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Beam induced mass loss in high resolution biological microanalysis.

Electron beam induced loss of mass from the organic matrix and from higher Z constituents of biological samples was measured by monitoring bremsstrahlung and peak changes in EDS spectra. When any effects of contamination, extraneous X-rays, beam current drift, specimen drift, and specimen shrinkage were monitored and corrected for, the three types of samples gave consistent and similar results at 296 K. Bremsstrahlung losses averaged 45%, 46% and 50% respectively for muscle homogenate, salivary gland sections and albumin. Sulphur losses average 74%, 72% and 86% for the same three sample types. No other elements suffered significant losses. D1/e for bremsstrahlung averaged 0.14 C/cm2. Bremsstrahlung loss at 93 K began approximately one order of magnitude higher in dose, and the extent of loss varied. Sulphur losses, however, were greatly reduced at low temperatures.

Animals↗

Effect of duct obstruction on structure, elemental composition, and function of rat submandibular glands.

Obstruction of salivary glands occurs in association with a number of pathological conditions. It has been suggested that the major changes found in the salivary glands of patients with cystic fibrosis are due to obstruction of the excretory duct by viscous mucus. In the present study, the effect of excretory duct obstruction on structure, elemental composition and function of rat submandibular gland was investigated. Obstruction was effected by infusion of a fast-hardening protein emulsion in the main excretory duct. After 1 week, and more pronounced after 2 weeks of obstruction the number of granular duct cells had decreased in the obstructed gland. X-ray microanalysis showed an increase in Mg, Ca and K, and a decrease in Na levels in the acinar cells, compared to normal glands. The contralateral glands apparently underwent compensatory hypertrophy and showed a similar pattern of changes in elemental composition. The composition of pilocarpine-induced submandibular saliva was neither in the obstructed nor in the contralateral gland significantly different from that in control glands. However, the flow rate was somewhat lower. Hence, increase in cellular Ca levels in submandibular gland acinar cells in cystic fibrosis could be secondary to duct obstruction, but the present study does not support the hypothesis that duct obstruction would result in changes in the composition of saliva.

Animals↗

Structural arrangements at the interface between plasma sprayed calcium phosphates and bone.

Plasma sprayed coatings of tetracalcium phosphate, magnesium whitlockite and three types of hydroxyapatite, varying in degree of crystallinity, were evaluated with light microscopy, scanning electron microscopy and backscatter electron microscopy (BSE) after implantation periods of 1, 2 and 4 wk in rat femora. BSE revealed that both tetracalcium phosphate and semi-crystalline hydroxyapatite underwent distinct bulk degradation and loss of relatively large particles. Amorphous hydroxyapatite showed a gradual surface degradation, indicated by a transition zone varying in grey level between that of the coating and bone tissue, while degradation was negligible with the highly crystalline material and magnesium whitlockite. Degradation appeared to be related to bone apposition, since more bone seemed to be present on amorphous hydroxyapatite and tetracalcium phosphate, as compared to highly crystalline hydroxyapatite and magnesium whitlockite coatings. At the interface between bone and magnesium whitlockite, a seam of unmineralized bone-like tissue was frequently seen with light microscopy, while few areas with bone contact were present. X-ray microanalysis revealed that both the magnesium whitlockite coating and the unmineralized bone-like tissue contained substantial amounts of aluminium which, in addition to possible influences of magnesium, may have caused the impaired mineralization. The results of this preliminary study indicate that, with regard to early bone formation, amorphous hydroxyapatite coatings seem to be beneficial over highly crystalline coatings. However, further experiments should be performed to give conclusive data on (i) the statistical significance of the differences in bone apposition rate, and (ii) the long-term behaviour of both amorphous and highly crystalline coatings in bone and their relation to implant performance.

Aluminum↗

Age-related differences in the structure of human pineal calcium deposits: results of transmission electron microscopy and mineralographic microanalysis.

Pineal tissue calcifications (male, ages 14, 47, 62, 82), which were metallographically embedded and polished at controlled levels and studied by transmission electron microscopy and microanalytic spectroscopy, showed age-related differences. Results show that concentrically arranged crescent-shaped lamellae increase in number and decrease in width with age. Calcium (Ca) and phosphorus (P) per point measurements in dark and light lamellae at various distances from the core show Ca/P molar ratios between 1.49-1.62 in the 82-year-old specimen as compared to 1.26 to 1.41 in the younger specimens. The 62-year-old specimens show a decrease in P and an increase in Ca from periphery to center. These data and other descriptive details suggest that the sum of these changes represent remodelling of the mineralogical structure within the same calcification throughout the life span.

Adolescent↗

Occluding effect of dentifrices on dentinal tubules.

OBJECTIVES: The objective of this study was to evaluate the tubule occluding ability of three commercial available dentifrices (Sensodyne, Emoform and Sorriso) by Scanning Electron Microscopy. METHODS: Fifty cervical areas from buccal and lingual surfaces of sound third human molars were used. Cervical enamel was wet abraded to expose flat dentin surfaces and further polished with diamond pastes. Specimens were randomly divided into five groups (n=10): G1-no brushing; G2-brushing without dentifrice; G3-brushing with Sensodyne; G4-brushing with Emoform; G5-brushing with Sorriso. Brushed specimens were treated for 4 min per day, for 7 days in a toothbrushing machine. Specimens were prepared and observed under SEM for calculation of the percentage of occluded tubules. In addition, slurries of toothpastes were analyzed by X-ray microanalysis. Data were statistically analyzed by ANOVA and Tukey test (p<0.05). RESULTS: Means of occluded tubules in descending order were: G5-98.83+/-3.31% (a), G4-96.02+/-5.24% (a), G3-80.12+/-24.65% (a), G1-37.31+/-24.22% (b); G2-22.92+/-15.19% (b). The three tested dentifrices produced increased dentinal occlusion as compared to controls (p<0.05) but equivalent occlusion among each other. Calcium from calcium-carbonate abrasive was identified in all dentifrices. CONCLUSIONS: Results indicated that the use of all dentifrices occluded tubules more than no brushing and brushing without dentifrices groups. Thus, the tested dentifrices seem effective for desensitization by tubule occlusion.

Analysis of Variance↗

Enumeration and biomass estimation of planktonic bacteria and viruses by transmission electron microscopy.

Bacteria and virus particles were harvested from water samples by ultracentrifugation directly onto Formvar-coated electron microscopy grids and counted in a transmission electron microscope. With this technique, we have counted and sized bacteria and viruses in marine water samples and during laboratory incubations. By X-ray microanalysis, we could determine the elemental composition and dry-matter content of individual bacteria. The dry weight/volume ratio for the bacteria was 600 fg of dry weight microns-3. The potassium content of the bacteria was normal compared with previous estimates from other bacterial assemblages; thus, this harvesting procedure did not disrupt the bacterial cells. Virus particles were, by an order of magnitude, more abundant than bacteria in marine coastal waters. During the first 5 to 7 days of incubation, the total number of viruses increased exponentially at a rate of 0.4 day-1 and thereafter declined. The high proliferation rate suggests that viral parasitism may affect mortality of bacteria in aquatic environments.

Bacteria↗

A rapid, routine technique for the X-ray microanalysis of microincinerated cryosections: an SEM study of inorganic deposits in tissues of the marine gastropod Littorina littorea (L.).

A procedure is described that prepares chemically untreated biological sections for X-ray microanalysis in the scanning electron microscope (SEM). The method aims to retain and localize labile components in tissue sections by a procedure that is both rapid and routine. Large quantities of fresh tissue can be processed for analysis within a single day. Thick cryosections are cut with a steel knife in a conventional cryostat, freeze-dried, and then ashed by either low or high temperature incineration procedures. Controlled microincineration attenuates the organic matrix to reveal sufficient surface relief for effective SEM of some cytological structure and microanalysis of the residual inorganic components. The detectability of various elements is enhanced because the relative concentrations in the residues are increased and the level of nonspecific background in the X-ray spectra is reduced. The technique is applied to different tissues from the visceral complex of the marine prosobranch Littorina littorea. In animals exposed to elevated levels of zinc it can be demonstrated tht the metal is localized both as an insoluble form in granules and as a labile form within the cytoplasm. Other metals, including magnesium, potassium, calcium, manganese, and iron, have been identified and localized. The effectiveness of this technique for retaining labile elements is compared, in outline, with that of conventional fixation procedures.

Animals↗

Bone formation in vitro by stromal cells obtained from bone marrow of young adult rats.

Cells from fetal or neonatal skeleton can synthesize bone-like tissue in vitro. In contrast, formation of bone-like tissue in vitro by cells derived from adult animals has rarely been reported and has not been achieved using cells from bone marrow. We have explored development of bone-like tissue in vitro by bone marrow stromal cells. Marrow stromal cells obtained from 40-43-day-old Wistar rats were grown in primary culture for 7 days and then subcultured for 20-30 days. Cells were cultured in either alpha-minimal essential medium containing 15% fetal bovine serum, antibiotics, and 50 micrograms/ml ascorbic acid, or the above medium supplemented with either 10 mM Na-beta-glycerophosphate, 10(-8) M dexamethasone, or a combination of both. Cultures were examined using phase-contrast microscopy, undemineralized and demineralized tissue histology, histochemistry (for alkaline phosphatase activity), immunohistochemistry (for collagen type, osteonectin, and bone Gla-protein), scanning and transmission electron microscopy, energy dispersive X-ray microanalysis, and X-ray diffraction. Collagenous, mineralized nodules exhibiting morphological and ultrastructural characteristics similar to bone were formed in the cultures, but only in the presence of both beta-glycerophosphate and dexamethasone. Cells associated with the nodules exhibited alkaline phosphatase activity. The matrix of the nodules was composed predominantly of type-I collagen and both osteonectin and Gla-protein were present. X-ray microanalysis showed the presence of Ca and P, and X-ray diffraction indicated the mineral to be hydroxyapatite. The nodules were also examined for bone morphogenetic protein-like activity. Paired diffusion chambers containing partly demineralized nodules and fetal muscle were implanted intraperitonealy in rats. Induction of cartilage in relation to muscle was observed histologically after 40 days in the chambers. This finding provided further support for the bone-like nature of the nodules. The observations show that bone-like tissue can be synthesized in vitro by cells cultured from young-adult bone marrow, provided that the medium contains both beta-glycerophosphate and, particularly, dexamethasone.

Aging↗

Biotin- or digoxigenin-conjugated nucleotides bind to matrix vesicles in atherosclerotic plaques.

The present study analyzes the staining pattern of DNA in situ end-labeling techniques of human and rabbit atherosclerotic plaques. Both the terminal deoxynucleotidyl transferase end-labeling and the in situ nick translation technique detected, besides apoptotic nuclei, numerous round vesicles with diameters from 0.5 to 5 microns within the atherosclerotic plaques. These vesicles did not contain DNA but contained calcium. A pretreatment with EDTA or citric acid abolished the labeling of the vesicles but did not influence the detection of apoptotic nuclei. Ultrastructurally, the vesicles were of variable diameter and density, and their aspect was compatible with matrix vesicles, which are well known in epiphyses during bone formation. The larger vesicles contained cell organelles, and the small vesicles were very dense. X-ray microanalysis demonstrated high calcium and phosphorus levels within the most dense vesicles. Different stages of the process were present in the plaques. In this way we could demonstrate that cytoplasmic fragmentation of smooth muscle cells and subsequent formation of matrix vesicles are a frequent finding in atherosclerotic plaques. The association of apoptotic cell death and formation of matrix vesicles could be an interesting pathway in explaining calcification of atherosclerotic plaques. Both the terminal deoxynucleotidyl transferase end-labeling and the in situ nick translation technique detected simultaneously apoptotic nuclei and matrix vesicles if calcium is not removed from the sections.

Animals↗

Matrix crystals in cytologic urine specimens: observations on their mineral composition by energy dispersive X-ray microanalysis and morphologic scanning electron microscopy.

Crystals consisting by light microscopy of organic matrix (matrix crystals) encountered in cytologic urine specimens of 8 patients were examined for mineral phase components by scanning electron microscopy with energy dispersive X-ray microanalysis (SEM-EDX) and by morphologic scanning electron microscopy (SEM) performed separately in four of the eight cases. Whenever possible (three cases) mineralized crystals present in these specimens were examined separately by SEM-EDX for comparison of mineral phase composition with that of the corresponding matrix forms. Although by SEM-EDX components of matrix, glass and slide preparation media interfere with the precise estimation of the mineral phase components, the results of this method supported by the SEM morphology suggest that crystals consisting of organic matrix include a mineral phase, the lattice structure of which provides them from the early stages of formation with the characteristic morphology of the fully mineralized forms. This also suggests that organic matrix plays a role in the nucleation of minerals during the formation of certain urinary crystals.

Adult↗

Calcium crystals in the anther of Petunia: the existence and biological significance in the pollination process.

Using an X-ray microanalysis system fitted with variable-pressure scanning electron microscopy, we noted that many calcium crystals accumulated under the stomium in the anther of Petunia. When the anther was dehisced and pollen grains were released from the stomata, the calcium crystals adhered to pollen grains and moved to the stigma together with pollen grains. In contrast, an X-ray microanalysis of the stigma surface before pollination detected no calcium emission on the stigma surface. Furthermore, pollen germination and pollen tube growth in medium without Ca occurred as in complete medium. However, after the pollen grains had been washed with abundant germination medium without calcium, pollen germination in the medium without Ca was inhibited. These results show that the calcium crystals dissolved in the aqueous drop under the exudate on the stigma and supplied calcium ions for pollen germination. In addition, calcium crystals were produced not only in the anther of Petunia but also in Nicotiana, suggesting that calcium crystals supply pollen grains with the calcium ions required for pollen germination and serve to improve reproduction efficiency in Solanaceae.

Calcium↗

Scanning electron microscopy images and energy-dispersive X-ray microanalysis of the stapes in otosclerosis and Van der Hoeve syndrome.

OBJECTIVE/HYPOTHESIS: The objective of this study was to evaluate the morphological and microchemical changes that affect sclerotic stapes in otospongiosis and van der Hoeve syndrome. METHODS: A scanning electron microscope equipped with an energy-dispersive x-ray analyzer was used in the experiments. RESULTS: In otosclerosis, focal lesions are poorly mineralized, with low calcium salt and reduced calcium-to-phosphorus (Ca/P) ratio (1.9:1). This finding correlates with a spongiotic type of lesion and indicates unstable mineralization with possible change from hydroxyapatite to calcium triphosphate. In van der Hoeve syndrome the presence of magnesium in stapes suggests osteoclastic function stimulation. The osteoclasts secrete many protons, causing an acidified microenvironment. Brushite is formed, and Ca/P ratio decreases in comparison with that of control patients (2.0:1 vs. 2.6:1).

Electron Probe Microanalysis↗

In vitro induction of a calcifying matrix by biomaterials constituted of collagen and/or hydroxyapatite: an ultrastructural comparison of three types of biomaterials.

The induction of a calcifying matrix was studied in vitro and compared for three biomaterials (collagen sponge, hydroxyapatite material and a mixture of both (Biostite)) cultured with human osteoblast-like cells. The influence of biomaterials on organic matrix synthesis and the calcification process was analysed at the ultrastructural level (transmission electron microscopy and X-ray microanalysis). Biomaterials were well tolerated by bone cells. Whichever biomaterial was used, osteoblasts proliferated and synthesized a new matrix constituted of fibrillar and non-fibrillar elements. This activity appeared earlier and was more intense with Biostite than with collagen sponge alone. A deposition of a mineral substance in this newly formed matrix was observed with the collagen sponge and Biostite, but never with hydroxyapatite alone. The mineral deposits were identified as hydroxyapatite crystals, similar to those observed and analysed in bone tissue. These in vitro observations clearly demonstrated the property of Biostite to produce a calcified collagenous matrix similar to bone tissue. However, in vivo confirmation is required before extending the use of this biomaterial to periodontology.

Biocompatible Materials↗

Post-mortem elemental redistribution in rat studied by x-ray microanalysis and electron microscopy.

Post-mortem elemental redistribution in various tissues from rat was studied by means of electron probe X-ray microanalysis, and correlated with morphological changes in these tissues. Pancreas, liver and cardiac muscle were removed from the animal either immediately, or after some hours after death. Elemental distribution at the cellular level was studied by X-ray microanalysis of thick cryosections. Calcium redistribution at the subcellular level was studied using tissue fixed with glutaraldehyde/oxalate. In all tissues, post-mortem redistribution of electrolytes had taken place within 2 h. The cellular concentrations of Na, Cl and Ca increased markedly, those of Mg and K decreased; no significant changes were found in the concentrations of P and S. The number of oxalate precipitates (indicating the presence of calcium) increased both in the mitochondria and in the cytoplasm and endoplasmic reticulum, reaching a maximum at 2 h. Morphological changes included mitochondrial swelling and vesiculation of the endoplasmic reticulum. Since the post-mortem ion shifts are similar to those encountered in some diseases and types of cell injury, great care has to be taken in the interpretation of X-ray microanalytical results from autopsy material.

Animals↗

A histochemical and X-ray microanalysis study of calcium changes in insect flight muscle degeneration in Solenopsis, the queen fire ant.

Potassium pyroantimonate histochemistry, coupled with ethyleneglycoltetraacetic acid (EGTA)-chelation and X-ray microprobe analysis, was employed to localize intracellular calcium binding sites in the normal and degenerating flight musculature in queens of Solenopsis, the fire ant. In normal animals, calcium distribution was light to moderate within myofibrils and mitochondria. In the early contracture stages of the insemination-induced degeneration, both myofilament and mitochondrial calcium loading was markedly increased. In the terminal stages of myofibril breakdown, only Z-lines (isolated or in clusters) with an associated filamentous residue persisted. These complexes were also intensely calcium positive. This study further documents the presence of increased sarcoplasmic calcium during muscle necrosis. Surface membrane defects, mitochondrial calcium overload, and calcium-activated proteases may all be involved in this "normal" breakdown process.

Animals↗

X-ray microanalysis of frozen-hydrated specimens.

The preparation of frozen-hydrated bulk specimens and sections for X-ray microanalysis starts with cryofixation, which is done either by rapid immersion into liquid propane, propane jet fixation or metal mirror fixation. Bulk specimens appropriate for the analysis in a scanning electron microscope (SEM) are obtained by cryofracturing the samples, coating, usually by a thin carbon layer, and cold transfer into the cold stage of the microscope. The X-ray microanalysis of bulk specimens is affected by an internal space charge which makes quantification difficult. Frozen-hydrated dry cut sections, varying in thickness between 60 and 2000 nm, are prepared by means of cryoultramicrotomy. After cold transfer into the cold stage of a scanning electron microscope or a scanning transmission electron microscope (STEM) the sections are analyzed in the frozen-hydrated and freeze-dried state. The reliability of the results with regard to structural recognizability and X-ray spectra depends considerably on the state of hydration. Particularly ultrathin sections in STEM show very low contrast and a great mass loss in the frozen-hydrated state in comparison with the freeze-dried state. In spite of the available concepts for quantification of X-ray data to obtain physiologically important wet weight concentrations of diffusible elements, the radiation damage at present turns out to be the most serious problem for X-ray microanalysis of frozen-hydrated sections.

Animals↗