| Literature DB >> 30042299 |
Alexandra Muñoz-Bonilla1, Rocío Cuervo-Rodríguez2, Fátima López-Fabal3, José L Gómez-Garcés4, Marta Fernández-García5.
Abstract
Herein, efficient antimicrobial porous surfaces were prepared by breath figures approach from polymer solutions containing low content of block copolymers with high positive charge density. In brief, those block copolymers, which were used as additives, are composed of a polystyrene segment and a large antimicrobial block bearing flexible side chain with 1,3-thiazolium and 1,2,3-triazolium groups, PS54-b-PTTBM-M44, PS54-b-PTTBM-B44, having different alkyl groups, methyl or butyl, respectively. The antimicrobial block copolymers were blended with commercial polystyrene in very low proportions, from 3 to 9 wt %, and solubilized in THF. From these solutions, ordered porous films functionalized with antimicrobial cationic copolymers were fabricated, and the influence of alkylating agent and the amount of copolymer in the blend was investigated. Narrow pore size distribution was obtained for all the samples with pore diameters between 5 and 11 µm. The size of the pore decreased as the hydrophilicity of the system increased; thus, either as the content of copolymer was augmented in the blend or as the copolymers were quaternized with methyl iodide. The resulting porous polystyrene surfaces functionalized with low content of antimicrobial copolymers exhibited remarkable antibacterial efficiencies against Gram positive bacteria Staphylococcus aureus, and Candida parapsilosis fungi as microbial models.Entities:
Keywords: antimicrobial coatings; breath figures; porous surfaces
Year: 2018 PMID: 30042299 PMCID: PMC6117655 DOI: 10.3390/ma11081266
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Chemical structure of the antimicrobial block copolymer quaternized with butyl (PS54-b-PTTBM-B44) or methyl (PS54-b-PTTBM-M44) iodides, and SEM images of the films of PS/PS54-b-PTTBM-B44 blends, 97/3 wt % obtained from THF solutions at (a) 60%; (b) 70%; and (c,d) 90% relative humidity.
Figure 2SEM micrographs of films obtained at 70% relative humidity composed of PS/PS54-b-PTTBM-B44 blends: (a) 97/3 wt %; (b) 94/6 wt %; (c) 91/9 wt %; and PS/ PS54-b-PTTBM-M44 blends: (d) 97/3 wt %; (e) 94/6 wt % (inset: cross-section); (f) 91/9 wt %.
Average pore diameter ± SD (standard deviation), conformational entropy (S), and roughness factor (rf) of porous films containing variable content of the cationic copolymers PS54-b-PTTBM-B44 and PS54-b-PTTBM-M44.
| Cationic Copolymer | Concentration (wt. %) | S | Pore Size (µm) | rf |
|---|---|---|---|---|
| PS54- | 3 | 1.16 | 11 ± 1 | 1.33 |
| 6 | 0.91 | 10 ± 1 | 1.42 | |
| 9 | 1.17 | 7 ± 1 | 1.41 | |
| PS54- | 3 | 0.86 | 7 ± 1 | 1.47 |
| 6 | 0.98 | 6 ± 2 | 1.48 | |
| 9 | 0.94 | 5 ± 1 | 1.48 |
Cell killing percentage of the breath figure films for S. aureus and C. parapsilosis microorganisms.
| Cationic Copolymer | Concentration (wt %) | Cell Killing (%) | |
|---|---|---|---|
|
|
| ||
| PS54- | 3 | 99.99 | 50 |
| 6 | 99.99 | 90 | |
| 9 | 99.99 | 90 | |
| PS54- | 3 | 99.99 | 90 |
| 6 | 99.99 | 90 | |
| 9 | 99.99 | 90 | |