Adsorption Studies of the Gram-Negative Bacteria onto Nanostructured Silicon Carbide

被引:34
作者
Borkowski, Andrzej [1 ]
Szala, Mateusz [2 ]
Clapa, Tomasz [3 ]
机构
[1] Univ Warsaw, Fac Geol, PL-02089 Warsaw, Poland
[2] Mil Univ Technol, Fac Adv Technol & Chem, PL-00908 Warsaw, Poland
[3] Poznan Univ Life Sci, Dept Gen & Environm Microbiol, PL-60656 Poznan, Poland
关键词
Adsorption; Bacteria; Nanofibers SiC; Nanorods SiC; Pseudomonas putida; Silicon carbide; CARBON NANOTUBES; PSEUDOMONAS-PUTIDA; NANOMATERIALS; OXIDE; TOXICITY; CHARGE;
D O I
10.1007/s12010-014-1374-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this study, we demonstrated a significant adsorption of Pseudomonas putida bacteria onto aggregates of nanofibers (NFSiC) and nanorods (NRSiC) of silicon carbide (SiC) in aqueous suspensions. Langmuir and Freundlich isotherms were used to quantify adsorption affinities. It was found that adsorption of the bacteria strongly depended on the structure of the silicon carbide and the pH of the aqueous solution, which affected the isoelectric point of both the silicon carbide and the bacterial cells. The strongest affinity of bacteria was noted in the case of NRSiC aggregates. Affinity was inversely proportional to pH. Similarly, the adsorption of bacteria to the surface of the aggregates increased with decreasing pH. For NFSiC, the affinity of the bacteria for the surface of the aggregates was also inversely proportional to pH. However, adsorption increased at higher pH values. This discrepancy was explained by microscopic analysis, which showed that the bacterial cells were both adsorbed onto and trapped by NFSiC. The adsorption of bacteria onto a micrometric silicon carbide reference material was significantly smaller than adsorption onto nanostructured SiC.
引用
收藏
页码:1448 / 1459
页数:12
相关论文
共 24 条
[1]   Toxicity of Graphene and Graphene Oxide Nanowalls Against Bacteria [J].
Akhavan, Omid ;
Ghaderi, Elham .
ACS NANO, 2010, 4 (10) :5731-5736
[2]   Experimental measurements of the adsorption of Bacillus subtilis and Pseudomonas mendocina onto Fe-oxyhydroxide-coated and uncoated quartz grains [J].
Ams, DA ;
Fein, JB ;
Dong, HL ;
Maurice, PA .
GEOMICROBIOLOGY JOURNAL, 2004, 21 (08) :511-519
[3]   Toxicological consequences of TiO2, SiC nanoparticles and multi-walled carbon nanotubes exposure in several mammalian cell types: an in vitro study [J].
Barillet, Sabrina ;
Simon-Deckers, Angelique ;
Herlin-Boime, Nathalie ;
Mayne-L'Hermite, Martine ;
Reynaud, Cecile ;
Cassio, Doris ;
Gouget, Barbara ;
Carriere, Marie .
JOURNAL OF NANOPARTICLE RESEARCH, 2010, 12 (01) :61-73
[4]   Potentiometric mass titrations: Experimental and theoretical establishment of a new technique for determining the point of zero charge (PZC) of metal (hydr)oxides [J].
Bourikas, K ;
Vakros, J ;
Kordulis, C ;
Lycourghiotis, A .
JOURNAL OF PHYSICAL CHEMISTRY B, 2003, 107 (35) :9441-9451
[5]   Hydroxyl radicals and DNA base damage [J].
Cadet, J ;
Delatour, T ;
Douki, T ;
Gasparutto, D ;
Pouget, JP ;
Ravanat, JL ;
Sauvaigo, S .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 1999, 424 (1-2) :9-21
[6]   Combustion reactions of poly(Carbon monofluoride), (CF)n, with different reductants and characterization of the products [J].
Cudzilo, Stanislaw ;
Szala, Mateusz ;
Huczko, Andrzej ;
Bystrzejewski, Michal .
PROPELLANTS EXPLOSIVES PYROTECHNICS, 2007, 32 (02) :149-154
[7]   Ecotoxicity and analysis of nanomaterials in the aquatic environment [J].
Farre, Marinella ;
Gajda-Schrantz, Krisztina ;
Kantiani, Lina ;
Barcelo, Damia .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2009, 393 (01) :81-95
[8]   Reactivity of carbon nanotubes: Free radical generation or scavenging activity? [J].
Fenoglio, I ;
Tomatis, M ;
Lison, D ;
Muller, J ;
Fonseca, A ;
Nagy, JB ;
Fubini, B .
FREE RADICAL BIOLOGY AND MEDICINE, 2006, 40 (07) :1227-1233
[9]   Combustion synthesis as a novel method for production of 1-D SiC nanostructures [J].
Huczko, A ;
Bystrzejewski, M ;
Lange, H ;
Fabianowska, A ;
Cudzilo, S ;
Panas, A ;
Szala, M .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (34) :16244-16251
[10]   Adsorption of Pseudomonas putida on clay minerals and iron oxide [J].
Jiang, D. ;
Huang, Q. ;
Cai, P. ;
Rong, X. ;
Chen, W. .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2007, 54 (02) :217-221