Publications by authors named "WA Jacob"

Studies of silver halide (AgX) photographic materials and individual microcomponents by TEM/STEM/SEM/EDX, CL, EFTEM/EELS and digital image analysis techniques are reviewed. Electron-beam-AgX interactions are discussed to clarify relationships between the signals analysed in various operating AEM modes. An optimum strategy of structural and analytical diagnosis of complex silver halide photographic systems by a number of AEM methods is considered, using a number of examples (colour and black-and-white films, AgX microcrystals, and colour coupler dispersions).

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The combination of cryo-energy filtering transmission electron microscopy (EFTEM)/electron spectroscopic diffraction (ESD)/electron energy-loss spectroscopy (EELS) and cryo-energy-dispersive X-ray (EDX) analysis in the scanning transmission (STEM) and scanning (SEM) modes was applied for the characterization of composite tabular Ag(Br,I) microcrystals. A low-loss fine structure in EEL spectra between 4 and 26 eV was attributed to excitons and plasmons possibly superimposed with interband transitions and many-electron effects. The contrast tuning under the energy-filtering in the low-loss region was used to image the crystal morphology, defect structure (random dislocations and ¿111¿ stacking faults) and bend and edge contours as well as electron excitations in the microcrystals.

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Previous studies demonstrated that microinjection of antibodies to the cytoplasmic domain of the lysosomal glycoprotein lgp120 induces aggregation of lysosomes in NRK cells. Here we show that the antibody-clustered vesicles do not co-localize with MPR and ss-COP-containing organelles, confirming their lysosomal nature. Observations by transmission and high voltage electron microscopy indicated that, although tightly apposed to each other, aggregated lysosomes remained as separate vesicles, with an average diameter of 0.

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Since their discovery in the early fifties mitochondrial granules have been the subject of many researches. Some twenty years ago two hypotheses on their function were introduced. Peachey thought that the granules were a sink of cations and that they would eventually regulate the concentrations of these ions.

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Intimal thickening in human arteries is considered as a site of predilection for atherosclerosis. The placement of a flexible, physically nonconstrictive, silicone cuff around the rabbit carotid artery induced a neointima composed of smooth muscle cells (SMCs) within 14 days. To investigate possible alterations of the endothelial cells (ECs) during neointima formation, their morphology was examined with scanning electron microscopy (SEM), transmission electron microscopy (TEM), and confocal microscopy.

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"Synaptic-like microvesicles" are present in all neuroendocrine cells and cell lines. Despite their resemblance to small synaptic vesicles of the CNS, a thorough biochemical characterization is lacking. Moreover, the subcellular distribution of synaptophysin, the most abundant integral membrane protein of small synaptic vesicles, in adrenal medulla is still controversial.

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A nonocclusive silicone cuff placed around the rabbit carotid artery results in a diffuse intimal thickening. The early stages of this phenomenon were studied by light microscopy, immunohistochemistry, and electron microscopy. Neointimal formation appeared to be triphasic.

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The findings in a 40-year-old man with Kartagener's triad (sinusitis, bronchiectasis, and situs inversus) and corrected transposition of the great vessels are presented. Electron microscopy revealed normal ultrastructure of the axoneme in both respiratory cilia and sperm tails. Light microscopic evaluation of the spermatozoa showed 50 percent motility, suggesting normal fertility.

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Contact sites are created by fusion of the inner and outer mitochondrial membrane. They represent a dynamic microcompartment for creatine kinase activity. In this microenvironment the active sites of creatine kinase, oxidative phosphorylation, and ADP/ATP transport interact during basal and stimulated metabolism.

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Structural mitochondrial damage accompanies the cytotoxic effects of several drugs including tumor necrosis factor (TNF). Using various inhibitors of mitochondrial electron transport we have investigated the mechanism of TNF-mediated cytotoxicity in L929 and WEHI 164 clone 13 mouse fibrosarcoma cells. Inhibitors with different sites of action modulated TNF cytotoxicity, however, with contrasting effects on final cell viability.

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Repeated intraperitoneal injections of lead acetate in rats caused a calcification of the skin of the abdomen near the site of the injections. In the lead-induced calcifications, electron dense collagen bundles could be observed. On the surface of the collagen fibrils, needle-like crystals were visible.

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Using Laser Microprobe Mass Analysis (LAMMA), we studied the chemical composition of lead-induced intranuclear inclusions in rat kidney tissue prepared by three different wet chemical fixation procedures for transmission electron microscopy. Fixation with glutaraldehyde-Na2S gave the same results as fixation with glutaraldehyde only: a high lead concentration could be detected. Therefore, for lead strongly bound to proteins, precipitation procedures are not essential.

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By means of laser microprobe mass analysis (LAMMA), we have studied the ultrastructural localization of aluminium in livers of aluminium maltol-treated rabbits. This animal model was developed to study long-term aluminium toxicity using systemic (intravenous) administration of aluminium. We could only detect aluminium in electron-dense inclusion bodies found in large, sometimes multinucleated cells.

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A histological study was done on the thin, nearly transparent replacement membrane of tympanic membrane perforations. Human tympanic membranes that were rejected for transplantation, were studied by light and electron microscopy. The abrupt reduction in thickness at the margin of the covered perforation, is entirely due to the reduction of the lamina propria.

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Rat heart mitochondria were isolated and forced in a well-defined metabolic state. After freeze-fracturing, the intramembrane particle dimension and density on both fracture faces of the inner mitochondrial membrane were measured. No significant differences could be calculated between the diameter of the membrane particles in the five different states.

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In the processing of cell cultures, grown as a monolayer in tissue culture dishes for electron microscopy, the sectioning of the monolayer is an essential step. The monolayer can be sectioned either parallel or perpendicular to the plane of growth. Several methods for the perpendicular way of sectioning have already been described.

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The approach to the examination of sexually abused children differs from that of normal for sick children and also from that of adults who have been the victims of rape. While the physical and psychological welfare of the patient must be the prime concern, medico-legal aspects are equally important. In the interests of the patient the initial examination and subsequent management and follow-up should be done by those with specific skills and with the support of members of disciplines essential to the total management of the complex and not uncommon problem of sexual abuse in children.

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We have examined the ultrastructure and the protein content of native matrix granules (NMG) in rat heart mitochondria, by postembedding immunocytochemistry. Cytochrome c oxidase was found to be present in these granules. It is believed that these granules contain incomplete inner mitochondrial membrane fractions, which can be incorporated in the membrane after stimulation of the metabolism.

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The specificity of the combined oxalate-pyroantimonate (OPA) technique for subcellular localization of calcium was examined by laser microprobe mass analysis (LAMMA) of the same tissue sections. The recorded spectra strongly suggest that the cytochemically detected precipitates contained calcium. This could be confirmed by LAMMA analysis of ethylene glycol tetraacetic acid-treated sections.

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The osmiophilic granules present in the mitochondrial matrix of rat myocardium are very sensitive to changes in the energy status of the cell and in the activity of the mitochondrial electron transport. These granules can be stabilized in isolated mitochondria by blocking the electron transport with Na2S. The behaviour of these native matrix granules is similar to that expected for Ca ++ containing entities.

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Intranuclear microtubules were found in lung mast cells during anaphylactic shock following ovalbumin challenge of guinea pigs passively sensitized with homocytotropic antibodies. Simultaneously, such cells showed mitochondrial swelling with a clear matrix and partially disrupted cristae. Although a decreased number of mast cell granules generally accompanied these observations, the degree of degranulation and the morphologic appearance of the granules are less reliable criteria to indicate the immediate participation of a cell in the anaphylactic phenomenon.

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