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Biomedical subjects

P J Stoward

Publications and source records attributed to P J Stoward.

At least 19 recordsLinked to original sources

Initial reaction kinetics of succinate dehydrogenase in mouse liver studied with a real-time image analyser system.

The initial reaction kinetics of succinate dehydrogenase in situ were investigated in sections of mouse unfixed liver using an ARGUS-100 image analyser system. The sections were incubated on substrate-containing agarose gel films. Images of a section, illuminated with monochromatic light (584 nm), were captured with the image analyser in real time at intervals of 10 s during the incubation. The absorbances of selected hepatocytes in the successive images were determined as a function of time. In every cell, the absorbance increased nonlinearly after the first minute of incubation. The initial velocity of the dehydrogenase was calculated from the linear activities during the first 20 s of incubation. Hanes plots of the initial velocities and succinate concentration yielded the following mean kinetic constants. For periportal hepatocytes, the apparent Km = 1.2 +/- 0.8 mM and Vmax = 29 +/- 2 mumol hydrogen equivalents formed/cm3 hepatocyte cytoplasm per min. For pericentral hepatocytes, Km = 1.4 +/- 1.0 mM and Vmax = 21 +/- 2 mumol hydrogen equivalents/cm3 per min. The Km values are very similar to those determined previously from biochemical assays. These results, and the observed dependence of the initial velocity on the enzyme concentration, suggest that the technique reported here is valid for the histochemical assay of succinate dehydrogenase.

Animals

Secretory pathway of vitellogenesis in the liver of the cockerel as revealed by immuno-gold and computer-assisted digitization techniques.

The protein A-gold immunocytochemical technique was used to localize the secretory pathway of oestradiol-induced vitellogenin in hepatic parenchymal cells of the cockerel. Liver was removed from experimental birds on the 1st, 4th and 8th day following oestradiol-treatment, and embedded in Lowicryl K4M resin cured at -20 degrees C. In selected electron micrographs the fractional surface area of each of the intracellular compartments was measured by the computer-assisted digitization technique. Labelling was detected over the cisternae of the rough endoplasmic reticulum (RER), the Golgi apparatus, the immature secretory vacuoles (ISV) including condensing vacuoles and the mature secretory vacuoles (MSV). Counts of the gold particles demonstrated an increasing concentration which progressed in the order RER less than Golgi less than ISV less than MSV and identified the secretory pathway of the protein. The highest density of labelling was obtained on the 4th day, when vitellogenin reaches its peak activity. Autophagic activity (or crinophagy) was also found in lysosomes and its labelling intensity increased daily. A hypothesis concerning the secretory pathway of non-stored proteins by the liver is discussed further.

Animals

Immunoelectron microscopical demonstration of egg-yolk plasma precursor vitellogenin in the hepatocyte of oestradiol-treated cockerels.

Vitellogenin has been localized at the electron microscopical level in the liver of the cockerel using a colloidal gold technique. White leghorn cockerels were treated with 17 beta-oestradiol to induce vitellogenesis. Pieces of liver were removed from control and experimental birds on the 4th and 8th days following hormone treatment, and embedded in Lowicryl K4M. Vitellogenin was isolated from the plasma of oestradiol-treated cockerels, and the antibody to it elicited in rabbits and made vitellogenin-specific by affinity chromatography on lipovitellin-Sepharose columns. At the light microscopical level, the intensity of immunohistochemical staining was considerably above background levels in oestradiol-treated cockerels. At the electron microscopical level, gold particles indicating antigenic sites of vitellogenin were largely confined to the rough endoplasmic reticulum, Golgi apparatus, immature and lysosomes and phagosomes within hepatocytes and sinusoidal cells respectively. These observations strongly suggest that the intracellular pathway of vitellogenin secretion in chicken hepatocytes under the experimental conditions studied involves external stimuli and secretory vacuoles. The labelling of lysosomes may reflect catabolic turnover (crinophagy).

Animals

Effects of therapeutic percutaneous electrical stimulation of atrophic human quadriceps on muscle composition, protein synthesis and contractile properties.

The effects of percutaneous electrical stimulation (70 V, 300 microseconds pulses at 30 Hz) on muscle composition and rate of protein synthesis were studied in seven patients with quadriceps atrophy secondary to unilateral osteoarthritis of the knee (stimulated group). Quadriceps were stimulated on the affected side for 1 h per day. The results were compared to those from seven patients who did not use a muscle stimulator (control group), in whom muscle biopsy at surgery provided evidence of wasting of tissue protein on the side of osteoarthritis (normal leg 608 +/- 266 micrograms protein micrograms-1 DNA, affected leg 256 +/- 100 micrograms protein micrograms-1 DNA, means +/- SD, P less than 0.05; type I fibre diameters: normal 53.2 +/- 6.7 microns, affected 43.8 +/- 4.0 microns, P less than 0.05). In patients who had received stimulation there was no residual difference between the legs in either muscle protein concentration (normal 411 +/- 168 micrograms protein micrograms-1 DNA, affected 373 +/- 112 micrograms protein micrograms-1 DNA) or fibre diameter (type I diameters: normal 56.1 +/- 7.8 microns, affected 58.0 +/- 10.7 microns). Stimulation did not influence the ratios of muscle force elicited by acute stimulation at 20 and 50 Hz (normal 75 +/- 15%, affected 79 +/- 15%), or rates of muscle relaxation (percentage losses of tetanic force 10 ms-1: normal 7.66 +/- 1.2%, affected 8.67 +/- 2.2%).(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Dipeptidyl peptidases in the soleus muscle of the rat before and after treatment with 5-hydroxytryptamine.

A moderate peptidase activity against L-lysyl-L-proline-4-methoxy-beta-napththylamide was detected histochemically in unfixed sections of soleus muscle fibres of inbred male Wistar rats using two variants of the semipermeable membrane technique. One variant involved simultaneous coupling with tetrazotised 3,3'-dimethoxybenzidine, the other post-coupling. The activity at pH 6 increased approximately three-fold in many fibres showing signs of insult in rats that had been given a single low dose of 5-hydroxytryptamine (10 mg/kg body weight) 48-72 h earlier. The hydroxytryptamine treatment was found to induce a selective myopathy. Some of the increased peptidase activity within insulted muscle fibres appeared to arise from invading mononuclear cells, but the majority seemed endogenous to muscle fibres. The peptidase activity persisted in some fibres 21-28 days after 5-hydroxytryptamine administration, by which time the whole muscle appeared histologically normal. The variation of the activity of the peptidase with pH in the presence of various inhibitors was investigated in both control and insulted muscle fibres. From its sensitivity and behaviour towards Zn2+, Hg2+, Cu2+, puromycin, benzethonium chloride and phenylmethylsulphonyl fluoride and its indifference towards Co2+, Cd2+, Mn2+ and o-phenanthroline, it is concluded that the activity can be attributed to a mixture of at least two peptidases, dipeptidyl peptidase II and an unidentified neutral dipeptidyl peptidase. The possible role of the peptidase(s) in muscle regeneration in discussed.

Animals

Limitations of the quantitative cytochemical assay of catechol oxidase in melanoma cells.

The cytochemical quantification of catechol oxidase activity in fixed B16 melanoma cells was investigated using dopa as the substrate. Inhibitors showed that peroxidases do not significantly interfere. The kinetics of melanin formation were studied initially in solution with purified catechol oxidase. Two key parameters were identified: lag-time and the rate of melanin formation. The lag-time was taken as the time required by intermediates to reach a critical concentration at which the polymerization process starts and melanin production becomes measurable (at 640 nm). In solution, the lag-time decreases as the enzyme activity increases, particularly when the activity is very low. The rate at which melanin is formed by pure enzyme in solution is independent of dopa concentration when its activity is low but increases linearly with dopa concentration when the activity is comparatively high. In fixed melanoma cells, the lag-time decreases linearly with increases of dopa concentrations up to 20 mM; at concentrations higher than this, the lag decreases more slowly. In contrast, the rate of melanin production is unaffected by changes in dopa concentration. The lag-times of different cells lines incubated at the same substrate concentration decrease as the enzyme activity of the cells increases. The rate of melanin production seems to be affected by factors other than catechol oxidase activity, such as the intracellular organization and distribution of the enzyme.

Catechol Oxidase

Simultaneous histochemical assay of two dehydrogenases in the same cell.

A new approach has been developed for the simultaneous assay of the activities of two enzymes (lactate and succinate dehydrogenases) in the same cell in sections of unfixed liver. The sections, mounted on coverslips, were placed on top of 0.6-mm thick 0.8% low gelling-temperature agarose films containing the substrates of both enzymes (70 mM lactate and 50 mM succinate, respectively) plus 80 mM Tris-HCl buffer (pH 7.5), 5 mM EDTA, 10 mM NaN3, 1.5 mM NAD+, 1.2 mM Nitro BT and 0.26 mM phenazine methosulphate. The integrated absorbance (A) at 585 nm of the final reaction product formazans deposited by the two enzymes in a selected hepatocyte was measured continuously at 37 degrees C as a function of incubation time, using a Vickers M85 microdensitometer. The intercept A0 on the A-axis of the linear regression line of A on time was determined. After a known incubation time t, the absorbance A1, was noted and the section placed on another gel film lacking the substrates in order to estimate the final reaction product either formed in the gel film or lost from the cell. The absorbance A2 of the hepatocyte was remeasured. The reaction velocities (activities) vL and vS of lactate and succinate dehydrogenases, respectively, were calculated from the following equations: vL = [(A1-A2) - A0(1- alpha L)]/(1-alpha L)t and vS = (A2-alpha LA1)/(1-alpha L)t where alpha L = A2/A1 for hepatocytes incubated on gel films containing only lactate as the substrate. This parameter was found to be virtually constant (0.44) over a wide range of vL.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Rates of muscle protein synthesis in paraspinal muscles: lateral disparity in children with idiopathic scoliosis.

1. The rate of paraspinal (multifidus) muscle protein synthesis was measured bilaterally at the top, apex and bottom of the thoracic curve in nine children with an idiopathic scoliosis, using the stable-isotope-labelled amino acid L-[1-13C]leucine. 2. No significant difference was observed in rates of muscle protein synthesis between the two sides of the spine, at the levels of the first vertebrae in neutral alignment at the top and bottom of the curve. However, in every patient, at the apex of the spinal curve, synthesis was higher on the convexity than on the concavity (0.077 +/- 0.04 %/h convex, 0.052 +/- 0.02 %/h concave, mean +/- SD, P less than 0.01). 3. Muscle RNA activity (microgram of protein synthesized h-1 microgram-1 of RNA) was lower at the curve apices on the concave than the convex side (0.019 +/- 0.09 microgram h-1 microgram-1 convex apex, 0.016 +/- 0.06 microgram h-1 microgram-1 concave apex, P less than 0.05). Activities were similar on the two sides at the top and bottom of the curve. 4. Differences in muscle histology between the two sides were also observed only at the apex, with a lower type I fibre diameter (50.9 +/- 8.5 micron convex, 38.3 +/- 2.4 microns concave, P less than 0.05) and a lesser proportion of type I fibres (63 +/- 12% convex, 49 +/- 9% concave, P less than 0.05) on the concavity. 5. The results are consistent with effects on muscle protein turnover secondary to an increased muscle contractile activity on the curve convexity and functional immobilization of the muscle on the curve concavity.

Adolescent

Decrease in human quadriceps muscle protein turnover consequent upon leg immobilization.

Quadriceps muscle protein turnover was assessed in the post-absorptive state in six men immediately after the end of unilateral leg immobilization (37 +/- 4 days) in a plaster cast after tibial fracture. A primed-constant intravenous infusion of L-[1-13C]leucine was administered over 7 h. Quadriceps needle biopsies, taken bilaterally at the end of the infusion, were analysed for muscle protein leucine enrichment with 13C. Quadriceps muscle protein synthetic rate, calculated from the fractional incorporation of [13C]leucine into protein compared with the average enrichment of blood alpha-ketoisocaproate, was 0.046 +/- 0.012%/h in the uninjured leg, but was only 0.034 +/- 0.007%/h in the quadriceps of the previously fractured leg (P less than 0.05, means +/- SD). Muscle RNA activity (i.e. protein synthetic rate per RNA) fell from 0.27 +/- 0.08 microgram of protein synthesized h-1 microgram-1 of RNA in the control leg to 0.14 +/- 0.03 microgram of protein synthesized h-1 microgram-1 of RNA in the immobilized leg (P less than 0.02). Immobilization was associated with a significant atrophy of type I muscle fibres (mean diameter 69.5 +/- 21 microns immobilized, 81.1 +/- 18 microns control, P less than 0.05), but no significant change occurred in type II fibre diameter. Mean quadriceps fibre volume calculated from the values for fibre diameter and percentage of each fibre type, was smaller in the injured leg by 10.6%; this value was near to the calculated difference in muscle thigh volume (calculated from thigh circumference and skin-fold thickness) which was less by 8.3%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Acid phosphatase activity in soleus and plantaris muscle fibres of normal and dystrophic hamsters. A quantitative histochemical study.

The activity of acid phosphatase in skeletal muscle fibres of the plantaris and soleus of normal and dystrophic male hamsters was quantified using a histochemical post-coupling semipermeable membrane technique. Although the absolute levels of activity were found to vary widely from one animal to another, the ratio of the mean activities in the two muscles in each animal was virtually constant. In normal muscles, the ratio was about 0.73 and in dystrophic muscles, about 0.77. The activity in plantaris muscle fibres was always significantly lower than that in the corresponding soleus fibres, and in normal fibres compared to dystrophic ones. Another difference was that in normal fibres the mean activity declined to a constant level in mature animals older than about 3 months. In contrast, the activity in dystrophic muscles appeared to fall exponentially throughout life. The functional significance of these findings is discussed.

Acid Phosphatase

Proteases in normal and diseased human skeletal muscle: a preliminary histochemical survey.

Seven proteases assumed to be aminopeptidases A, B and M, dipeptidyl peptidases II and IV, esteroproteinase and gamma-glutamyltransferase were localized histochemically, using semipermeable membrane simultaneous coupling techniques, in unfixed cryostat sections of skeletal muscle removed from one healthy volunteer, six patients with disuse muscle atrophy, and 15 patients with some form of muscle disease. Normal muscle fibres showed weak reactions for aminopeptidases A and M and for the dipeptidyl peptidases, but no reactivity for gamma-glutamyltransferase or esteroproteinase. No change was detected in diseased muscle fibres except that low gamma-glutamyltransferase and esteroproteinase activities appeared in some cases. The activities of the seven enzymes were stronger in the intermyosial connective tissue than in the muscle fibres, but were also unchanged in disease. The strongest reactions were found in some interstitial cells (mast cells and macrophages) and these were much increased in diseased muscle, particularly for dipeptidyl peptidases II and IV. The findings are interpreted in terms of the release of proteases from such cells and their subsequent involvement in the breakdown of myofibrillar proteins in muscle disease.

Adolescent

Criteria for the validation of quantitative histochemical enzyme techniques.

Some practical criteria are suggested for establishing the precision, reproducibility, validity and specificity of quantitative histochemical techniques used for assaying the activities of enzymes in single cells and tissue sections. To be valid, a technique should ideally pass 12 tests. Principally these involve proving that the mean absorbance or fluorescence of the specific final reaction product (FRP) is related to section thickness, incubation time, substrate concentration and the concentration of enzyme in situ. However, the formation of appreciable amounts of non-specific FRP may interfere in the determination of the true enzyme activity. This and other difficulties are illustrated with data obtained from an investigation of Meijer's semipermeable membrane technique for assaying acid phosphatase in unfixed sections of muscle.

Acid Phosphatase

Specificity of cytochemical procedures for localising peroxidase activity in the sarcoplasmic reticulum.

Cytochemical evidence is reported for substantiating the view that when lightly-fixed skeletal muscle is incubated in a diaminobenzidine-H2O2 medium at pH 5, the resulting enhanced electron opacity of the sarcoplasmic reticulum is more likely to be due to a peroxidatic activity therein rather than to a non-enzymic binding reaction. The reticulum staining is absent in incubated sections of overfixed or boiled tissue; or if hydrogen peroxide is omitted from the incubation medium; or if aminotriazole is included in the medium.

Animals

The immunohistolocalization of carbonic anhydrase in rodent tissues.

Carbonic anhydrase has been localized with an immunoenzyme bridge technique in the following sites in paraffin sections of fixed rodent tissues: gastric parietal cells, the brush border of enterocytes in the small intestine, superficial nongoblet cells of the colon, selective segments of the nephron, glial cells, erythrocytes and adipose cells. Immunocytochemical localizations of carbonic anhydrase isozymes I and II in different histologic sites, by means of affinity column purified antibodies, agreed with the distribution of these enzymes in the various sites, as indicated by immunologic assays. The immunocytochemical results are compared with those reported for the cobalt-bicarbonate cytochemical method and with biochemical knowledge of the occurence of carbonic anhydrase.

Adipose Tissue

Catalase in skeletal muscle fibers.

Catalase has been localized immunocytochemically with anti-bovine catalase in long thin filament structures in aerobic type I fibers in the skeletal muscles of normal and genetically dystrophic hamsters. The filaments range in length from 1 to 60 micron, are orientated regularly along the long axis of the fibers, and also seem to surround and project from muscle nuclei. The enzyme thus appears to be more prominent in the sarcoplasmic reticulum than in peroxisomes, and in this situation is suitably placed for destroying toxic hydrogen peroxide which may be continously generated in aerobic fibers.

Animals

Endogenous peroxidase in mast cells localized with a semipermeable membrane technique.

Hamster mast cells have been found to give strong peroxidatic reactions at pH 5, 7.5 and 10 when sections of skeletal muscle are incubated for 2.5 h in the dark at room temperature on semipermeable membranes covering a gelled incubation medium consisting of 0.01% hydrogen peroxide, 5.5mM diaminobenzidine and 1.36% agar dissolved in Universal buffer. The technique is very efficient: with it, all mast cells react in marked contrast to the negative reaction they usually give with conventional techniques. The peroxidatic reactions are abolished if tissues are perfused beforehand with either aminotriazole or KCN but not if these inhibitors are incorporated in the gelled incubation medium. This and other evidence suggests that the mast cell reactions are not due to either catalase or haemoglobin adsorbed onto mast cell granules from lysed red blood cells. Skeletal muscle fibres do not exhibit any visible peroxidase activity with the membrane technique.

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