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An avidin-biotin-peroxidase assay to detect synthetic peptides bound to polystyrene plates.

The simple chemical method described for detecting synthetic peptides bound to polystyrene should facilitate interpretation of studies involving interactions of antibodies or solubilized major histocompatibility complex (MHC) molecules with immobilized peptide antigens. After its application to an ELISA plate, the peptide is biotinylated in situ and avidin-biotinylated horseradish peroxidase complex and substrate are added sequentially. For 36 of 43 peptides tested (11-27 residues long), a colored reaction product confirmed that the peptide was bound. In three of the seven instances of a negative result, peptides were positively detected by binding of antibody. Four instances remained in which it could not be determined whether the peptide did not bind to the plate or whether it was not biotinylated. On the other hand, the biotin-ABC assay positively detected peptide in 18 of 22 instances without evidence of antibody binding, implying seronegativity or a loss of antigenic conformation in the bound peptide. This general method should be applicable to assays of microbial antigens, autoantigens and allergens. Modification of the technique by use of biotin hydrazide should enable monitoring of the binding to polystyrene of carbohydrates, glycolipids or DNA.

Animals↗

An appraisal of polystyrene-(ELISA) and nitrocellulose-based (ELIFA) enzyme immunoassay systems using monoclonal antibodies reactive toward antigenically distinct forms of human C-reactive protein.

The purpose of this study was to compare and contrast two enzyme immunoassay systems: the enzyme-linked immunosorbent assay (ELISA), which utilizes polystyrene microtiter plates as the adsorptive surface and the enzyme-linked immunoflow assay (ELIFA), which utilizes nitrocellulose membranes. The principal parameter under scrutiny was the denaturing or unfolding effects caused by the interaction of the protein with the adsorptive surfaces in each assay system. These effects were monitored by utilizing two conformationally distinct forms of human C-reactive protein (CRP), the native form of CRP and a denatured form (M-CRP), with a corresponding panel of monoclonal antibodies (MAbs) specific to either CRP or M-CRP. The results show that the ELIFA system was less sensitive than the ELISA system but that the ELIFA assay can be completed in less time than the ELISA. Also, adsorption of native CRP to the polystyrene surface in the ELISA system resulted in conformational changes of the adsorbed native CRP protein such that M-CRP reactive determinants were available for binding with anti-M-CRP MAbs, whereas native CRP adsorbed to the nitrocellulose membrane in the ELIFA system resulted in very limited conversion of CRP to M-CRP reactive epitopes. These results have important implications for development of immunoassays and screening of MAbs for proteins whose conformations may be affected by adsorption to various surfaces.

Antibodies, Monoclonal↗

UV-treated polystyrene microtitre plates for use in an ELISA to measure antibodies against synthetic peptides.

Detection of peptide-specific antibodies by the conventional ELISA technique is sometimes hampered by the difficulties encountered in immobilizing stretches of amino acids on the solid support. To improve the attachment of synthetic peptides to the solid phase, we have developed a sensitive and rapid immunoassay based on the irradiation of polystyrene plates with UV light prior to coating the target peptide. This pretreatment increases the specific signal in a dose-dependent manner without augmenting the background or altering the specificity of the assay. This simple method was shown to be suitable for the quantitation of murine monoclonal antibodies as well as human and rabbit polyclonal antibodies. It should be applicable to a variety of synthetic peptides and polystyrene ELISA plates. Using this technique, we were able to localize the antigenic motifs recognized by neutralizing monoclonal antibodies generated against the envelope protein gp120 of the human immunodeficiency virus.

Amino Acid Sequence↗

Affinity of antithrombin III for insoluble modified polystyrene.

In previous papers we described insoluble polystyrenes grafted with L-arginyl methyl ester (PAOM) which exhibit a high affinity for thrombin. Based on their specific interaction with the protease, the resin has been used as stationary phases for affinity chromatographic procedure of thrombin in affinity chromatography (AC) and high performance liquid affinity chromatography (HPLAC). A slight adsorption of antithrombin III (AT III) was shown in AC. In this paper we study the interaction of AT III for PAOM resin in batch procedure. The adsorption is measured using purified protein and corresponds to a monolayer adsorbed on the surface of the polymer. The affinity constant is evaluated kAT = 3.10(5) 1.M-1. Furthermore, insoluble sulfonated polystyrenes grafted with different amino acid were shown to possess an heparin-like behaviour and catalyse the generation of thrombin-AT III complex. So, compared to one of the resin previously mentioned, it could be concluded that PAOM is not heparin-like. When thrombin is adsorbed on the surface of the polymer, AT III cannot interact with the specific seryl residue of the enzyme.

Adsorption↗

Thrombin binding properties of insoluble modified polystyrene: Part II.

Antithrombin III (AT III) inhibits thrombin via an arginine-serine interaction. Insoluble polystyrene resins grafted with arginyl methyl ester have been synthesized, and their interaction with thrombin tested. One of these resins was selected for its high affinity for thrombin. In this paper we report the characteristics of this thrombin resin interaction. Using this substituted polystyrene resin as a support for affinity chromatography, we have compared the binding of thrombin with that of other proteins (prothrombin, Factor IXa, trypsin and AT III). It was found that 0.7 mg of highly purified human thrombin (2,100 U/mg) was bound to 1 g of resin. This could only be eluted at high ionic strength (1.5 M) and the amidolytic and clotting activities of the eluted thrombin remained unchanged. The binding of thrombin to the resin involves the active site of the enzyme but also other residues since, when DIP thrombin was used, the inactive enzyme could be eluted at lower ionic strength (1.0 M). This resin seems to be specific for thrombin because it does not bind the other serine-proteases (trypsin or Factor IXa), prothrombin (the inactive precursor of thrombin) or AT III. The arginyl residues of the resin are important for the specificity of the interaction with Factor IIa since prolyl residues are totally ineffective. Chromatography performed on such a resin is a very efficient method of purifying thrombin, and may be very useful for the removal of thrombin as a contaminant of plasma protein fractions.

Antithrombin III↗

Selective binding of plasmin in the presence of excess plasminogen by certain anionic polystyrene resins.

Contact of plasminogen with sulfonate or sulfonyl-glutamate derivatized polystyrene resins has previously been reported to lead to the formation of an active single-chain form of the plasminogen (Kichenin-Martin et al., Thrombosis Research, 52, 469-478, 1988). Attempts to duplicate this finding revealed instead that these polymers selectively adsorb active plasmin and thus remove it even in the presence of a great excess of plasminogen. Under optimum conditions 4.0 mg/mL plasminogen containing 3% plasmin was freed of one half of this contaminant by exposure to 6-9 mg of dry resin per mL in a batch mode. Neither ordinary polystyrene nor Dowex nor Sephadex cation exchange resins displayed these properties. The separation is based on the more rapid binding of plasmin to the active resins and is thus kinetically controlled.

Anions↗

DNase activity of micrococcal endonuclease covalently immobilized on nylon and polystyrene.

Water-insoluble nucleases were prepared by immobilizing the endonuclease from S. aureus onto the surface of nylon-66 and polystyrene spheres. The activation phase of the synthetic supports was optimized to define optimal conditions of pH, temperature, and Ca2+ concentration for using immobilized enzymes. The activity, evaluated by hydrolysis of high-molecular-weight and supercoiled DNA, indicates that both derivatives are highly stable for storage and further use. Immobilization of the enzyme is much more effective when the covalent binding is performed on polystyrene. By using different activation methods with these matrices, a set of immobilized nucleases with various levels of enzymatic activity can be prepared. The possibility of working in a wide range of enzymatic activity and at low temperature and Ca2+ concentrations in different buffers makes these immobilized nucleases very useful for investigating accessible DNA regions in chromatin structure.

Biotechnology↗

Heparin-like activity of insoluble sulphonated polystyrene resins. Part I: Influence of the surface density, nature and binding of substituted anionic groups.

It was previously demonstrated that copolystyrene (sulphonate-amino acid sulphamide) resins possessed an anticoagulant heparin-like activity in the presence of blood plasma. Taking into account the variable surfaces of swollen resins developed by these dry resins, it is now shown that the antithrombic activity of crosslinked sulphonated polystyrene is linearly dependent on the surface density of the sulphonate groups. This fact implies that the presence of such isolated groups is sufficient to obtain a catalytic site for increasing the rate of inactivation of thrombin by plasmatic proteins. It is also shown that replacing sulphonate groups either by directly backbone-bonded carboxylate groups or by methionine linked by amide bonds to polystyrene backbone is not sufficient to endow the resulting resins with a significant anticoagulant activity.

Anticoagulants↗

Control of staphylococcal adhesion to polystyrene surfaces by polymer surface modification with surfactants.

The adherence of three clinical isolates of Staphylococcus epidermidis to model polystyrene surfaces was studied in vitro using epifluorescent image analysis. A series of 16 Pluronic surfactants (A-B-A block copolymers where A is poly(ethylene oxide) (PEO) and B is poly(propylene oxide) (PPO)) were used as surface modifiers for the model polystyrene surfaces. Substantial reductions (up to 97%) in bacterial adhesion levels were achieved with all copolymers tested, irrespective of the PPO or PEO block lengths. It appears likely that such treatments create a sterically stabilized surface with adsorbed PEO chains, conferring nonspecific anti-adhesive properties which can limit bacterial attachment.

Bacterial Adhesion↗

Biospecific interactions of Vitamin K-dependent factors with phospholipid-like polystyrene derivatives. Part I: Factor II.

Phosphorylated polystyrene derivatives with different compositions in phosphate groups were shown to be either recognized as phospholipidic or as DNA-like surfaces by antibodies from Systemic Lupus Erythematosus patients. In order to check whether these polymers were able to interact with Vitamin K-dependent coagulation factors, phosphorylated resins of various compositions in phosphate groups were assessed with regard to their interactions with Factor II, one of the Vitamin K-dependent factors. These studies were performed either in the presence or the absence of calcium ions, and with or without albumin precoating of the polymers. The results show that the affinity of the protein for the polymer is increased in the presence of calcium ions and depends on the composition of the polymer. The protein-polymer interactions involve the formation of binary or ternary complexes and the domains of predominance of these complexes were determined as a function of the calcium ion concentration in the assay. This allowed us to propose optimal conditions for Factor II purification by highly specific liquid chromatography using phosphorylated polystyrene resins of given compositions as stationary phases.

Adsorption↗

Monocyte activation on titanium-sputtered polystyrene surfaces in vitro: the effect of culture conditions on interleukin-1 release.

The release of interleukin-1 alpha (IL-1 alpha) by human peripheral blood monocytes cultured for 24 and 48 h on polystyrene (PS) and titanium-sputtered polystyrene (Ti) was evaluated. Magnetron sputtering of the PS surfaces resulted in a formation of a 50-nm-thick coat, consisting of an outer layer of TiO2. Monocytes released IL-1 alpha without the addition of exogenous stimuli. A doubling of the culture time from 24 to 48 h did not have a major effect on the amount of IL-1 alpha released. The IL-1 alpha levels were increased by addition of lipopolysaccharide (LPS). High concentrations of PS particles (1 and 3 microns diameter) were equally effective stimuli for IL-1 alpha release as LPS. Preadsorption of fibronectin to culture plates augmented LPS-stimulated IL-1 alpha secretion, whereas preadsorbed fibrinogen had an inhibitory effect. Our observation indicate a direct activation of monocytes by PS and Ti, resulting in IL-1 alpha secretion, which is modified by protein adsorption and exogenous stimuli.

Adsorption↗

The application of polystyrene waveguides to protein adsorption investigations.

The possibility of detecting peroxidase adsorption on the surface of a planar polystyrene waveguide has been studied using light of the wavelength adsorbed by the protein molecules. When a single-mode optical waveguide was employed, maximal protein sensitivity was obtained when the thickness of waveguide layer was about 1.5-times greater than the cutoff thickness. Adsorption kinetics of peroxidase on the surface of polystyrene was studied with single-mode waveguides. A minimum surface concentration of 0.1 mg/m2 was observed experimentally.

Adsorption↗

Passive adsorption of immunologically active and inactive synthetic peptides to polystyrene is influenced by the proportion of non-polar residues in the peptide.

A well-known drawback in the use of synthetic peptides as solid-phase antigens in immunoassays is that positive controls confirming the presence of the peptide on the solid phase are not always present. We therefore evaluated the applicability of a recently described enzyme immunoassay (EIA) method by which the presence of peptides is detected by biotinylation (BioEIA) of alpha- and/or epsilon-amino groups after passive adsorption. This approach allows the rapid screening of a large number of proteins and peptides in respect to passive adsorption to plastic surfaces. When using irradiated polystyrene microplates we found that 240 (94%) of 256 synthetic peptides, covering 85% of the complete hepatitis C virus (HCV) sequence, passively adsorbed to polystyrene. When comparing the results from the BioEIA to the peptide reactivity of human sera it was obvious that the absence of serum reactivities was not due to lack of peptide adsorption to the plates. Using 192 peptides the relation between the signal-to-cutoff ratio (S/CO) in the BioEIA and the amino acid content of the individual peptides was further analyzed. The S/CO ratio was related to the number of epsilon NH2 groups (Lys residues) present in the peptide (P < 0.001, Kruskal-Wallis). We separately related the amino acid content of 68 peptides with Lys and 124 peptides lacking Lys to the S/CO ratio in the BioEIA. In both cases it was found that an increasing amount of nonpolar residues such as Ala, Phe, Ile, Met, and Val (P < 0.05, respectively) in the peptides was related to a lower S/CO ratio in the BioEIA.(ABSTRACT TRUNCATED AT 250 WORDS)

Adsorption↗

Exposure of platelet binding sites in von Willebrand factor by adsorption onto polystyrene latex particles.

Von Willebrand factor molecules are flexible linear polymers composed of repeating protomeric polypeptide subunits. In the process of primary hemostasis, von Willebrand factor promotes platelet adhesion and platelet plug formation at the site of vascular injury. This biologic activity is apparently related to the multimeric size of von Willebrand factor. We simulated von Willebrand factor binding to the subendothelial surface by adsorbing purified human von Willebrand factor onto polystyrene latex particles of two different diameters, i.e., 0.312 micron and 2.02 micron. The rate and extent of 125I-labeled von Willebrand factor binding to polystyrene was similar with both size classes of latex particles. The von Willebrand factor-coated latex beads of 2.02 micron diameter, in contrast to the smaller size, induced rapid agglutination of formalin-fixed human platelets in the absence of any other aggregating agent. Von Willebrand factor was also adsorbed from human plasma onto latex particles coated with anti-von Willebrand factor antibodies. Again, only the large beads, carrying the von Willebrand factor-antibody complex, induced agglutination of fixed platelets. Shear stress promoted the rate of von Willebrand factor adsorption to latex particles. Our results suggest that adsorption to surface exposes binding sites in human von Willebrand factor for platelets.

Adsorption↗

Polystyrene surface coated with vitamin E modulates human granulocyte adhesion and MMP-9 release.

Vitamin E (Vit.E, alpha-tocopherol) is a natural biological antioxidant and antinflammatory agent, which protects cells from the effects of free radicals and inhibits inflammation. For such properties Vit.E has been used to improve the biocompatibility of materials such as cellulose membrane for hemodialysis. In this study granulocytes adhesion and activation have been studied after contact with normal cell culture grade polystyrene (PS) and Vit.E-coated polystyrene (Vit.E 0.1 and 0.3% (v/v)) using optical microscopy, flow cytometry and substrate zymography. Vit.E increased the number of adherent granulocytes both at 0.1% (11470 +/- 1064 cells/cm(2), P < 0.01) and 0.3% ( 13706 +/-818) cells/cm(2), P < 0.001) concentration compared to normal PS (5529+/-692 cells/cm(2)). The morphology of granulocytes adherent to Vit.E-PS appeared lightly altered and no differences have been observed in their respiratory burst compared to control granulocyte, while matrix metalloproteinase 9 or gelatinase B (MMP-9) release and activation were increased compared to the normal PS samples. Our data indicate that Vit.E-coated surface induced an increase in granulocytes adhesion and MMP-9 release in the absence of the typical oxidative stress, hallmark of granulocytes activation. A possible explanation of the phenomenon is that Vit.E modifies the surface protein adsorption thus increasing cell adhesion and in turn MMP-9 releasing.

Cell Adhesion↗

Elucidation of retention mechanisms on hypercrosslinked polystyrene used as column packing material for high-performance liquid chromatography.

Establishing of basic retention mechanisms was considered the key target during the development of new column packing materials. To extract, from an appropriate retention data matrix on hypercrosslinked polystyrene Chromalite 5HGN, certain factors that can be brought in an obvious correspondence with known retention mechanisms, the principal component analysis (PCA) was applied. The approach was used to elucidate the adsorption properties of the above novel HPLC packing. Besides HPLC, knowledge of retention mechanisms helps to reveal perspective application area for the hypercrosslinked polystyrene-type materials in solid-phase extraction (SPE) and low-pressure preparative LC.

Chromatography, High Pressure Liquid↗

Determination of residual styrene monomer in polystyrene granules by gas chromatography-mass spectrometry.

Polystyrene is widely used in formulations intended for children use. The main problem with this plastic is the residual styrene, which can migrate from the product, and therefore, be in contact with children. The acute toxicity of styrene is well known, raising the need of an efficient and fast method of analysis for this compound. Several extraction methods have been evaluated and compared for the determination of residual styrene monomer in polystyrene granules used in toys: supercritical fluid extraction (SFE), microwave-assisted extraction (MAE), Soxhlet extraction, headspace emission and dissolution-precipitation. The analyte was subsequently detected by gas chromatography (GC) with MS detection. The results indicated that the most efficient method was dissolution-precipitation giving even higher extraction efficiency than SFE. For validating the method, PS samples spiked with known quantities of styrene at three concentration levels were prepared to calculate the extraction recovery. The founded validation data proved the suitability of the proposed method.

Gas Chromatography-Mass Spectrometry↗

Development of capillary column packed with thiol-modified gold-coated polystyrene particles and its selectivity for aromatic compounds.

Three types of thiol compounds (n-octadecanethiol, thiophenol, and 2-phenylethanethiol) were used to modify the gold-coated polystyrene particles (dp. 5microm) to prepare a stationary phase for capillary liquid chromatography through the formation of self-assembled monolayer. The column with n-octadecanethiol-modified gold-coated polystyrene particles (C18-Au) demonstrated the higher affinity to phenanthrene and anthracene than small aromatics compared to the ODS column. In addition, the shape selectivity between phenanthrene and anthracene in the C18-Au column was much higher than that in the ODS column (separation factors: 1.82 and 1.14, respectively). The relationship between the retention factor and acetonitrile content in the mobile phase revealed that the retention behaviors in the C18-Au column was more sensitive on the acetonitrile content than those in the ODS column. Relatively higher affinity for phenanthrene and anthracene was commonly observed in all the three thiol-modified Au columns than that for the conventional ODS column, whereas separations of benzene and nitro- and chlorobenzenes were quite different among the three thiol-modified Au and ODS columns.

Acetonitriles↗