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Query: UMLS:C0276640 (
TEM
)
20,729
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
We carried out a high-resolution ultrastructural analysis of the nucleolus in mouse P815 cells by combining specific DNA and RNA staining, anti-fibrillarin immunolabeling, contrast enhancement by energy filtering
TEM
and
phosphorus
mapping by ESI to visualize nucleic acids. We demonstrated that specifically contrasted DNA, fibrillarin and
phosphorus
overlap within the nucleolar dense fibrillar component. Moreover, we describe a 'DNA cloud' consisting of an inner core of DNA fibers (fibrillar center) and a periphery made of extremely thin fibrils overlapping the anti-fibrillarin immunolabeling (dense fibrillar component). This highly sensitive approach has allowed us to demonstrate, for the first time, the exact distribution of DNA within the decondensed interphase counterpart of the NOR, which includes both the fibrillar center and the dense fibrillar component.
...
PMID:Revealing the unseen: the organizer region of the nucleolus. 1159 Feb 46
A 32-year-old woman carried a copper intrauterine contraceptive device (IUCD) or intrauterine pessar (IAP) for more than 5 years. She had acyclic menstrual bleedings and underwent a corpus abrasio after explantation of IUCD. The histological study of paraffin sections showed an actinomycotic endometritis with brown to black deposits in or around typical actinomyces druses, but there was no carcinoma. The electron microscopic study of these accumulations by electron energy loss spectroscopy (EELS) in
TEM
demonstrated copper deposits in the shell and matrix of these druses as well as inside the bacteria. With scanning electron microscopy (SEM) and Energy Dispersive X-Ray Analysis (EDX), the electron-dense accumulations revealed high signals for copper and sulfur, but also of
phosphorus
and oxygen in a lower extent. This copper accumulation is discussed as an active uptake and concentration by these actinomyces bacteria.
...
PMID:Copper accumulation in actinomyces druses during endometritis after long-term use of an intrauterine contraceptive device. 1239 43
The nature of coagulant species formed in the system ferric chloride/municipal sewage was explored with Transmission Electron Microscopy coupled with Energy Dispersive X-ray Spectroscopy (TEM-EDXS) and Fe K-edge X-ray Absorption spectroscopy. Jar-test data combined with chemical analysis of supernatant (dissolved organic carbon, iron, and
phosphorus
) and Fourier-Transform-Infrared spectroscopy (FTIR) of freeze-dried sediment, provided a detailed description of sewage clarification. The results showed that the nature of coagulant species evolves with Fe concentration. Up to the optimum turbidity removal, mainly iron dimers linked with one phosphate anion are detected. At higher dosages, polymers of hydrolyzed Fe appear even though PO(4) still participates in the formation of coagulant species.
TEM
observation of freeze-dried sediments corroborates such an evolution of Fe speciation. EDXS analyses reveal that minute amounts of sulfur, silicon, aluminum, and calcium, are associated with the coagulant species. Even though the coagulant species change with Fe concentration, the destabilization mechanism, inferred from electrophoretic mobility of aggregates and the evolution of floc size under cyclic changes of stirring conditions, is equivalent with a charge neutralization of sewage colloids in the whole range of coagulant concentration.
...
PMID:Clarification of municipal sewage with ferric chloride: the nature of coagulant species. 1472 46
This paper is concerned with the corrosion resistance and biocompatibility of titanium after surface modification by the ion implantation of calcium or
phosphorus
or calcium +
phosphorus
. Calcium and
phosphorus
ions were implanted in a dose of 10(17) ions/cm(2). The ion beam energy was 25 keV. The microstructure of the implanted layers was examined by
TEM
. The chemical composition of the surface layers was determined by XPS and SIMS. The corrosion resistance was examined by electrochemical methods in a simulated body fluid (SBF) at a temperature of 37 degrees C. The biocompatibility was evaluated in vitro. As shown by
TEM
results, the surface layers formed during calcium,
phosphorus
and calcium +
phosphorus
implantation were amorphous. The results of the electrochemical examinations (Stern's method) indicate that the calcium,
phosphorus
and calcium +
phosphorus
implantation into the surface of titanium increases its corrosion resistance in stationary conditions after short- and long-term exposures in SBF. Potentiodynamic tests show that the calcium-implanted samples undergo pitting corrosion during anodic polarisation. The breakdown potentials measured are high (2.5 to 3 V). The good biocompatibility of all the investigated materials was confirmed under the specific conditions of the applied examination, although, in the case of calcium implanted titanium it was not as good as that of non-implanted titanium.
...
PMID:Effect of calcium and phosphorus ion implantation on the corrosion resistance and biocompatibility of titanium. 1547 99
This study is concerned with the effect of dual implantation of calcium and
phosphorus
upon the structure, corrosion resistance and biocompatibility of titanium. The ions were implanted in sequence, first Ca and then P, both at a dose of 10(17) ions/cm2 at a beam energy of 25 keV. Transmission electron microscopy was used to investigate the microstructure of the implanted layer. The chemical composition of the implanted layer was examined by XPS and SIMS. The corrosion resistance was determined by electrochemical methods in a simulated body fluid (SBF) at a temperature of 37 degrees C. The biocompatibility tests were performed in vitro in a culture of human-derived bone cells (HDBC) in contact with the tested materials. The viability of the cells was determined by an XTT assay and their activity by the measurements of the alkaline phosphatase activity in contact with implanted and non-implanted titanium samples. The in vitro examinations confirmed that, under the conditions prevailing during the experiments, the biocompatibility of Ca + P ion-implanted titanium was satisfactory.
TEM
results show that the surface layer formed by the Ca + P implantation is amorphous. The corrosion resistance of titanium, examined by the electrochemical methods, appeared to be increased after the Ca + P ion implantation.
...
PMID:Effect of dual ion implantation of calcium and phosphorus on the properties of titanium. 1560 80
The toxicity of selenium in aquatic ecosystems is mainly linked to its uptake and biotransformation by micro-organisms, and its subsequent transfer upwards into the food chain. Thus, organisms at low trophic level, such as algae, play a crucial role. The aim of our study was to investigate the biological effects of selenite on Chlamydomonas reinhardtii, both at the sub-cellular level (effect on ultrastructure) and at the population level (effect on growth). The cells were grown under batch culture conditions in well-defined media and exposed to waterborne selenite at concentrations up to 500 microM; i.e. up to lethal conditions. Based on the relationship between Se concentration and cell density achieved after a 96 h exposure period, an EC(50) of 80 microM with a 95% confidence interval ranging between 64 and 98 microM was derived. No adaptation mechanisms were observed: the same toxicity was quantified for algae pre-contaminated with Se. The inhibition of growth was linked to impairments observed at the sub-cellular level. The intensity of the ultrastructural damages caused by selenite exposure depended on the level and duration of exposure. Observations by
TEM
suggested chloroplasts as the first target of selenite cytotoxicity, with effects on the stroma, thylakoids and pyrenoids. At higher concentrations, we could observe an increase in the number and volume of starch grains. For cells collected at 96 h, electron-dense granules were observed. Energy-dispersive X-ray microanalysis revealed that these granules contained selenium and were also rich in calcium and
phosphorus
. This study confirms that the direct toxicity of selenite on the phytoplankton biomass is not likely to take place at concentrations found in the environment. At higher concentrations, the link between effects at the sub-cellular and population levels, the over-accumulation of starch, and the formation of dense granules containing selenium are reported for the first time in the literature for a phytoplankton species after exposure to selenite.
...
PMID:Toxicity of selenite in the unicellular green alga Chlamydomonas reinhardtii: comparison between effects at the population and sub-cellular level. 1589 93
Trichinella spiralis larvae were examined in
TEM
to identify calcareous corpuscles in the outer part of parasite capsule. The microroentgenographic analysis of calcareous corpuscles mainly demonstrated the presence of
phosphorus
and calcium. The physiological importance of calcareous corpuscles, as well as their significance in decay of T. spiralis larvae were discussed.
...
PMID:Calcification of Trichinella spiralis larval capsule. 1621 14
Phosphorus
containing and octyl-terminated silicon nanoparticles (NPs) are generated by a solution reduction route under room temperature conditions for the first time and characterized by
TEM
, HRTEM, EDX, 1H/13C/31P NMR, EPR, and PL spectroscopy, then annealed to form a thin film with
phosphorus
doping confirmed by microprobe elemental analyses.
...
PMID:The preparation of a phosphorus doped silicon film from phosphorus containing silicon nanoparticles. 1644 42
Electrodeposited anodic oxide coatings were produced on Ti-6Al-4V substrates using aqueous electrolytes containing dissolved calcium and
phosphorus
. Different coatings were produced by varying the time periods. The coatings were characterised by XRD technique and
TEM
. The coatings were exposed to Simulated Body Fluid (SBF). Electrochemical polarisation and ac impedance studies too were performed on the coatings in SBF. Pins were coated and run against wooden disc in pin-on-disc type of wear tests. Coatings produced from long time electrolysis showed very good resistance to the attack of SBF and less wear compared to those produced from short time exposure.
...
PMID:Synthesis, corrosion and wear of anodic oxide coatings on Ti-6Al-4V. 1714 33
The hydrogenosome, an organelle that produces molecular hydrogen and ATP from the oxidation of pyruvate or malate under anaerobic conditions, presents some characteristics common to mitochondria. The hydrogenosome of Tritrichomonas foetus, a cattle parasite, is a spherical organelle that presents a peripheral vesicle the origin and behavior of which is poorly known. In this article it is reported an ultrastructural and microanalytical study using energy dispersive X-ray analysis, 3D reconstruction and cytochemistry of the hydrogenosome peripheral vesicle and then compare the results with the endoplasmic reticulum and the nuclear envelope of T. foetus. Similarities between the hydrogenosome peripheral vesicle and the ER are presented. This study included: (1) the detection of ER enzymes by cytochemistry, such as glucose-6-phosphatase, IDPase, acid phosphatase and Ca(2+) -ATPase; (2) elemental composition by X-ray microanalysis and the mapping of calcium,
phosphorus
and oxygen in both ER and hydrogenosome peripheral vesicle; (3) freeze-fracture; (4)
TEM
of routine and cryofixed cells by high-pressure freezing and freeze-substitution; (5) 3D reconstruction, (6) monoclonal antibody anti-trichomonads ER; and (6) other cytochemical techniques that detects ER, such as the ZIO and lectins. We found a similar composition of the tested enzymes and other elements present in the ER when compared with the hydrogenosome's peripheral vesicle. It was concluded that, like mitochondria, hydrogenosome presents relationships with the ER, especially the peripheral vesicle.
...
PMID:The hydrogenosome peripheral vesicle: similarities with the endoplasmic reticulum. 1803 80
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