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Enhancement of histological detail using metanil yellow as counterstain in periodic acid Schiff's hematoxylin staining of glycol methacrylate tissue sections.

Histological detail in sections from tissues embedded in glycol methacrylate was improved by counterstaining PAS/iron-hematoxylin stained sections with a dilute solution of metanil yellow. The addition of the counterstain increases contrast in tissue sections and highlights PAS-positive entities. The staining protocol provides sharp definition of tissue morphology, differentiates cell types and other tissue components and does not produce background staining.

Animals↗

An overview of the development of artificial corneas with porous skirts and the use of PHEMA for such an application.

An overview of the efforts to develop functional polymeric artificial corneas (keratoprostheses) by incorporating a porous skirt is presented. The development of such a device by the author's group using poly(2-hydroxyethyl methacrylate) (PHEMA) hydrogels, as a combination of their homogeneous and heterogeneous states, and the rationale of this choice are also discussed. The latest results of the clinical trials with the PHEMA keratoprosthesis in human patients indicate a lower risk of the complications traditionally associated with the implantation of artificial corneas.

Animals↗

Synthesis and characterization of hyperbranched polyglycerol hydrogels.

Hyperbranched polyglycerol (HyPG; M(n) 2000g/mol) was derivatized with glycidyl methacrylate (GMA) in dimethyl sulfoxide using 4-(N,N-dimethylamino)pyridine as a catalyst to obtain methacrylated HyPG (HyPG-MA). The degree of substitution (DS, the percentage of derivatized hydroxyl groups), established by NMR and RP-HPLC, was fully controlled in the range of 0.7-70 by varying the molar ratio of GMA to HyPG in the reaction mixture. This indicates that for e.g. a DS of 28, 9 out of the 32 hydroxyl groups of a HyPG molecule were esterified with methacryloyl groups. Under the selected conditions, the reaction reached an equilibrium within 4h. Furthermore, it was demonstrated that under the applied conditions the reaction was reversible. Hydrogels were obtained by crosslinking HyPG-MA in aqueous solutions using potassium peroxodisulfate (KPS) and N,N,N',N'-tetramethylethylenediamine (TEMED) as initiator and catalyst, respectively. Within 10min, 99% of the methacryloyl groups were polymerized. Rheological analysis showed that the storage modulus of these gels could be tailored by varying the concentration of HyPG-MA in the aqueous solution as well as by the DS. Moreover, the obtained hydrogels have a limited swelling capacity indicating that rather dimensionally stable networks were obtained. As an alternative for radical polymerization with KPS and TEMED, the HyPG-MA could also be crosslinked by photopolymerization using Irgacure 2959 as photoinitiator. A methacrylate conversion of 99% was obtained within 3min of illumination. As for the gels prepared with KPS and TEMED, networks formed by photopolymerization also had a high shear storage modulus and showed limited swelling. Hydrogels based on HyPG have great potential as drug delivery matrices and for tissue engineering purposes.

Cross-Linking Reagents↗

The use of ultrasonication to remove non-specific precipitate.

The non-specific artifactual precipitate found in glycol methacrylate (GMA) embedded tissues, following acid phosphatase histochemical incubation, can now be eliminated with brief ultrasonication. A treatment of 1 to 2 min totally eliminated the artifactual residue, leaving the true histochemical reaction product and the physical integrity of the tissues intact. With this technique, most loosely bound precipitates, which clutter and mask GMA or conventionally embedded tissues, may now be treated and eliminated.

Acid Phosphatase↗

Improved methods for molding, facing and sectioning glycol methacrylate embedded tissue blocks.

Improvements in glycol methacrylate embedding, block facing, trimming, and sectioning are described. The improvements are derived from a novel molding system, a multipurpose instrument for rapid block facing, trimming and examination, and a device for removing unwanted sections from the microtome knife while sectioning is in progress. Together, these methods facilitate specimen preparation and result in a significant reduction of the time required to prepare high resolution, very thin sections for light microscopy.

Animals↗

Embedment in glycol methacrylate at low temperature allows immunofluorescent localization of a labile tissue protein.

The antigenic activity of a labile protein postulated to the hormone ovine chorionic somatomammotropin (OcS) is preserved in tissue fixed in either glutaraldehyde or paraformaldehyde and low temperature-embedded in the water-soluble plastic glycol methacrylate. Immunofluorescence techniques used on 1--2 micrometer thick sections show that this protein is located in the cytoplasm of certain fetal chorionic cells in association with small spherical bodies, which may be lipid. The use of borohydrate reduction or treatment with Schiff's reagent to reduce glutaraldehyde-induced background fluorescence is described.

Animals↗

UV versus chemical polymerization of glycol methacrylate (GMA) in enzyme histochemistry.

The influence of the mode of polymerization of GMA on the enzyme activities of differently fixed rat livers was studied. It was found that with increasing time of UV-polymerization several enzyme activities were inhibited whereas chemical polymerization was comparatively less harmful. The histochemical reactivity of substrates such as glycogen was not impaired by the mode of polymerization, which is in contrast to the increased basophilia of DNA and RNA after UV-polymerization.

Acid Phosphatase↗

Preparation of poly(2-hydroxyethyl methacrylate)-collagen composites.

Linear and three-dimensional polymer composites were prepared on the basis of poly(2-hydroxyethyl methacrylate)--pHEMA--and collagen. Their biological properties were tested by in vitro as well as in vivo methods. The composite material (unlike pure pHEMA) supported myoblast adhesion as well as their fusion into multinuclear myotubes in vitro. The three-dimensional polymer composites stimulated a new bone formation after their intraosseal implantation in dogs and pigs. The biomaterial itself was degraded in the host organism, in contrast to stable pHEMA.

Animals↗

Glial shape and cytoskeletal protein synthesis.

We investigated whether the shape of astroglial derived cells influences the expression of cytoskeletal proteins. In reaggregating cultures GFAP, vimentin and actin synthesis was approximately 52%, 50% and 37% the level found in monolayer cultures, respectively. Monolayer cultures consisted of polygonal shaped cells adhering to plastic, while reaggregating cultures were comprised of round cells growing in a suspension like culture. Additionally, human glioma cells induced to grow as round cells on poly-2-hydroxyethyl methacrylate (polyhema) coated plastic exhibited a level of GFAP synthesis that was approximately 20% the level displayed by polygonal shaped cells grown on uncoated plastic. Glioma cells initially grown on a polyhema surface and replated onto uncoated plastic were capable of reinitiating GFAP synthesis. Thus, alterations in the synthesis of GFAP and other cytoskeletal proteins can occur when astrocytes change their shape.

Actins↗

Quantitative evaluation of rat lymphocyte adsorption on microdomain structured surfaces of poly(2-hydroxyethyl methacrylate)/polyamine.

The adsorption behaviour of rat lymphocytes on poly(2-hydroxyethyl methacrylate)-graft-polyamine (HA) copolymers was evaluated using a newly developed chromatographic method. The quantity of lymphocyte adsorption can be varied by regulating the polyamine content in the HA copolymer. A remarkable depression in lymphocyte adsorption was observed on the surface of HA copolymer, consisting of 7 wt% of polyamine graft and 93 wt% of poly(2-hydroxyethyl methacrylate) (pHEMA) backbone. Further introduction of a polyamine graft on pHEMA resulted in the increase of lymphocyte retention on the copolymer surfaces. Lymphocytes adsorbed on HA copolymer surface retained their original round shape. Detailed analysis of the chromatogram showed that interaction of lymphocytes with HA copolymer was very much weaker than that with homopolymer of pHEMA or polyamine.

Adsorption↗

Cysteine-reactive polymers synthesized by atom transfer radical polymerization for conjugation to proteins.

In this communication we report a strategy for the synthesis of semitelechelic polymers reactive to cysteines. An initiator modified with a pyridyl disulfide was prepared and used for the CuBr/2,2'-bipyridine-mediated atom transfer radical polymerization (ATRP) of 2-hydroxyethyl methacrylate. Polydispersity indices (M(w)/M(n)) of the polymers with different molecular weights were 1.25 or less. The pyridyl disulfide end group was preserved during the polymerization and allowed direct conjugation of the polymer to cysteine residues of bovine serum albumin. The described method provides a general way for the preparation of protein-polymer conjugates through a reversible disulfide bond without the need for postsynthesis modification of the polymers.

Cysteine↗

A novel method for blood group typing with the aid of monoclonal antibody immobilized dyed microspheres.

A novel and simple method for blood group typing has been developed. The procedure involves the use of type-specific monoclonal antibodies covalently linked to dyed microspheres of polyglycidyl methacrylate. The presence of ABH and Lewis blood group antigens in saliva and plasma could be determined easily and specifically with respective monoclonal antibodies bound to dyed microspheres. The present method could also be applicable for the determination of the presence of invisible antigens for the forensic and diagnostic purpose with visible agglutination reaction.

ABO Blood-Group System↗

An embedding method for histochemical studies of undecalcified skeletal growth plate.

We have used glycol methacrylate to study undecalcified skeletal growth plate and subchondral bone. Minor modifications of the original technique including dehydration in glycol methacrylate vacuum infiltration and polymerization in the cold make it quite suitable for embedding of such tisssues. Moreover, specimens can be processed quickly and the morphologic and biochemical integrity of the tissue retained so that histochemical procedures can be readily applied. Collagen, glycosaminoglycan, glycogen, lipid, calcium and the activity of alkaline and acid phosphatase were localized. This technique appears to be very useful for studying skeletal tissues.

Acid Phosphatase↗

Polyethyleneglycol methacrylate 200 as an electrophoresis matrix in hydroorganic solvents.

The properties of gels composed of poly(polyethyleneglycol methacrylate) and copolymers of polyethyleneglycol methacrylate and acrylamide were studied. These novel electrophoresis matrices are amphigels (swellable in water and organic solvents) that have unprecedented organic solvent compatibility. Hydrophobic proteins which are poorly solubilized in aqueous detergent systems (e.g., zein) are well-resolved in these gels with hydro-organic solvents. This is especially relevant for isoelectric focusing, to avoid using either ionic detergents that may interfere with the focusing, or urea that may cause carbamylation of proteins. Variations of crosslinker, buffer, and solvent systems in these gels were explored.

Electrophoresis↗

Hydrogels in endovascular embolization. VI. Toxicity tests of poly(2-hydroxyethyl methacrylate) particles on cell cultures.

Cytotoxicity of poly(2-hydroxyethyl methacrylate) [poly(HEMA)] hydrogel spherical particles, prepared by radical suspension polymerization and designed for endovascular occlusion, was studied in vitro on cell cultures. Testing methods included a direct contact test and extraction test. No inhibition of growth of cells surrounding the poly(HEMA) beads and a very low inhibition of cell viability, only in concentrated extracts in long-term contact, were observed. As a result, poly(HEMA) beads can be considered non-toxic.

Biocompatible Materials↗

Chemical investigations of ultraviolet-absorbing hydrogel material for soft intraocular lenses.

A poly(2-hydroxyethyl methacrylate) hydrogel material exhibiting ultraviolet-absorbing properties was synthesized by simultaneous polymerization, crosslinking, and covalent bonding of an available polymerizable absorber. The two-stage leaching experiments carried out by aqueous extraction and the analysis of the concentrated extracts by high resolution capillary gas chromatography showed very low levels of additive released through leaching action. This proves that the ultraviolet absorbers can be successfully incorporated by covalent bonding in soft hydrogel intraocular lenses.

Acrylates↗

A comparison of 141 polymacon (Iogel) and 140 poly(methyl methacrylate) intraocular lens implants.

In a prospective controlled trial 290 consecutive patients were randomly allocated a polymacon or a poly(methyl methacrylate) (PMMA) intraocular lens. Early Treatment of Diabetic Retinopathy Study (ETDRS) acuity charts gave similar results with both lenses. However Pelli-Robson contrast sensitivity charts gave a better result with PMMA lenses. Polymacon lenses appeared to remain free of any adhesions after implantation raising the question of long term stability. Four patients experienced problems related to this, three involved total lens dislocation. Seven patients developed early 'fibrin' membranes coating the polymacon lens, of which three were florid.

Aged↗

Immunofluorescent localization of pea storage proteins in glycol methacrylate embedded tissue.

Improved immunofluorescent techniques have been developed for the high resolution light microscopic localization of intracellular antigens in plant tissue. Thin sections of pea cotyledon tissue which had been fixed in paraformaldehyde and embedded in glycol methacrylate were reacted with mono-specific antibodies to the storage proteins legumin and vicilin. These antibodies were raised in sheep, purified by affinity chromatography and tested by immunoelectrophoresis and immunodiffusion. Using the indirect technique, rhodamine-labeled antibodies permitted specific fluorescent localization of the legumin and vicilin to small (ca. 1 micrometer) cytoplasmic organelles in near mature tissue. Subsequent histochemical staining verified the proteinaceous nature of these organelles. Parameters affecting staining specificity and background fluorescence are discussed.

Fluorescent Antibody Technique↗