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Inequivalence of fluorescent choline and ethanolamine phospholipids in the erythrocyte membrane: fluorescence lifetime determination in the frequency and time domain.

The fluorescence decay of 1-palmitoyl-2-diphenyl-hexatrienyl-propionyl-sn-glycero-3-phosphocholine and the respective ethanolamine derivative were determined in human erythrocyte ghost membranes by phase and modulation fluorometry. The obtained bimodal distribution decay model could independently be confirmed by pulse fluorometry and data analysis by the exponential series method. Distributional widths of labeled choline and ethanolamine phospholipids were different in ghost membranes but identical in phospholipid vesicles. Thus, it is concluded that both lipid classes containing the same fluorophore experience environments of different heterogeneity in the biological system.

Erythrocyte Membrane↗

Long-lifetime metal-ligand pH probe.

We describe the synthesis and fluorescence spectral characterization of a pH-sensitive metal-ligand complex, [Ru(deabpy)(bpy)2]2., where deabpy is 4,4'-diethylaminomethyl-2,2'-bipyridine. This metal-ligand complex (MLC) was found to display pH-dependent intensities, emission spectra, and decay times, with the changes centered near the physiological useful pH value of 7.5. The apparent pKa values were not found to be dependent on ionic strength. The compound was found to be useful for lifetime-based sensing by phase-modulation fluorometry. Global analysis of the intensity decays over a range of pH values revealed two decay times of 235 and 380 ns, associated with the protonated and unprotonated forms, respectively. Because of its long decay time, optical pH measurements could be accomplished by phase-modulation fluorometry with a conveniently low modulation frequency of 700 kHz. The lifetime data were obtained with either a amplitude-modulated laser or with an amplitude-modulated blue-light-emitting diode. This pH-sensitive complex also displays a modest spectral shift with change in pH, allowing its use as a wavelength-ratiometric MLC probe. One can imagine lifetime sensors for a variety of blood cations and point-of-care assays based on long-lifetime metal-ligand complexes and simple solid-state light sources and detectors.

2,2'-Dipyridyl↗

Effect of histamine on phosphoinositide turnover and intracellular calcium in human ciliary muscle cells.

This report describes the effect of histamine on phospholipase C (PLC) activity and calcium mobilization in cultured human ciliary muscle cells. PLC activity was assessed by measuring the production of inositol phosphates and intracellular calcium mobilization was assessed by Fura 2 ratio fluorometry. The stimulation of PLC by histamine was concentration dependent with an EC50 of 0.96 microM. The H1 antagonist chlorpheniramine blocked the response with an IC50 of 0.53 microM. Calcium fluorometry experiments indicated a mean basal calcium concentration of 36 nM with a 10(-4) M histamine induced mean peak value of 1132 nM followed by a gradually declining plateau phase. EC50 and IC50 (chlorpheniramine) values from histamine induced peak calcium concentrations agreed with the PLC results. Pretreatment of the cells with the PLC inhibitor U73122 at 10(-6) M completely blocked histamine induced calcium mobilization. Removal of extracellular calcium eliminated the plateau phase but not the initial calcium peak indicating that both intra and extracellular calcium sources are required for a normal response. The calcium ATPase inhibitor thapsigargin caused depletion of intracellular calcium stores and prevented a subsequent normal calcium mobilization response to histamine. Ryanodine, a release inhibitor of certain intracellular calcium stores, had no effect on the histamine induced response. The results of these experiments indicate that histamine, via an H1 receptor, activated the PLC second messenger pathway, and caused a multi-phasic mobilization of both intracellular and extracellular calcium. The entry of the extracellular calcium was shown to be dependent upon release of calcium from a ryanodine insensitive intracellular store.

Calcium↗

Fluorescence-based assay of estrogen receptor using 12-oxo-9(11)-dehydroestradiol-17 beta.

12-Oxo-9(11)-dehydroestradiol-17 beta (12-oxo-E2) was used to assay estrogen receptor binding in uterine cytosol preparations by an indirect fluorescence assay. In alkaline solution, 12-oxo-E2 has a fluorescence excitation maximum at 402 nm (epsilon = 24,000) and an emission maximum at 480 nm (phi f = 0.57), and its fluorescence can be observed down to 5 X 10(-11) M. The minimum detection limit of 12-oxo-E2 is 25 fmol by spectrofluorometry and 5 fmol by HPLC-fluorometry. Although this compound is not appreciably fluorescent at neutral pH (i.e., at conditions under which it binds to the estrogen receptor), receptor binding by fluorometry can be measured indirectly: After equilibration of 12-oxo-E2 with the receptor preparation and removal of excess free ligand, the receptor-12-oxo-E2 complex is disrupted, and fluorescence measurements are made on the dissociated 12-oxo-E2 in alkaline medium. This fluorometric assay was validated quantitatively by performing simultaneously, on the same receptor preparation, radiometric and fluorometric assays with [3H]E2 and [3H]-12-oxo-E2. The radiometric determinations with both compounds gave nearly equivalent estimates of receptor site concentrations, but the fluorometric estimate of binding site concentration was somewhat less (70-85%) than that expected on the basis of the [3H]E2 radiometric assay. The use of 12-oxo-E2 in an indirect spectro- or HPLC-fluorometric assay provides a means for assaying estrogen receptor concentrations by fluorescence with a sensitivity approaching that of radiometric techniques.

Animals↗

Chemiluminescence detection of H2O2 produced by human neutrophils during the respiratory burst.

A sensitive luminol-dependent chemiluminescence assay for H2O2 was developed for the indirect determination of the transient changes in NADPH oxidase activity associated with the respiratory burst of human neutrophils. A relatively large, controlled amount of horseradish peroxidase was used in combination with added luminol to rapidly remove and simultaneously detect H2O2 as soon as it is formed, thus preventing its accumulation during burst activity and minimizing the effects of side reactions. Cell-derived myeloperoxidase and possibly catalase were inhibited with 90 microM sodium azide to maintain the total catalytic activity toward H2O2 at a constant level. Chemiluminescence measurements of the respiratory burst activity of human neutrophils stimulated with N-formyl-Met-Leu-Phe (fMLP) were in good agreement with measurements made using an established fluorometric assay based on similar principles (P. A. Hyslop and L. A. Sklar (1984) Anal. Biochem. 141, 280-286). In contrast to fluorometry, the chemiluminescence progress curves reflect the instantaneous rather than the integrated levels of H2O2 at any time and are thus a more direct measure of the activity of the NADPH oxidase. This advantage, as well as higher signal-to-noise ratios and greater inherent sensitivity, distinguishes chemiluminescence as a means of following burst activity. The onset of fMLP-stimulated H2O2 generation was detectable by chemiluminescence within 2 s of stimulation (as opposed to more than double this time by fluorometry), showing that high sensitivity is an important consideration in evaluating respiratory burst kinetics. In contrast to fMLP stimulation, longer and concentration-dependent onset times were observed when phorbol myristate acetate was used as a stimulus.

Horseradish Peroxidase↗

Accurate measurement of psoralen-crosslinked DNA: direct biochemical measurements and indirect measurement by hybridization.

This paper evaluates methods to measure crosslinkage due to psoralen plus light in total DNA and in specific sequences. DNA exposed in cells or in vitro to a bifunctional psoralen and near ultraviolet light accumulates interstrand crosslinks. Crosslinkage is the DNA mass fraction that is attached in both strands to a crosslink. We show here biochemical methods to measure psoralen photocrosslinkage accurately in total DNA. We also describe methods to measure photocrosslinkage indirectly, in specific sequences, by nucleic acid hybridization. We show that a single 4,5',8-trimethylpsoralen (TMP) crosslink causes at least 50 kbp of alkali-denatured DNA contiguous in both strands with it to snap back into the duplex form when the denatured preparation is returned to neutral pH. This process was so efficient that the DNA was not nicked by the single-strand nuclease S1 at 100-fold excess after snapping back. Uncrosslinked DNA was digested to acid-soluble material by the enzyme. Crosslinkage therefore equals the fraction of S1-resistant nucleotide in this kind of experiment. We alkali-denatured DNA samples crosslinked to varying degrees by varying TMP concentration at constant light exposure. We then measured crosslinkage by ethidium bromide (EtBr) fluorometry at pH 11.8; by EtBr fluorometry at neutral pH of S1 digests of the DNA; and by the fraction of radioactivity remaining acid insoluble in S1-digests of DNA labeled uniformly with [3H]deoxythymidine. These assays measure distinct physical properties of crosslinked DNA. Numerical agreement is expected only when all three measurements are accurate. Under optimum conditions, the three methods yielded identical results over the range of measurement. Using alkaline EtBr fluorescence in crude cell lysates, we detected crosslinks at frequencies in the range of 1.6 X 10(-7) per base pair. These levels were compatible with cell survival, attesting to the sensitivity of the measurement system. Crosslinkage affected hybridization as well. One crosslink prevented all alkali-denatured DNA contiguous in both strands with it from hybridizing to complementary DNA either on solid supports or in solution. Strand-length effects on crosslinkage and on reassociation caused solution hybridization levels to exceed those predicted by simple theory. In a quantitative, dot-blotting assay hybridization was linear up to membrane saturation by denatured, uncrosslinked DNA of any strand length.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Factors affecting the oxygen balance in the awake cerebral cortex exposed to spreading depression.

Oxygen balance was evaluated in the cerebral cortex, using the surface fluorometry technique of the intramitochondrial NADH redox state, exposed to various physiological and pathological situations. Using flexible fiber optic light guide, connected to the brain surface via a cemented holder, the measurements were done continuously from the awake rat and gerbil. In few experiments the NADH redox state was correlated with the electrical and ionic activity (measured by surface K+ and DC electrodes). Three different animal models were used in the study: the adult rat, the very young rat (20 g) and the adult gerbil. Those 3 models were used in studying the effect of hypoxia, partial ischemia, and anesthesia on the metabolic and ionic activities measured from the awake brain. Spreading cortical depression (elicited by topical KCl solution) was used as a standard stimulation of the ionic and metabolic activities of the cerebral cortex. Two typical metabolic responses to spreading depression (SD) were recorded, namely 'oxidation cycle' and 'reduction cycle' depending upon the ability of the tissue to compensate for the extra amount of oxygen needed for the higher mitochondrial activity. It was found that the adult rat brain showed oxidation cycles in most conditions (besides partial ischemia), while the young rat and the gerbil brains were much more sensitive to the various perturbations of the brain and exhibited reduction cycle ( as a response to SD) under all pathological situations tested. We conclude from our detailed studies that the type of response to SD, as measured by NADH surface fluorometry, represents the oxygen balance which exists in the tissue under various conditions.

Animals↗

Immunoassays with time-resolved fluorescence spectroscopy: principles and applications.

This review deals with the application of time-resolved fluorescence spectroscopy in the field of immunoassay. The advantages of time-resolved fluorescence over conventional fluorometry are discussed and it is explained why the fluorescent lanthanide chelates, and especially the Eu3+ chelates, are the labels of choice in such applications. A brief description of commercially available time-resolved fluorometers is given. The principles of phase-resolved fluorometry are described. The relative merits and disadvantages of the two time-resolved assay principles currently available commercially are critically discussed. General assay designs by using either Eu3+ or a new Eu3+ chelate as the label are also discussed in some detail. A personal view of future trends in the field of immunoassay concludes this review.

Fluorescent Antibody Technique↗

Quantitation of the volume of liquid injected into cells by means of pressure.

The amount of TRITC-labeled bovine serum albumin (TRITC-BSA) released from the tip of standardized microcapillaries at different injection pressures and times was investigated. Three test systems were used: (a) formation of droplets of the test solution (TRITC-BSA) in paraffin oil, (b) injection of the test solution into buffer droplets suspended in paraffin oil, and (c) injection into living 3T3 cells. The amount of test substance released was determined by scanning fluorometry. The first procedure (a) allows the fluorometrically determined amount of TRITC-BSA to be related to the volume of released test solution. For this rather large pressures (about 700 hPa) are required to overcome the surface forces counteracting droplet formation. The volume of the spheres was evaluated from photomicrographs of the droplets. The values obtained correlate very well with those determined by measuring the fluorescence emitted by the droplets. Injection into preformed droplets of buffer (b) can be performed with pressures in the range used for injecting cells (50-400 hPa). High reproducibility in the volume released is obtained with a single microcapillary; however, large variations exist between different capillaries, although these should theoretically be of equal diameter. The volume injected into living cells (c) under a given condition may vary by a factor of 5 or more. This variation may be due to viscosity differences of cytoplasm. We recommend, therefore, injection of fluorescent marker substances together with the test substance, enabling the injected volume to be determined by scanning fluorometry or by image analysis.

Animals↗

Fluorescent europium chelates as target cell markers in the assessment of natural killer cell cytotoxicity.

A time-resolved fluorometric assay for the detection of natural killer cell activity against target cells labelled with the fluorescent chelate europium-6,6"-bis[N,N-bis(carboxymethyl)-aminomethyl]-4'-phenyl-2,2',6', 2"-terpyridine (EuCAPT) has been developed. In the assay released EuCAPT from lysed K-562 cells is measured in the supernatant after co-incubation of the target cells with effector cells. Thus, the performance of the assay is essentially similar to the previously described EuDTPA assay and the widely used 51Cr assay. EuCAPT is released from target cells lysed by effector cells faster than 51CrO4(2-) but somewhat slower than EuDTPA. In contrast to methods based on prompt fluorometry the autofluorescence from culture medium supplemented with serum can be avoided by the use of time-resolved fluorometry. The result shows that fluorescent europium chelates provide an alternative to radioactive markers currently used for the assessment of in vitro cellular cytotoxicity.

Chelating Agents↗

Simultaneous measurement of natural killer cell cytotoxicity against each of three different target cell lines.

A time-resolved fluorometric assay for the simultaneous measurement of natural killer cell activity against three different lanthanide diethylenetriaminopentaacetate (LaDTPA) labelled target cell lines is described. The target cell line K-562 was labelled with SmDTPA, the cell line Molt with TbDTPA and the cell line Raji with EuDTPA. After co-incubation of the three target cell lines with effector cells the fluorescence of the lanthanides released from the lysed target cells was measured in an enhancer solution in which they formed highly fluorescent complexes. It was possible to differentiate the specific release from the three target cell lines because the emission lines of the europium, samarium and terbium complexes formed in the enhancer solution are well separated from each other. The autofluorescence from culture media supplemented with serum was avoided by the use of time-resolved fluorometry. The results show that applying fluorometry based on the combination of spectral and temporal resolution to natural killer cell assays, makes possible the simultaneous determination of lysis in up to three target cell lines in complex culture medium.

Culture Media↗

In vitro methods of assessing the viability of rainbow trout spermatozoa.

The accuracy of three in vitro methods for estimating the proportion of dead rainbow trout (Onchorhynchus mykiss) spermatozoa was investigated. Motility rating, fluorometry using ethidium bromide, and lactate dehydrogenase (LDH) activity in seminal plasma were compared. Semen samples were prepared to contain 0, 25, 50, 75 and 100% killed spermatozoa. All three methods demonstrated highly significant relationships (P<0.001) with the percentage of killed spermatozoa. Motility rating was found to be quick and accurate but required experienced workers and the results thus could vary between evaluators. Fluorometry was rapid and relatively simple to perform and required only a small amount of semen. Measurement of LDH activity in seminal plasma was accurate but time-consuming and required large amounts of semen.

Journal Article↗

Construction and performance of a variable-frequency phase-modulation fluorometer.

We describe the construction and performance of a variable-frequency phase-modulation fluorometer. This instrument, which provides modulation frequencies from 1 to 200 MHz, was constructed using commercially available components. To facilitate the introduction of these instruments into other laboratories we describe in detail the chosen components and the principles of operation. The present light source is a continuous-wave helium-cadmium laser, which provides convenient excitation wavelengths of 325 and 442 nm. Modulation of the incident light is provided by one of several electro-optic modulators. The extent of modulation ranges from 1.0 to 0.2 as the frequency increases from 1 to 200 MHz. Phase angles and demodulation factors are measured using the cross-correlation method. The closely spaced frequencies are provided by two direct frequency synthesizers. The phase and modulation measurements are accurate to 0.2 degrees and 0.002, respectively, from 1 to 200 MHz. This accuracy allows considerable resolution of complex decay laws. The usefulness of frequency-domain fluorometry for the resolution of multiexponential decays is illustrated by the analysis of several difficult mixtures. As examples, we resolved a two-component mixture of anthracene (4.1 ns) and 9,10-diphenylanthracene (6.3 ns), and confirmed that the intensity decay of NADH in aqueous buffer is at least a double exponential (0.2 and 0.86 ns). We also resolved an especially difficult mixture of anthracene (4.1 ns) and 9-methylanthracene (4.5 ns), and a three-component mixture with decay times of 1.3, 4.1 and 7.7 ns. Frequency-domain fluorometers appear to be particularly useful for determination of complex decays of fluorescence anisotropy. This capability is illustrated by the determination of rotational correlation times as short as 47 ps for p-bis[2-(5-phenyloxazolyl)]benzene (POPOP) in hexane at 40 degrees C, and by the resolution of the two correlation times of anisotropic rotators such as perylene and 9-aminoacridine. Resolution of two anisotropy decay times for 9-aminoacridine is a difficult test because these correlation times differ by less than 2-fold. The resolution of multiexponential decays of intensity and anisotropy possible with this instrument is at least equivalent to that obtained using state-of-the-art time-resolved instruments based on mode-locked laser sources. The ease and rapidity of frequency-domain measurements, the relative simplicity of the equipment, the accuracy of the measurements and the lack of significant systematic errors indicate that frequency-domain fluorometry will be widely useful in chemical and biochemical research.

Aminoacridines↗

Assessment of radical activity during the acute phase of myocardial infarction following fibrinolysis: utility of assaying plasma malondialdehyde.

Numerous experimental and clinical studies have reported a role of radical forms of oxygen in the etiology of the manifestations of reperfusion of the ischemic myocardium. However, clinical results remain controversial. The aim of this study was to ascertain the existence of reperfusion-related radical stress after thrombolysis with a marker that is easy to use and reliable. Thirty patients hospitalized for acute myocardial infarction were involved in the study. Of these, 18 had been subjected to intravenous thrombolysis (Group I) and 12 had not (Group II). They were compared to two control groups who had no history of myocardial infarction. Of these, 16 were patients with coronary heart disease hospitalized for stable angina (Group III) and 17 were patients free of any known cardiovascular disease (Group IV). Radical activity was assessed in plasma samples taken from a peripheral vein over a 10-day period of hospitalization by measuring (1) malondialdehydes (MDA) concentrations using fluorometry techniques or HPLC, (2) the antioxidant activity of glutathione peroxidase (GPx) and (3) the concentration of various antiradical compounds (beta-carotene, vitamins A and E, uric acid). All patients in Group I had a patent artery on coronary angiography and showed a significant increase in plasma MDA when compared to those who had not been subjected to thrombolysis (3.15 +/- 0.62 and 2.70 +/- 0.40 mole/l of plasma, respectively). Furthermore, GPx plasma activity was also significantly increased following thrombolysis. By contrast, there was no significant alteration in the antiradical compounds measured. These data suggest that MDA measurements (an early measurement 1-2 days and a late measurement 5-7 days after reperfusion) by fluorometry is a good marker of radical stress during reperfusion in man. The assessment of this marker in patients might represent a simple and reliable test of reperfusion efficacy following thrombolysis, and it might enable one to test the effect of various antioxidant therapies associated with thrombolytic treatment.

Aged↗

Characterization of tumorous and normal tissue using a pH-sensitive fluorescence indicator (5,6-carboxyfluorescein) in vivo.

The pH of the interstitial fluid of malignant tumours tends to be lower than that of normal tissue and is depressed by glucose administration. This study aimed to evaluate the effectiveness of dual-wavelength fluorometry using a pH-dependent indicator (5,6-carboxyfluorescein: 5,6-CF) for the detection of tumour areas in vivo. 5,6-CF has two main characteristics: it has two wavelengths of maximum absorbance (465 and 490 nm) and its fluorescence emission (maximum, 515 nm) increases as a function of pH in the physiological pH range of 6-7.4. The experimental study was performed on 28 CDF mice bearing lymphoid leukaemia P388 grafted subcutaneously. The tissue pH values were evaluated from the ratio of the fluorescence intensities (I490/I465) on the basis of a calibration curve linking pH measurements performed within the tissue using a microelectrode and values of the fluorescence intensity ratio. The fluorescence intensity reached its maximum value 60 min after 5,6-CF and glucose administration, followed by a plateau (90 min) when the ratios remained constant at 1.79 +/- 0.05 for normal tissue and 1.35 +/- 0.04 for tumour tissue (p less than 0.005). These results were correlated with the pH measurements in accordance with the calibration curve. This study validates the relevance of dual-wavelength fluorometry using a pH-dependent indicator to characterize in vivo normal and tumour tissues after glucose administration.

Animals↗

Use of chromatin stability assay, mitochondrial stain JC-1, and fluorometric assessment of plasma membrane to evaluate frozen-thawed ram semen.

Cryopreservation of semen imposes deleterious effects on spermatozoa, either killing a certain proportion of cells or causing subtle damages on sperm function in the surviving population, changes not easily revealed by conventional assays. We have tested three functional assessment techniques in frozen-thawed ram semen from six adult rams, cryopreserved following eight different protocols (four extenders, and glycerol being added at two temperatures). Semen samples were thawed and the following analyses were carried out: motility (CASA), membrane integrity (Hoescht 33258 and fluorometry), chromatin status (chromatin stability test and fluorescence-assisted cell sorting, FACS) and mitochondrial activity (JC-1 and FACS). Fluorometry outcome did not correlate with the other parameters and showed large variation, albeit discriminating among cryopreservation techniques (P < 0.01). Mitochondrial activity correlated, but with low values, with total and progressive motility. However, good sperm motility and high velocity values were associated to high mitochondrial membrane potential. The chromatin stability assay was also successfully carried out, and had a good relationship with male factor (%COMP alpha(t) and SD alpha(t) parameters). In conclusion, fluorometric assessment of membrane integrity albeit rendering poor results, merits improvement, being a low-cost and handy technique, especially for work in the field. On the other hand, both assessments of chromatin stability and mitochondrial status (JC-1 staining), combined with FACS, are reliable techniques that can be used for the functional assessment of frozen-thawed ram semen.

Animals↗

Frequency domain measurements of the fluorescence lifetime of ribonuclease T1.

Using multifrequency phase/modulation fluorometry, we have studied the fluorescence decay of the single tryptophan residue of ribonuclease T1 (RNase T1). At neutral pH (7.4) we find that the decay is a double exponential (tau 1 = 3.74 ns, tau 2 = 1.06 ns, f1 = 0.945), in agreement with results from pulsed fluorometry. At pH 5.5 the decay is well described by a single decay time (tau = 3.8 ns). Alternatively, we have fitted the frequency domain data by a distribution of lifetimes. Temperature dependence studies were performed. If analyzed via a double exponential model, the activation energy for the inverse of the short lifetime component (at pH 7.4) is found to be 3.6 kcal/mol, as compared with a value of 1.0 kcal/mol for the activation energy of the inverse of the long lifetime component. If analyzed via the distribution model, the width of the distribution is found to increase at higher temperature. We have also repeated, using lifetime measurements, the temperature dependence of the acrylamide quenching of the fluorescence of RNase T1 at pH 5.5. We find an activation energy of 8 kcal/mol for acrylamide quenching, in agreement with our earlier report.

Acrylamide↗

Peripheral vascular reactions to smoking--profound vasoconstriction by atherosclerosis.

Analyses of direct effects of smoking on peripheral arteries were done using thermography, blood fluorometry and echography on 97 habitual smoker-diabetics without triopathy. There were found to be four types of thermographic changes following smoking, which varied according to the degree of atherosclerosis of the artery. The smoking-stimulated thermographic pattern in the control group of healthy volunteers was a small wavy pattern, fluctuating along the base line every few minutes within a temperature range of 1.0-1.5 degrees C (N type). In diabetics, four types of thermographic patterns were produced: normal (N) type as control, increasing (I) type (increasing in skin temperature), decreasing (D) type (decreasing in temperature), and F type (no changes in temperature). The most significant finding was the decreasing pattern which closely connected to clinical and echographic aspects of macroangiopathic changes. The increasing type was characterized by a paradoxical increase in temperature after smoking in order diabetics with good blood glucose control and who were less atherosclerotic. Blood flow was correlated to the skin temperature at the base state and changes after smoking. Moreover, blood flow changes measured by fluorometry suggest that vasoconstriction or vasodilatation following smoking took place. These results suggest that this smoking test might be a good tool for diagnosing for the degree of atherosclerosis and for its following up.

Arteriosclerosis↗