Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Fluorescence Microscopy”

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 793 records · Page 44Linked to original sources

[Study of structural changes of contractile muscle proteins with the aid of polarization ultraviolet fluorescence microscopy. 1. Conformational changes of F-actin in the muscle fiber caused by ATP and its analogs].

Increase of anisotropy of F-actin fluorescence of balanus and rabbit muscle fibers under the influence of ATP, AMP and pyrophosphate in EGTA presence was detected by means of the polarized ultraviolet (UV) fluorescent microscopy methods. The fluorescence anisotropy changes are assumed to be associated with the conformational changes in the actin. ATP cause more noticeable changes of actin structure, than pyrophosphate and AMP. The conformational changes in the actin of balanus and rabbit muscle fibres were similar. ATP and its analogs induced also decrease of UV fluorescence anisotropy of A-band which appears to be associated with conformational changes in myosin. It was siggested that the changes in fluorescence of anisotropy of A-bands are due to structural changes in both HMM and LMM parts of myosin molecule.

Actins↗

Time-resolved polarization imaging by pump-probe (stimulated emission) fluorescence microscopy.

We report the application of pump-probe fluorescence microscopy in time-resolved polarization imaging. We derived the equations governing the pump-probe stimulated emission process and characterized the pump and probe laser power levels for signal saturation. Our emphasis is to use this novel methodology to image polarization properties of fluorophores across entire cells. As a feasibility study, we imaged a 15-microm orange latex sphere and found that there is depolarization that is possibly due to energy transfer among fluorescent molecules inside the sphere. We also imaged a mouse fibroblast labeled with CellTracker Orange CMTMR (5-(and-6)-(((4-chloromethyl)benzoyl)amino)tetramethyl-rhodamine). We observed that Orange CMTMR complexed with gluthathione rotates fast, indicating the relatively low fluid-phase viscosity of the cytoplasmic microenvironment as seen by Orange CMTMR. The measured rotational correlation time ranged from approximately 30 to approximately 150 ps. This work demonstrates the effectiveness of stimulated emission measurements in acquiring high-resolution, time-resolved polarization information across the entire cell.

Animals↗

Quantitative fluorescence microscopy of macromolecules in gel and biological tissue.

Quantitative fluorescence microscopy provides valuable insight into drug delivery and pharmacokinetics. The technique is based on analysis of statistical fluctuations in fluorescence that arises as fluorophores pass through a small volume illuminated by a focused laser beam, and has been applied to measure particle motion and binding interactions in solutions, on surfaces and inside the cells. We examined the use of fluorescence correlation spectroscopy combined with a microscope (FCSM) to assess the transport of fluorescent beads and macromolecules in aqueous solutions, gels and living biological tissue. Obstructed diffusion of fluorescent beads in gels of various densities was tested to get a sensible estimate of diffusion in the interstitial tissue matrix consistent with previous reports. Fluorescently labelled liposomes as an artificial drug or gene carrying vehicles were used for pharmacokinetic tests of drug delivery in living tissue. The results indicate that FCS is an accurate and valuable tool for measuring the physical properties of gene vectors in vitro and for characterizing interactions with tissue in vivo.

Calibration↗

Dynamics of DNA molecules in gel studied by fluorescence microscopy.

The dynamics of individual DNA molecules in a thin gel were studied with fluorescence microscopy. Driven by an electric field, molecules hooked around isolated obstacles and became extended. By analyzing molecular images, we identified the reptation tube and primitive chain. When the field was turned off, the molecules relaxed. The relaxation time tau1 and primitive chain length at equilibrium depend on N, the size of the molecule in base pairs, consistently with reptation theory. Using five yeast chromosomal DNAs ranging in size from 245 kb to 980 kb, we found that: These results constitute a way of sizing individual DNA molecules by imaging rather than by gel electrophoresis.

Chromosomes, Fungal↗

Simplified sample preparation using frame spotting method for direct counting of total bacteria by fluorescence microscopy.

A new preparation method for direct counting of bacteria in liquid samples with fluorescence microscope was developed using a glass slide coated with 3-aminopropyltriethoxy silane and ring-shaped polyester seal as a retainer. The experimental steps of this method were spotting samples onto the coated slides with the seal, drying under vacuum, staining with SYBR Green II, drying and covering with immersion oil and coverslip to allow counting. This simplified method provided consistent results when compared with the conventional filtration method for fluorescence microscopy, and is rapid, inexpensive and reproducible.

Bacteriological Techniques↗

Intracellular localization of the radiation enhancer motexafin gadolinium using interferometric Fourier fluorescence microscopy.

Motexafin gadolinium (MGd) is a unique therapeutic agent that localizes in cancer cells and increases tumor response to ionizing radiation and certain chemotherapeutics. The in vitro intracellular localization, accumulation, and retention of MGd in murine EMT6 mammary sarcoma and Rif-1 fibrosarcoma cell lines were studied using interferometric Fourier fluorescence microscopy. MGd cellular uptake was semiquantified using its characteristic fluorescence emission band centered at 758 nm. Colocalization studies were performed using mitochondrial, endoplasmic reticulum, Golgi apparatus, nuclear, and lysosomal fluorescent organelle probes, and verified using interferometric Fourier spectroscopy. Cellular uptake was gradual and increased significantly with incubation time. MGd localized primarily within the lysosomes and endoplasmic reticulum, and to a lesser extent within the Golgi apparatus and mitochondria. Mitochondrial staining was increased in media without serum. No nuclear uptake was detected in the Rif-1 cells, but after 48 h nuclear uptake was observed in 15% of EMT6 cells. These results indicated that MGd accumulates within cytoplasmic compartments. The sustained intracellular localization of MGd may, in part, account for its unique radiation and chemotherapy enhancement properties. Interferometric Fourier fluorescence microscopy is a potentially powerful tool in delineating and verifying localization sites of therapeutic agents.

Animals↗

Multiple spectral parameter imaging in quantitative fluorescence microscopy. I: Quantitation of bead standards.

Digitized images from fluorescence microscopy may suffer from nonlinearity of camera response to illumination intensity, from uneven spatial response of the camera, and from uneven illumination of the microscopical field. Structureless fluorescence standard slides are used to characterize the camera response. This information permits the images to be corrected for all the above errors, in one operation. The computer algorithms are described, and also those for thresholding and finding objects. The method is illustrated by tests using fluorescent beads.

Algorithms↗

Demonstration of Rickettsia rickettsii in the rhesus monkey by immune fluorescence microscopy.

Indirect immune fluorescence was used to detect rickettsiae in the tissues of a primate inoculated subcutaneously with Rickettsia rickettsii. Rickettsiae were identified by indirect immuno fluorescence predominantly in skin, skeletal muscle, scrotum, testicles, nares, heart, kidney, liver, brain, spleen, pancreas, and larynx. Cell culture assay confirmed the presence of infectious organisms in those specimens.

Animals↗

Determination of lymphocyte subpopulations by enzyme immunoassay. Comparison with conventional fluorescence microscopy.

An enzyme immunoassay for measuring lymphocyte subpopulations was evaluated and the results compared with those obtained with conventional fluorescence microscopy, using two different panels of antibodies. The enzyme immunoassay is a photometric method which expresses the results using a standard curve with known amounts of cells. The method was reproducible and accurate. The intra-assay variation for the standard curve ranged from 3.2 to 5.7% and the interassay variation from 9.5 to 13.8%. The intra-assay variation for clinical samples ranged from 3.3 to 8.2%. Results obtained with the enzyme immunoassay and with conventional fluorescence microscopy showed a significant correlation (P less than 0.05) for all the subclasses of lymphocytes tested using two different panels of monoclonal antibodies. We conclude that the choice of method should be related to the particular needs and manpower in the laboratory.

Adult↗

Cell tracking with gadophrin-2: a bifunctional contrast agent for MR imaging, optical imaging, and fluorescence microscopy.

The purpose of this study was to assess the feasibility of use of gadophrin-2 to trace intravenously injected human hematopoietic cells in athymic mice, employing magnetic resonance (MR) imaging, optical imaging (OI), and fluorescence microscopy. Mononuclear peripheral blood cells from GCSF-primed patients were labeled with gadophrin-2 (Schering AG, Berlin, Germany), a paramagnetic and fluorescent metalloporphyrin, using established transfection techniques with cationic liposomes. The labeled cells were evaluated in vitro with electron microscopy and inductively coupled plasma atomic emission spectrometry. Then, 1x10(6)-3x10(8) labeled cells were injected into 14 nude Balb/c mice and the in vivo cell distribution was evaluated with MR imaging and OI before and 4, 24, and 48 h after intravenous injection (p.i.). Five additional mice served as controls: three mice were untreated controls and two mice were investigated after injection of unlabeled cells. The contrast agent effect was determined quantitatively for MR imaging by calculating signal-to-noise-ratio (SNR) data. After completion of in vivo imaging studies, fluorescence microscopy of excised organs was performed. Intracellular cytoplasmatic uptake of gadophrin-2 was confirmed by electron microscopy. Spectrometry determined an uptake of 31.56 nmol Gd per 10(6) cells. After intravenous injection, the distribution of gadophrin-2 labeled cells in nude mice could be visualized by MR, OI, and fluorescence microscopy. At 4 h p.i., the transplanted cells mainly distributed to lung, liver, and spleen, and 24 h p.i. they also distributed to the bone marrow. Fluorescence microscopy confirmed the distribution of gadophrin-2 labeled cells to these target organs. Gadophrin-2 is suited as a bifunctional contrast agent for MR imaging, OI, and fluorescence microscopy and may be used to combine the advantages of each individual imaging modality for in vivo tracking of intravenously injected hematopoietic cells.

Animals↗

Evaluation of fluorescent probe surface intensities as an indicator of transdermal permeant distributions using wide-area two-photon fluorescence microscopy.

The application of high-speed two-photon fluorescence microscopy (HTPM) to examine transdermal transport processes has enabled the noninvasive visualization of permeant spatial distributions over a larger, more clinically relevant wide area of the skin. Earlier studies demonstrated that the transdermal fluorescent probe distribution over a 2 x 2 mm skin area was well represented by a significantly reduced sampling of the 400 microscale skin sites (100 x 100 microm) constituting the wide area. In the present study, the 400 microscale skin sites are considered individually, and the site-to-site variability in permeant distributions is used as a model to reflect the range in experimentally measured skin permeabilities resulting from the inherent stratum corneum structural heterogeneity. The correlation established between the permeant surface intensity and the corresponding permeant intensity gradient at each skin site provides an indication of the potential for screening transdermal permeant distributions solely based on the evaluation of microscale permeant surface intensities. The strong linear correlation between the intensity gradient and the surface intensity for the hydrophilic model permeant, sulforhodamine B, demonstrated that surface intensities provide a robust indicator of the corresponding transdermal probe distributions at the microscale. For the hydrophobic model permeant, rhodamine B hexyl ester, however, weak correlations were observed between these two parameters. This result suggests that the stratum corneum microscale surface intensity does not validly capture the corresponding intensity gradients for the entire range of skin permeabilities typically encountered as a result of the inherent stratum corneum heterogeneity.

Administration, Cutaneous↗

Detection of impervious tissue in tree bark with selective histochemistry and fluorescence microscopy.

Use of conventional histochemical tests in conjunction with fluorescence microscopy has validated the concept of impervious tissue in the bark of trees. Application of phloroglucinol + HCl or toluidine blue O selectively quenched lignin autofluorescence and allowed visualization of intracellular suberin lamellae previously undetected. Fluorescence of intracellular lamellae was quenched with Sudan black B and enhanced with Sudan IV thus providing evidence for the suberized nature of a tissue heretofore regarded as nonsuberized.

Histocytochemistry↗

Probing conformational changes of gramicidin ion channels by single-molecule patch-clamp fluorescence microscopy.

Complex conformational changes influence and regulate the dynamics of ion channels. Such conformational changes are stochastic and often inhomogeneous, which makes it extremely difficult, if not impossible, to characterize them by ensemble-averaged experiments or by single-channel recordings of the electric current that report the open-closed events but do not specifically probe the associated conformational changes. Here, we report our studies on ion channel conformational changes using a new approach, patch-clamp fluorescence microscopy, which simultaneously combines single-molecule fluorescence spectroscopy and single-channel current recordings to probe the open-closed transitions and the conformational dynamics of individual ion channels. We demonstrate patch-clamp fluorescence microscopy by measuring gramicidin ion channel conformational changes in a lipid bilayer formed at a patch-clamp micropipette tip under a buffer solution. By measuring single-pair fluorescence resonance energy transfer and fluorescence self-quenching from dye-labeled gramicidin channels, we observed that the efficiency of single-pair fluorescence resonance energy transfer and self-quenching is widely distributed, which reflects a broad distribution of conformations. Our results strongly suggest a hitherto undetectable correlation between the multiple conformational states of the gramicidin channel and its closed and open states in a lipid bilayer.

Anti-Bacterial Agents↗

Fluorescence microscopy test in porphyrias, photodermatoses and lead exposed persons.

Fluorescence microscopy tests were carried out in different groups of patients Peripheral blood diluted with saline was used and 200 high power fields were inspected in every case. The results were presented as the number of fluorescing erythrocytes (FE) per 100000 red blood cells (or 200 fields). In the controls, porphyria cutanea tarda patients and patients with photodermatoses other than erythopoietic protoporphyria and pellagra almost no FE were detected. In erythropoietic protoporphyria the mean value was 10600, in lead poisoning 1032, in patients exposed to lead 48.2, in sideropenic anaemia 123 and in patients with pellagra 8.1 FE/100000 red blood cells. The conclusion is made that one has to take care, when using this test for detection of latent carriers in genetic studies of the relatives of patients with erythropoietic protoporphyria. The test is useful for the confirmation of the diagnosis of erythropoietic protoporphyria.

Anemia, Hypochromic↗

Evaluation of flow cytometry and fluorescence microscopy for the estimation of bovine mononuclear phagocytes.

Bovine blood mononuclear cells were isolated by density gradient centrifugation on Ficoll-Paque. Phagocytic mononuclear cells were characterized functionally by ingestion of fluorescent latex beads. After incubation with beads the cells were treated with Triton X-100 and propidium iodide (PI) to stain DNA. Cells were analyzed with a FACS-III instrument connected to a Nuclear Data-6660 multiparameter computer system. The computer was used to evaluate the 2 parameter histograms in order to enumerate the percentage of cells with different numbers of associated beads. With this system we also obtained information about cell concentration and number of beads per cell. Results from flow cytometry and manual counting by fluorescence microscopy were compared and good correlation (r = 0.91) was obtained. During the first hours of incubation latex beads adhered to cell surfaces as demonstrated by FCM histograms and fluorescence microscopy. Blood mononuclear phagocytes have to be incubated for several hours before significant phagocytotic activity can be detected.

Animals↗

Partially condensed DNA conformations observed by single molecule fluorescence microscopy.

To detect partially condensed conformations of a double-stranded DNA molecule, single molecule fluorescence microscopy is performed here. The single DNA molecules are ethidium stained, 670 kilobase pair bacteriophage G genomes that are observed both during and after expulsion from capsids. Expulsion occurs in an agarose gel. Just after expulsion, the entire G DNA molecule typically has a partially condensed conformation not previously described (called a balloon). A balloon subsequently extrudes a filamentous segment of DNA. The filamentous segment becomes gently elongated via diffusion into the network that forms the agarose gel. The elongated DNA molecule usually has bright spots that undergo both appearance/disappearance and apparent motion. These spots are called dynamic spots. A dynamic spot is assumed to be the image of a zone of partially condensed DNA segments (globule). The positions of globules along an elongated DNA molecule 1) are restricted primarily to time-stable regions with comparatively high thermal motion-induced, micrometer-scale bending of the DNA molecule and 2) move within a given region on a time scale smaller than the time scale of recording. Less mobile globules are observed when either magnesium cation or ethanol is added before gel-embedding DNA molecules. These observations are explained by globules induced at equilibrium by a bending-dependent, inter-DNA segment force. Theory has previously predicted that globules are induced by electrostatic forces along an electrically charged polymer at equilibrium. The hypothesis is proposed that intracellular DNA globules assist action-at-a-distance during DNA metabolism.

Bacteriophages↗

[Establishment of a simple fluorescent microscopy method for measurement of the CD4/CD8 ratio in BALF].

The authors established an easy fluorescent microscopy method to measure the ratio of CD4 (helper/inducer T lymphocytes) to CD8 (suppressor/cytotoxic T lymphocytes) (CD4/CD8 ratio) in bronchoalveolar lavage fluid (BALF) in patients with diffuse pulmonary diseases and measles pneumonia. The CD4/CD8 ratio determined by this method strongly correlated with the CD4/CD8 ratio obtained by flow cytometry in both peripheral blood lymphocytes and BALF lymphocytes. When the proportion of lymphocytes in BALF nuclear cells is more than 6%, the CD4/CD8 ratio in BALF was measurable. The CD4/CD8 ratio in peripheral blood was not significantly different among hypersensitive pneumonitis (HP), sarcoidosis (SAR), collagen vascular disease (CVD), idiopathic interstitial pneumonitis (IIP), and measles pneumonia (MP). However, the BALF CD4/CD8 ratio was 0.61 +/- 0.37 in HP, 6.83 +/- 2.73 in SAR, 0.77 +/- 0.40 in CVD, 1.49 +/- 0.29 in IIP. These results were consistent with previously published data. The CD4/CD8 ratio in patients with MP was as low as 0.39 +/- 0.34. In patients with summer type HP, this ratio was low in the acute phase, but became within normal range after moving or reconstructing their homes, accompanied with the improvement of subjective symptoms and the disappearance of inflammation. These data indicate that our method is very simple and useful in the diagnosis and the monitoring of diffuse pulmonary diseases.

Adolescent↗