The interaction of the waterborne protozoan parasite, <i>Giardia lamblia</i>, with polymeric materials was investigated by microarray screening of 652 polymers. Polymers were identified which either bound <i>G. lamblia</i> cysts or prevented their binding. Correlation of material properties such as wettability and surface roughness with cyst attachment revealed no influence of these factors upon <i>Giardia</i> adhesion. However, the study of polymer composition allowed the correlation of binding and generation of polymer structure function relationships; glycol and aromatic functionalities appeared to prevent adhesion, whereas secondary amine groups promoted adhesion, in agreement with previous literature. A significant reduction in attac...
<div><p>Extracellular polymeric substances (EPS) significantly influence bacterial adhesion to solid...
Bacteria adhere to almost any surface. Medical-device biofilm-centred infections pose an enormous th...
New anti-infective materials are needed urgently as alternatives to conventional biocides. It has re...
The interaction of the waterborne protozoan parasite, <i>Giardia lamblia</i>, with polymeric materia...
Adhesion of Cryptosporidium parvum and Giardia lamblia to four materials of different surface charge...
Research on the interactions between microbes and polymeric materials constitutes an important part...
The protozoan parasites Giardia duodenalis, Cryptosporidium spp., and Toxoplasma gondii are pathogen...
International audienceThe protozoan parasites Giardia duodenalis, Cryptosporidium spp. and Toxoplasm...
Abstract: A problem encountered in patients undergoing long-term catheterization of the urinary trac...
The adhesion of three Escherichia coli strains on to six poly(methacrylates) differing in hydrophobi...
Development of biomaterial-related infections is attracting an increasing interest due to the signif...
<div><p>Extracellular polymeric substances (EPS) significantly influence bacterial adhesion to solid...
Bacteria adhere to almost any surface. Medical-device biofilm-centred infections pose an enormous th...
New anti-infective materials are needed urgently as alternatives to conventional biocides. It has re...
The interaction of the waterborne protozoan parasite, <i>Giardia lamblia</i>, with polymeric materia...
Adhesion of Cryptosporidium parvum and Giardia lamblia to four materials of different surface charge...
Research on the interactions between microbes and polymeric materials constitutes an important part...
The protozoan parasites Giardia duodenalis, Cryptosporidium spp., and Toxoplasma gondii are pathogen...
International audienceThe protozoan parasites Giardia duodenalis, Cryptosporidium spp. and Toxoplasm...
Abstract: A problem encountered in patients undergoing long-term catheterization of the urinary trac...
The adhesion of three Escherichia coli strains on to six poly(methacrylates) differing in hydrophobi...
Development of biomaterial-related infections is attracting an increasing interest due to the signif...
<div><p>Extracellular polymeric substances (EPS) significantly influence bacterial adhesion to solid...
Bacteria adhere to almost any surface. Medical-device biofilm-centred infections pose an enormous th...
New anti-infective materials are needed urgently as alternatives to conventional biocides. It has re...