococcus aureus (MRSA).
| Compound | THB | THB + 20% Serum |
|---|---|---|
| 0.74 | 94–188 | |
| >200 | >200 | |
| 0.19–0.39 | 12.5–25 | |
| 1.56 | >200 | |
| 3.13 | >200 |
MIC in μM in Todd-Hewitt broth (THB) in the absence or presence of 20% human serum. All data were generated from experiments repeated four times.
Figure 1In vitro Time-kill Analysis for Marinopyrrole Derivative (1a) against the USA300 Community-associated MRSA Strain TCH1516. MRSA was subjected to increasing concentrations of 1× (0.39 μM), 10× (3.9 μM) and 20× (7.8 μM) the MIC of derivative 1a or vehicle control (none). Derivative 1a showed potent concentration-dependent in vitro bactericidal kinetics against MRSA at 10× (3.9 μM) and 20× (7.8 μM) MIC, along with bacteriostatic activity at 1× MIC (0.39 μM).