| Literature DB >> 24796304 |
Yan Liu1, Nina M Haste2, Wdee Thienphrapa3, Jerry Li4, Victor Nizet5, Mary Hensler6, Rongshi Li7.
Abstract
The marine natural product, marinopyrrole A (1), was previously shown to have significant antibiotic activity against Gram-positive pathogens, including methicillin-resistant Staphylococcus aureus (MRSA). Although compound (1) exhibits a significant reduction in MRSA activity in the presence of human serum, we have identified key modifications that partially restore activity. We previously reported our discovery of a chloro-derivative of marinopyrrole A (1a) featuring a 2-4 fold improved minimum inhibitory concentration (MIC) against MRSA, significantly less susceptibility to serum inhibition and rapid and concentration-dependent killing of MRSA. Here, we report a novel fluoro-derivative of marinopyrrole A (1e) showing an improved profile of potency, less susceptibility to serum inhibition, as well as rapid and concentration-dependent killing of MRSA.Entities:
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Year: 2014 PMID: 24796304 PMCID: PMC4052300 DOI: 10.3390/md12052458
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Chart 1Marinopyrroles.
Scheme 1Synthesis of novel non-symmetrical marinopyrrole derivatives.
Figure 1Physicochemical properties and structure-activity relationship (SAR) of marinopyrrole derivatives against methicillin-resistant Staphylococcus aureus (MRSA).
Figure 2pH-dependent microspecies of marinopyrroles.
Figure 3In vitro time-kill analysis for marinopyrrole derivatives 1a (A) and 1e (B) 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 the assayed derivatives or the vehicle control (none). Both derivatives showed potent concentration-dependent killing kinetics. At 20× (7.8 μM), Derivative 1e demonstrated more rapid bacterial killing at 3 h.
| Compound | MW f | p | p | Clog
| THB
| THB + 20% Serum
|
|---|---|---|---|---|---|---|
|
| 510.15 | 7.8
| 8.4
| 5.6
| 0.75
| 94–188
|
|
| 544.60 | 7.3 | 8.2 | 6.1 | 0.19–0.39
| 12.5–25
|
|
| 528.14 | 7.2 | 8.2 | 5.7 | 3.13 | ND
|
|
| 528.14 | 7.0 | 8.1 | 5.7 | 0.78 | ND |
|
| 528.14 | 7.6 | 8.3 | 5.7 | 0.19–0.78 | 25–50 |
|
| 589.05 | 7.5 | 8.2 | 6.4 | 1.56 | ND |
|
| 1485.72 | 0.85–1.7 | 0.85–1.7 |
Calculated using ChemAxon Software Version 5.12.3 (ChemAxon, Budapest, Hungary); reported in our previous paper [6]; MIC, minimum inhibitory concentration 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; results, except for the calculated pKa and log p-values, from our previous paper [1] for SAR discussions; not determined; f MW, molecular weight; g Vanco, vancomycin.
| Microspecies | 1 | 1a | 1c | 1d | 1e | 1f |
|---|---|---|---|---|---|---|
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Percentage (%) of microspecies distributions at pH 7.0/7.4/8.0, respectively, calculated using ChemAxon Software Version 5.12.3 (ChemAxon, Budapest, Hungary); numbers in italics are the percent of microspecies distributions at pH 7.0.