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Telomere shortening is an in vivo marker of myocyte replication and aging.

To determine whether adult cardiac myocytes are capable of multiple divisions and whether this form of growth is restricted to a subpopulation of cells that retain this capacity with age, telomere lengths were measured in myocyte nuclei isolated from the left ventricle of fetal and neonatal Fischer 344 rats and rats at 4, 12, and 27 months after birth. Two independent methodologies were used for this analysis: laser scanning cytometer and confocal microscopy. In each case, fluorescence intensity of a peptide nucleic acid probe specific for telomeric sequence was evaluated. The two techniques yielded comparable results. Telomeric shortening increased with age in a subgroup of myocytes that constituted 16% of the entire cell population. In the remaining nondividing cells, progressive accumulation of a senescent associated nuclear protein, p16(INK4), was evidenced. In conclusion, a significant fraction of myocytes divides repeatedly from birth to senescence, counteracting the continuous death of cells in the aging mammalian rat heart.

Aging↗

Measurement of apoptosis of intact human islets by confocal optical sectioning and stereologic analysis of YO-PRO-1-stained islets.

Apoptosis is an established pathway for islet cell demise. Current protocols for assessment of islet cell apoptosis are time-consuming (as with terminal deoxynucleotide transferase-mediated dUTP nick-end labeling reaction) and involve disruption of the islet architecture (as with flow cytometry) or destruction of cell integrity (as with enzyme-linked immunosorbent assay). The membranes of apoptotic cells, but not those of live cells, are permeant to the DNA-intercalant dye YO-PRO-1. We report a novel methodology for the rapid quantification of apoptosis of human islets: confocal laser optical sectioning and stereologic analysis of intact human islets stained with YO-PRO-1 and Hoechst 33342. The advantages include (1) rapid quantification of apoptosis without disrupting islet architecture and (2) identification of significant heterogeneity in the extent of apoptosis among islets from the same isolate. Confocal laser scanning microscopy microscopic imaging of YO-PRO-1-stained islets may advance investigation of islet cell apoptosis and help develop islet parameters predictive of posttransplant function.

Apoptosis↗

Nuclear distribution of centromeres during the cell cycle of human diploid fibroblasts.

The distribution of centromeres in the interphase nuclei of human diploid fibroblasts was analyzed using anti-centromere immunofluorescence and laser scanning confocal microscopoy. The positions of the centromeres were placed within the nuclear chromatin distribution and presented some aspects of the dynamics of nuclear structure during the cell cycle. During the G1 phase of the cell cycle many of the centromeres were located in association with nucleoli or fused in chromocenters. A few centromeres were dispersed singly in the euchromatin. During S phase, the fused centromeres dispersed, often forming distinct patterns of rings or lines. At prophase, the centromere immunofluorescence condensed into distinct double dots upon the formation of the prophase chromosomes. Quantitative analysis by both image and flow cytometry showed that the intensity of immunofluorescence started to duplicate in mid S phase, well before the appearance of the double dots. The coalesence of the centromeres during G1 indicated that regions of the chromosome domains remain compacted and possibly sequestered from transcriptional activity. During S phase the chromatin and the coalesced centromeres dispersed for DNA replication. The dynamics of the centromeres and chromatin during the cell cycle seen here are evidence for a higher-order organization of nuclear structure that accompanies DNA transcription and replication.

Cell Nucleus↗

Tetraspanin CD9 is a "proteolipid," and its interaction with alpha 3 integrin in microdomain is promoted by GM3 ganglioside, leading to inhibition of laminin-5-dependent cell motility.

GM3 ganglioside inhibits tetraspanin CD9-facilitated cell motility in various cell lines (Ono, M., Handa, K., Sonnino, S., Withers, D. A., Nagai, H., and Hakomori, S. (2001) Biochemistry 40, 6414-6421). We now report the following: (i) CD9 has the novel feature of being soluble in chloroform/methanol, and classifiable as "proteolipid"; (ii) CD9 and alpha(3) integrin were concentrated together in the low-density glycolipid-enriched microdomain (GEM) of ldlD/CD9 cells, and the alpha(3) expression ratio (value for cells grown under +Gal condition divided by the value for cells grown under -Gal condition) in GEM of ldlD/CD9 cells was higher than that in control ldlD/moc cells, suggesting that CD9 recruits alpha(3) in GEM under +Gal condition, whereby GM3 is present. (iii) Chemical levels of alpha(3) and CD9 in the total extract or membrane fractions from cells grown under +Gal versus -Gal condition were nearly identical, whereas alpha(3) expressed at the cell surface, probed by antibody binding in flow cytometry, was higher under -Gal than +Gal condition. These results suggest that GM3 synthesized under +Gal condition promotes interaction of alpha(3) with CD9, which restricts alpha(3) binding to its antibody. A concept of the alpha(3)/CD9 interaction promoted by GM3 was further supported by (i) co-immunoprecipitation of CD9 and alpha(3) under +Gal but not -Gal condition, (ii) enhanced co-immunoprecipitation of CD9 and alpha(3) when GM3 was added exogenously to cells under -Gal condition, and (iii) the co-localization images of CD9 with alpha(3) and of GM3 with CD9 in fluorescence laser scanning confocal microscopy. Based on the promotion of alpha(3)/CD9 interaction by GM3 and the status of laminin-5 as a true ligand for alpha(3), the laminin-5/alpha(3)-dependent motility of ldlD/CD9 cells was found to be greatly enhanced under -Gal condition, but strongly inhibited under +Gal condition. Such a motility difference under +Gal versus -Gal condition was not observed for ldlD/moc cells. The inhibitory effect observed in ldlD/CD9 cells under +Gal condition was reversed upon addition of anti-alpha(3) antibody and is therefore based on interaction between alpha(3), CD9, and GM3 in GEM.

Animals↗

2',7'-bis-(2-carboxyethyl)-5(6)-carboxyfluorescein as a dual-emission fluorescent indicator of intracellular pH suitable for argon laser confocal microscopy.

The widely used fluorescent probe 2',7'-bis-(2-carboxyethyl)-5(6)-carboxyfluorescein (BCECF) serves as a pH-sensitive indicator in classical microscopy. Characteristics of BCECF were studied and a way of employing the probe in a confocal laser scanning microscope equipped with an argon laser at 488 nm was developed, based on the fact that the emission fluorescence spectra are pH-dependent with spectral maximum shift from 518 to 529 nm. Optical filters for the dual-emission ratio method were set to 506 and 529 nm. pH values measured inside a single cell of Saccharomyces cerevisiae were similar to those obtained with other pH estimation methods.

Argon↗

[A clinical application of laser scanning cytometer--the significance in the cytology as an additional diagnostic technique].

Laser scanning cytometer (LSC) is a new machine similar to flow cytometer but with advantages for certain clinical and research applications. LSC is a microscope based and measures cells on a slide with the position of each cell on the slide. This new technique of LSC can be utilized on extremely small specimens and enables direct correlation of all of the measured fluorescent parameters with light microscopic cytologic morphology. To date, LSC has been successfully used to perform DNA content analysis of numerous specimen types and automated analysis of fluorescence in situ hybridization specimens. In this report, we describe characteristics of LSC comparison with flow cytometry and a clinical application of LSC focused on DNA content analysis in clinical specimens with pulmonary disorders. LSC provides a number of benefits that may make it more suitable for clinical laboratories than FCM.

Bronchi↗

[Migration and invasion of human hepatocellular carcinoma mediated by lung extracts].

BACKGROUND & OBJECTIVE: Invasion and metastasis are obstacles to successful treatment of hepatocellular carcinoma. Lung is the most common site of distant metastasis from hepatocellular carcinoma. In in vitro chemoinvasion assay that different tissue extracts from mice were used to induce human hepatocellular carcinoma cells with different metastatic potentials, lung extracts show the strongest inducing activity. This study was designed to investigate the mechanism of migration and invasion in human hepatocellular carcinoma with highly metastatic potential mediated by lung extracts from mice. METHODS: The changes of cytoskeleton were tested using F-actin polymerization assay and flow cytometry (FCM). Correlation between matrix metalloproteinas-9 and F-actin was analyzed by fluorescence double staining in human hepatocellular carcinoma MHCC97-H cells induced by lung extracts. RESULTS: When MHCC97-H cells were incubated with serum-free medium or spleen extracts, the cells showed elongated or polygonal morphology. When MHCC97-H cells were incubated with lung extracts, the formation of lamelliopodia or filopodia became more and more obvious and distinct as time increasing. Results of FCM showed that 1.9-fold increase in intracellular F-actin within 30s after MHCC97-H cells were incubated with lung extracts. Confocal laser scan microscopy of MHCC97-H cells stimulated in suspension showed intense F-actin staining in the periphery of the cells and redistribution of F-actin towards a leading edge. MMP-9 and F-actin were mainly localized in the perinuclear pool when the cells were incubated with serum-free medium. After stimulation with lung extracts, MMP-9 and F-actin were localized at the front of extending pseudopodia of MHCC97-H cells. CONCLUSION: The mechanism that lung extracts promote migration and invasion of MHCC97-H may correlate with the pseudopodia formation and reorganization of MMP-9. Lung extracts may contribute to organ-specific metastasis of hepatocellular carcinoma.

Animals↗

9-Acetoxy-2,7,12,17-tetrakis-(beta-methoxyethyl)-porphycene (ATMPn), a novel photosensitizer for photodynamic therapy: uptake kinetics and intracellular localization.

The optimal photosensitizer for topical or systemic photodynamic therapy (PDT) has not yet been found. A promising new second-generation sensitizer is 9-acetoxy-2,7,12,17-tetrakis-(beta-methoxyethyl)-porphycene (ATMPn) whose time- and temperature-dependent uptake and intracellular localization were investigated in two human-skin-derived cell lines (HaCaT keratinocytes and dermal fibroblasts). Flow cytometry analysis (0-800 s) revealed an immediate increase in fluorescence in the cells after start of incubation with 100 ng ml-1 ATMPn (in cell culture medium). At longer incubation periods (0-24 h) a constant increase in fluorescence up to 12 h, with a steady state up to 24 h, was observed. Keratinocyte showed a faster rate of ATMPn uptake than fibroblasts within the first 12 h. Temperature-dependent ATMPn uptake was measured at 4 and 37 degrees C. An increase in fluorescence was observed even at 4 degrees C, suggesting that cellular uptake of ATMPn is partially based on passive diffusion. Confocal laser scan miscroscopy showed spotty, granular fluorescence inside the cytoplasm after incubation with ATMPn, similar to the pattern of rhodamine 123 which stains mitochondria. These results demonstrated an unusually fast intracellular, probably intramitochondrial, uptake of ATMPn in vitro. Therefore the use of ATMPn in photodynamic therapy might allow a reduction of the time span between administration of drug and irradiation.

Cell Line↗

Detection of TAP-tagged proteins in Western blot, confocal laser scanning microscopy and FACS using the ZZ-domain.

Tandem affinity purification of protein complexes has become an important tool in the field of proteomic research. Analysis of the proper intracellular localization of TAP-tagged proteins by immunohistochemistry by specific antibodies is often impossible due to the simultaneous detection of the endogenously synthesized native protein. Here we show that the highly specific interaction of the ZZ-domain of Protein A, which constitutes part of the original TAP-tag, to rabbit IgGs can be used to detect TAP-tagged proteins in fixated cells by Confocal Laser Scanning Microscopy just by the use of labeled secondary antibodies. In addition, such interactions can be exploited for the analysis of transfected cells in FACS and Western blot experiments. Thus, we present valuable tools for the analysis of recombinant proteins on the basis of IgG-ZZ interactions, which can be used even if target specific first antibodies are not available or lack sufficient specificity.

Animals↗

Selective insufficiency of IFN-gamma secretion in patients with hyper-IgE syndrome.

BACKGROUND: Hyper-immunoglobulin E (IgE) syndrome is a complex immune deficiency characterized by chronic eczematous dermatitis, recurrent staphylococcal infections, pneumatoceles, reduced neutrophil chemotaxis, and variably impaired T cell function. Although decreased interferon-gamma (IFN-gamma) production in patients with hyper-IgE syndrome is pointed out and known as a cause of reduced neutrophil chemotaxis, precise mechanism of their inadequate production of IFN-gamma remains unknown. To elucidate the pathogenesis of the defective production of IFN-gamma in patients with hyper-IgE syndrome, we assessed the in vitro production and secretion of IFN-gamma by peripheral blood mononuclear cells (PBMCs) from patients with hyper-IgE syndrome. METHODS: Chemotaxis of neutrophils, mRNA levels of several cytokines, intracellular production and extracellular secretion of IFN-gamma, interleukin-2 (IL-2), and IL-4 by PBMCs from three patients with hyper-IgE syndrome were determined. RESULTS: The transcription of IFN-gamma mRNA and the production of its protein molecules progressed normally. However, selective insufficiency in the secretion of IFN-gamma molecules was found in patients with hyper-IgE syndrome. Confocal laser scanning microscopy clearly demonstrated the accumulation of IFN-gamma in patients with hyper-IgE syndrome. CONCLUSION: We demonstrated that there was a selective insufficiency in the secretion of IFN-gamma in patients with hyper-IgE syndrome. We hope that this fact would offer a new paradigm for understanding this disease.

Adult↗

Increased reactivity of platelets induced by fibrinogen independent of its binding to the IIb-IIIa surface glycoprotein: a potential contributor to cardiovascular risk.

OBJECTIVES: To determine whether augmented activation (degranulation) of platelets might contribute to the association between higher concentrations of fibrinogen and risk of myocardial infarction, we characterized adenosine diphosphate (ADP)-induced expression of P-selectin by platelets in whole blood as a function of this exposure to selected concentrations of fibrinogen. BACKGROUND: An increased risk of myocardial infarction has been associated with increased concentrations of fibrinogen. METHODS: Fibrinogen was added to blood anticoagulated with corn trypsin inhibitor (a specific inhibitor of Factor XIIa without effect on other coagulation factors). Degranulation of platelets was identified by flow cytometry. RESULTS: Addition of fibrinogen to blood did not activate platelets under basal conditions (without ADP). By contrast, a concentration-dependent increase in ADP and thrombin receptor agonist peptide (TRAP)-induced activation occurred with increasing concentrations of fibrinogen. Increased ADP-induced degranulation was apparent with the addition of 100 mg/dl of fibrinogen (p < or = 0.001 for 1.5 micromol/liter ADP, n=10 subjects). Inhibition by abciximab of binding of fibrinogen to the surface glycoprotein IIb-IIIa did not attenuate the observed augmentation of reactivity induced by fibrinogen. Augmented degranulation was associated with uptake of fibrinogen into alpha-granules without surface binding despite pretreatment with abciximab as shown by laser scanning confocal microscopy. CONCLUSIONS: Fibrinogen in blood augments degranulation of platelets in response to ADP and is accompanied by uptake of fibrinogen into alpha-granules. Thus, elevated concentrations of fibrinogen secondary to inflammation implicated in cardiovascular risk may operate, in part, by increasing reactivity of platelets.

Fibrinogen↗

Fading correction for fluorescence quantitation in confocal microscopy.

Quantitative analysis in confocal microscopy meets with several problems such as fading of the fluorophore during scanning and attenuation of the fluorescence in thick tissue specimens. The present study reports a quantitative investigation of the enzyme uracil-DNA glycosylase (UDG), which removes uracils from DNA. For this study we developed a fading correction algorithm which takes into account both the number of prior scans in the specimen, and the differences in fading through the specimen from each prior scan, presumably due to differences in laser intensity at various axial distances from the focus position. On this point, our findings are in contrast with results reported in other well known papers, and indicate different fading at various distances from the laser focus position. The correction procedure can and should be established for the same specimen, but on a different part of the specimen from that used in the actual biological study. Calibration can thus be done on an unknown or inhomogenous object. For a series of confocal xy-scans through the immunostained cells, a corrected summation image representing total FITC-fluorescence related to UDG was obtained. Both noise removal and fading corrections were performed on each image in the series before the summation image was made. Estimates of total amounts of UDG localized in the cells and nuclei, respectively, could then be obtained. Measurement of the total cellular UDG-content by flow cytometry was also performed in order to make a comparison of the two methods for quantitative analysis. For both methods a range of approximately 4.5 was obtained between total UDG-content of cells at the 5 and 95 percentage points.

DNA Glycosylases↗

Image analysis enhancement of the laser scanning cytometer.

The laser scanning cytometer offers a range of novel applications and the capacity for direct visual validation of experiments through sample analysis on a microscope slide. Linkage of the instrument to an image analysis system through standard connections and software enhances the capabilities of the instrument in image capture and manipulation. In this technical note, we describe a simple linkage between the LSC and the Kontron KS100 Image Analysis System, an example of a standard commercial image processing instrument.

Image Cytometry↗

Geometric and functional organization of cortical circuits.

Can neuronal morphology predict functional synaptic circuits? In the rat barrel cortex, 'barrels' and 'septa' delineate an orderly matrix of cortical columns. Using quantitative laser scanning photostimulation we measured the strength of excitatory projections from layer 4 (L4) and L5A to L2/3 pyramidal cells in barrel- and septum-related columns. From morphological reconstructions of excitatory neurons we computed the geometric circuit predicted by axodendritic overlap. Within most individual projections, functional inputs were predicted by geometry and a single scale factor, the synaptic strength per potential synapse. This factor, however, varied between projections and, in one case, even within a projection, up to 20-fold. Relationships between geometric overlap and synaptic strength thus depend on the laminar and columnar locations of both the pre- and postsynaptic neurons, even for neurons of the same type. A large plasticity potential appears to be incorporated into these circuits, allowing for functional 'tuning' with fixed axonal and dendritic arbor geometry.

Animals↗

Analysis of three-dimensional architecture in Feulgen-stained fine-needle liver aspirates, using confocal scanning laser microscopy.

Early and accurate diagnosis of hepatocellular carcinoma in liver nodules using fine-needle aspiration biopsy can still pose difficulties, particularly in cirrhotic nodules containing dysplastic hepatocytes. Loss of architectural clues, which may aid diagnosis, can be overcome by using confocal scanning laser microscopic examination of tissue fragments in smears without the need for further processing of slides. The basic fuchsin of the Feulgen method resulted in excellent confocal images without the need for further processing of the smears. Clear morphological differences in three-dimensional reconstructions of optically sectioned tissue fragments were demonstrated in normal, hyperplastic, and malignant smears as an aid to diagnosis.

Biopsy, Needle↗

Characterization and inhibition of beta-adrenergic receptor kinase in intact myocytes.

OBJECTIVES: beta-Adrenergic receptor kinase (beta ARK) phosphorylates and thereby inactivates agonist-occupied beta-adrenergic receptors (beta AR). beta ARK is thought to play an important role in the regulation of cardiac function. Therefore, we studied beta ARK activation and its inhibition in intact smooth muscle cells and in cardiomyoblasts. METHODS AND RESULTS: beta AR agonist-stimulated translocation of beta ARK was monitored by immunofluorescence labelling with specific antibodies and confocal laser scanning microscopy in DDT-MF 2 hamster smooth muscle cells and in H9c2 rat cardiomyoblasts. In unstimulated cells. beta ARK was mainly located in the cytosol. After beta AR agonist stimulation, the beta ARK signal was partially translocated to the membranes. Liposomal gene transfer of the COOH-terminus of beta ARK ('beta ARKmini') as a beta ARK inhibitor led to functional expression of this protein in both cell lines with high efficiency. Western blots with beta ARK antibodies showed a gene concentration-dependent immunoreactivity of the 'beta ARKmini' protein. 'beta ARKmini'-transfected myocytes demonstrated reduced membrane targeting of the beta ARK immuno-fluorescence signal. Additionally, the effect of 'beta ARKmini' on beta AR-induced desensitization of myocytic cAMP accumulation was investigated. In control cells, desensitization with isoproterenol led to a subsequent reduction of beta AR-induced cAMP accumulation. In 'beta ARKmini'-transfected myocytes, this beta AR-induced desensitization was significantly diminished, whereas normal beta AR-induced cAMP accumulation was unaffected. A gene concentration of 2 micrograms 'beta ARKmini' DNA/100,000 cardiomyoblasts, and of 0.7 microgram 'beta ARKmini' DNA/100,000 DDT-MF2 smooth muscle cells led to approximately 5.9- and approximately 5.6-fold overexpressions of 'beta ARKmini' vs. native beta ARK, respectively. These gene doses proved sufficient to attenuate beta-adrenergic desensitization significantly. CONCLUSIONS: (1) beta ARK translocation was evidenced in DDT-MF2 smooth muscle cells and in cardiomyoblasts by confocal laser scanning microscopy. (2) Feasibility of 'beta ARKmini' gene transfer to myocytes was demonstrated, and necessary gene doses for beta ARK inhibition were titered. (3) Overexpression of 'beta ARKmini' functionally interacted with endogenous beta-adrenergic signal transduction, leading to sustained cAMP accumulation after prolonged beta-adrenergic stimulation.

Adrenergic beta-Agonists↗

Activation of blood T lymphocytes down-regulates CXCR4 expression and interferes with propagation of X4 HIV strains.

The chemokine receptor CXCR4 serves as a coreceptor for HIV-1 entry into CD4+ cells, in particular for strains emerging late in the infection. Cell surface expression of CXCR4 has, therefore, important implications for HIV-1 pathogenesis. Using blood lymphocytes cultured under various conditions, we studied the expression and regulation of CXCR4. Flow cytometry showed that only about 20% of freshly isolated lymphocytes expressed CXCR4 on the cell surface whereas in 80% of resting blood lymphocytes CXCR4 was located intracellularly. Within a few hours in culture, the intracellular CXCR4 was translocated to the surface and was expressed in the large majority of both naive and memory lymphocytes. A decrease in surface expression of CXCR4 was found when lymphocytes cultured overnight for maximal receptor expression were stimulated with phytohemagglutinin, anti-CD3 antibodies, phorbol 12-myristate 13-acetate and stromal cell-derived factor-1. The superantigen staphylococcal enterotoxin A, a more selective stimulus, induced a marked decrease in CXCR4 expression preferentially in cells positive for the CD25 activation marker. Confocal laser scanning microscopy demonstrated the presence of CXCR4 in the cytosol and on the surface of resting lymphocytes and also showed CXCR4 redistribution after activation. The number of cells infected by the X4 HIV strain NL4.3 paralleled the expression of CXCR4 in CD4+ T lymphocytes. Sustained reduction of CXCR4 cell surface expression upon activation with phytohemagglutinin correlated with a low number of CD4+ T lymphocytes expressing HIV p24 gag antigen. Our results indicate that activation of CD4+ T lymphocytes reduces surface expression of CXCR4 in part by receptor internalization and that cell activation-dependent CXCR4 down-regulation limits spread of infection by X4 viruses.

Cells, Cultured↗

Free intracellular calcium ([CA2+]i) in opioid sensitive cells of the porcine anterior pituitary.

A new experimental model was utilized to study calcium involvement in the mechanism of opioid influence on cultured porcine pituitary cells. The in vitro model involved interactive argon laser cytometry of pituitary cells pre-loaded by three dyes (fluo-3AM, fura-red and naloxone-conjugated to fluorescein). We compared: 1) the kinetics of free intracellular calcium ([Ca2+]i) in anterior pituitary cells of pregnant pigs (day 25-30) treated in vitro with naloxone (NAL) or gonadotrophin-releasing hormone (GnRH) and 2) the distribution of the opioid-sensitive cells by image analysis of doubly loaded cells. In experiment 1, the changes in [Ca2+]i of pituitary cells pre-loaded with fluo-3 AM (488(ex)/520(em) nm) in response to NAL (10(-6) M) or to GnRH (10(-8) M) were compared to a control cell group. Repetitive line scans across cells were performed and the fluorescence emission from individually selected cells was measured in a time-dependent manner (in 0.5 seconds intervals during periods of 50 seconds). Analysis of data indicated significant increases of [Ca2+]i in NAL- (P<0.001) and GnRH-treated cells (P<0.05) in comparison to the control group. In experiment 2, the fluorescence intensity of doubly-loaded pituitary cells (fura-red, 488(ex)/605(em) nm, as principal calcium indicator and NAL-conjugated with fluorescein, 488(ex)/520(em) nm, to distinguish opioid-sensitive cells) were measured using dual detector image analysis. We found that only approximately 8% of the entire population of anterior pituitary cells exhibited sensitivity to the opioid antagonist treatment. This paper demonstrates calcium involvement in the opioid action on anterior pituitary cells from pregnant pigs and provides a useful model for studies at the individual pituitary cell level and in time-dependent manner.

Animals↗