| Literature DB >> 19924036 |
Piotr Polcyn1, Margarita Jurczak, Aleksandra Rajnisz, Jolanta Solecka, Zofia Urbanczyk-Lipkowska.
Abstract
Novel polyfunctional small amphiphilic peptide dendrimers characterized by incorporation of a new core compounds - tris-amino acids or tetrakis-amino alcohols that originated from a series of basic amino acids - were efficiently synthesized. These new core elements yielded molecules with multiple branching and (+5)/(+6) charge at the 1-st dendrimer generation. Dendrimers exhibited significant antimicrobial potency against Gram(+) and Gram(-) strains involving also multiresistant reference strains (S. aureus ATCC 43300 and E. coli ATCC BAA-198). In addition, high activity against fungi from the Candida genus was detected. More charged and more hydrophobic peptide dendrimers expressed hemolytic properties.Entities:
Mesh:
Substances:
Year: 2009 PMID: 19924036 PMCID: PMC6255327 DOI: 10.3390/molecules14103881
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of N-cyanoethylated derivatives of 1.
Scheme 2Reduction of N-cyanoethylated derivatives 2 and 3.
Scheme 3Synthesis of the dendrimers 7e-h.
Scheme 4Synthesis of the dendrimers 10a-d.
Minimal inhibitory concentrations (MICs) of studied dendrimers against Gram(+), Gram(-) and fungi and two reference compounds 5c and 5d (μM). a
| Compound | 7e | 7f | 7g | 7h | 10a | 10b | 10c | 10d | 5c | 5d |
|---|---|---|---|---|---|---|---|---|---|---|
| Scaffold/charge b | DAPc | DAB d | Orn | Lys | DAP | DAB | Orn | Lys | Orn | Lys |
| (+)5 | (+)5 | (+)5 | (+)5 | (+)6 | (+)6 | (+)6 | (+)6 | (+)6 | (+)6 | |
| 2.8 | 11.7 | 10.9 | 21.6 | 1.7 | 1.3 | 27.2 | 3.4 | 113 | 221 | |
| ATCC 25923 | ||||||||||
| 11.8 | 10.3 | 10.9 | 21.6 | 3.4 | 7.3 | 13.6 | 1.7 | - | - | |
| ATCC 43300 | ||||||||||
| 24.3 | 48 | 21.8 | 86 | 30.2 | 47 | 54 | 14 | - | - | |
| ATCC 27853 | ||||||||||
| 11 | 11 | 2.7 | 5.4 | 3.4 | 3.4 | 6.8 | 1.7 | - | - | |
| ATCC 4617 | ||||||||||
| >89 | >88 | 5.4 | >86 | 13.8 | 13.8 | 27.3 | 3.4 | - | - | |
| ATCC 19606 | ||||||||||
| >89 | >88 | 87 | >86 | >55 | >55 | 54 | >54 | - | - | |
| ATCC 13882 | ||||||||||
| 11.8 | 48 | 21.8 | 86 | 7.3 | 7.3 | 27.3 | 6.8 | >226 | >221 | |
| ATCC 25922 | ||||||||||
| >88 | >89 | 10.9 | 43 | 6.9 | 6.9 | 13.6 | 3.4 | - | - | |
| ATCC BAA-198 | ||||||||||
| >88 | >89 | 10.9 | >86 | 6.8 | 6.9 | 54 | 6.8 | - | - | |
| ATCC 90028 | ||||||||||
| 44 | 44 | 5.4 | 43 | 6.8 | 6.9 | 27.3 | 3.4 | - | - | |
| ATCC 6258 | ||||||||||
| 88 | 89 | 5.4 | 86 | 6.8 | 6.9 | 54 | 3.4 | - | - | |
| ATCC 22019 |
a MICs of the reference compounds: Penicillin G against S. aureus ATCC 25923 – 6.6 (μM); polymyxin B against E. coli ATCC 25922 and P. auruginosa ATCC 27853 – 0.55 (μM); amphotericin B against C. krusei ATCC 6258 – 1.1 μM; indolicidin against S. aureus ATCC 25923 – 2.1 (μM) and E. coli ATCC 25922 – 4.2 (μM); b charge assigned by elementary analysis from Cl content; c diaminopropionic acid core; d diaminobutyric acid core.
Figure 1Hemolytic activity of the three-arm compounds 7e-h.
Figure 2Hemolytic activity of the four-arm compounds 10a-d.