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Effects of polystyrene surface chemistry on the biological activity of solid phase fibronectin and vitronectin, analysed with monoclonal antibodies.

The conformation and biological activities of fibronectin (FN) and vitronectin (VN) coated on different plastic surfaces were investigated using cell adhesion and a panel of domain-specific monoclonal antibodies (mAbs). The adhesion of BHK fibroblasts was markedly better on FN coated on hydrophilic tissue culture polystyrene (TCPS) than on hydrophobic, untreated polystyrene (PS). mAbs A17 and 3E3, which inhibit the binding of BHK cells to the RGD-containing sequence within the cell binding region of FN, also bound preferentially to FN on TCPS. In contrast, two anti-FN mAbs, which have no effect on cell adhesion (A35 and A3), bound preferentially to the conformation of FN on the more hydrophobic PS. Mouse melanoma cells utilise an additional cell-binding site in the Hep II domain of FN and their preference for FN coated on TCPS was less marked than that of BHK cells. This reduced preference was again mimicked by the binding of a mAb, A32, which inhibits the binding of B16 cells to the Hep II domain of FN. In contrast, BHK cell adhesion to VN did not display a preference for TCPS over PS. The cell-binding activity of adsorbed VN was matched by the binding of a cell adhesion-inhibitory mAb, A18, which, unlike mAbs A17 and A32, displayed slightly increased binding to VN coated on PS, rather than TCPS. When the denaturating effect of coating FN and VN to PS in the presence of urea was investigated, similar correlations between BHK cell adhesion and the binding of inhibitory mAbs were observed. Urea treatment of FN significantly reduced both BHK cell adhesion and the binding of both cell adhesion-inhibitory mAbs, whereas the binding of A35 and A3 was unaffected. There was no significant effect of urea treatment of VN upon either BHK cell adhesion or mAb binding. A larger panel of anti-FN mAbs was used, together with the anti-VN mAbs, to determine whether there were differences in mAb recognition of FN and VN adsorbed on three different brands of TCPS. The mAbs segregated into four reactivity patterns, of which A17, A32, A35 and A18 respectively were representative. Significant differences were observed in mAb recognition of FN and VN adsorbed to different brands of TCPS. These may reflect differences in the ability of these surfaces to support optimal growth of different cell types. The effect of divalent cations upon adsorbed FN and VN was also investigated.(ABSTRACT TRUNCATED AT 400 WORDS)

Adsorption↗

Use of immobilized lactoperoxidase to label murine fibroblast proteins involved in adhesion to polystyrene.

Proteins involved in the attachment of murine embryo fibroblasts to polystyrene have been identified by a technique designed to iodinate only those macromolecules coming into closest apposition to the substratum. Lactoperoxidase (LPase) covalently bound to the surface of the culture flask labelled a subset of substratum-bound polypeptides with a 42,000 Mr species being most heavily labelled. Fibronectin was not labelled by this method. Soluble LPase, on the other hand, iodinated a wide range of polypeptides in cells attached to ordinary tissue culture polystyrene. Many of these polypeptides, including fibronectin, were cell-associated after scraping; however, bands of 50,000-55,000 and 42,000 Mr remained bound to the substratum. The effect of serum was investigated and the results suggested that serum components blocked labelling of the 42,000-55,000 M4 species by soluble LPase, but did not abolish labelling of similar polypeptides by the immobilized enzyme. The identity of the prominently labelled bands is discussed in the light of a functional interaction between two polypeptides, probably 10 nm filament protein subunits and actin, at sites of cell-substratum attachment.

Animals↗

Attachment of Paramecium to polystyrene surfaces. II. Induction of the attachment by hydrophobic reagents or immune immunoglobulin G.

Mating-reactive cells of Paramecium multimicronucleatum attach to a polystyrene surface (Falcon 10070 culture dishes) irrespective of extracellular ion concentration and swimming velocity. This attachment is induced in cells that are not mating-reactive by treatment with purified immunoglobulin G from antiserum, which blocks cells from mating or from antiserum prepared against the surface-localized immobilization antigens. Treatment with certain hydrophobic reagents such as phenethylamine, benzylamine, amphetamine or phenylethylamine also strongly induces attachment. Similar results are obtained with P. caudatum. Micronuclear activation, which normally occurs in the conjugation process, does not occur, however, in cells that are induced to attach to the polystyrene surface.

Adhesiveness↗

Quantitative analysis of styrene monomer in polystyrene and foods including some preliminary studies of the uptake and pharmacodynamics of the monomer in rats.

A variety of food containers, drinking cups and cutlery, fabricated from polystyrene (PS) or polystyrene-related plastic, were analyzed for their styrene monomer content. Samples of yogurt, packaged in PS cups, were similarly analyzed and the leaching of styrene monomer from PS containers by some food simulants was also determined. Blood level studies with rats, dosed with styrene monomer by various routes, illustrated uptake phenomena that were dependent on the dose and route of administration and were also affected by the vehicle used to convey the styrene monomer.

Animals↗

Role of divalent cations, pH, cytoskeleton components and surface charge on the adhesion of Trichomonas vaginalis to a polystyrene substrate.

The process of adhesion of three different strains of Trichomonas vaginalis to a polystyrene substrate was analysed. The process of adhesion was dependent on the time of incubation and the pH of the phosphate-buffered solution (PBS) in which the parasites were suspended. The highest indices of adhesion were observed after an incubation time of 60 min at pH 6.6. The adhesion index increased when the parasites were incubated in the presence of culture media or when Ca++ or Mg++ was added to the PBS solution, whereas cytochalasin B, trypsin or neuraminidase reduced adhesion. Incubation of the parasites in the presence of poly-L-lysine facilitated the process of adhesion. Incubation of the parasites or polystyrene beads in the presence of poly-L-lysine led to important changes in their surface charge.

Animals↗

Reevaluation of enzyme-linked immunosorbent assay with ultraviolet-treated polystyrene microtiter plates for measurement of antibodies to dsDNA.

We reevaluated the efficacy of enzyme-linked immunosorbent assay (ELISA) with ultraviolet (UV)-treated polystyrene microtiter plates (UV-ELISA) for the detection of human serum anti-dsDNA antibodies. The subjects consisted of 38 patients with systemic lupus erythematosus (SLE). The titers of IgG serum anti-dsDNA antibodies by UV-ELISA were significantly (p < 0.01) higher in sera from 26 active SLE patients than in those from 12 inactive SLE patients. ELISA with poly-L-lysine coated microtiter plates (PLL-ELISA) revealed the similar results. However, the background ratio was only 1.0 +/- 0.9% by UV-ELISA, which was significantly (p < 0.01) lower than that by PLL-ELISA (16.8 +/- 10.8%). These results demonstrated the efficacy of ELISA with UV-treated polystyrene microtiter plates for the measurement of human serum anti-dsDNA antibodies in patients with SLE.

Antibodies, Antinuclear↗

Alloantigen-mediated adherence of rat hepatocytes to antibody-coated polystyrene dishes.

Rat alloantigens expressed on normal hepatocytes have been utilized in a cell "panning" procedure to mediate the haplotype-specific adherence of collagenase-isolated hepatocytes to antibody-coated polystyrene dishes. A polyvalent F344 anti-WF alloantiserum was prepared by immunizing F344 rats with WF tissue. The alloantibody IgG purified from the alloantiserum, when reacted with either WF or (WF X F344)F1 hybrid rat hepatocytes, caused the adherence of these hepatocytes to bacteriological-grade polystyrene dishes coated non-specifically with a xeno-antibody, rabbit anti-rat IgG. Similarly-treated hepatocytes of the F344 strain, which lack WF alloantigenic determinants, failed to be adsorbed above background level to the coated dishes.

Animals↗

Human IgG and murine monoclonal antibodies share common idiotopes as determined by competitive binding to polystyrene and nitrocellulose-bound antigens.

Competitive binding to polystyrene-bound antigens showed that human rye Group I (rye I)-specific IgG recognize the same three distinct epitopes of rye I as three monoclonal antibodies directed against the same antigens. Anti-idiotypic antibodies against one of the monoclonal antibodies (290A-167) inhibit completely the reaction between rye I and the relevant monoclonal antibodies but do not affect the reaction between other monoclonal antibodies (348A-6 and 539A-6) and the antigens. Furthermore, rabbit anti-idiotypic antibodies produced against F(ab' )2 of human rye I-specific IgG could inhibit the reaction between two monoclonal antibodies (290A-167 and 539A-6) and the relevant antigens. Those results were obtained by competitive binding to polystyrene or to nitrocellulose-bound antigens. These data indicate a cross-reactivity of idiotypic determinants between human rye I-specific IgG and mouse monoclonal antibodies, which implies structural similarity in the V gene coding for the variable region of the antibody.

Animals↗

Comparative, quantitative study of lymphoid and non-lymphoid uptake of 60 nm polystyrene particles.

Uptake by gut epithelial tissue of 60 nm polystyrene particles was studied in female Sprague-Dawley rats (180 g, 9 weeks old) after 5 days oral dosing by gavage (14 mg/kg). The gut was divided into lymphoid and non-lymphoid tissue of the small and large intestine, prior to analysis for polystyrene by gel permeation chromatography (GPC). Approximately 10% of the administered dose was recovered from the entire gastrointestinal tract. The total percentage of the administered dose taken up through lymphoid tissue was statistically much greater than through non-lymphoid tissue. It was estimated that 60% of the uptake in the small intestine occurred through the Peyer's patches, even though the patches comprised a small percentage of the total surface area of the small intestinal tissue. A significant amount of the total uptake was shown to occur in the large intestine, particularly in the lymphoid sections of this tissue. These results were confirmed by fluorescence microscopy.

Animals↗

Platelet retention by albuminated glass and polystyrene beads.

Ex vivo platelet retention by albuminated glass and polystyrene beads has been evaluated as a function of flow rate, bead surface area, blood exposure time and albumin treatment. The stability of the albumin coatings as well as scanning electron microscopy of the various surfaces before and after blood exposure has also been included. Results indicate that platelet retention is sensitive to changes in the above parameters and that albumin pretreatment of different substrates can decrease platelet retention. This decrease is substrate dependent in that platelet retention is different for the albuminated glass and polystyrene substrates. Chemical analysis of the substrate materials by X-ray photoelectron spectroscopy (XPS) as well as bulk chemical analysis is also reported.

Animals↗

[Effect of subinhibitory concentrations of various antimicrobials on insoluble glucan production, polystyrene adherence and bacterial surface hydrophobicity of Streptococcus sobrinus].

The effect of subinhibitory concentrations (1/2, 1/4, 1/8 of the MIC) of amoxicillin, teicoplanin, clindamycin and erythromycin on the factors influencing the adherence and pathogenicity of Streptococcus sobrinus was evaluated. These factors included insoluble glucan, polystyrene adherence and bacterial surface hydrophobicity. Insoluble glucan was detected using a spectrophotometric method; polystyrene adherence was assessed using microtiter plates; and surface hydrophobicity was determined using a biphasic system (water/p-xiline). Amoxicillin and teicoplanin induced a statistically significant decrease in adherence at subinhibitory concentrations, and they also decreased the hydrophobicity. However, clindamycin and erythromycin were unable to decrease these parameters. The adherence and hydrophobicity of S. sobrinus was also dependent on the concentration of sucrose in the culture medium.

Anti-Bacterial Agents↗

Preparation of uniform titanium dioxide (TiO2) polystyrene-based composite particles using the glass membrane emulsification process with a subsequent suspension polymerization.

Uniform titanium dioxide (TiO(2))-polystyrene-based composite particles were prepared using the glass membrane emulsification process followed by a subsequent suspension polymerization. The oil phase, consisting of anatase TiO(2) fine powder, monomers, methyl laurate as the hydrophobic additive, Disperbyk-180 and the poly(styrene-co-2-ethyl hexylacrylate) were emulsified through the membrane pores into the aqueous phase containing stabilizers to form a (solid-in-oil)-in-water (S/O/W) emulsion of monomer droplets. The suspension polymerization was carried out at 343 K for 24 h under a nitrogen atmosphere. An SPG membrane with a pore size of 5.25 microm was employed and 20-25 microm TiO(2)-polystyrene based composite particles were obtained depending on the composition of polymerizing oil phase. The effects of the co-monomer, 2-ethylhexyl acrylate and the cross-linking agent, divinyl benzene on the dispersion stability of TiO(2) in the oil phase, the surface feature of the particle and the encapsulation loading were investigated in this study. The membrane emulsification process was capable of preparing the composite particles with approximately 5 wt% of TiO(2) encapsulated, which accounts for with at least 85 wt% of TiO(2) in the oil phase.

Drug Compounding↗

Poly(p-hydroxystyrene) grafted polystyrene nanospheres: excellent hosts for silver and ruthenium nanoparticles.

A novel approach is described for the preparation of surface functionalized micro- and nanobeads using one pot synthesis by a core-shell method. Monodisperse poly(p-hydroxystyrene) is successfully prepared by grafting the p-acetoxystyrene monomer during the last 30 min of the fabrication of polystyrene bead core by emulsifier-free emulsion polymerization followed by hydrolysis of the acetoxy group by a base. The size of the resulting beads is dictated mostly by the size of the core. Hydroxyl derivatized polystyrene microspheres have been found useful as a high surface area and stable support for anchoring catalytically active silver and ruthenium nanoparticles. The bead formation, surface functionalization, and coating with metal nanoparticles have been studied using scanning electron microscopy, transmission electron microscopy, energy dispersive x-ray spectrometry, Fourier transform infrared spectrometry, and Auger analysis.

Catalysis↗

[Determination of volatile substances and leachable components in polystyrene food contact wares].

Material and migration tests of food-contact plastic wares made of polystyrene were carried out. The average concentration of volatile substances (sum of toluene, ethylbenzene, isopropylbenzene, n -propylbenzene, and styrene) in materials was 861 +/- 692 ppm. Styrene was observed in 95% of 19 samples. alpha-Methylstyrene, which is one of the material compounds of polystyrene, was detected in one sample. Release of volatile substances into n-heptane was not observed at the detection limits of 0.1 ppm.

Cooking and Eating Utensils↗

Utility of expanded polystyrene (EPS) beads in the control of vector-borne diseases.

The use of chemicals or bio-larvicides for the control of Culex quinquefasciatus and Anopheles stephensi breeding in pit latrines and overhead tanks (OHT) respectively is discouraged owing to many undesirable impacts in the environment. Due to faecal contamination and poor survival, use of predatory fish in OHTs is not feasible. The use of expanded polystyrene (EPS) beads is a potential alternative in these habitats. EPS beads not only prevent oviposition but also kill the immature by forming a thick blanket on the water surface. A thick layer of 2 cm with beads of 2 mm is sufficient to suppress and prevent mosquito breeding. These are cheap, environmentally safe and do not need frequent application since they remain on the surface for quiet a long time. Successful trials against C. quinquefasciatus breeding in pit latrines, soakage pits, septic tanks, etc., have been carried out in Kenya, Zimbabwe and Tanzania. Certain trials with EPS indicated reduction in microfilaria (mf) rate besides decline in biting density. In India, EPS beads have also been used on small scale for the control of A. stephensi and A. culicifacies breeding in OHTs and unused wells respectively. The polystyrene beads have also been reported to be effective in the control of mosquito breeding in biogas plants and other industrial situations. The practical utility of EPS beads in the control of vector-borne diseases has been discussed in the present review.

Animals↗

Small scale field trial with polystyrene beads for the control of mosquito breeding.

Mosquito breeding sites confined within four walls as cesspits were selected to carry out the trial with expanded polystyrene beads for the control of mosquito breeding. A comparative study between the use of the beads and oil has also been carried out. Results revealed the superiority in effectiveness of beads over oil for the control of mosquito breeding. Mosquito catches from cesspits treated with polystyrene beads dropped to zero soon after application of the beads and remained so throughout five months observation period.

Animals↗

Covalent immobilization of biomolecules onto polystyrene MicroWells for use in biospecific assays.

Modification of polystyrene for higher binding capacity and/or for specific covalent immobilization of biomolecules is discussed. The benefit of covalent coupling of biomolecules onto a new commercially available surface type for covalent immobilization, CovaLink NH, is illustrated. The CovaLink NH solid phase has spacer arms covalently grafted onto the polystyrene solid phase, approximately 10(14) groups/cm2. Coupling procedures for covalent immobilization of biotin and peptides are demonstrated, and the advantage of using carbodiimide for coupling of carboxylic acid containing compounds is shown.

Biocompatible Materials↗

Radioimmunological determination of total thyroxin by antibodies immobilized on polystyrene tubes coated with styrene-maleic anhydride copolymers.

In this new technique for preparing activated polystyrene tubes for assay of human thyroxin (T4) we coated plastic with styrene-maleic anhydride copolymers. The quantity of antibodies immobilized on these tubes was considerably greater than on non-activated polystyrene tubes, and the time required for immobilization was shortened. Calibration curves were plotted, and determination of total T4 in 200 serum samples confirmed the expected increase in sensitivity as compared with a commercial (Gammacoat) method. The manufacturing procedure is simple and could easily be automated. Thus, such copolymer-coated tubes constitute an advantageous and reliable component in the assay of total T4 that can be used to improve the sensitivity of this and various other radioimmunological determinations.

Antibodies↗