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Proliferation, esterase activity, and propidium iodide exclusion in urologic tumor cells after in vitro exposure to chemotherapeutic agents.

After exposing urological tumor cells to anticancer agents in vitro, cellular esterase activity and the ability to exclude propidium iodide (PI) were examined as dual indicators of functionality or "viability." High esterase activity/PI exclusion was observed in assays in which anticancer agents failed to inhibit cellular proliferation, while low esterase activity/PI exclusion was often observed when proliferation had been significantly inhibited. In a number of instances, exposure to anticancer agents did produce significant inhibition of proliferation without lowering viability. In this setting, the recovery of proliferative capacity could be demonstrated with several transitional cell carcinoma cell lines, and this recovery was always associated with high esterase activity/PI exclusion. When the proliferation of primary urological tumor preparations was inhibited by drug exposure, estimates of elevated viability were obtained in 27 per cent of the determinations. Thus, viability estimates may be an indicator of the potential for tumor-cell recovery from exposure to anticancer agents. Moreover, the potential for recovery may explain differences between the results of chemosensitivity testing and actual clinical events by reconciling clinical failures with elevated viabilities indicative of this potential.

Antineoplastic Agents↗

Quantitative determination of apoptotic death in cultured human pancreatic cancer cells by propidium iodide and digitonin.

We present here the efficacy of an in vitro cytotoxicity assay which can measure rapidly both apoptotic dead cells and cell growth rate, quantitatively. Using a multi-well plate reader, the fluorescence intensity of propidium iodide (PI) corresponding to dead cells and to total cells after digitonin treatment were measured in cultured human pancreatic cancer cells following exposure to etoposide. The percentage of dead cells measured by this assay was well correlated to that determined by Trypan blue staining. Furthermore, the cell growth rate determined simultaneously was also correlated to the cell number counted directly using a microscope. We demonstrate that this method, which was originally established for evaluating necrosis, could be applied to measure apoptotic cell death. Taken together, this simple assay is useful for testing the efficacy of anti-cancer agents and for investigating the molecular mechanisms of apoptosis in the cultured cells.

Antineoplastic Agents, Phytogenic↗

Use of a multiwell fluorescence scanner with propidium iodide to assess NMDA mediated excitotoxicity in rat cortical neuronal cultures.

Glutamate mediated excitotoxicity is a major area of experimentation due to the potential for prevention of morbidity and brain damage associated with stroke and brain trauma. We have developed a simple rapid method to study excitotoxicity in primary cortical neuronal cultures using propidium iodide (PI) fluorescence read by a multiwell fluorescence scanner. Transient (25 min) or continuous N-methyl-D-aspartate (NMDA) treatment led to progressive neuronal death over 24 h that was blocked by 1 microM MK-801, 10 microM ifenprodil, and 200 mM ethanol. Results with PI fluorescence were identical to those found using the lactate dehydrogenase (LDH) release and trypan blue staining assays of excitotoxicity. This method provides a simple rapid means to test the effects of drugs during glutamate excitotoxicity and to do accurate time course experiments of delayed neuronal death.

Animals↗

A method for characterising cell death in vitro by combining propidium iodide staining with immunohistochemistry.

The fluorescent exclusion dye propidium iodide (PI) is widely used as a vital dye in tissue culture systems and labels the nucleus in dying cells which lack an intact plasma membrane. We have developed a method, which allows the preservation of the PI signal in paraformaldehyde-fixed tissue, enabling subsequent immunohistochemical characterisation of labelled cells. We have tested this method in a model of ischemia based on oxygen and glucose deprivation in organotypic hippocampal slice cultures, in combination with immunocytochemical detection of calpain-I mediated spectrin breakdown products (BDPs). Using confocal laser microscopy it was possible to correlate at the single cell level which cells were PI positive and which cells expressed BDPs. This method can also be used with other immunocytochemical markers to determine the phenotype of cells, which accumulate PI in vitro. By fixing tissue at different times after insults, it is possible to obtain a 'snapshot' of viability at any time during the experimental protocol and subsequently characterise those cells which had accumulated PI at the time of fixation. The technique may also prove useful in characterising cell death in other in vitro and in vivo systems.

Animals↗

A comparison of fluorescein diacetate and propidium iodide staining and in vitro excystation for determining Giardia intestinalis cyst viability.

The viability of 4 human isolates of Giardia intestinalis cysts using either the fluorogenic vital dyes fluorescein diacetate (FDA) and propidium iodide (PI) or in vitro excystation was assessed. Whereas viable cysts, as defined by in vitro excystation were present in each of the 4 isolates, cysts from only 3 of the 4 isolates took up the vital dyes. FDA consistently over-estimated cyst viability whilst PI under-estimated non-viable cysts when compared with in vitro excystation. Following in vitro excystation, both FDA and PI stained a proportion of unexcysted cysts indicating that FDA stained cysts which were incapable of excystation, whereas PI did not stain all cysts which were incapable of excystation. One human cyst isolate, which underwent in vitro excystation, could not be stained with either FDA or PI. In the absence of currently more specific fluorescent indicators of viability, PI alone could be used to determine the lower limit of nonviability in positive water-related samples, where small numbers of cysts are to be expected.

Animals↗

Reversible cell damage by T-cell perforins. Calcium influx and propidium iodide uptake into K562 cells in the absence of lysis.

The non-lethal effects of the lymphocyte-derived pore-forming toxin perforin on the human erythroleukaemia cell line K562 were investigated. By using the fluorescent Ca2+ indicator fura-2, perforin was shown to cause intracellular Ca2+ concentration to rise transiently into the micromolar range in the absence of cell death. By fluorescence-activated cell sorting it was demonstrated that K562 cells took up the membrane-impermeant nuclear stain propidium iodide (PI) when exposed to non-lethal doses of perforin. The permeability to PI was short-lived, confirming the transience of the perforin pore. Analogies with non-lethal effects and recovery processes occurring in nucleated cells exposed to the membrane-attack complex of complement are drawn.

Animals↗

Escherichia coli survival in groundwater and effluent measured using a combination of propidium iodide and the green fluorescent protein.

AIMS: The aim of this study was to deterimine the survival of an enteric bacterium in anaerobic groundwater and effluent microcosms using the green fluorescent protein (GFP) marker gene in combination with the viability indicator propidium iodide (PI). METHODS AND RESULTS: The pEGFP vector (Clontech) was transformed into Escherichia coli DH5alpha and was stable for at least 100 generations of growth in nonselective medium at 28 degrees C and 37 degrees C. Using an epifluorescent microscope, GFP cells could be detected under blue light (450-490 nm) and the numbers of PI-positive GFPs could be detected under green light (530-560 nm). GFP-tagged E. coli could be detected for at least 132 d in sterilized water microcosms. GFP fluorescence was not lost from the culturable cell population for the duration of the experiment. However, a slow decline in the number of GFP-fluorescent cells in sterilized groundwater was observed. Escherichia coli die-off and loss of green fluorescence was more rapid in nonsterilized waters than in sterilized. Viable numbers of the GFP-tagged E. coli determined by PI counterstaining were compatible with numbers of colony-forming units. CONCLUSIONS: The long-term survival of E. coli and maintainance of GFP-conferred fluorescence in these cells was demonstrated in both groundwater and effluent, under sterilized conditions. However, severe starvation and/or the presence of indigenous microorganisms were found to be factors affecting the maintenance of fluorescence in dead or dying cells. SIGNIFICANCE AND IMPACT OF THE STUDY: This study demonstrates the successful application of PI with GFP-tagging to monitor long-term bacterial survival in nutrient-limited conditions and mixed microbial populations.

Anaerobiosis↗

HPC viability measurement: trypan blue versus acridine orange and propidium iodide.

BACKGROUND: A reliable, validated method for rapidly determining HPC viability is essential for clinical cell engineering. STUDY DESIGN AND METHODS: A fluorometric cell viability assay using acridine orange and propidium iodide (AO/PI) was compared to the current standard, trypan blue (TB) exclusion. Viable cells stained with AO/PI fluoresce green under darkfield fluorescence microscopy, while nonviable cells fluoresce orange. Mixtures of fresh and heat-killed bone marrow were prepared and used as viability standards for evaluation of both assays. The frequency of CFU-GM was determined for each specimen. RESULTS: Cell viability measured by AO/PI was extremely linear, with measured and predicted viability in agreement from 0 to 100 percent of the viable cells and a coefficient of regression (r(2)) of 0.9921. The predicted-viability regression line fell within the 95% CI for AO/PI-measured viability. The coefficient of regression for TB-measured viability was 0.9584, with the predicted-viability regression line almost entirely outside the 95% CI. TB overestimated the percentage of viable cells, particularly below the 50-percent level. CFU-GM frequency correlated better with cell viability measured by AO/PI (r(2) = 0.979) than with that measured by TB (r(2) = 0.930). CONCLUSIONS: The AO/PI viability assay is a rapid, highly linear, functionally correlated assay that is superior to conventional viability measurement by TB exclusion.

Acridine Orange↗

Single UV excitation of Hoechst 33342 and propidium iodide for viability assessment of rhesus monkey spermatozoa using flow cytometry.

Many fluorescent probes excited by visible light have been used to assess sperm quality by flow cytometry. Developing a viability evaluation method using UV excited stains would be useful for multiparameter analysis of sperm function. This investigation was conducted to determine the efficacy of Hoechst 33342 (H342) and propidium iodide (PI) dual staining for evaluating rhesus monkey sperm viability through use of flow cytometry and excited by a single UV laser. The results showed that the live cells stained only with H342 strongly correlated with expected sperm viability, and flow cytometric analyses were highly correlated with fluorescence microscopic observation. Using H342/PI/SYBR-14 triple staining method, it was found that the live/dead sperm distributions were completely concordant in both H342/PI and SYBR-14/PI assays. In addition, this dual staining was extended with fluorescein isothiocyanate-conjugated peanut agglutinin (FITC-PNA) to simultaneously analyze viability and acrosome integrity of sperm cryopreserved using two different extenders, TTE and TEST, and indicated that TTE offered better preservation of plasma and acrosome integrity than TEST. Therefore, the H342/PI dual staining provides an accurate technique for evaluating viability of rhesus monkey sperm and should be valuable for multiparameter flow cytometric analysis of sperm function.

Animals↗

The thermodynamics of drug-DNA interactions: ethidium bromide and propidium iodide.

We report the first calorimetrically-derived characterization of the thermodynamics of ethidium bromide (EB) and propidium iodide (PI) binding to a series of nucleic acid host duplexes. Our spectroscopic and calorimetric measurements yield the following results: 1) At low salt (16mM Na+) and 25 degrees C. PI binds more strongly than EB to a given host duplex. The magnitude of this PI preference depends only marginally on base sequence, with AT base pairs showing a greater PI preference than GC base pairs. 2) The enhanced binding of PI relative to EB at low salt and 25 degrees C reflects a more favorable entropic driving force for PI binding. 3) The PI binding preference diminishes at higher salt concentrations (216mM). In other words, the binding preference is electrostatic in origin. 4) The salt dependence of the binding constants (delta lnKb/delta ln[Na+]) reveal that PI binds as a dication while EB binds as a monocation. 5) PI and EB both exhibit impressive enthalpy-entropy compensations when they bind to the deoxy homopolymers poly dA.poly dT and poly dA.poly dU. We have observed a similar enthalpy-entropy compensation for netropsin binding to the poly dA.poly dT homopolymer duplex. We therefore conclude that the compensation phenomenon is an intrinsic property of the host duplex rather than reflecting a property of the binding ligand. 6) When either PI or EB bind to the corresponding ribo homopolymer (poly rA.poy rU) we do not observe the enthalpy-entropy compensation that characterizes the binding to the deoxy homopolymer. 7) EB and PI both bind more strongly to poly d(AT).poly d(AT) than to poly d(AU).poly d(AU). Specifically, the absence of the thymine methyl group in poly d(AU).poly d(AU) reduces the binding constant of both drugs by a factor of four. This reduction in binding is due to a less favorable entropy change. In this paper we present and discuss possible molecular origins for our observed thermodynamic and extra-thermodynamic data. In particular, we evoke solvent effects involving both the drugs and the host duplexes when we propose molecular interpretations which are consistent with our thermodynamic data.

Calorimetry, Differential Scanning↗

Stabilization of parallel (recombinant) triplex with propidium iodide.

Earlier we have shown that the oligonucleotide 5'-d(CATGCTAACT)-L-d(AGTTAGCATG)-L-d(CATGCTAACT)-3' [L = pO(CH2CH2O)3p] is able to fold back forming intramolecular RecA-independent triplex with identical strands oriented parallel to each other (parallel triplex) [A.K. Shchyolkina, E.N. Timofeev, O.F. Borisova, I.A. Il'icheva, E.E. Minyat, E.V. Khomyakova, V.L. Florentiev, FEBS Letters 339, 113-118 (1994) (1)]. In this study the propidium iodide (PI) was found to intercalate into the parallel triplex and increase its stability significantly (Tm increased from 21.4 up to 44.4 degrees C in 0.01 M Na phosphate buffer, pH 7, 0.1 M NaCl, when three PI molecules per triplex were bound). Fluorescence excitation and emission spectra, the quantum yield of fluorescence (q = 0.16) and the fluorescence lifetime of PI (tau = 24.5 ns at 3 degrees C) for the parallel triplex studied were shown to be similar to those for DNA. Scatchard binding plots indicated an anticooperative mode of PI binding to the parallel triplex. The association constant is close to that of PI binding to DNA. The fluorescence experiments revealed the maximum number of binding sites to be five PI molecules per one triplex molecule. Molecular mechanics calculation of possible structures for the parallel triplex-PI complex were performed.

Animals↗

Effects of caffeine and chlorogenic acid on propidium iodide accessibility to DNA: consequences on genome size evaluation in coffee tree.

Estimates of genome size using flow cytometry can be biased by the presence of cytosolic compounds, leading to pseudo-intraspecific variation in genome size. Two important compounds present in coffee trees-caffeine and chlorogenic acid-modify accessibility of the dye propidium iodide to Petunia DNA, a species used as internal standard in our genome size evaluation. These compounds could be responsible for intraspecific variation in genome size since their contents vary between trees. They could also be implicated in environmental variations in genome size, such as those revealed when comparing the results of evaluations carried out on different dates on several genotypes.

Caffeine↗

Viability assessment of mammalian sperm using SYBR-14 and propidium iodide.

The proportion of living sperm in semen from six representative mammals was assessed by means of a dual staining technique using the stains SYBR-14 and propidium iodide (PI). SYBR-14, a newly developed fluorescent nucleic acid stain, maximally absorbs at 488 nm and emits at 518 nm when bound to DNA. Microscopic examination revealed that SYBR-14 stained the nuclei of living sperm bright green as determined by simultaneous examination of fluorescence and motility. Conversely, PI stained only nonmotile sperm that had lost their membrane integrity. Sperm from bulls, boars, rams, rabbits, mice, and men were stained and examined through use of fluorescence microscopy. The proportions of living and dead sperm were determined by first staining with SYBR-14 and PI and then assessing stain uptake by flow cytometry. Similar staining patterns were observed in all six mammalian species tested. Three populations of sperm were identified: living--SYBR-14 stained, dead--PI stained, and moribund--doubly stained. The SYBR-14 staining was replaced by PI staining as sperm progressed from living to moribund. The transition from green (SYBR-14) to red (PI) fluorescence started at the posterior region of the sperm head and proceeded anteriorly. The proportions of living and dead sperm in mammalian semen were readily identified through use of dual staining with SYBR-14 and PI and quantified through use of flow cytometry.

Animals↗

Simultaneous staining of exponentially growing versus plateau phase cells with the proliferation-associated antibody Ki-67 and propidium iodide: analysis by flow cytometry.

The antibody Ki-67, which detects proliferating cells, was used in combination with propidium iodide, a DNA-specific dye. The double-staining method allowed discrimination of cells in the phases of the cell cycle as well as the recognition of Ki-67 staining characteristics. Suspension cultures of U937 cells were measured in exponential growth and plateau phase in nutritional deprivation. The fraction of Ki-67 positive cells was nearly 100% 2 days after dilution and 46% 7 days after dilution of the cultures. Stathmokinetic measurements with colchicine and flow cytometry measurements with the BrdU-Hoechst technique yielded close to 100% proliferation at day 2 but only 18% and 6%, respectively, at day 7. The discrepancy between Ki-67 results and the results of the two other methods is considered to be a characteristic of nutritionally deprived cells.

Antibodies, Monoclonal↗

Low propidium iodide intensity in flow cytometric white blood cell counting as a marker of cell destruction?

BACKGROUND: Residual white blood cells (WBC) in filtered blood products were investigated with flow cytometry. Frequently two distinct populations with different propidium iodide (PI) intensities can be found. The aim of this study was to specify a population with low PI intensity and discuss it as a marker of ongoing cell destruction and their possible impact on cytomegalovirus safety. STUDY DESIGN AND METHODS: Buffy coat-depleted red blood cells were filtered with an in-line filtration set (LCR5, MacoPharma) after 4 hours (LCR5/4 hr) and 16 hours (LCR5/16 hr) of storage, and whole blood was filtered with a whole-blood filtration set (LST1, MacoPharma [LST1/4 hr]). The population with low PI intensity was sorted with a flow cytometer and prepared for transmission electron microscopy. RESULTS: The absolute count obtained in the low-PI-intensity area before filtration was significantly different comparing LCR5/4 hr (11.5 x 10(6) +/- 6.84 x 10(6) and 0.12 x 10(6) +/- 0.1 x 10(6)/unit) and LCR5/16 hr (69.3 +/- 42.12 and 0.06 +/- 0.05; p < 0.002). By use of LST1/4 hr no difference was found compared to LCR5/4 hr after filtration (0.12 +/- 0.09 vs. 0.12 +/- 0.1), but a significant difference was found when comparing the results before filtration (1.25 +/- 0.41 vs. 11.5 +/- 6.84; p < 0.02). Electron microscopy revealed that the sorted population consisted of predominantly cell and nuclear fragments. CONCLUSIONS: Events found in the low-PI-intensity area are not WBCs but partially degraded DNA coming from ongoing cell destruction during extended storage. Our results provide evidence that the absolute count of events found in the low-PI-intensity area can be used as a semiquantitative marker of WBC destruction.

Biomarkers↗

Assessment of the cell viability of cultured Perkinsus marinus (Perkinsea), a parasitic protozoan of the Eastern oyster, Crassostrea virginica, using SYBRgreen-propidium iodide double staining and flow cytometry.

A flow cytometry (FCM) assay using SYBRgreen and propidium iodide double staining was tested to assess viability and morphological parameters of Perkinsus marinus under different cold- and heat-shock treatments and at different growth phases. P. marinus meront cells, cultivated at 28 degrees C, were incubated in triplicate for 30 min at -80 degrees C, -20 degrees C, 5 degrees C, and 20 degrees C for cold-shock treatments and at 32 degrees C, 36 degrees C, 40 degrees C, 44 degrees C, 48 degrees C, 52 degrees C, and 60 degrees C for heat-shock treatments. A slight and significant decrease in percentage of viable cells (PVC), from 93.6% to 92.7%, was observed at -20 degrees C and the lowest PVC was obtained at -80 degrees C (54.0%). After 30 min of heat shocks at 40 degrees C and 44 degrees C, PVC decreased slightly but significantly compared to cells maintained at 28 degrees C. When cells were heat shocked at 48 degrees C, 52 degrees C, and 60 degrees C heavy mortality occurred and PVC decreased to 33.8%, 8.0%, and 3.4%, respectively. No change in cell complexity and size was noted until cells were heat shocked at >or=44 degrees C. High cell mortality was detected at stationary phase of P. marinus cell culture. Cell viability dropped below 40% in 28-day-old cultures and ranged 11-25% in 38 to 47-day-old cultures. Results suggest that FCM could be a useful tool for determining viability of cultured P. marinus cells.

Animals↗

A new method to determine Giardia cyst viability: correlation of fluorescein diacetate and propidium iodide staining with animal infectivity.

The viability of Giardia muris cysts was studied with the fluorogenic dyes fluorescein diacetate (FDA) and propidium iodide (PI). G. muris cysts were seen to fluoresce intensely green with FDA at an excitation wavelength of 450 to 490 nm. Cysts stained with PI fluoresced bright orange at an excitation wavelength of 450 to 490 nm and bright red at 545 to 546 nm. Examination of isolated G. muris cyst preparations stained with FDA-PI revealed that greater than 85% of the cysts stained green with FDA and less than 15% stained orange-red with PI. Using the mouse model for giardiasis, we inoculated FDA- or PI-stained cysts into neonatal mice. Feces were examined at days 3, 5, 8, and 11 postinoculation for the presence of cysts. Using 1,000 FDA-stained cysts as the inoculum, we detected cysts at days 5, 8, and 11 postinoculation in 19 of 19 mice, whereas a 50-fold greater dose of cysts produced infection in 27 of 27 mice at day 3 as well as at days 5, 8, and 11 postinoculation. Inoculation of mice with either 5,000 or 50,000 PI-stained G. muris cysts did not produce infection in any of the animals. Necropsy of mice infected with FDA-stained cysts showed trophozoites within the intestines. No trophozoites were detected within animals inoculated with PI-stained cysts. These results demonstrate that FDA-positive cysts are viable, as determined by infectivity, while PI-positive cysts are nonviable and incapable of producing G. muris infections in vivo.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗