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Intrasarcomere [Ca2+] gradients in ventricular myocytes revealed by high speed digital imaging microscopy.

Cardiac muscle contraction is triggered by a small and brief Ca2+ entry across the t-tubular membranes, which is believed to be locally amplified by release of Ca2+ from the adjacent junctional sarcoplasmic reticulum (SR). As Ca2+ diffusion is thought to be markedly attenuated in cells, it has been predicted that significant intrasarcomeric [Ca2+] gradients should exist during activation. To directly test for this, we measured [Ca2+] distribution in single cardiac myocytes using fluorescent [Ca2+] indicators and high speed, three-dimensional digital imaging microscopy and image deconvolution techniques. Steep cytosolic [Ca2+] gradients from the t-tubule region to the center of the sarcomere developed during the first 15 ms of systole. The steepness of these [Ca2+] gradients varied with treatments that altered Ca2+ release from internal stores. Electron probe microanalysis revealed a loss of Ca2+ from the junctional SR and an accumulation, principally in the A-band during activation. We propose that the prolonged existence of [Ca2+] gradients within the sarcomere reflects the relatively long period of Ca2+ release from the SR, the localization of Ca2+ binding sites and Ca2+ sinks remote from sites of release, and diffusion limitations within the sarcomere. The large [Ca2+] transient near the t-tubular/ junctional SR membranes is postulated to explain numerous features of excitation-contraction coupling in cardiac muscle.

Animals↗

The site of action of lithium ions in morphogenesis of Lymnaea stagnalis analyzed by secondary ion mass spectroscopy.

Exogastrulation as a disturbance of development in eggs of Lymnaea stagnalis is caused by the action of LiCl at the second cleavage stage and not at the first or third. The percentage of exogastrulae formed is strongly concentration dependent. To determine the site of action of lithium ions, the cellular contents of Li, C, Na, Mg, P, K, and Ca were analyzed by secondary ion mass spectroscopy (SIMS). The mean elemental concentrations of Na, Mg, K, and Ca are close to those found earlier by electron probe microanalysis and atomic absorption spectroscopy. Lymnaea eggs at the first, second, and third cleavage stage were treated with LiCl in a series of concentrations ranging from 50 to 0.1 mM. In all cases the cells contained a few mM lithium after treatment. After treatment at the insensitive first cleavage stage the lithium content is carried over by the cells through the sensitive second cleavage to the insensitive third cleavage stage. These data allow the conclusion that it is the external lithium concentration which is responsible for the specific effect. This presents direct analytical evidence that the primary action of lithium ions is located at the cell membrane.

Animals↗

Nickel content of as-received and retrieved NiTi and stainless steel archwires: assessing the nickel release hypothesis.

This study assesses the nickel content of as-received and retrieved stainless steel and NiTi archwires alloys. New and used brand-matched, composition-matched, and cross section-matched archwires were subjected to scanning electron microscopy and energy-dispersive electron probe microanalysis. Elemental analysis was performed on three randomly selected areas, and the nickel content, expressed as ratios of Ni/Ti (in NiTi wires) or Ni/Fe (in stainless steel), was statistically analyzed with a t-test (alpha = .05). No changes were detected with respect to Ni content ratios between as-received and retrieved NiTi or stainless steel wires, suggesting an absence of nickel release. Wear and delamination phenomena on the wire surface and the formation of galvanic couple between the stainless steel wires and bracket brazing materials intraorally may modify the corrosion susceptibility of the wire alloys in clinical conditions.

Corrosion↗

Cellular compartmentation in ischemic myocardium: indirect analysis by electron probe.

Electron probe microanalysis (EPMA) was carried out directly on myocardial cells and on the myofibrils and the mitochondria within them. A third subcellular compartment, which contains sarcoplasmic reticulum (SR), was measured indirectly. The percent of the total cell calcium content that resides within this "hidden" compartment was calculated from cell data minus weighted myofibril and mitochondria data. This approach was applied to control, ischemic, and reperfused myocardium, and other elements were also quantified. We found that the calcium content of this third compartment is little changed during global ischemia but is markedly depleted after 5 min reperfusion. We conclude that these changes are ascribable to changes in SR function.

Animals↗

Foreign bodies in sarcoidosis.

Sarcoidosis is a multisystem disease of unknown etiology. The demonstration of polarizable foreign bodies in cutaneous granulomas is generally thought to exclude a diagnosis of sarcoidosis. Nevertheless. some investigators have reported systemic sarcoidosis with cutaneous manifestations in which polarizable particles were associated with granuloma formation in the skin. We searched the biopsy specimens of granulomatous lesions from 50 patients with cutaneous sarcoidosis using polarization microscopy to estimate the frequency of polarizable foreign bodies in cutaneous lesions of sarcoidosis. Using electron probe microanalysis, we sought to determine what elements compose these foreign bodies. Polarizable foreign bodies were found in the granulomatous skin lesions of 12 of 50 patients with cutaneous sarcoidosis. All 12 patients also had at least one other granulomatous systemic lesion, and 4 had biopsy specimens of a systemic lesion available for review. Polarizable foreign bodies were found in two cases. The elements identified were calcium, phosphorus, silicon, and aluminum. Polarizable foreign bodies were found in cutaneous sarcoidosis far more often than expected. Foreign bodies were also found in granulomatous systemic lesions. The foreign body may serve as an inciting stimulus for granuloma formation in selected cases of sarcoidosis.

Adult↗

[Analysis of deposits in calcific periarthritis].

Analysis was conducted on calcific deposits from 5 patients with calcific periarthritis. These calcific deposits were dried, immersed in hydrazine, or heated to 1000 degrees C for 1 hour, to prepare 3 kinds of samples. The samples were classified as dried samples, hydrazine-deproteinated samples, or as heated samples. All samples were analyzed by X-ray diffraction (XRD). Fourier transform infrared spectroscopy (FTIR), Raman spectroscopy (Raman), and by electron probe microanalysis (EPMA). Although the XRD patterns of the dried samples and of the deproteinated samples were similar to that of hydroxyapatite (HAp), it was still unclear whether or not the calcific deposits were HAp. FTIR then revealed that the dried samples contained carbonate. Raman showed that the dried samples and the deproteinated samples do not have an OH-group. The dried samples were then heated to 1000 degrees C for one hour and analyzed by all 4 methods. The heated samples were found to be HAp. From these results, the calcific deposits from the 5 patients with calcific periarthritis were found to be carbonate apatite: Ca10-x-y/2 (PO4)6-x (CO3) x (OH) 2-y (CO3)y/2.nH2O.

Apatites↗

Ion uptake into demineralized dentine from glass ionomer cement following pretreatment with silver fluoride and potassium iodide.

BACKGROUND: Diamine silver fluoride (Ag(NH3)2F), referred to as AgF, has been shown to provide a pronounced antimicrobial action against caries. The clinical application of this material has been limited by the staining associated with both teeth and tooth coloured restorative materials. The application of potassium iodide (KI) after AgF eliminates stain formation. The purpose of this study was to determine if a prior application of silver fluoride and potassium iodine to demineralized dentine affected the uptake of strontium and fluoride from a glass ionomer cement restoration. METHOD: Three cavities were prepared in each of five recently extracted human third molars. The cavities were demineralized and treated as follows. In each tooth, one cavity was left as a control, one cavity was restored with glass ionomer cement and one cavity was treated with 1.8M AgF and a saturated KI solution and then restored with glass ionomer cement. The penetration of the various elements into demineralized dentine was measured by their relative percentage weights using electron probe microanalysis (EPMA). RESULTS: Fluoride uptake was significantly higher in the AgF and KI treated samples compared to the other two samples and significantly higher in the glass ionomer restored sample compared to the control. The application of AgF and KI did not significantly interfere with the transfer of strontium from glass ionomer cement into dentine. Silver and iodine deposits were present in the demineralized dentine treated with AgF and KI. CONCLUSIONS: The application of AgF and KI onto dentine prior to the placement of glass ionomer cement did not significantly affect the strontium uptake into the subjacent demineralized dentine and the fluoride levels in this zone were significantly increased.

Anti-Infective Agents↗

Nickel content of as-received, retrieved, and recycled stainless steel brackets.

The purpose of this study was to investigate the composition of as-received, retrieved, and recycled stainless steel brackets. New, used, and recycled brand-matched, slot size-matched, and prescription-matched appliances were subjected to scanning electron microscopy and energy dispersive electron probe microanalysis. Elemental analysis was performed on randomly selected surface bracket base and wing areas, and metal content was statistically analyzed with the 2-way ANOVA and the Tukey test, with treatment (as-received, retrieved, and recycled) and bracket regions (base and wing) serving as discriminating variables (alpha = 0.05). The results showed that there was no difference in the surface composition of the base; however, surface area-wing analysis indicated that nickel content was decreased in retrieved and recycled specimens, implying that an ionic release effect occurred in vivo. Differences were noted between bracket base and wing with respect to elemental composition for the same brackets, implying that the base and wings are manufactured from different alloys.

Analysis of Variance↗

Potassium gradients in the growing hyphae of Neurospora crassa.

X-ray electron probe microanalysis of a Neurospora crassa hyphal preparation revealed a significant heterogeneity of the potassium content in the hyphae. Low-potassium areas were found in a close proximity of the growing tip and in the distal part of the hyphae in the submembrane area of about 1 microm width. The intracellular potassium concentration was shown to change more than 3-5 times from apical to distal regions of the leading hyphae, the potassium contents in the apical part of the hyphae usually being minimal. We suggest that the content of intracellular potassium is determined by the volume occupied by free intracellular water, i.e., by the size of the space available for diffusion of substances, including inorganic ions.

Electron Probe Microanalysis↗

Studies on the distribution of mineral elements in the tooth of zinc-deficient rats.

Elemental analysis of plaque-like black deposits noted on the surface of teeth in zinc-deficient rats at necropsy was performed. Rats deficient in zinc show signs of abnormality in iron metabolism and increase or accumulation of iron in plasma and tissues. This study was designed, therefore, to examine the plasma and salivary levels of iron and other elements and to determine the distribution of mineral elements in the dental substances of zinc-deficient rats by contact microradiography, electron probe microanalysis (EPMA) and X-ray fluorescent element mapping spectrometry (XEMS) on ground sections of teeth. Rat tooth specimens were analyzed also for zinc, iron, copper and manganese using colorimetry and Inductively Coupled Plasma, ICP. EPMA and XEMS analyses revealed the presence of iron on the enamel surface of maxillary molars teeth of zinc-deficient rats. However, no such deposition was seen on those of controls. The zinc-deficient rats showed higher iron concentration in mixed saliva and in plasma, compared with the controls. Thus, the sign of abnormality in iron metabolism noted in the oral cavity of zinc-deficient rats was investigated by EPMA and XEMS analyses, with discussion on the origin of supradental iron deposits.

Animals↗

Interaction of selenium with copper, silver, and gold salts. Electron microprobe study.

The interaction of selenium with elements of group 1b of the periodic system, i.e. copper, silver, and gold was studied. Electron probe microanalysis was used to detect elements in intracellular organelles. Administration of copper, silver, or gold salts (the latter being used in chrysotherapy) showed that these elements were concentrated in the lysosomes of the liver or kidney in the presence of sulfur. Silver salts were also precipitated in glomerular basement membranes. The action of selenium enhances this intralysosomal process of concentration and precipitation. Sulfur and selenium are detected in the lysosome and this makes identification of the precipitate difficult. The action of selenium, which consists in removing toxic elements from the systemic circulation and concentrating them in the lysosomes, is in most cases beneficial for the organism. This mechanism, which has already been studied for arsenic, is extended in this study to other elements.

Animals↗

Physiological remineralization of artificially demineralized dentin beneath glass ionomer cements with and without bacterial contamination in vivo.

This study evaluated the physiological remineralization of artificially demineralized dentin beneath glass ionomer cements with and without bacterial contamination. The artificially demineralized dentin was produced on 84 monkey teeth using a decalcifying solution. Half the samples were left open to the oral cavity for one week, then, all cavities were restored with two glass-ionomer cements: Fuji IX or Fuji II LC improved (n = 7). The nanohardness of the artificially demineralized dentin at 3, 90 and 360 days was measured using a nanoindentation tester (ENT-1100, Elionix) and compared statistically by two-way ANOVA and Fisher's PLSD test (p < 0.05). Each mineral (Ca, Mg, P, F) within the demineralized dentin was also analyzed using Electron Probe Microanalysis. For the samples, the mean nanohardness of the three-day samples was significantly lower than the 360-day samples (p < 0.05). Although there was no significant difference in the mean nanohardness within all the bacterially-contaminated groups through the experimental periods (p > 0.05), the mean nanohardness of the bacterial-contaminated samples were significantly lower than the non-bacteria-contaminated samples (p < 0.05). From the EPMA results, fluoride release from both cements to the bottom of the artificially demineralized dentin was detected within three days. Although Ca density was sparse within this demineralized dentin lesion, for the Fuji IX sample, a high Mg density within this lesion was detected at 360 days.

Analysis of Variance↗

Microprobe analysis of three high-copper amalgams.

Three single-composition, high-copper amalgams were analyzed for the composition of their before- and after-reaction phases. The method used was electron probe microanalysis. The results may be summarized as follows: All alloys consist essentially of Ag3Sn (gamma), Cu3Sn (epsilon), and, in some cases, Ag4Sn (beta). When the original alloy contains higher amounts of Cu, more Cu is found in solution in the Ag3Sn (gamma) and Ag4Sn (beta) phases. The reaction phases in amalgams made from these alloys consist essentially of Ag22Sn Hg27(gamma 1) and Cu6Sn5 (eta'), with no detectable Sn8Hg (gamma 2). When In is present, it is found principally in the Ag3Sn (gamma) and Ag22Sn Hg27(gamma 1) phases, and both the gamma and gamma 1 phases are of different composition than that for the other alloys. When Pd is present, it is found principally in the Cu3Sn (epsilon), Cu6Sn5 (eta'), and Ag22Sn Hg27(gamma 1) phases.

Chemical Phenomena↗

Cyclic deposition of calcium salts during growth of cholesterol gallstones.

Some cholesterol gallstones contain darkly pigmented centers or peripheral concentric pigmented bands. We examined the cross-sectional surface of three cholesterol gallstones which contained both central and peripheral pigmented areas with electron-probe microanalysis (EPM) and energy dispersive x-ray microanalysis (EDXA) to determine the elemental composition of the pigmented regions. Linear EPM across the cross-sectional surface of the stones demonstrated that most of the pigmented regions of all three stones had high Ca and P signals; the non-pigmented intervening areas had markedly lower or no detectable Ca and P signals. In two of the three stones, high O signals coincided with the high Ca and P signals suggesting that both calcium bilirubinate and calcium phosphate were present in these pigmented areas. EDXA of the central and peripheral pigmented areas of each stone confirmed the presence of a high Ca signal. Our results demonstrate that in some cholesterol gallstones there is cyclic deposition of calcium bilirubinate and other calcium salts.

Bile Acids and Salts↗

Cardiac mitochondrial calcium content during fatal doxorubicin toxicity.

The purpose of this study was to determine whether abnormalities of mitochondrial divalent cation metabolism are early, causative events in doxorubicin (DXR, Adriamycin) cardiotoxicity. We used electron probe microanalysis (EPMA) to examine the calcium (Ca) and magensium (Mg) content of in situ mitochondria in cryosections of rat hearts, rapidly frozen at 6 hr and 1, 3, and 5 days after a single iv injection of 20 mg/kg DXR. This dose produced 100% mortality in 7 days, with a mean survival of 5.8 days. Mean control mitochondrial Ca and Mg was 0.7 and 28 mmol/kg dry wt, respectively (+/- SEM), and did not change in the DXR-injected animals, even in severely symptomatic rats 5 days after DXR. This suggests that an alteration in mitochondrial divalent cation metabolism is unlikely to be a primary event in the pathogenesis of DXR-induced cardiotoxicity, and that the mitochondrial Ca accumulation demonstrated in previous studies represents a secondary event in cells damaged by another mechanism.

Analysis of Variance↗

The in vitro effect of a glass ionomer cement on dentine and enamel walls. An electron probe and microradiographic study.

Glass ionomer cement (ASPA) was inserted in unconditioned class V cavities or in contact with polished ground surfaces of enamel and dentine in twelve teeth. Ground sections of all teeth were examined by microradiography, and four of the sections submitted to electron probe microanalysis. A narrow outer zone of increased radiopacity in the dentine walls was explained by a 5--10% increase of Ca and P. In some sections this zone covered a partly demineralized subsurface zone. The concentrations of F and Al in enamel and dentine were similar to or approximately 0.3% and 1.5%, respectively, decreasing to less than 0.1% at a distance of 16--80 microns (F) and 8--24 microns (A) from the surface. Both F and Al penetrated deeper into the dentine than into the enamel. Decreased Zn values, sometimes concomitant with increased Ca, P and Mg values, were in some instances observed in an outer narrow zone of the dentine walls. It is assumed that like silicate cement, glass ionomer cement must have anticariogenic properties, due to uptake of F and Al in cavity walls.

Calcium↗

[A comparative analysis of the intracellular potassium content for the cardiomyocyte in papillary muscle tissue and in a primary heart culture].

This work was aimed to examine potassium contents in heart myocytes. The intracellular concentration of this element was measured with electron probe microanalysis (EPMA). The cardiomyocyte was studied in samples of the papillary muscle tissue and in heart primary culture. The low temperature fixation was applied to the sample preparation. As a result, cells of the primary heart culture were shown to be separated into three kinds of myocytes, defined by their different shape, size and cellular potassium content. The rod cardial cell, to be used for electrophysiological assays, has potassium and sodium concentrations close to those of the papillary muscle. The difference in potassium concentrations is to be explained presumably by the injury of cell membrane during the primary culture preparation. Healing over the membrane is likely to parallel with the membrane damage resulting from a continuous destruction of the cellular assembly in primary culture.

Animals↗

Development of intercellular communication during the epithelial reorganization of a renal cell line (LLC-PK1).

Junctional permeability determinations after microinjection of the fluorescent tracer, Lucifer Yellow CH, show that the cells in confluent monolayers of the renal epithelial cell lines LLC-PK1 and A6 are interconnected by intercellular junctions. This cell-to-cell communication network permits the fluorescent dye to diffuse from the microinjected cell into multiple adjacent neighboring cells. Cell-to-cell diffusion of the fluorescent dye was not observed at pH 6.0. Full recovery occurred, however, when the pH of the extracellular medium was adjusted to 7.4. To provide a sensitive index of the averaged efficacy of junctional communication, we measured the number of cells that survived ouabain treatment in a 50% mixture of wild and ouabain-resistant mutant LLC-PK1 cells. Electron probe microanalysis in uncoupled cells showed that ouabain treatment produced two populations of cells, with totally different intracellular Na+ and K+ content. Under this condition, only 50% of the population survived after 48 h of treatment. When ouabain treatment was initiated 24 h after plating, however, 100% survival was observed, and the cells contained uniform intracellular Na+ and K+ concentration. This finding is consistent with the theory that this protective effect is mediated through the presence of the functional communicating intercellular junctions. When ouabain was applied at different times after plating, full protection is reached by 2 h. The early development of cell-to-cell communication, which precedes the development of the occluding junctions and several transport systems by several hours, is consistent with the involvement of the intercellular junctions in the synchronization of the polarization process.

Cell Communication↗