Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “FLUORESCEINS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 595 records · Page 33Linked to original sources

Aggregation studies on fluorescein-coupled cobra venom phospholipase A2.

Phospholipase A2 from Naja naja naja venom (Indian cobra) undergoes a concentration-dependent aggregation, and at an assay concentration of 1 microgram mL-1, it exists as a monomer. However, there is some evidence that the enzyme is actually active as a dimer or higher order aggregate. Previous attempts to determine the aggregation state of the enzyme under actual assay conditions were thwarted by experimental difficulties due in part to the low enzyme concentrations required. This aggregation has now been studied by using fluorescence polarization. The extrinsic probe fluorescein isothiocyanate was coupled to the enzyme to serve as the fluorescence marker. Steady-state polarization measurements were made to determine changes in the aggregation state of the fluorescently tagged enzyme. The phospholipases A2 from Crotalus adamanteus (rattlesnake) and porcine pancreas, whose states of aggregation are known, were also labeled with fluorescein isothiocyanate and used as controls. It was found that the divalent metal ions Ca2+, a phospholipase cofactor, and Ba2+, an inhibitor, caused an increase in the cobra venom enzyme polarization, while Mn2+, Mg2+, and Co2+ did not. The water-soluble substrate diheptanoylphosphatidylcholine and the lipid analogue dodecylphosphocholine, when present below their respective critical micelle concentrations, also increased the polarization of the phospholipase-fluorescein conjugate. Thus, both cofactor and substrate caused an increase in the polarization, which implies an increase in the aggregation state. It is concluded that under assay conditions the phospholipase A2 exists in an aggregated form.

Animals↗

Readily available fluorescein isothiocyanate-conjugated antibodies can be easily converted into targeted phototoxic agents for antibacterial, antiviral, and anticancer therapy.

Fluorescein-labeled antibodies have little, if any, photodynamic effect because energy acquired by light absorption is rapidly dissipated in fluorescence. However, they can be easily and efficiently converted to selective photodynamic sensitizers by iodination under mild conditions. We have outlined general experimental procedures that can be used to turn a fluorescein-labeled anti-Escherichia coli antibody into a photodynamic sensitizer that selectively kills E. coli while sparing closely related Salmonella typhimurium. These results demonstrate that iodination did not destroy the specificity or activity of the antibody. This technique should be applicable to the large number of fluoresceinated antibodies that are commercially available. Thus, this strategy provides a simple way to rapidly prepare a large number of targeted phototoxic agents that can be used for the selective destruction with light of nearly any type of tissue or organism.

Anti-Bacterial Agents↗

A rapid procedure for preparing fluorescein-labeled specific antibodies from whole antiserum: its use in analyzing cytoskeletal architecture.

A rapid method for the direct conjugation of affinity-purified antibodies with fluorescein (termed DCAPA) is described. This procedure involves the immobilization of antibodies as antigen-antibody complexes on nitrocellulose blots, and subsequently the bound antibodies are reacted with fluorescein isothiocyanate. An enriched sample of smooth muscle tropomysin transferred to nitrocellulose paper by the Western blotting procedure has been used as the affinity medium for purification of specific tropomyosin antibody from whole rabbit antiserum. Direct conjugation of the antibody with fluorescein was carried out following the binding of antibody to antigen. Direct conjugation and affinity purification of antibodies directed against tropomyosin was accomplished in 2-3 d using an enriched tropomyosin sample and whole antiserum directed against tropomyosin. The immunofluorescence images obtained with this procedure exhibit distinct advantages with regard to background fluorescence and overall specificity of antibody binding. The usefulness of this direct conjugation method in various experimental protocols is discussed.

Animals↗

The preprocessing of retinal images for the detection of fluorescein leakage.

Images of the human retina are routinely used in clinical practice for the diagnosis and management of eye disease. Increased permeability of retinal blood vessels, which is a clinically significant feature, can be visualized with a process known as fluorescein angiography as leakage of fluorescence dye into the surrounding tissues. Analyses of such images can be quantified but significant degradation of images due to uneven illumination or occluded optical pathways is often incurred during image capture. We describe a procedure to restore fluorescein angiographic retinal images so that quantitative computation can be reliably performed. Analysis of the image acquisition system reveals that captured images are composed of two functions, one describing the true underlying image and the other the degradation incurred. These two functions are independent of one another and it is possible to estimate the degradation from an isolated captured image and restore it appropriately. Any leakage of fluorescein dye is then detected by analysing the restored angiographic sequence over time and finding areas of the image that do not have the usual decrease in fluorescence intensity.

Eye Diseases↗

Interleukin-2 increases transcapillary diffusion of sodium fluorescein in human skin.

Immunotherapy with interleukin-2 (IL-2) has been limited by dose-dependent systemic toxicities secondary effects inducing a "vascular leak" syndrome. The purpose of our study was directly to observe and to quantitate changes in skin capillary permeability in response to microinjection of IL-2 by measuring transcapillary diffusion of sodium fluorescein. Twelve healthy volunteers were studied. IL-2 (2.5 microliters; 45,000 i.u.) was injected into the subepidermal skin layer of the distal tibial plateau by using a new microinjection technique. At the opposite leg, an equivalent amount of the solvent was injected to serve as the intraindividual control site. Three and 24 h after injection, Na-fluorescein was given intravenously, and transcapillary diffusion of the dye was simultaneously recorded with two different video microscopes. Perivascular fluorescent light intensities (FLI) corresponding to transcapillary diffusion of the dye were measured in arbitrary units (AU) by videodensitometry around the sites of microinjection during playback of the videotapes. Mean FLI values representing microvascular permeability 10 s after dye appearance were at 3 h, 1,504 +/- 592 AU for IL-2 and 983 +/- 652 AU for the solvent; and at 24 h, 2,450 +/- 447 AU for IL-2 and 658 +/- 329 AU for the solvent. At 3 and 24 h, the mean values after IL-2 application were significantly enhanced (p < 0.05-0.005) when compared with the mean values after injection of the solvent. The results document that IL-2, as compared with the solvent, significantly increases transcapillary diffusion of Na-fluorescein, reflecting capillary permeability in human skin. The increase in capillary permeability may explain the edema-promoting effect of IL-2 after systemic application.

Administration, Cutaneous↗

Interpretation of flow cytometric measurement of lymphocytes after fluorescein angiography.

PURPOSE: By use of flow cytometry (FCM), lymphocyte subsets were evaluated with fluorochrome-labeled monoclonal antibodies (MoAbs). Recent fluorescein angiography (FA) produces temporary elevation of serum background fluorescence at certain wavelengths of light, producing falsely decreased lymphocyte subset quantitations. The authors evaluated the duration of this effect on one subset of lymphocytes after FA. METHODS: CD4 counts were determined by FCM before and 10 minutes, 1, 6, and 24 hours after injection of fluorescein dye in 12 patients. The MoAbs used were directly conjugated to fluorescein isothiocyanate (FITC) or phycoerythrin (PE). RESULTS: Using FITC-labeled MoAbs, falsely decreased CD4 counts occurred in all patients at 10 minutes and in all but one patient 1 hour after injection. Return to baseline levels occurred in 50% (95% confidence interval [CI], 0.21, 0.79) by 6 hours and in 75% (95% CI, 0.43, 0.95] by 24 hours. No such effect was observed using PE-labeled MoAbs. CONCLUSIONS: Falsely decreased CD4 values as determined by FCM were present immediately after FA in all 12 patients and persisted 24 hours in some patients when FITC-labeled MoAbs were used. CD4 evaluation should be delayed in patients who have undergone recent FA or the analysis should be performed with PE-labeled MoAbs.

Adult↗

Origin of a fluorescence increase accompanying the limited proteolysis of fluorescein-labeled human prothrombin by Factor Xa.

In a search for a probe which would report its proteolysis to thrombin, the human blood coagulation zymogen prothrombin was covalently labeled with fluorescein. Fluorescein isothiocyanate (FITC) and dichlorotriazinylaminofluorescein (DCTAF) both introduced approximately 1 molecule of dye, but labeling occurred at different locations, as FITC had no effect on clotting activity whereas DCTAF caused 95% inactivation. At pH 9.0 DCTAF, but not FITC, could induce labeling up to 4 mol/mol. All derivatives were activated normally by prothrombinase (the activating complex of Factor Xa, Factor V(a), Ca2+ and phospholipids), as indicated by the pattern of bands on SDS gel electrophoresis and an unaltered yield of activity toward a chromogenic substrate for thrombin. Upon undergoing this limited proteolysis, the most heavily labeled derivative showed a 40% increase in fluorescence of the fluorescein at 520 nm (lambda ex 480 nm). In contrast, the fluorescence of lightly labeled forms was more intense but increased by only 0-5% upon activation. The data suggest that the lower fluorescence of the most labeled form is due to an intramolecular quenching effect between the dye molecules on individual polypeptide chains that is partly relieved when activation occurs.

Electrophoresis↗

Competition between decavanadate and fluorescein isothiocyanate on the Ca2+-ATPase of sarcoplasmic reticulum.

The binding of vanadate and fluorescein isothiocyanate to the Ca2+-transport ATPase of sarcoplasmic reticulum (EC 3.6.1.3) was analyzed. Monovanadate binds to the Ca2+-transport ATPase at a single high affinity site (site 1), that is presumably related to the binding site for inorganic orthophosphate, and to one of the two sites for decavanadate. Binding of vanadate to this site stabilizes the enzyme in the E2 conformation, with inhibition of ATPase activity and the formation of crystalline arrays of Ca2+-ATPase. Decavanadate also binds with high affinity to a second site on the Ca2+-ATPase (site 2), that is blocked by fluorescein isothiocyanate and may be part of the binding site for ATP. Crystallization of Ca2+-ATPase in sarcoplasmic reticulum, labeled with fluorescein isothiocyanate, by either monovanadate or decavanadate implies that occupation of site 1, but not of site 2, by vanadate is required for the conformational change of Ca2+-ATPase leading to the formation of crystalline arrays.

Animals↗

Reaction of fluorescein isothiocyanate with an ATP-binding site on the phosphorylase kinase alpha subunit.

Phosphorylase kinase can be labeled specifically on the alpha subunit with fluorescein 5'-isothiocyanate (FITC) which concomitantly inactivates the enzyme (T. G. Sotiroudis and S. Nikolaropoulus (1984) FEBS Lett. 176, 421-425). Labeled peptides have been purified and their primary structure has been determined. The amino acid sequence of the fluorescein-labeled tryptic peptide is Lys-Met-Gln-Asp-Gly-Tyr-Phe-Gly-Gly-Ala-Arg. The environment of this fluorescein-labeled lysine has been determined by sequencing peptides isolated from a Staphylococcus aureus V8 digest and two further cyanogen bromide fragments of the purified [14C]carboxymethylated alpha subunit. The partial sequences obtained have then been localized in the primary structure of the alpha subunit [Zander et al. (1988) Proc. Natl Acad. Sci. USA 85, 2929-2933]. Both the incorporation of the fluorescent label and enzymatic inactivation are inhibited by ATP only at pH 7.0; ADP and AMP do not protect. Kinetic analysis reveals a competition between ATP and FITC; a Ki for ATP of 728 +/- 100 microM has been determined.

Adenosine Triphosphate↗

Micropunctate fluorescein staining of the human corneal surface: microerosions or cystic spaces? A non-contact photomicrographic in vivo study.

PURPOSE: To study in vivo the phenomenon of micropunctate fluorescein staining of the human corneal surface. METHODS: Patients were examined in the slit-lamp and photographed by the means of photomicrography. The staining pattern of fluorescein was compared with that of superimposed rose bengal staining. RESULTS: The staining patterns showed a great correspondence. CONCLUSION: The findings indicate that micropunctate fluorescein staining probably reveals disruptions of intercellular junctions permitting penetration and accumulation of stained fluid beneath diseased cells in situ.

Cell Count↗

Photosensitivity reaction to intravenously administered fluorescein.

Sodium fluorescein is an organic dye widely used as a diagnostic aid. This article reports a case of a photosensitivity reaction associated with intravenous administration in a healthy volunteer. To our knowledge, this is the 1st case of a photosensitivity reaction of the immediate type due to fluorescein reported in the literature, which probably indicates its very low incidence. The literature on photosensitization to fluorescein is reviewed.

Adult↗

Leakage of fluorescein: first sign of juvenile diabetic retinopathy. Role of diabetic control and of duration of diabetes.

In order to ascertain the first vascular lesions responsible for juvenile diabetic retinopathy, 408 fluorescein angiographies were performed in 114 diabetic children and adolescents whose diabetes became clinically apparent before the age of 14 years. Compared with regular ophthalmoscopy, fluorescein angiography doubles the frequency of the diagnosis of incipient retinopathy. In addition to the classical diabetic lesions, fluorescein leakages are demonstrated in 50% of diabetic eyes with initial retinopathy. They probably reflect early changes in capillary permeability. They appear often before microaneurysms. Duration of diabetes as well as insufficient and poor metabolic control considerably increase the frequency of retinopathy.

Adolescent↗

Disciform detachment of the macula. II. Fluorescein and indocyanine green fluorescence angiographic findings in juvenile haemorrhagic macular choroidopathy.

Six patients with juvenile haemorrhagic mascular choroidopathy were studied with fluorescein and indocyanine green fluorescence (ICG) angiography, and red-light and red-free light photography in different stages of the disease. The primary lesion consisted of multifocal, whitish, dot-like areas of choroidal infiltration showing hyperfluorescence in the late phase of the fluorescein angiograms. Red-light photographs revealed depigmentation of the pigment epithelium overlying the choroidal lesion, and clearly demonstrated the subsequent pigment-ring lesion. Fluorescein angiograms revealed subretinal neovascularization at the site of the disciform-stage choroidal lesion. ICG angiograms revealed the choridal lesion to be located in the region of greatest supply of short posterior ciliary arteries, wheras the lesion itself remained underfilled throughout the angiogram suggesting vascular decompensation at the site of the lesion. The results suggest a vascular basis, namely intravascular coagulation in the central choriocapillaris, for this uveitis entity.

Choroid↗

Optimal fluorescein-to-protein ratios of bacterial direct fluorescent-antibody reagents.

A number of bacterial systems were studied with specific direct fluorescent-antibody reagents prepared from rabbit antiserum fractions and having a wide range of fluorescein-to-protein ratios. These systems included Bacteroides, Bordetella, Clostridium, Escherichia, Legionella, Listeria, Salmonella, Shigella, and Streptococcus. For all systems studied, a fluorescein-to-protein ratio of 30 was optimal for conjugates prepared from ammonium sulfate fractions (greater than 75% gamma globulin) and pure immunoglobulin G desorbed from the Sepharose-bound protein A of Staphylococcus aureus. A pepsin digestion procedure is described that yielded the F(ab')2 piece of pure immunoglobulin G; this was labeled and studied at two fluorescein-to-protein ratios.

Antibodies, Bacterial↗

An in vitro evaluation of fluorescein penetration into natural root surface carious lesions.

In order to develop a method for detection and quantification of initial root surface carious lesions, the use of fluorescein sodium as a fluorescent dye is evaluated. The penetration depth of fluorescein sodium into human roots containing natural carious lesions was measured on approximately 130-microns-thick slices, cut in a direction perpendicular to the pulp. This depth was compared to the lesion depth that was measured on the same slice with transversal microradiography. The results indicate that fluorescein sodium in water penetrates into demineralized layers of root dentine even if a surface layer with a high mineral content is present. The penetration depth is about 1.1 times the microradiographically determined lesion depth.

Dental Caries Activity Tests↗

Evaluation of sodium fluorescein for quantitative diagnosis of root caries.

The diagnosis of root caries, in particular the judgment of the activity of a visually observed lesion, is difficult. Quantitative determination of lesion severity would allow the lesion to be monitored with time, so that an indication of lesion activity could be obtained. This paper describes a step in the development of a method that provides such a quantitative determination. Specifically, fluorescein sodium salt is used as a penetrating dye, the subject of study being the relationship between dye concentration and porosity in demineralized root dentin. Fourteen human third molars were demineralized in vitro (lactic acid CMC-gel, pH 5; in each of 6 groups for 4, 7, 11, 14, 18, and 21 days). Fluorescein sodium salt (0.2 g/L) was applied for 2 min. Thin slices (+/- 130 microns) were cut from the root surfaces without water cooling. The dye fluorescence radiance in the demineralized dentin was determined by means of a micro-Raman spectroscope and compared with the mineral loss profiles measured with transverse microradiography (TMR). The TMR data were corrected for the difference in measurement area between the two measurement systems. Corrected TMR profiles were compared with the corresponding fluorescence scans, showing linear correspondence. The correlation coefficient was r = 0.96. We conclude that, after uptake of fluorescein sodium salt for 2 min, the dye concentration in an artificially produced root-surface caries lesion is proportional to the amount of mineral lost from that lesion.

Dentin↗

Fluorescein use in the detection of perilymphatic fistula: a study in cats.

A stained or colored perilymph would be a valuable tool to otologists for the detection of a perilymph fistula. We studied the effect of intravenously injected fluorescein on the inner ear in seven cats. Still and video photography was used to clearly document our findings. Intravenously injected fluorescein appeared within the soft tissue in less than 1 minute and stayed there for at least 3 1/2 hours. Fluorescence around the round window niche resulted from soft tissue (mucosal) fluorescence and extravasation of interstitial fluid (transudate). No fluorescence of perilymph was detected. Because of this, we do not believe intravenously injected fluorescein is useful in the detection of perilymph fistula. Intrathecal injection caused quick and intense staining of labyrinthine fluid.

Animals↗

A method for immunofluorescent demonstration of three coexisting neurotransmitters in rat brain and spinal cord, using the fluorophores fluorescein, lissamine rhodamine, and 7-amino-4-methylcoumarin-3-acetic acid.

Coexistence of neurotransmitters within single nerve fibers or terminals can be convincingly demonstrated by the use of multicolor immunofluorescence. The present study examined whether three-color immunocytochemical localization of coexisting neurotransmitters can be performed using the blue fluorophore AMCA. Spectrofluorometric examination of secondary antibodies conjugated with AMCA, fluorescein, and lissamine rhodamine showed that the peaks of excitation and emission were well separated and that dots of AMCA-conjugated IgG dried on slides were not visible when viewed using microscope filters for rhodamine and fluorescein. These findings suggest that AMCA might be suitable for three-color immunofluorescence. The usefulness of AMCA for triple labeling was tested directly by staining sections of rat brainstem and spinal cord for serotonin (5HT), substance P (SP), and either enkephalin (ENK) or prepro-thyrotropin-releasing hormone 160-169 (ppT), a marker peptide for thyrotropin-releasing hormone. Triple labeling for 5HT, SP, and ppT was observed in both brainstem and spinal cord but was only very rarely observed for 5HT,SP, and ENK. No evidence was found for artifactual triple labeling, although false negatives appeared to be possible in some circumstances. We conclude that AMCA can be combined with fluorescein and lissamine rhodamine for three-color immunofluorescent studies of coexisting neurotransmitters. In addition, the coexistence of 5HT with ENK appears to be much less common than the coexistence of 5HT with either SP or ppT.

Animals↗