In vitro evaluation of anti-pathogenic surface coating nanofluid, obtained by combining Fe3O4/C12 nanostructures and 2-((4-ethylphenoxy)methyl)-N-(substituted-phenylcarbamothioyl)-benzamides

被引:20
作者
Anghel, Ion [1 ]
Limban, Carmen [2 ]
Grumezescu, Alexandru Mihai [3 ]
Anghel, Alina Georgiana [4 ]
Bleotu, Coralia [5 ]
Chifiriuc, Mariana Carmen [6 ]
机构
[1] Carol Davila Univ Med & Pharm, ENT Otolaryngol, Bucharest 50474, Romania
[2] Carol Davila Univ Med & Pharm, Dept Pharmaceut Chem, Bucharest 020956, Romania
[3] Univ Politehn Bucuresti, Dept Sci & Engn Oxid Mat & Nanomat, Fac Appl Chem & Mat Sci, Bucharest 011061, Romania
[4] Carol Davila Univ Med & Pharm, Coltea Hosp, ENT Clin, Bucharest 030171, Romania
[5] Stefan Nicolau Inst Virol, Bucharest 030304, Romania
[6] Univ Bucharest, Dept Microbiol, Fac Biol, Bucharest 060101, Romania
来源
NANOSCALE RESEARCH LETTERS | 2012年 / 7卷
关键词
lauric acid; benzamides; thiourea derivatives; magnetite; anti-biofilm; core/shell nanostructure; PSEUDOMONAS-AERUGINOSA; ANTIMICROBIAL ACTIVITY; ANTIBACTERIAL ACTIVITY; DERIVATIVES; INFECTIONS; CATHETER; SILVER; ZNO;
D O I
10.1186/1556-276X-7-513
中图分类号
TB3 [工程材料学];
学科分类号
082905 [生物质能源与材料];
摘要
In this paper, we report the design of a new nanofluid for anti-pathogenic surface coating. For this purpose, new 2-((4-ethylphenoxy)methyl)-N-(substituted-phenylcarbamothioyl)-benzamides were synthesized and used as an adsorption shell for Fe3O4/C-12 core/shell nanosized material. The functionalized specimens were tested by in vitro assays for their anti-biofilm properties and biocompatibility. The optimized catheter sections showed an improved resistance to Staphylococcus aureus ATCC 25923 and Pseudomonas aeruginosa ATCC 27853 in vitro biofilm development, as demonstrated by the viable cell counts of biofilm-embedded bacterial cells and by scanning electron microscopy examination of the colonized surfaces. The nanofluid proved to be not cytotoxic and did not influence the eukaryotic cell cycle. These results could be of a great interest for the biomedical field, opening new directions for the design of film-coated surfaces with improved anti-biofilm properties.
引用
收藏
页码:1 / 10
页数:10
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