Search PubMed⌕ Search

Biomedical subjects

J Tas

Publications and source records attributed to J Tas.

At least 37 records · Page 2Linked to original sources

Model film studies in enzyme histochemistry with special reference to glucose-6-phosphate dehydrogenase.

This paper deals with the progress made over the last few years in our understanding of enzyme cytochemical staining methods as studied using a fundamental approach with the aid of a model system of thin gel films. Although model films with a matrix of polyacrylamide have been mostly used, the properties and possible applications of other matrices are also reviewed. The chemical aspects of the entrapment of enzyme molecules into a matrix are summarized. Special attention has been paid in model film studies to the principles of the trapping reaction of a diffusable precursor resulting from the enzymatic conversion of a substrate. They are considered here as they concern the cytochemical demonstration of acid phosphatase activity with a lead salt. The effect of fixatives on different enzyme activities, the diffusion rate of substrates and chromogenic compounds to the enzyme site, and enzyme kinetics under cytochemical conditions are also discussed, since they are factors which influence the final results of the staining procedures. The advantage of model film studies in enabling the direct correlation of cytochemical and biochemical results is outlined with special reference to the cytochemical determination of glucose-6-phosphate dehydrogenase with Tetra Nitro BT. A method for determining enzyme activities in the soluble fraction of isolated cells after incorporation in model films is described for the first time. This method has proved to be highly appropriate for microscopical observations of glucose-6-phosphate dehydrogenase activity in single cells, because it results in a good morphology and no formazan precipitates outside the cells. On the other hand, this type of model film forms a bridge between fundamental model film studies using purified enzyme and quantitative enzyme cytochemistry performed in situ.

Acid Phosphatase↗

Fundamental aspects of the interaction of propidium diiodide with nuclei acids studied in a model system of polyacrylamide films.

Qualitative and quantitative aspects of the fluorescent propidium diiodide (PI) staining method have been investigated with model films of polyacrylamide gel incorporated with DNA, RNA, and other macromolecular compounds. PI was found to bind specifically to DNA and RNA, most probably by intercalation into double-stranded regions. Proteins, glycogen, and glycosaminoglycans did not show fluorescence after PI staining. Optimal conditions for dye binding and differentiation have been defined. The stability of nucleic acid-PI complexes, as present in model films, was shown to be very high in distilled water, while dissociation rapidly occurred in ionic media. Linear relationships were found between the fluorescence intensity of bound PI and both the thickness of the model films and the amount of DNA or RNA incorporated. The presence of histone protein bound ionically to DNA did not influence the fluorescent PI binding ability in any appreciable amount.

Animals↗

Quantitative aspects of the cytochemical demonstration of glucose-6-phosphate dehydrogenase with tetrazolium salts studied in a model system of polyacrylamide films.

The enzyme cytochemical demonstration of glucose-6-phosphate dehydrogenase (G6PDH) with several tetrazolium salts has been studied with an artificial model of polyacrylamide films in corporated with the enzyme, which enabled teh correlation of cytochemical and biochemical data. In the model films no formazan could be produced with BPST and NT in contrast to NBT and TNBT. The reason of this phenomenon is discussed. The concentration of acrylamide strongly influenced the retention of the enzyme activity in the model films. The best results were obtained with a film matrix composed of 12% (w/v) acrylamide plus 0.6% (w/v) bisacrylamide. In this kind of film the retention of the enzyme activity was 59.0 +/- 5.4 (% +/- S.D.; n = 9). It was found that the biochemical and cytochemical (with TNBT) assay as applied to the model films both behave according to the Lambert-Beer law and that there was a high correlation between th biochemical and cytochemical data (r = 0.995).

Acrylic Resins↗

(Histo)chemical aspects of Sudan Black B in various solvents.

The spectral properties, chemical composition and practical use in histochemistry of Sudan Black B (SBB) dissolved in pure dimethylsulphoxide (DMSO) have been investigated, in view of favourable characteristics of this solvent observed in previous work. The composition of SBB dissolved in DMSO, as determined with thin layer chromatography, appeared to be similar to that of SBB dissolved in aceton or 70% ethanol. The spectral properties of the two main components of SBB (SBBI and SBBII) also were the same in different solvents. A freshly made solution of SBB in DMSO proved to give good results in staining neutral lipids and phospholipids in frozen sections of rat liver and adrenal cortex, as well as with smears of isolated liver cell nuclei; during aging of such staining solution, however, a new secondary product is formed which greatly reduces the specificity of the staining.

Azo Compounds↗

Quantitative aspects of the cytochemical demonstration of glucose-6-phosphate dehydrogenase with tetranitro BT studied in a model system of polyacrylamide films.

The cytochemical determination of the activity of glucose-6-phosphate dehydrogenase (G6PDH) with tetranitro blue tetrazolium (TNBT) was studied with model films of polyacrylamide gel incorporating purified enzyme. This model system enabled a quantitative study to be made of different parameters involved with the cytochemical assay as it is applied to sections or smears. The enzyme activity of G6PDH incorporated in the model films was also assayed biochemically. Optimal conditions for retaining the maximum amount of enzymic activity are described. The behaviour of G6PDH towards enzyme inhibitors was found to be similar in model films and in solution. WIth TNBT, absorbance measurements at a single wavelength (535 nm) were used to estimate the enzyme activity quantitatively. When carried out under standardized conditions, both the cytochemical and biochemical assay showed a linear relation with the time of incubation and obeyed the Beer-Lambert law. The correlation between biochemical and cytochemical data was very high, which enabled cytochemical data to be converted into absolute units of enzyme activity. The data obtained in this way closely resembled the data of enzyme activity calculated from the absorbance of formazan produced inside polyacrylamide model films and afterwards extracted into a suitable solvent.

Acrylamides↗

Protein staining methods in quantitative cytochemistry.

The chemical action and practical application of the Naphthol Yellow S, Alkaline Fast Green, Coomassie Brilliant Blue, Dinitrofluorobenzene and some lesser known protein staining methods have been surveyed with respect to their potentialities for quantitative cytochemical analyses. None of the dyes can be said to bind to any specific protein or group of proteins, but each may be used to analyse the presence of one or more particular amino acid residues. For the cytophotometric measurement of the 'total protein content' of individual cells and cell organelles the covalent binding Dinitrofluorobenzene and the electrostatic binding Naphthol Yellow S can properly be used. Fast Green FCF, applied at alkaline pH, binds electrostatically to the basic amino acid side chains of strongly basic proteins only but not in a quantitative (stoichiometrical) way. Coomassie Brilliant Blue, recently introduced to protein cytochemistry, may be useful for quantitative purposes. The combined Feulgen-Pararosaniline(SO2)/Naphthol Yellow S and Dinitrofluorobenzene/Feulgen-Pararosaniline(SO2) methods enable the simultaneous cytophotometric analysis at two different wavelengths for protein and DNA within the same microscopical preparation.

Animals↗

A new approach to the staining of lipids with Sudan Black B: a study by means of polyacrylamide model films containing liposomes.

Sudan Black B (SBB) staining of lipids has been studied using model films of polyacrylamide gel containing liposomes prepared from crude lecithine. In these experiments, pure dimethyl sulphoxide was used as solvent for the dye. Sudan Black B dissolved in dimethyl sulphoxide, up to a concentration of nearly 50% (w/v) retaining the molar ratio of the two main components SBB I and SBB II constant over the entire concentration range. The differentiation of model films stained with 2% SBB was carried out in 65% dimethyl sulphoxide. As it proved impossible to find differentiation conditions in which the liposomes remained stained with a completely de-stained background, a mathematical analysis of the differentiation kinetics in the model system was made. This yielded a reliable method for obtaining quantitative date about Sudan Black B staining of liposome-lipids.

Acrylic Resins↗

Growth pattern of individual liver cells after partial hepatectomy in the rat.

The growth (i.e. changes in protein content) of isolated parenchymal cells of rat liver after partial hepatectomy has been investigated cytophotometrically. 3, 14 and 56 days after operation in rats of different age, no statistically significant differences could be measured in the Naphthol Yellow S-protein content of the most commonly found types of parenchymal cells in comparison with controls of the same age. An exaggeration of the hyperplasia of binuclear diploid (BD) and mononuclear tetraploid (MT) cells, characteristic for normal postnatal growth, could not be detected in any of the age groups investigated (30, 65 and 99 at operation). Consequently, it appears that the accelerated growth after partial hepatectomy mainly takes place by a growth mechanism primarily based on multiplication of cells (hypertrophy) as usually found in the embryonic period.

Animals↗

Growth patterns of rat hepatocytes during postnatal development.

During postnatal growth in the liver of the rat, a characteristic shift towards binuclear cells and cells of higher ploidy class occurs. When the protein content of individual isolated hepatocytes of different ploidy classes is analysed cytophotometrically using the specific protein stain Naphthol Yellow S, it appears that the growth in mass in the period 30-99 days is due mainly to increase of protein content of binuclear diploid (BD) and mononuclear tetraploid (MT) cells. The mononuclear diploid (MD) cells play a quickly diminishing role in the parenchymal population after the initial growth phase and cells of highest ploidy degree remain unimportant quantitatively. The quickly growing BD and MT cells only reach a Naphthol Yellow S protein value twice that of MD cells after a certain period of growth, whereas changes in protein content are slight or absent from 99 days onwards in all cell types investigated.

Aging↗

Quantitative aspects of the Naphthol Yellow S staining for proteins studied in a model system of polyacrylamide films and in isolated rat liver cells and nuclei.

After staining with Naphthol Yellow S (NYS) at optimal conditions of pH (2.8), the protein content of rat liver cells isolated by means of a collagenase perfusion technique was found to be cytophotometrically immeasurable, because of too high local dye absorbances. In order to lower the absorption values, techniques to flatten the cells, off-peak measurements and NYS staining at non-optimal pH levels were applied. With polyacrylamide model films incorporated with albumin, the reliability of off-peak measurements and the quantitative aspects of the modified protein staining procedures have been investigated. It was found that NYS is a quantitative protein stain not only at pH 2.8, but also at pH 2.0, 3.5 and 4.0 respectively. Off-peak measurements can also produce quantitative results. In cases of a combined Feulgen-NYS staining, the Feulgen-DNA values were not significantly influenced by any of the NYS staining procedures.

Acrylic Resins↗

Adaptation of the Naphthol Yellow S staining for objects with high protein content.

In measuring isolated rat liver cells stained with Naphthol Yellow S (NYS) at optimal conditions of pH (2.8), the absorbances measured at the absorption peak of 430 nm appeared to be far too high locally to enable accurate cytophotometric measurements. In order to bring down these absorbances, different techniques for flattening the cells, off-peak measurement and NYS staining at non-optimal pH levels have been applied respectively. Using albumin incorporated in polyacrylamide model films, the reliability of off-peak measurements and the quantitative aspects of the modified protein staining procedures have been investigated. It was found that the NYS procedure can be used as a quantitative protein staining not only at pH 2.8, but also at pH 2.0, 3.5 and 4.0 respectively. The problem with regard to the cytophotometric measuring of isolated liver cells could only be solved, however, by combining a specially developed flattening procedure (by centrifuging small drops of suspension) with staining at non-optimal pH levels. In contrast to the model film results, off-peak measurements applied in situ appeared to give rather unreliable results. In cases of a combined Feulgen-NYS staining, the Fuelgen-DNA values were not significantly influenced by any of the modifications of the original NYS staining procedure.

Animals↗

The Alcian blue and combined Alcian blue--Safranin O staining of glycosaminoglycans studied in a model system and in mast cells.

Polyacrylamide films containing different glycosaminoglycans have been applied to the study of the Alcian Blue and combined Alcian Blue--Safranin O staining procedures. It was found that the polyacrylamide matrix can be interpreted as some kind of 'barrier' around the substrate molecules, a situation which can be compared to a certain extent with what occurs in situ, where complex protein molecules can likewise form a 'barrier'. The Alcian Blue staining of the model films was found to follow the Lambert-Beer law. The time to reach optimal dye binding depended on the concentration of the glycosaminoglycan enclosed in the model films and on the concentration of Alcian Blue in the dye solution. Lowering the pH of the dye solution appeared to increase the rate of staining. Optimal staining of model films in the presence of salt or urea was not possible, because under these conditions the pores of the polyacrylamide matrix became blocked. Alcian Blue was found to bind irreversibly to the glycosaminoglycan molecules enclosed in the polyacrylamide films. The results of the combined Alcian Blue-Safranin O staining applied to model films appeared to be highly dependent on the amount of Alcian Blue bound to the glycosaminoglycan in the first step of the double staining procedure. No specific differences were noticed between the behaviour of the different glycosaminoglycan-Alcian Blue complexes towards the Safranin O binding in the next step. As the theoretical basis for the application of the combined Alcian Blue-Safranin O staining was also found not to be completely valid, the conclusion was reached that this double staining cannot be used for the histochemical identification of glycosaminoglycans. The colour retained by a certain glycosaminoglycan-containing part of the specimen only delivers information about the accesibility of that part for Alcian Blue.

Alcian Blue↗

Polyacrylamide films as a tool for investigating qualitative and quanitative aspects of the staining of glycosaminoglycans with basic dyes.

With the introduction of model films of polyacrylamide gel into which purified glycosaminogly cans (GAGs) have been 'incorporated', the direct recording of metachromatic spectra with virtually no interference of the corresponding orthochromatic peaks has become possible. Because this model system yields situations comparable to those of stained sections under the microscope, it is well suited for investigating qualitative and quantitative aspects of histochemical staining procedures. Previous model experiments have shown that under aqueous conditions only minor differences can be observed between the metachromatic peaks of different GAGs complexed with a suitable dye (e.g. Toluidine Blue O, Thionin, Safranin O, Cresyl Violet, Cystal Violet). In non-aqueous media, such as glycerol and ethylene glycol, the complexes with Toluidine Blue O revealed a special pattern for heparin, having a metachromatic peak (517 nm) about 30 nm lower than that of all other GAGs. This observation has formed the basis of a method for the qualitative microspectrophotometric detection of heparin in situ which was worked out by combining model film experiments with microspectrophotometric data obtained from rat mast cells. Since only a limited number of cells in necessary for obtaining reliable data with this method, the presence of heparin in the cytoplasmic granules of normal human mast cells and basophilic granulocytes could thus be proved directly. Alcian Blue 8GX, another basic dye frequently use in GAG histochemistry, has also been investigated with polyacrylamide films. In contrast to the metachromatic dyes, the rate of staining with Alcian Blue depends to a large extent on the rate of penetration of the dye into the model films. The rate of penetration is also a phenomenon of great importance for dye binding in situ, where complex basic protein molecules may form a barrier for the Alcian Blue molecules. The model film studies performed so far have yielded conditions that provide maximal staining (up to an optimal level) and a linear relationship betweeen the concentration of GAG and the AB binding. The presence of basic protein, electrostatically bound to the GAG, was not found to influence either the rate of staining or the maximal amount of dye binding.

Acrylamides↗

Does heparin occur in mucosal mast cells of the rat small intestine?

Microspectrophotometric analyses combined with model experiments using polyacrylamide films containing different types of purified glycosaminoglycan or glycosaminoglycan and basic protein, have been applied to investigate the chemical characteristics of the glycosaminoglycan moiety present in rat mucosal mast cell granules. The results obtained with these histochemical techniques present evidence of the absence of significant amounts of heparin and the presence of lower sulfated glycosaminoglycan(s) in the granules of these cells.

Animals↗

Microspectrophotometric detection of heparin in young and adult rat mast cells, human mast cells and human basophilic granulocytes stained metachromatically with toluidine blue O.

A qualitative microspectrophotometric detection method for heparin in situ has been developed, using data obtained previously with a model system of polyacrylamide films containing pure glycosaminoglycans (Tas & Roozemond 1973, and Tas 1975). This technique, based on the unique metachromatic properties of heparin with Toluidine Blue O in glycerol, has been worked out with rat peritoneal and mesenteric mast cells. After equilibration of the stained, air-dried cells in glycerol (for some days), the specific peak of the heparin-Toluidine blue O complex (as found in the model experiments at about 515 nm) could be recorded. It was found that the method can be used to detect unequivocally the presence of heparin in cells, even if they also contain up to 75 mole percent of other, lower sulphated-glycosaminoglycan. Otherwise the method might yield some information about the degree of sulphation of the heparin concerned. With this technique the presence of heparin has been proved in young and adult rat mast cells and for the first time now directly in normal human mast cells and normal human basophilic granulocytes.

Aging↗

Microspectrophotometric detection of heparin in mast cells and basophilic granulocytes stained metachromatically with Toluidine Blue O.

A qualitative microspectrophotometric detection method for heparin in situ has been developed, using data obtained previously with a model system of polyacrylamide films containing pure glycosaminoglycans (Tas, 1975). This technique, based on the unique metachromatic properties of heparin with Toluidine Blue O in glycerol, has been worked out with rat peritoneal and mesenteric mast cells. After the smears containing the stained cells had been mounted in glycerol, a change with time of the recorded metachromatic peaks to lower wavelengths was found, leading to an equilibrium phase after some days. The metachromatic peaks recorded in this phase appeared to resemble closely the peak obtained for the heparin-Toluidine Blue O complex under similar conditions in the model experiments. With rat mast cells it was found that nucleic acids, basic proteins, histamine and lipids had no appreciable influence on the position of the final recorded peaks, nor did they influence the slope of the time course very much. This observed decrease with time in the wavelengths of the metachromatic peaks can be explained by the time necessary for equilibration of the cells in glycerol and by the possible influence of lower sulphated glycosaminoglycans on the peak of the heparin-Toluidine Blue O complex. It was found that the method can be used to detect unequivocally the presence of heparin in cells, even if they also contain up to 75% (mole/mole) of other, lower sulphated glycosaminoglycan. Only a limited number of cells is necessary with this method - in contrast to biochemical determinations. For the first time the presence of heparin in normal human basophilic granulocytes and mast cells has been proved directly. The experiments indicate the occurrence of virtually similar sulphated heparins in human mast cells and basophilic granulocytes, as well as in pig mast cells. A higher sulphated heparin, however, might be present in rat mast cells.

Adolescent↗