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Neutral red assay modification to prevent cytotoxicity and improve reproducibility using E-63 rat skeletal muscle cells.

Cellular uptake of neutral red dye (NR) is currently used as an indirect measure of viable cells in cultures. We used E-63 rat skeletal muscle cells to identify causes of NR assay variability and to develop modifications that substantially reduce it. Three methods of NR preparation and/or addition to cells were used. When NR medium was prepared, incubated overnight, and filtered to remove precipitates, the amount of dye precipitated varied greatly. Coefficients of variation (CVs) in NR uptake were greater than 25% between assays. Higher NR concentrations, longer incubation times, increased pH, and decreased temperature promoted NR precipitation in media. NR media prepared and filtered just prior to use or direct addition of prefiltered NR stock solution to cell cultures resulted in much smaller CVs between assays. NR was cytotoxic to E-63 rat muscle and primary quail myoblasts in a time- and concentration-dependent manner. NR exposure to E-63 cells for greater than 1.25 and 2 hr at 157 or 127 microg/ml, respectively, was associated with swelling and rupture of lysosomes. By contrast, there was no evidence of cytotoxicity when E-63 cells were exposed to NR for 1 hr at either 127 or 157 microg/ml. Primary quail myoblasts developed lysosomal swelling and ruptured more rapidly than E-63 cells when exposed to NR at either 127 or 157 microg/ml. For confluent 10-day cultures of E-63 cells exposed to NR at 127 microg/ml for 1 hr, the CVs within assay and between assays were 3.3-3.9% and 5.1%, respectively. For similarly exposed, actively replicating 3-day cultures of E-63 cells, the CVs within and between assays were 6.2-9.6% and 2.4%, respectively. NR uptake by the E-63 cells was linear with respect to viable cell number.

Animals↗

Regional changes in intracellular pH determined by neutral red histophotometry and high energy metabolites during cardiac arrest and following resuscitation in the rat.

Intracellular pH was determined by neutral red color histophotometry in cerebral tissue from rats subjected to 10 minutes of cardiac arrest and from rats that had recovered for 1 and 6 hours following 8-10 minutes of total cerebral ischemia (TIA). Tissue concentrations of ATP, lactate and glucose were measured corresponding to the pH determinations. As expected, tissue ATP was depleted while tissue lactate was markedly elevated after 10 minutes of ischemia without reflow in the cerebral cortex, striatum and hippocampus. However, both metabolites were near control following 1 and 6 hours of recovery in all three regions. Tissue glucose was not significantly different from control following 1 and 6 hours of reperfusion. During ischemia, the intracellular pH dropped to 6.5-6.7 in all three regions (p less than 0.05). But, since the initial pH of the hippocampus was 7.79 while that of the cerebral cortex and striatum was approximately 7.02, the net drop in pHi the hippocampus was greater than in the other two regions. Following 1 hour of reperfusion, a trend towards tissue alkalosis was observed in the cerebral cortex and striatum.

Adenosine Triphosphate↗

[The effect of uncouplers of oxidative phosphorylation on granule precipitation of neutral red in normal and tumor cells].

A study of the effect of uncouplers of the oxidative phosphorylation on the interaction on neutral red with the normal mouse fibroblast and tumour L-cells showed the former to retain the capacity for the dye granule formation in the presence of 1x10 4 M 2,4-dinitrophenol (DNP). Another uncoupler of the oxidative phosphorylation - n-trifluoromethoxycarbonycyanidephenylhydrazone (FCCP) depressed the granule formation both in the tumour L-cells and in the mouse normal fibroblasts. The dye uptake in the normal fibroblasts and in the tumour L-cells was inhibited by both the DNP and the FCCR in the concentration which uncoupled the oxidative phosphorylation.

Animals↗

Multiple biomarker comparison in Mytilus galloprovincialis from the Greece coast: "lysosomal membrane stability, neutral red retention, micronucleus frequency and stress on stress".

The lysosomal membrane stability test applied on the digestive cells (LMS) and the neutral red lysosomal retention assay (NRR) performed on hemocytes have been evaluated on mussels Mytilus galloprovincialis collected from Thermaikos and Strymonikos gulfs (Nothern Greece) in June and December 2000. The correlation analysis indicated that there was a strong positive relationship between the above mentioned biomarkers in both sampling seasons, supporting the validity of their application in water quality assessment. The evaluation of micronucleus frequency (MN) has been also performed in hemocytes of the same mussels and, according to the results, it requires additional validation before using it as a stress index. The results obtained in parallel by the stress on stress (SOS) technique do not support the application of this biomarker in biomonitoring, showing, however, negative correlation with LMS and NRR in one sampling season. Finally, morphological observations were performed on cryosections stained for the enzyme N-acetyl-beta-hexosaminidase, revealing differences in the epithelial cell-layer thickness, as well as changes in the digestive lysosomal system of mussels, obtained from different sampling sites in the two sampling seasons.

Animals↗

[pH dynamics in the lysosomes and cytoplasm of tissue culture cells measured intravitally using the indicator dye neutral red].

A method of pH determination in the cytoplasm and individual lysosomes of intact living cultured cells is proposed using an indicator dye--neutral red (NR). The pH value of an investigated structure stained with NR is from the ratio between its optical densities at two wave lengths, the one corresponding to the isobestic point (lambda = 470 nm), and the other--to the absorption maximum of the neutral form of the dye (lambda = 450 nm). This method enabled us to make pH determination in the range from 4.5 to 7.2; the accuracy of the method reaches +/- 0.36 at pH 4.7 and diminishes to +/- 0.16 at pH much greater than 5.5. Using this method for the culture of pig kidney embryonal cells and Chinese hamster fibroblasts a heterogeneity of lysosomes was found with respect to the average pH value, oscillating ultradian changes in intralysosomal pH values, and the relationship between the changes and the size and average pH values of lysosomes. It is shown that the accumulation of NR in lysosomes depends on the pH gradient between lysosomes and the cytoplasm, which diminishes with the development of non specific cell response under the influence of some agents) high NR concentrations, inhibitor of glycolysis, or uncouplers of oxidative phosphorus lotion).

Animals↗

Application of the neutral red assay (NR assay) to monolayer cultures of primary hepatocytes: rapid colorimetric viability determination for the unscheduled DNA synthesis test (UDS).

The neutral red (NR) absorption method was adapted for the determination of cell viability in the UDS assay with primary hepatocyte cultures of the rat. The NR method is rapid, easy to perform, and suitable for handling of large numbers of cultures simultaneously. It can be used for concentration range-finding pre-experiments. In addition, it can easily be integrated into a UDS test protocol for documentation of toxic effects if supplementary cultures for each concentration are established. The time schedule required for the NR assay makes it possible for one person to process the hepatocytes for autoradiography and at the same time determine the toxicity.

2-Acetylaminofluorene↗

Evaluation of neutral red retention assay, micronucleus test, acetylcholinesterase activity and a signal transduction molecule (cAMP) in tissues of Mytilus galloprovincialis (L.), in pollution monitoring.

The neutral red lysosomal retention assay (NRR) of the haemocytes, and the acetylcholinesterase activity (AChE) in the haemolymph, the digestive gland, the gills and the mantle/gonad complex have been evaluated on mussels Mytilus galloprovincialis collected from Thermaikos and Strymonikos gulfs (northern Greece) in June and October 2001. The validity of performing the above core biomarkers is supported, firstly by their ability to respond to different pollution levels and, secondly, by the significant linear correlation among them. The evaluation of the micronuclei frequency (MN) has been performed in gill tissue and haemocytes of the same mussels and, according to the results, it needs more research in order its use as stress indices to be validated. In addition, the first results on cAMP levels in the gills, the mantle/gonad complex and the digestive gland, whose concentrations correlated to both, NRR and AChE introduce this signal transduction molecule as a new, promising biomarker.

Acetylcholinesterase↗

[Spectral changes in neutral red in a methemoglobin-liposome system].

Peroxidation of lipids induced by methemoglobin in liposomes forms of mixtures of phosphatidylcholine and cardiolipin has been studied. Using the neutral red dye, the pH shift to the base region at the interface has been found. The possible mechanisms of the effect observed are discussed.

Cardiolipins↗

Novel form of spreading acidification and depression in the cerebellar cortex demonstrated by neutral red optical imaging.

A novel form of spreading acidification and depression in the rat cerebellar cortex was imaged in vivo using the pH-sensitive dye, Neutral red. Surface stimulation evoked an initial beam of increased fluorescence (i.e., decreased pH) that spread rostrally and caudally across the folium and into neighboring folia. A transient but marked suppression in the excitability of the parallel fiber-Purkinje cell circuitry accompanied the spread. Characteristics differentiating this phenomenon from the spreading depression of Leao include: high speed of propagation on the surface (average of 450 microm/s), stable extracellular DC potential, no change in blood vessel diameter, and repeatability at short intervals. This propagating acidification constitutes a previously unknown class of neuronal processing in the cerebellar cortex.

Acids↗

[Determination of deoxyribonucleic acid with neutral red by resonance light scattering method].

The method is based on the enhancement effect of the resonance light scattering (RLS) due to the long range assembly of neutral red (NR) on the molecular surface of DNA. The RLS of NR is greatly enhanced by DNA in the pH range of 5.0-7.0. The enhanced intensity of RLS at 335.0 nm is proportional to the concentration of DNA in the range 0-600 ng.mL-1. The detection limit is 12.8 ng.mL-1. This method is simple, rapid and has been applied to the determination of DNA in mixed samples with satisfactory results.

Animals↗

Removal of boron from aqueous solution by using neutralized red mud.

The adsorptive removal of boron from aqueous solution by using the neutralized red mud was studied in batch equilibration technique. The effects of pH, adsorbent dosage, initial boron concentration and contact time on the adsorption were investigated. The experiments demonstrated that boron removal was of a little fluctuation in pH range of 2-7 and it takes 20 min to attain equilibrium. The adsorption data was analyzed using the Langmuir and the Freundlich isotherm models and it was found that the Freundlich isotherm model represented the measured sorption data well.

Adsorption↗

Extracellular iron reduction is mediated in part by neutral red and hydrogenase in Escherichia coli.

Both microbial iron reduction and microbial reduction of anodes in fuel cells can occur by way of soluble electron mediators. To test whether neutral red (NR) mediates iron reduction, as it does anode reduction, by Escherichia coli, ferrous iron levels were monitored in anaerobic cultures grown with amorphous iron oxide. Ferrous iron levels were 19.4 times higher in cultures fermenting pyruvate in the presence of NR than in the absence of NR. NR did not stimulate iron reduction in cultures respiring with nitrate. To explore the mechanism of NR-mediated iron reduction, cell extracts of E. coli were used. Cell extract-NADH-NR mixtures had an enzymatic iron reduction rate almost 15-fold higher than the chemical NR-mediated iron reduction rate observed in controls with no cell extract. Hydrogen was consumed during stationary phase (in which iron reduction was detectable) especially in cultures containing both NR and iron oxide. An E. coli hypE mutant, with no hydrogenase activity, was also impaired in NR-mediated iron reduction activity. NR-mediated iron reduction rates by cell extracts were 1.5 to 2 times higher with hydrogen or formate as the electron source than with NADH. Our findings suggest that hydrogenase donates electrons to NR for extracellular iron reduction. This process appears to be analogous to those of iron reduction by bacteria that use soluble electron mediators (e.g., humic acids and 2,6-anthraquinone disulfonate) and of anode reduction by bacteria using soluble mediators (e.g., NR and thionin) in microbial fuel cells.

Anaerobiosis↗

Estimation of cell number by neutral red content. Applications for proliferative and survival assays.

A simple photometric method for estimating viable cell number in culture is described. When cultured cells are allowed to internalize 0.005-0.01% neutral red for 1 h, the amount of accumulated dye is directly proportional to cell number. The linear relationship holds for adherent and suspended cell lines. Thus, dye content reflects cell number. Since dye content is easily measured by instruments that photometrically scan microtiter trays, proliferative and survival (cytotoxic) responses can be easily quantitated.

Animals↗

The design of agents to control DNA methylation adducts. Enhanced major groove methylation of DNA by an N-methyl-N-nitrosourea functionalized phenyl neutral red intercalator.

An N-methyl-N-nitrosourea (MNU) moiety [CH3N(N=O)C(=O)NH-] linked to the C4'-position of the 5-substituted phenyl ring of phenyl neutral red (PNR), 2-methyl-3-amino-5-[p-[[2-[(N-nitroso-N-methylcarbamoyl)amino]ethy l] carbamoyl]phenyl]-7-(dimethylamino)phenazenium chloride (MNU-PNR), has been synthesized as an approach to design a molecule that will deliver alkylating agents with some preference to guanine (Gua) in the major groove of DNA. The PNR nucleus was chosen because previous studies suggested the following: (1) PNR binds with a slight preference for G/C rich sequences; and (2) PNR intercalates into DNA from the major groove with the 5-phenyl ring pointing out into the major groove (Müller, W., Bünemann, H., and Dattagupta, N. (1975) Eur. J. Biochem. 54, 279-291). It is demonstrated that MNU-PNR yields 2.6 and 6.0 times more N7-methylguanine (7-MeGua) than MNU at low salt (10 mM Tris buffer) and high salt (10 mM Tris buffer + 200 mM NaCl), respectively. It is also shown that the ratio of 7-MeGua (a major groove adduct) to N3-methyladenine (a minor groove adduct) is approximately 5 times higher for MNU-PNR than for MNU. The yield of the 7-MeGua adduct is decreased by the coaddition of a nonmethylating analogue of MNU-PNR or NaCl, but increased in the presence of the minor groove intercalator, ethidium bromide. Using a 32P-end-labeled restriction fragment, the enhanced methylation by MNU-PNR at 7-Gua is confirmed, and it is demonstrated that the sequence-dependent formation of 7-MeGua from MNU-PNR is the same as that seen with MNU. UV, circular dichrosism, and viscosity studies are consistent with MNU-PNR binding to DNA via an intercalation-based process.

Adenine↗

Spectrophotometric assay of the interaction of Plasmodium berghei infected erythrocyte lysates and neutral red.

In order to reveal by absorption spectrophotometry the redox differences between the Plasmodium berghei infected erythrocyte lysates (MEL) and the healthy ones (HEL) we studied their interaction with the neutral red (NR) redox dye. The variation of the dye absorption intensity at 540 nm as a function of the hemoglobin content of the samples was attributed to the redox potential variation of the different hemoglobin aggregates formed in the samples containing different hemoglobin quantities. By short term treatment of the lysates with ascorbic acid in the presence of NR, great redox reactivity difference was proved between MEL and HEL as revealed by absorption and explained by the initial higher oxidation state of the Hb iron in MEL than in HEL.

Animals↗

[Effect of metabolic inhibitors on formed novocaine and neutral red segregation zones in frog erythrocytes].

Effects of some metabolic inhibitors, as well as of biologically active compounds (diakarb, ethidium bromide and a phenanthridine alkaloid sanguinarine) on the formed novocaine and neutral red segregation zones were studied. The volume of granules diminished under the influence of a glycolytic inhibitor iodoacetate, uncouplers of oxidative phosphorylation (2,4-dinitrophenol and carbonyl cyanide trifluoromethoxyphenylhydrozone), and respiratory inhibitors (antimycin A and rotenone), as well as under the influence of cycloheximide - an inhibitor of protein synthesis. Diakarb, ethidium bromide or sanguinarine also provoked a regression of the segregation zones. It has been found that all these compounds are inhibitors of ATPase activity of the isolated segregation zones. A possible mechanism of volume decreasing in segregation zones under the influence of both the metabolic inhibitors and diakarb, ethidium bromide and sanguinarine is discussed.

Adenosine Triphosphatases↗