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Electron microscopic characterization of calcium-binding physodes in the green alga Mougeotia scalaris.

Effect of the covalently cross-linking agents glutardialdehyde and osmium tetroxide, and of adsorption of the vital dye, neutral red, to the matrix of the calcium-binding "vesicles" from the green alga Mougeotia scalaris has been analysed in situ, both in terms of structural preservation and of the calcium-binding capacity of the vesicles. Upon cell fixation in glutardialdehyde without OsO4, the vesicles appear to dissolve, but upon simultaneous fixation in glutardialdehyde with OsO4 (1% w/v), the vesicles retain a globular form, are evenly stained by osmium and appear to be surrounded by a membrane-like structure. This structure was also observed around the vesicles in cells preincubated for 10 min in 0.1 mM neutral red and then fixed in glutardialdehyde/OsO4 for 1 h. More detailed information of the matrix structure is obtained when simultaneous fixation of the Mougeotia cells was shortened to 15 min: a membrane-like structure was no longer observed around the vesicles. After cell treatment in the presence of neutral red, no calcium at all was found inside the vesicles. A small amount of calcium remained, when cells were fixed simultaneously and extensively in the absence of neutral red. However, calcium was found, to a considerable extent, inside the vesicles after short simultaneous fixation of the cells in the absence of neutral red. Based on the ultrastructural and elemental features presented here, the calcium-binding vesicles in Mougeotia appear to represent a member of the large family of (calcium-binding) physodes in lower plants (CaBP).

Calcium↗

Comparison of dye adsorption by mesoporous hybrid gels: understanding the interactions between dyes and gel surfaces.

Without using any templating agents, mesoporous hybrid gels were prepared using mixtures of tetraethoxysilane (TEOS) with n-propyltriethoxysilane (PTES), bis(trimethoxysilyl)hexane (TSH), or bis(trimethoxysilylpropyl)amine (TSPA) as precursors. Fourier transform infrared (FTIR), N2 adsorption/desorption, thermogravimetry (TG), point of zero charge (PZC), and water vapor adsorption measurements were used to characterize the gels. The adsorption of methyl orange (MO), methyl red (MR), bromocresol purple (BP), phenol red (PR), neutral red (NR), and brilliant blue FCF (BBF) by the gels in both 0.01 M HCl and 0.01 M NaOH solutions was compared comprehensively. The gel derived from TEOS/TSH (with -(CH2)6- groups, Gel 2) has the largest specific surface area (695 m2 g(-1)), the smallest pore volume (0.564 cm3 g(-1)), and the smallest average pore size (3.7 nm). The gels derived form TEOS/PTES (with -(CH2)2CH3 groups, Gel 1), and TEOS/TSPA (with -(CH2)3NH(CH2)3- groups, Gel 3) have similar textual properties. The PZC of Gels 1, 2, and 3 was estimated to be 6.28, 6.20, and 6.88, respectively. Gel 3 has the highest PZC due to the presence of -NH- groups. In general, Gel 2 shows the highest dye adsorption among all the gels in both acidic and basic solutions. All the dyes except NR have much lower adsorption in basic solutions than in acidic solutions. In acidic solutions Gels 1 and 2 have similar adsorption trends for the dyes, except for BP, with NR having the highest adsorption, and PR the lowest adsorption. Gel 3 presents a different trend from Gels 1 and 2, with BBF having the highest adsorption, and MR the lowest adsorption. In basic solutions the order of dye adsorption by all the gels is shown to follow the sequence NR>>MR approximately BBF>MO>BP approximately PR. The adsorption results can be explained by considering the textural properties of the gels and the interactions between the gel surfaces and the dyes, which include hydrogen bonding, electrostatic, and hydrophobic interactions.

Journal Article↗

Spectrophotometric study on the controlling factor of molecular selective binding of dyes by bridged bis(beta-cyclodextrin)s with diselenobis(benzoyl) linkers.

A series of beta-cyclodextrin (beta-CD) dimers with 4,4'-diselenobis(benzoyl) linkers, that is, 6,6'-[4,4'-diselenobis(benzoyloxyl)]-bridged bis(beta-CD) (1a), 6,6'-[4,4'-diselenobis[2-(benzoylamino)ethyleneamino]]-bridged bis(beta-CD) (2a), and 6,6'-[4,4'-diselenobis[2-(benzoylamino)-3,6-diazaoctylamino]]-bridged bis(beta-CD) (3a), were synthesized in moderate yields by the reaction of 4,4'-diselenobis(benzoic acid) with beta-CD or oligo(ethylenediamino)-6-deoxy-beta-CD. Their binding behaviors with some structure-related substrates, such as acridine red (AR), neutral red (NR), rhodamine B (RhB), ammonium 8-anilino-1-naphthalenesulfonate (ANS), and 6-p-toluidino-2-naphthalenesulfonic acid (TNS), were investigated in aqueous phosphate buffer solution (pH 7.20) at 298.15 K by means of fluorescence, NMR, as well as circular dichroism spectroscopy and compared with those of their 2,2'-diselenobis(benzoyl)-linked analogues, that is, 6,6'-[2,2'-diselenobis(benzoyloxyl)]-bridged bis(beta-CD) (1b), 6,6'-[2,3'-diselenobis[2-(benzoylamino)ethyleneamino]]-bridged bis(beta-CD) (2b), and 6,6'-[2,2'-diselenobis[2-(benzoylamino)-3,6-diazaoctylamino]]-bridged bis(beta-CD) (3b). The results showed that bis(beta-CD)s 1a-3a, whose Se-Se bonds were located at the para position of the carboxyl group, gave stronger binding abilities toward nonlinear guests (RhB and ANS) than their analogues 1b-3b, whose Se-Se bonds were located at the ortho position relative to the carboxyl group. The molecular binding ability and selectivity of model substrates by these ditopic hosts were sufficiently discussed to reveal not only the cooperative contributions of the linker group and CD cavities upon inclusion complexation with dye guest molecules but also the controlling factors for the molecular selective binding.

Journal Article↗

New detection method for hydrogen gas for screening hydrogen-producing microorganisms using water-soluble wilkinson's catalyst derivative.

A water-soluble color indicator was developed for the effective screening of hydrogen-producing microorganisms. This indicator consists of a coloring agent and a water-soluble derivative of Wilkinson's catalyst. Wilkinson's catalyst, Tris(triphenylphosphine) rhodium chloride, had been developed as a catalyst for the hydrogenation of olefins. We used a sulfonate of the catalyst for the hydrogenation of coloring agent in an aqueous medium. Several coloring agents, such as methyl orange, methyl red sodium, neutral red and Evan's blue, dissolved in water together with the sulfonated catalyst showed a change in color when hydrogen gas was fed into the solution by sparging at room temperature. We confirmed that methyl orange was decolorized by biologically produced hydrogen, when the photosynthetic bacterial strain Rhodobacter capsulatus ST-410 was grown in a medium containing 0.6 mM catalyst and 0.075 mM methyl orange in test tubes of 5 ml working volume.

Catalysis↗

ATP-dependent proton transport into vesicles of microsomal membranes of Zea mays coleoptiles.

ATP-dependent proton pumps were found in the vesicles of microsomal membrane fractions of maize coleoptiles. Two membrane fractions isolated by density gradient centrifugation were identified by the aid of marker enzymes and electron microscopic analysis. Membrane fraction A largely consisted of vesicles of smooth ER and of the Golgi complex, fraction B predominantly of vesicles of plasmalemma and rough ER. The pH-indicator, neutral red, was used to measure changes in pH in the vesicles after ATP addition. Due to the binding of protonated neutral red molecules (NRH+) to negative charges of the energized membrane, a strong metachromasy of NRH+-absorption can be observed. Therefore, in order to accurately measure delta pH a pH-dependent change in absorption of neutral red covering the whole NR-spectrum was set up as difference spectra. The commonly employed method of measuring delta A of neutral red at just one wavelength (525 nm) leads to entirely incorrect results. It could be demonstrated that the ATP-dependent translocation of H+-ions into the interior of the vesicles was most efficient at pH 7. Acidification, which reaches its maximum 10--15 min after ATP addition, can be reverted by adding CCCP. An ATP-dependent proton-translocation into the vesicles of fraction B was also observed, however, the proton translocation is less than that found in fraction A in relation to the amount or protein found in each. The membrane fraction A displays a strong oxidation of NADH subsequently followed by an alkalization of the medium. This process cannot be reverted by adding CCCP. NADH oxidation at membranes of fraction A is consequently not an integral part of a redox-pump. A possible significance of the ATP-dependent proton pump in membranes of the ER and Golgi fraction of coleoptiles is discussed in connection with auxin induced elongation growth.

Adenosine Triphosphatases↗

In vitro evaluation of cytotoxicity of diepoxy compounds used for biomaterial modification.

The toxicity of various diepoxy compounds used for biomaterials crosslinking was investigated with a cell culture method and compared with an in vivo method. The neutral red uptake by cells was used to count the number of cells still alive after contact with the diepoxy compounds, because this method was more sensitive in cell counting than the other four methods studied in this work. The amount of neutral red taken up by cells depended strongly on the activity of cells in comparison with other methods; only small amounts of neutral red were taken up when cells were in a low activity state even if they were still alive. The in vitro toxicity of diepoxy compounds evaluated by the neutral red method revealed a good correlation with that found by the in vivo Draize test. The in vitro cytotoxicity to a cell line of L929 was closely related to that of primary culture cells of the normal rabbit cornea epidermal cell. The toxicity of diepoxy compounds was lower as their chain was longer, probably because of the lower chemical reactivity. All the diepoxy compounds investigated in this study exhibited lower cytotoxicity than formaldehyde, glutaraldehyde, and a water-soluble carbodiimide.

Animals↗

Interactions of heteroaromatic compounds with nucleic acids. 2. Influence of substituents on the base and sequence specificity of intercalating ligands.

This paper presents the results of a systematic study on the effects of substituents on the base and sequence specificity of tricyclic heteroaromatic compounds interacting with DNA by intercalation. All the compounds tested are derived from proflavine and acridine orange analogs with different heteroatoms in the middle ring. Their base and sequence specificities were determined by differential dialysis of the ligand against DNA samples of differing G-C content. The main results indicate that (a) the introduction of a phenyl substituent into one of the two available positions of the middle ring increases or decreases the G-C specificity of the ligand depending on the position where the substitution takes place; (b) compounds of the substitution type of neutral red (2-methyl-3-amino-7-dimethyl-amino-phenazine) show unexpectedly high G-C specificities and (c) DNA ligands of pronounced sequence specificity for adjacent G-C pairs can be constructed by combining the structural elements of neutral red with an additional phenyl residue in the same molecule. The further study of compounds related to the phenylated neutral red revealed that the G-C specificity can be improved or destroyed by additional substituents. The comparison of the G-C specificity and the DNA-affinity data of the compounds studied leads to the suggestion that the specificity arises mainly from electronic factors which are strongly controlled through steric constraints on possible ocmplex geometries. As a basis for the discussion a possible structure for the DNA complex of the phenylated neutral red is considered in which the extra phenyl ring at N-5 of the phenazinium system, protrudes into the large groove of the DNA helix while the tricyclic part of the ligand is inserted between the DNA base-pairs.

Acridines↗

[A carbohydrate histochemical study of the growth of rat parotid glandular cells].

OBJECTIVE: The submandibular gland is used in most studies of the development and differentiation of the salivary glands. There are only a few reports on the genesis and growth of the parotid gland: reports by Emi (1939), Uehashi (1960), Harold (1961), Redman and Sreebny (1971), Eguchi (1975), Takeuchi (1978) and Redman et al. (1980) who used rats and those by Akiyoshi (1929) and Iwata (1958) who used humans. Since there are no reports on the carbohydrates in parotid glandular cells, we carried out histochemical studies of changes in the carbohydrates of the secretory granules in parotid glandular cells in young rats. MATERIALS AND METHODS: Wistar rats were mated, and 5 male offspring were killed with chloroform daily between the time of birth (day 0) and day 13 and weekly between the 2nd and 8th weeks after birth. Their parotid glands were immediately resected, fixed in buffered formalin, embedded in paraffin and cut into 6 mu sections for the following histochemical reactions (Tables 1 and 2): PAS reaction (Lillie's technique), PAS-dimedone reaction reaction and salivary digestion test for the determination of glycogen; acetylation-PAS reaction, acetylation-saponification-PAS reaction and sulfation-toluidine blue reaction (TB; pH 2.5) for the determination of neutral mucopolysaccharides; Sugiyama's neutral red technique and Alcian blue staining (AB; pH 2.5) for the determination of weekly acidic mucopolysaccharides; Sugiyama's neutral red technique and Alcian blue staining (pH 1.0 and 0.5) for the determination of strongly acidic mucopolysaccharides; high iron diamine (HID) test, periodic acid-treated HID test, HID-AB (pH 2.5) test, low iron diamine (LTD) test and periodic acid-treated LID test for the determination of compound carbohydrates; and PA-Con A-HRP-AB test (pH 2.5) and PA-red-Con A-HRP-AB test (pH 2.5) as paradox lectin tests. RESULTS: Histological findings: The terminal of the parotid gland of the young rats showed two types of granule-containing cells. One of the two types was mucoid cells with large irregular massive granules strongly positive for PAS present above the nucleus (L cells), and the other, serous cells with fine granules moderately to weakly positive for PAS (S cells). L cells were present between days 1 and 11 after birth, being most abundant between days 4 and 7. In S cells, the morphology of granules began to be obvious on day 1 and to be similar to that of cells in adult rats at week 4 after birth. 1. Glycogen: i) PAS reaction: L cells showed moderately positive reaction between days 1 and 3 after birth and strongly positive reaction between days 4 and 11. S cells showed weakly positive reaction between days 1 and 3 after birth and moderately positive reaction between day 4 and week 8. ii) PAS-dimedone reaction: No glycogen was detected in the L or S cells of any animal. iii) Salivary digestion test: No glycogen was detected in the L or S cells of any animal. 2. Neutral mucopolysaccharides: i) Acetylation-PAS reaction: L cells showed slightly positive reaction only on days 3, 6 and 7. ii) Acetylation-saponification-PAS reaction: L cells showed slightly positive reaction, and S cells, weakly positive reaction starting on day 10 after birth. iii) Sulfation-TB reaction (pH 2.5): L cells showed mild metachromasia between days 2 and 9 after birth, and S cells, starting at week 3. 3. Weakly acidic mucopolysaccharides: i) Sugiyama's neutral red technique: L cells showed weak metachromatic reaction on days 3, 4 and 5 after birth and slight metachromatic reaction between days 8 and 11. S cell were negative. ii) AB staining (pH 2.5): L cells showed slightly positive reaction on days 1 and 2 after birth and moderately positive reaction between days 3 and 11. S cells showed slightly positive reaction on days 3, 4, 7 and 8 after birth. 4. Strongly acidic mucopolysaccharides: i) Sugiyama's neutral red technique: Both L and S cells were negative. ii) AB staining (pH 1.0): L cells were slightly positive betwee

Animals↗

The relation between lysosomal biomarker and population responses in a field population of Microchaetus sp. (oligochaeta) exposed to the fungicide copper oxychloride.

The ecological relevance of the neutral red retention assay as a biomarker in an indigenous earthworm population (Microchaetus sp.) exposed to the fungicide copper oxychloride was investigated. Changes in earthworm biomass and numbers were monitored and related to changes in neutral red retention times of coelomocytes as well as changes in copper concentrations in the soil and earthworm body tissues. Results indicated that Microchaetus sp. responded sensitively to the copper oxychloride by showing an initial decrease in biomass 2 months after spraying started. This was followed by a significant decrease in worm numbers after 3 months. The neutral red retention times of earthworm coelomocytes decreased significantly within the first month of treatment and correspond to a significant increase in soil copper concentrations, but not with an immediate increase in body burdens of copper. More than a year after spraying had stopped the worm biomass and numbers were still significantly lower in the treated plots compared with the control plots. Since the reduction in neutral red retention times could be attributed to the presence of copper oxychloride and preceded the decline in population density and biomass, we conclude that this biomarker has a useful role to play in environmental risk assessment and could provide a warning of impending ecological damage.

Animals↗

Stress protein assay for the evaluation of cytotoxicity of dental amalgam.

To evaluate the cytotoxicity of mercury in dental amalgams, a stress protein assay was performed and the results were compared with the cytotoxicity evaluated by a neutral red uptake assay. The induction of a major stress protein, hsp70, was analyzed at levels of mRNA, synthesis and accumulation in human HeLa cells treated with extracts from amalgam, metal mercury and mercuric chloride. Mercuric chloride induced an increase in the synthesis of hsp70 at concentrations of mercury half those used for the neutral red uptake assay. The extracts from dental amalgam and metal mercury induced an increase in hsp70 mRNA at concentrations of mercury half those causing the inhibition of neutral red uptake into cells. Furthermore, the extracts from dental amalgam or metal mercury increased the synthesis of hsp70 and inhibited the uptake of dye at concentrations of mercury 1/10-1/50 lower than those at which mercuric chloride acted. These results suggest that the stress protein assay is more sensitive than the conventional neutral red assay for the evaluation of the cytotoxicity of mercury in dental amalgams and that the methods used in the preparation of metal solutions seem to be critical to the evaluation of cytotoxicity of dental materials.

Biological Transport, Active↗

HISTOCHEMICAL STUDIES OF LYSOSOMES AND LYSOSOMAL ENZYMES IN VIRUS-INFECTED CELL CULTURES.

The appearance of lysosomes and the distribution of lysosomal enzymes have been studied in a number of cell cultures exposed to viruses. Lysosomes were shown by fluorescence microscopy after vital staining with aminoacridines and light microscopy after vital staining with neutral red. The lysosomal enzymes studied histochemically in unfixed and fixed cells were acid phosphatase and 5-bromo-4-chloro-indoxyl acetate esterase. Activation of lysosomal enzymes was found to take place in three stages. The first is characterized by permeability of lysosomal membranes without release of enzymes. This is demonstrable by staining of lysosomal enzymes in unfixed cells and by increased uptake of aminoacridine fluorochromes and neutral red into lysosomes. In cell sheets initially stained with neutral red this gives rise to red plaques. This stage can be fully reversible; cells infected with, and yielding, the red-plaque strain of NDV, recover fully afterwards. In the second stage lysosomal enzymes are released into the cytoplasm, the cells round up and there is decreased uptake of aminoacridines and neutral red into lysosomes. In cell monolayers this results in the formation of white plaques. In the third stage, not usually seen in cell cultures, lysosomal enzymes are released from or inactivated in the cells and are not seen in either fixed or unfixed preparations. The possible roles of lysosomal enzymes in production of cytopathic effects, polykaryocytosis and malignant cell transformation are discussed.

Acid Phosphatase↗

Cytotoxicity of metals, metal-metal and metal-chelator combinations assayed in vitro.

A simple, rapid assay, based on the lysosomal incorporation of neutral red by cells, conveniently carried out in 96-well microtiter plates, was used to evaluate the cytotoxic effect of cationic and anionic metal salts on BALB/c mouse 3T3 fibroblasts. Ranking of the metals according to their decreasing potency was based on spectrophotometrically determined absorbance of the neutral red, extracted from surviving viable cells. The rank order was Cd greater than Hg greater than Ag greater than Zn greater than Mn greater than Cu greater than Co greater than Ni greater than Cr(III) for the cationic metals and Cr2O7 greater than CrO4 greater than AsO2 greater than AsO4 greater than SeO3 greater than SeO4 greater than MnO4 for the anionic metals tested. Cationic metals incubated with cultures in medium containing 1% fetal bovine serum (FBS) were 3-4 times more toxic than in medium with 10% FBS. Cadmium served as a representative metal for the use of this assay not only for concentration, but also for time dependent exposures. Thus a 10% cytotoxic effect after 1 h of incubation with 60 microM cadmium was increased to 90% after 6 h. Examination of the effect of metal-metal interaction on cytotoxicity showed a marked reduction of cadmium toxicity by zinc and to a lesser degree, by nickel. The neutral red assay was also effectively used to investigate the effect of the chelators ethylenediaminetetraacetic acid (EDTA), nitrilotriacetic acid (NTA) and 2,3-dimercaptosuccinic acid (DMSA) on cadmium-induced injury. Cytotoxicity by cadmium was completely inhibited by EDTA, and partially by NTA, but DMSA was ineffective. Reduction of copper toxicity by chelation was less efficient than for cadmium. Use of a chelator as therapy against metal poisoning was only partially effective and limited to administration within 2 h after incubation of cells with cadmium. It is believed that the neutral red assay can be a valuable tool for the screening of cytotoxic and potentially therapeutic agents under controlled in vitro conditions.

Absorption↗

Cytotoxic effects of FK506 on human renal proximal tubule cells in culture.

FK506 has been used as the primary immunosuppressive agent administered after a variety of organ transplants, with less reported nephrotoxicity than that of cyclosporine. This study examined in vitro cytotoxicity of FK506 on normal human renal proximal tubule cells. Cytotoxicity was assessed by neutral red inclusion and trypan blue exclusion; morphology was assessed by light and transmission electron microscopy. Neutral red inclusion decreased to less than 10% of the control after 3 days exposure to 200 micrograms/ml FK506. Forty microgram per milliliter FK506 caused a decrease in neutral red inclusion to 61% of the control on Day 7, with recovery to 86% on Day 12. Similarly, trypan blue exclusion decreased to 66% of the control following 7 days exposure to 40 micrograms/ml FK506, and confluency of the monolayer was reduced to 50% as evidenced by phase contrast microscopy. After a 12-day exposure, treated monolayers became more confluent. On ultrastructural examination, FK506-treated cells exhibited increased cytoplasmic vacuolation and lipid inclusion. These data suggest that FK506 is reversibly and mildly toxic to monolayers of human renal proximal tubule cells and are consistent with clinical reports of reversible nephrotoxicity.

Cell Survival↗

Evaluation of eight in vitro assays for assessing the cytotoxicity of cigarette smoke condensate.

The accurate assessment of cytotoxicity is important for evaluating the potential of a test agent to induce pathologies that result from cell killing and to determine appropriate doses for other endpoints, such as genetic toxicology studies. The objective of this work was to determine the most sensitive assays for assessing cytotoxicity in Chinese hamster ovary (CHO) cells following short-term (1 h) and long-term (24 h) exposure to cigarette smoke condensate (CSC). Eight in vitro cytotoxicity assays with different endpoints were used to evaluate the cytotoxicity of Kentucky reference 1R4F (K1R4F) CSC in CHO cells. The assays used for this study were neutral red uptake, LDH release, kenacid blue binding, MTT formation, XTT formation, acid phosphatase activity, sulforhodamine B binding and resazurin binding. Four of the more widely used cytotoxicity assays (neutral red, MTT, kenacid blue and LDH) were also evaluated at 3-, 6-, 12- and 18-h time points. At the 1-h exposure time, LDH was the most sensitive with toxicity observed beginning at 100 microg/ml. None of the other assays demonstrated a concentration-dependent increase in toxicity after 1-h exposures even at the maximum concentration of 150 microg/ml of CSC. Following 24 h of exposure, neutral red and kenacid blue were the most sensitive. The results of our study indicate the assay that measured membrane integrity was the most sensitive for short exposure times, whereas the neutral red and kenacid blue assays that measured total cell number were more sensitive for longer exposure times.

Animal Testing Alternatives↗

Photoinactivation of latent herpes simplex virus in rabbit kidney cells.

The photoinactivation of actively and nonactively growing herpes simplex virus by neutral red and proflavine was studied in rabbit kidney cells. Active virus growth was inhibited by both dyes under conditions which did not destroy the cells. Neutral red caused a much greater inhibition than proflavine. Neutral red also caused a reduction in the reactivation rate of latent virus when the infected cells were treated during the latent period. In the treated cultures that did reactivate virus, the average length of the latent period was increased over the control value. Proflavine treatment did not reduce the rate of reactivation of latent virus and did not increase the average latent period of the treated cultures.

Animals↗

Monitoring of ANP secretion from single atrial myocytes using densitometry.

Atrial myocytes secrete atrial natriuretic peptide (ANP) in response to mechanical stretch and can serve as a challenging model for studying stretch-secretion coupling. We have developed a technique for monitoring ANP secretion from single atrial myocytes, using neutral red and a CCD video camera. Atrial-specific granules (ASGs) containing ANP were stained with neutral red. The cells were illuminated with monochromatic light (550 mm) and the grey value monitored within the region of interest (ROI) surrounding the region in which ASGs were densely located. Assuming that neutral red is evenly distributed in ASGs, the change in optical density (OD) was considered to represent the total amount of secretion. Under control, non-stimulated conditions, the OD decreased spontaneously (19.7+/-1.4%/10 min, n=14). Direct mechanical stretch (cell length increased by 20%) with two micropipettes or hypotonic swelling (200 mOsm) accelerated the decrease in OD significantly (48.7+/-7.4%/10 min; n=3, 47.2+/-2.4%/10 min; n=7, respectively). In conclusion, this method allows monitoring of ANP secretion with a relatively high time resolution while mechanical stress is applied. Furthermore, patch-clamp or intracellular perfusion techniques can be combined with the present technique for studying cellular mechanisms of stretch-secretion coupling.

Animals↗

Photokinetic voltammetric method for the determination of thiocyanate.

Thiocyanate traces have a strong inhibitory effect on the oxidation of Neutral Red by potassium bromate under UV irradiation in diluted phosphoric acid. Neutral Red exhibits a sensitive second derivative oscillopolarographic wave at -0.6 V(vs. SCE) in diluted phosphoric acid and sodium acetate solution. The oscillopolarographic behavior of Neutral Red was selected as indicator component for its photo-activated oxidation. The photochemical reaction rate equation was determined. A detection limit of 0.3 ng mL(-1) (3sigma/k) and a linear calibration curve from 2.0-48.0 ng mL(-1) thiocyanate were obtained. The method was applied to the determination of thiocyanate in urine, saliva and serum with satisfactory results.

Journal Article↗

Formaldehyde cytotoxicity in three human cell types assessed in three different assays.

International standards for preclinical screening of the cytotoxicity of dental materials so far recommend the use of established cell lines. The aim of this study was to assess the relative susceptibility of human dental pulp fibroblasts (HPF), human buccal epithelial cells (HBE) and HeLa cervix cancer cells exposed to identical cytotoxic challenges. Formaldehyde, which may be released from dental materials such as dental composites, glassionomer cements, and endodontic sealers, was used as test chemical. Cytotoxicity data including dose-response relations and TC(50) values were assessed in three different assays: BrdU incorporation, neutral red uptake and MTT assays. HBE and HPF demonstrated statistically significant lower TC(50) values in both the neutral red and the BrdU assay in comparison to HeLa cells. In the MTT assay no statistically significant differences were observed between the cell types. In the two target-tissue cell types (HPF and HBE) the Neutral Red assay revealed lower TC(50) values in comparison to the BrdU assay. In HeLa cells no statistically significant differences were observed between the assays. In conclusion, the present study confirms that cytotoxicity data obtained by cell culture studies are influenced by both cell culture model and choice of assay. Under identical experimental conditions, human target tissue cells appeared to be more sensitive to formaldehyde toxicity than human HeLa cancer cells.

Bromodeoxyuridine↗