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Effect of warm ischemia and cryopreservation on cell viability of human allograft valves.

Fibroblast viability of the allograft valve leaflet has been suggested to affect clinical durability. Warm ischemic time is thought to be one of the critical determinants of cell viability. We assessed cell viability of allograft valves by flow cytometry, using a fluorescein diacetate-propidium iodide stain to characterize the effects of warm ischemia and cryopreservation on viability. Twelve human pulmonary valves with harvest-related warm ischemic times (range, 70 to 520 minutes; mean +/- standard deviation, 225 +/- 157 minutes) were studied by flow cytometry. We assessed cell viability of the allograft valve leaflets before and 30 days after storage. A significant negative correlation was found between warm ischemic time (x minutes) and cell viability (y%) before (y = -0.024x + 96.7; r2 = 0.62; p = 0.002) and after 30 days of storage (y = -0.036x + 94.0; r2 = 0.86; p = 0.001). Cell viability of the cryopreserved allograft valves was well preserved (> 70%) with a warm ischemic time less than 520 minutes (8.7 hours).

Adult↗

[Estimation of cell viability by FCM using rhodamin 123 and propidum iodide--its application in evaluating the effect of anticancer drugs to tumor cells].

Dual parameter analysis of FCM using rhodamine 123 (R 123) and propidium iodide (PI) has made it easy to estimate cell viability. PI stains only dead cells, whereas R 123 accumulates in the mitochondria of living cells which remain unstained by PI. Therefore the combination of R 123 and PI provides a more accurate estimation of cell viability than the conventional methods of dye exclusion. Cell viability has been estimated by this method in HeLa cells treated with adriamycin in vitro. The usefulness of this analysis is suggested for the evaluation of the effect of anticancer drugs on tumor cells.

Antineoplastic Agents↗

Cell viability in scoliotic discs in relation to disc deformity and nutrient levels.

STUDY DESIGN: Intervertebral disc tissue was analyzed during or removed at routine surgery for correction of scoliosis. Tissue was analyzed for glucose, lactate, oxygen, glycosaminoglycan, collagen concentrations, and cell viability. OBJECTIVES: To investigate the cell viability of the scoliotic disc on the concave and convex sides and in relation to curve apex, and to relate cell viability to concentrations of nutrients, metabolites, and extracellular matrix components. SUMMARY OF BACKGROUND DATA: Compositional differences have been measured in relation to the deformation of scoliotic discs. However, the causes of these in relation to cellular activity or viability are unknown. METHODS: Oxygen concentration was measured at surgery using a microelectrode. A segment of disc then was removed and sections at defined locations measured for cell viability and glucose, lactate, glycosaminoglycan, and collagen concentrations. RESULTS Cell viability was lower toward the convex side of the curve, with the greatest difference between the sides in the apical disc. The apical disc had the lowest oxygen and highest lactate concentrations, and lowest total number of cells. Glucose concentration correlated with the number of live cells. Concentrations of glycosaminoglycans and collagen per dry weight of tissue were similar on both sides of the disc. CONCLUSIONS: Differences in cell viability correlated with changes in nutrient and metabolite levels, and also with disc deformity (convex concave and distance from curve apex). Thus asymmetrical loads, tissue deformation, and nutrient supply may work separately or in combination to cause cell death. A loss of matrix macromolecules was not seen, possibly because the period between cell death and surgery was too short, as compared with long matrix turnover times. Cell death is expected eventually to have a deleterious effect on cell matrix and disc function.

Adolescent↗

17-beta estradiol preserves endothelial cell viability in an in vitro model of homocysteine-induced oxidative stress.

High levels of homocysteine (Hcy) accelerate endothelial cell damage by producing hydrogen peroxide (H(2)O(2)). We investigated whether 17-beta estradiol may prevent the accelerated rate of endothelial cell detachment and reduced cell viability in cultured endothelial cells challenged with Hcy. Cultured bovine aortic endothelial cells (BAEC) were incubated for 72-h with either vehicle (alcohol) or different concentrations of 17-beta estradiol (1 nM [1E2] and 10 nM [10E2]) before being challenged with 0.5 mM of Hcy. Cell viability and H(2)O(2) levels were evaluated at 30 min, 1-, 2-, 4-, 8-, and 24-h after adding Hcy. Cell suspensions were frozen in liquid nitrogen and used later for spectrophotometric measurement of intracellular glutathione (GSH) levels. Cell viability 24 h after Hcy administration was significantly lower in vehicle versus 1 nM and 10 nM 17-beta estradiol (44 +/- 5% vs. 70.66 +/- 4%, [p < 0.001] and 79 +/- 5% respectively, [p < 0.001]). H(2)O(2) levels were higher in vehicle (1 +/- 0.05 microM) compared with 1E2 and 10E2 (0.8 +/- 0.1 microM, p = 0.02 and 0.1 +/- 0.05 microM, respectively, p < 0.001), whereas GSH content was increased in 1E1 and 10E2 versus control (27.69 +/- 4.6 nM/10(6) cells and 43.49 +/- 5.5 nM/10(6) cells vs. 13.33 +/- 1.5 nM/10(6) cells, p < 0.001). Bovine aortic endothelial cells treatment with 17-beta estradiol (0, 1, and 10 nM) and 0.1 mmol buthionine sulfoximine, an inhibitor of gamma-glutamylcysteine synthase, abolished the beneficial effects of estradiol alone on cell viability, GSH content, and H2O2 generation. Estradiol prevents Hcy-induced endothelial cell injury by increasing the intracellular content of GSH.

Animals↗

In vitro effect of the Phoneutria nigriventer spider venom on cell viability, paracellular barrier function and transcellular transport in cultured cell lines.

Phoneutria nigriventer spider venom (PNV) induces, in rats, local edema as result of an increased vascular permeability, as well as causes blood-brain barrier (BBB) breakdown by altering transendothelial transport routes in hippocampal microvessels. In this work we investigated the in vitro effects of PNV on cell viability and cellular transport routes using three cell lines, the ECV304 endothelial-, the C6 glioma- and the MDCK epithelial cells. We showed that PNV (14.6 and 292 microg crude venom/ml culture medium) had no direct cytotoxic effect on both the ECV304 and the MDCK cell lines but slightly reduced the viability of C6 glioma cells (P<0.05) at the highest concentration, as revealed by the cellular neutral red uptake assay. The PNV effects on cell transport were evaluated in MDCK cell line. PNV seems do not cause any disturbance in the paracellular barrier function of the cultured MDCK cells, as shown by the lack of a significant change in the distribution and expression of the junctional proteins, ZO-1, occludin, E-cadherin and the cytoskeletal F-actin. In contrast, PNV-treated MDCK monolayers showed an enhancement in the transepithelial electrical resistance and a tendency towards an increased occludin expression. In addition, the PNV significantly increased the apical endocytosis of HRP, which was not followed by an equivalent exocytosis at the basal side, as revealed by biochemical and ultrastructural methods. We conclude that the venom of P. nigriventer displays a relatively low cytotoxicity in vitro as well as activates directly the endocytic transport pathway in MDCK cells without disrupting the paracellular route.

Animals↗

In situ screening assay for cell viability using a dimeric cyanine nucleic acid stain.

A rapid and sensitive assay is described for the determination of cell viability of adherent and nonadherent cells that can be performed in situ in 96-well microtiter plates using fluorescence plate scanners. The assay, based on dye exclusion, utilizes a plasma membrane-impermeable, dimeric cyanine dye (YOYO-1). YOYO-1 fluoresces brightly only when bound to nucleic acids. Cells are incubated with YOYO-1, and fluorescence is measured before and after the addition of detergent, which allows the dye to enter the cells. The fluorescence before detergent treatment originates from nonviable cells that have membrane damage and take up YOYO-1. The fluorescence after detergent treatment originates from all cells in the sample. The ratio of the two fluorescence values is used as an indicator of cell viability. The cell viability results of this microplate assay closely resemble those of dye exclusion studies by flow cytometry and are similar but not identical to those of the thiazolyl blue assay, which uses a metabolic indicator of cell death. Because the assay can be performed in situ, without removing the medium, disintegrated cells, cell aggregates, and cells that stick to culture vessel walls are all included in the measurement.

Benzoxazoles↗

Cell viability in optical tweezers: high power red laser diode versus Nd:YAG laser.

Viability of cultivated Chinese hamster ovary cells in optical tweezers was measured after exposure to various light doses of red high power laser diodes (lambda = 670-680 nm) and a Nd:yttrium-aluminum-garnet laser (lambda = 1064 nm). When using a radiant exposure of 2.4 GJ/cm2, a reduction of colony formation up to a factor 2 (670-680 nm) or 1.6 (1064 nm) as well as a delay of cell growth were detected in comparison with nonirradiated controls. In contrast, no cell damage was found at an exposure of 340 MJ/cm2 for both wavelengths, and virtually no lethal damage at 1 GJ/cm2 applied at 1064 nm. Cell viabilities were correlated with fluorescence excitation spectra and with literature data of wavelength dependent cloning efficiencies. Fluorescence excitation maxima of the coenzymes NAD(P)H and flavins were detected at 365 and 450 nm, respectively. This is half of the wavelengths of the maxima of cell inactivation, suggesting that two-photon absorption by these coenzymes may contribute to cellular damage. Two-photon excitation of NAD(P)H and flavins may also affect cell viability after exposure to 670-680 nm, whereas one-photon excitation of water molecules seems to limit cell viability at 1064 nm.

Absorption↗

Heat shock of cultivated and wild wheats during early seedling stage: growth, cell viability and heat shock proteins.

Growth, cell viability and heat shock proteins (HSPs) in Bezostaya-1, Cukurova-86 and Diyarbakir-81 cultivated wheat cultivars and three Aegilops species were investigated. Etiolated seedlings were exposed to 23 degrees C, 32 degrees C, 35 degrees C, 37 degrees C and 38 degrees C for 24 h, and 35 degrees C (24 h) --> 50 degrees C (1 h) and 37 degrees C (24 h) --> (50 degrees C (1 h). At the end of recovery growth periods, the shoot lengths of the genotypes generally decreased significantly at 35, 37 and 38 degrees C. The acquired thermal tolerance (ATT) in intact seedlings was over 50% at 35 degrees C --> 50 degrees C and 37 degrees C --> 50 degrees C, but in cell viability test it ranged from 2.75% (Ae. triuncialis) to 32.87 (Bezostaya-1) at 35 degrees C, and from 2.82% (Ae. triuncialis) to 37.82 (Bezostaya-1) at 37 degrees C. Ae. triuncialis was most sensitive genotype in both ATT determination. In electrophoretic profiles of proteins, while some HSPs were newly synthesized, some normal cellular proteins disappeared at 37 degrees C and 37 degrees C -->50 degrees C compared to 23 degrees C. The number of low molecular weight (LMW) HSPs were more than intermediate- (IMW) and high- (HMW) HSPs. The genotypes had both common (12 HSPs between at least two genotypes) and genotype-specific (33 HSPs) LMW HSPs. The common HSP of 19.8 kDa (pI 6.5) was synthesized in Bezostaya-1, Cukurova-86, Diyarbakir-81, Ae. biuncialis and Ae. umbellulata. Bezostaya-1 is the only genotype that synthesized 12 IMW and 2 HMW HSPs at 37 degrees C --> 50 degrees C. Ae. triuncialis had only two common LMW HSPs [22.1 (pI 7.1) and 24.2 kDa (pI 6.5)].

Cell Survival↗

The MTT cell viability assay for cytotoxicity testing in multidrug-resistant human leukemic cells.

The MTT cell viability assay is widely used in determining drug sensitivity profiles for patients with hematological malignancies and in primary screening of potential chemotherapeutic drugs. Because the multidrug resistance (MDR) phenotype is associated with these malignancies, and since many vital dyes are effluxed from MDR expressing cells, we have investigated whether the MDR phenotype interferes with the MTT assay. In CCRF-CEM and K562 human leukemic cell lines and drug-resistant sub-lines developed from them, comparison of the MTT assay with other cell viability assays showed significant variation in IC50 concentrations, although the resistance relative to the sensitive parent cell was correlated. Inclusion of verapamil, an inhibitor of drug efflux activity, had no effect on the MTT assay.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

DNA transfection and transfected cell viability using amphipathic asymmetric dendrimers.

Amphipathic asymmetric dendrimers have been investigated for use in delivery of genes into cells, with the objective of optimising transfection efficiency and maintaining cell viability. We have synthesised amphipathic asymmetric dendrimers by solid phase methods. The ability of two of these to transfect BHK cells in culture with beta-galactosidase gene was determined by X-gal staining. Cell viability was measured by the MTT assay for BHK cells, and by spectroscopy for lysis of erythrocytes. Interactions between dendrimer and DNA were investigated by agarose gel electrophoresis. BHK cells were optimally transfected at 5:1 +/- charge ratio yielding 20% cells receiving at least one copy of the plasmid. Cell viability decreased when the dendrimer to DNA ratio exceeded 5:1. Raising the pH significantly affected the electrophoretic mobility of complexes of dendrimer and DNA. We conclude that amphipathic asymmetric dendrimers enable efficient plasmid DNA uptake into BHK cells. Cell viability is maintained at high concentrations of dendrimer when complexed with DNA at a 5:1 +/- charge ratio. Efficiency of transfection and cell viability suggest the system may be suitable for gene delivery in vivo.

Animals↗

Cell viability effects of triamcinolone acetonide and preservative vehicle formulations.

AIM: To assess the effect of triamcinolone acetonide and preservative vehicle formulations on human retinal pigment epithelium (ARPE19) cells over a range of concentrations. METHODS: Triamcinolone acetonide, in its trade and preservative free formulations, along with the preservative vehicle were added to ARPE19 cell cultures in various concentrations (0.01-1.0 mg/ml). Cell viability was assessed using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay at day 5 after exposure. Functionality of the cultured ARPE19 cell line was confirmed by exposure to a previously characterised toxic agent, tamoxifen. RESULTS: The ARPE19 cell line behaved as predicted with exposure to tamoxifen. All formulations caused significant reductions in ARPE19 cell viability at the highest concentrations (1.0 mg/ml for triamcinolone preparations and undiluted vehicle). Cell viability was reduced to the greatest degree in trade formulation triamcinolone, less so by the vehicle, and least by preservative free triamcinolone. At lower concentrations no significant effect on cell viability was observed, although cell viability was found to be inversely proportional to increasing concentration of all tested reagents CONCLUSIONS: Both the trade and preservative free formulations of triamcinolone acetonide as well as the vehicle result in cell loss at in vitro concentrations of 1 mg/ml. Although this represents theoretical vitreous concentrations achieved with current widespread therapeutic use it probably does not indicate the actual exposure of cells in their biological milieu. That cell viability was reduced most in the trade formulation suggests a possible potentiated inhibitory toxic effect of triamcinolone acetonide and vehicle at higher concentrations.

Anti-Inflammatory Agents↗

Quantitative relations of acoustic inertial cavitation with sonoporation and cell viability.

Ultrasound-induced acoustic cavitation assists gene delivery, possibly by increasing the permeability of the cell membranes. How the cavitation dose is related to the sonoporation rate and the cell viability is still unknown and so this in vitro study quantitatively investigated the effects of cavitation induced by 1-MHz pulsed ultrasound waves and the contrast agent Levovist (containing microbubbles when reconstituted by adding saline and shaken) on the delivery of short DNA-FITC molecules into HeLa cells. The concentrations of cells and DNA-FITC were 2 x 10(5) cells/mL and 40 microg/mL, respectively. The cavitation was quantified as the inertial cavitation dose (ICD), corresponding to the spectral broadband signal enhancement during microbubble destruction. The relations of ICD with sonoporation and cell viability were examined for various acoustic pressures (0.48-1.32 MPa), Levovist concentrations (1.12 x 10(5)-1.12 x 10(7) bubbles/mL) and pulse durations (1-10 cycles). The linear regressions of the sonoporation rate versus ICD and the cell viability versus ICD were y = 28.67x + 10.71 (R(2) = 0.95) and z = -62.83x + 91.18 (R(2) = 0.84), respectively, where x is ICD, y is the sonoporation rate and z is the cell viability. These results show that the sonoporation rate and the cell viability are highly correlated with the ICD, indicating that sonoporation results may be potentially predicted using ICD.

Cell Membrane Permeability↗

A simple highly sensitive methods for the determination of cell viability using an electronic particle analyzer, Coulter counter.

Determination of cell viability is a procedure which is applicable to a number of techniques utilized in cell biology. Many means of determining cell viability have been proposed, each with its specific drawbacks. We present here two techniques for determining the viability of cells using an electronic particle analyzer, the Coulter counter. Viabilities of various tissue culture lines could be determined by comparing the ratios of live and dead cells obtained from a histogram of cells suspended in an isotonic solution or a solution of half-normal ammonium chloride (1/2 ACK). Viabilities obtained in this manner correlated well with those obtained by trypan blue dye exclusion. Viabilities of normal lymphocytes could be found in a similar manner by separating live and dead cells on histograms generated at high aperture currents. These values, though generally correlating well with dye exclusion data, may reflect determination of different criteria of cell death than previously used. The application of these techniques to a number of biological assays is discussed.

Animals↗

Ethanol has differential effects on rat neuron and thymocyte reactive oxygen species levels and cell viability.

In rat thymocytes and cerebellar granule cells, reactive oxygen species (ROS) levels were increased and cell viability was decreased as a result of exposure to ethanol (up to 0.4%). Thymocytes showed larger increases in ROS levels, but neurons showed more pronounced decreases in cell viability. These parameters in neurons were relatively unaffected when the cells were incubated with ethanol in the presence of inhibitors of alcohol-oxidizing enzymes, but in thymocytes, the presence of diallyl sulfide (an inhibitor of alcohol-inducible cytochrome P450, CYP2E1) or 4-methylpyrazole (an inhibitor of CYP2E1 and alcohol dehydrogenase) caused decreases in ROS production from ethanol. In both cell types, the presence of 3-aminotriazole (an inhibitor of catalase) did not decrease ROS production from ethanol. These studies show that the cytotoxic effects of ethanol in neurons may not be the result of oxidative metabolism of ethanol, whereas in thymocytes, the cytotoxic effect of ethanol is principally a result of its oxidative metabolism.

Alcohol Dehydrogenase↗

Determination of periodontal ligament cell viability in the oral rehydration fluid Gatorade and milks of varying fat content.

The purpose of this study was twofold: 1) to determine if the oral rehydration fluid Gatorade could serve as a suitable temporary storage medium for maintenance of periodontal ligament (PDL) cell viability on avulsed teeth and 2) to determine if fat content is related to maintenance of cell viability when milk is used as the temporary storage medium. PDL cells were cultured from extracted human teeth then incubated over timed intervals from 15 to 210 min in the oral rehydration fluid Gatorade, milks of varying fat content, and saliva. Dulbeco's Modified Eagles Medium served as the positive control while tap water served as the negative control. Cell viability was determined using a colorimetric assay that used Cell Proliferation Reagent WST-1. Results using Gatorade yielded cell viability data similar to the negative control, tap water, indicating that this oral rehydration fluid was not suitable as a temporary storage medium for the avulsed tooth. However, the fat content of milk was found to have an effect on cell viability, suggesting that milks with lower fat content may be more appropriate for maintaining PDL cell viability than milks with higher fat content.

Animals↗

Control of T cell viability.

The factors affecting T cell viability vary depending on the type and status of the T cell involved. Naive T cells die via a Bcl-2/Bim dependent route. Their deaths are prevented in animals by IL-7 and contact with MHC. Activated T cells die in many different ways. Among these is a pathway involving signals that come from outside the T cell and affect it via surface receptors such as Fas. Activated T cells also die through a pathway driven by signals generated within the T cell itself, a cell autonomous route. This pathway involves members of the Bcl-2 family, in particular Bcl-2, Bcl-xl, Bim, and probably Bak. The viability of CD8+ and CD4+ memory T cells is controlled in different ways. CD8+ memory T cells are maintained by IL-15 and IL-7. The control of CD4+ memory T cells is more mysterious, with roles reported for IL-7 and/or contact via the TCR.

Animals↗

A new, simple, nonradioactive, nontoxic in vitro assay to monitor corneal endothelial cell viability.

PURPOSE: This study was designed to determine whether Alamar blue could be used to evaluate corneal endothelial cell viability in vitro. METHODS: Alamar blue incorporates a proprietary redox indicator that changes color in response to metabolic activity. Primary rabbit endothelial cells were subcultured on 96-well plates at densities ranging from 1,250 to 40,000 cells per well. After 12 hours' incubation, Alamar blue was added to each well and absorbance measured hourly from 1 to 9 hours. Sodium azide-killed cells were used as a control. Alamar blue conversion was also compared with [3H]-thymidine incorporation in the presence or the absence of mitomycin C. RESULTS: Alamar blue reduction demonstrated endothelial cell viability at all cell concentrations compared with that in killed-cell controls. The reduction varied proportionately with cell number and time, showing clearly significant differences. Conversely, [3H]-thymidine uptake demonstrated minimal DNA synthesis and little or no ability to distinguish cell number or viahility. CONCLUSIONS: Alamar blue reduction measures endothelial cell viability and can readily differentiate cell concentrations. It demonstrates several advantages over [3H]-thymidine: It can assay nonproliferating endothelial cell metabolism, it allows rapid assessment of large numbers of samples, it can differentiate endothelial cell concentrations, it is nontoxic, it is nonradioactive and allows for simple disposal, it is less costly, and it allows for continuous monitoring of endothelial cell metabolism and viability.

Animals↗

Human periodontal ligament cell viability in milk and milk substitutes.

The purpose of this study was to determine the efficacy of several milk substitutes compared to whole milk in maintaining the viability of human periodontal ligament (PDL) cells on avulsed teeth. PDL cells were obtained from freshly extracted, healthy third molars and cultured in Eagle's minimal essential media (EMEM). The cells were plated onto 24-well culture plates and allowed to attach for 24 h. EMEM was replaced with refrigerated whole milk (positive control), reconstituted powdered milk, evaporated milk, or one of two baby formulas (Similac or Enfamil). Tap water served as the negative control. Tissue culture plates were incubated with the experimental media at 37 degrees C for 1, 2, 4, or 8 h. Cell viability was determined by a cell proliferation assay (CellTiter 96 AQ Assay), with absorbance read at 450 nM. A two-way ANOVA (p < 0.001) indicated that at 1 h there was no difference in the effect on PDL cell viability between any of the materials and whole milk. At 2 h, Enfamil and Similac performed significantly better than whole milk, whereas evaporated milk performed worse. At 4 h, Enfamil performed better than whole milk, whereas all other milk substitutes performed worse. At 8 h, all substitutes performed worse than whole milk. These results suggest that Enfamil, which is supplied in powder form that does not require special storage and has a shelf life of 18 months, is a more effective storage medium for avulsed teeth than pasteurized milk for at least 4 h.

Analysis of Variance↗