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At least 127 records · Page 7Linked to original sources

Properties of erythrocyte light refraction in diabetic patients.

Since hyperglycaemia changes the erythrocyte cell membrane fluidity and impairs cell deformity, our goal was to characterize hemoglobin and red blood cell (RBC) light refractive property changes in diabetic patients. Microscopic investigation was carried out on intact and fixed RBCs. To determine the refractive index (RI): smears of peripheral blood were air dried and fixed for 3 min in methanol. Mixtures of polyvinylpyrolidine and buffer of different pH (1:1) were used as embedding media. Intact RBCs were mixed with a buffered embedding medium, placed on a slide and overlaid with a coverslip. Interference microscopy was used for RI measurements at 18 different pH (pH=2-13). The results showed that curves of the RI of diabetic patients and of a control group were of similar configuration, with one branch in the acidic portion of the pH scale, a maximum and two minima in the neutral (middle) portion, and one branch in the alkaline portion. The curves of the individuals from the control group overlapped each other. To the contrary, the curves of the diabetic patients were not uniform in the neutral portion and the alkaline portion. The curves of the diabetic patients in the neutral zone were shifted towards the alkaline end of the pH scale, and the RBC RI curves were lower in comparison to the control curves. The center maximum of the curves of diabetic patients corresponded to pH=6.6 whereas the central maximum of the control group curves was at pH=6.2-6.8. Contrary to in the diabetic group, intact RBC RI curves in the control group revealed only one significantly different minimum at pH of 7.2 in the neutral zone. Using this method it is possible to show phenotypic differences between uniform type intact and fixed cells, erythrocytes of diabetic patients and of healthy donors.

Blood Glucose↗

A method of permanently mounting biological tissue cleared in Herr's four-and-a-half clearing fluid.

A technique which should be generally applicable for preparing permanent mounts of tissue cleared in Herr's four-and-a-half clearing fluid is described. This technique involves transferring plant or animal tissues through a series of solutions consisting of Pienarr's fixative, Herr's clearing fluid, chloral hydrate, acetone and finally polyester resin for mounting. Material prepared using this method is exceptionally transparent and well preserved, and is suitable for either phase contrast or Nomarski interference microscopy.

Chloral Hydrate↗

[Changes in the structural heterogeneity of surviving nerve cells].

Heterogeneity in distribution of the dry substance mass (protein) in normal and reactively altered isolated neurons has been studied in vital investigations by means of interference microscopy and microspectrophotometry. It has been demonstrated that at a reactive reconstruction neuroplasmic substances undergo rearrangement, resulting in increased heterogeneity. In peripheral juxtamembranous parts neuroplasmic colloids are divided separating the hydrated zone with a low content of protein and forming made that an increasing adhesion of the juxtamembranous proteins could result in their aggregation with protein complexes of the transmembranous ionic canals, that affects the specific electrogencic function of the neuron.

Animals↗

[Morphology of the Meibomian lipid film. Results of Brewster angle microscopy].

Meibomian lipid layers were studied in the anterior mirror area by reflecting microscopy and interference microscopy. Using these techniques, it was not possible to correlate the biophysical and morphological data. Brewster angle microscopy provides direct observation of the spread Meibomian lipid layer with simultaneous registration of the surface pressure. It is based on the fact that He-Ne laser light, which is incident at a water surface under the Brewster angle, does not reflect visible light. After spreading of a lipid film, the angle of the incident light beam varies, causing reflection of light. The Meibomian lipid layer was studied in a Langmuir-type trough. At 5.0 mN/m the lipid layers are homogeneous and mobile, consisting of areas of higher and lower reflectivity. In patients with meibomitis the films are inhomogeneous and immobile. The thickness of the areas of lower reflectivity is 2 nm, the high reflectivity lipids are 8-10 nm thick. According to these results, Meibomian gland secretion can form monolayers under in vitro conditions.

Blepharitis↗

Long-term observation of cultured cells by interference-reflection microscopy: near-infrared illumination and Y-contrast image processing.

Interference-reflection microscopy (IRM) is the only method presently available with which to visualize cell-substratum adhesions in living tissue culture cells continuously for long periods of time without the use of fluorescent markers (Curtis: J. Cell Biol. 20:199-215, 1964; Izzard and Lochner: J. Cell Sci. 21:129-159, 1976). This method utilizes approximately 1% of the incident illumination to produce the IRM image (Verschueren: J. Cell Sci. 75:279-301, 1985) and so far has required the use of high-intensity light sources in the visible spectral range (400-800 nm). Unfortunately, visible light of this intensity and spectral range induces marked changes in the behavior and morphology of motile fibroblasts, including cessation of locomotion. In contrast, the present paper reports that continuous observations of live cells in IRM for periods of up to 8 hours are possible if the illuminating light is in the red to near-infrared range (650-950 nm) and without any observable change in normal cell morphology or behavior. In addition, we describe how the technique of Y-contrast image processing can be applied to IRM images to create a three-dimensional image of the ventral cell surface topography.

Animals↗

Application of video-enhanced interference reflection microscopy to the study of platelet-surface interactions.

Video-enhanced interference reflection microscopy (VEIRM) was used to examine contact sites between the ventral membrane of intact platelets and underlying surfaces. It was observed that the ventral membrane in the central granulomere region of fully spread platelets was separated from the surface, while the membrane in other regions was mostly in close contact. The VEIRM image of intact platelets was compared with the video-intensified fluorescence microscopic (VIFM) image of cytoskeletal structures labeled with rhodamine-phalloidin. The VEIRM was also used to visualize the cytoskeletal structures of platelets spread on glass surfaces. Platelets were treated with Triton X-100, glutaraldehyde and acetic acid in sequence. This method was used to follow the sequence of cytoskeletal reorganization of platelets after surface-induced activation. In addition, the effects of albumin and fibrinogen on the cytoskeletal reorganization of spreading platelets were investigated. On fibrinogen-coated surfaces, platelets developed extensive inner filamentous zones which encircled the central granulomere region. In the presence of albumin, however, platelet inner filamentous zones were very poorly developed.

Actins↗

Use of differential interference contrast microscopy to determine cell renewal times in mouse intestine.

Pieces of mouse mid jejunum have been cleared in glycerin and examined by differential interference contrast microscopy at low powers of magnification. The position and number of crypts and villi can be determined in the same specimen using this technique. The calculated value for crypt/villus ratio 4.53 +/- 0.99 (mean +/- SD) is less than a previously published value obtained using indirect techniques. A revised estimate of cell renewal time, based on this newly determined value for crypt/villus ratio, is 45 h. This agrees with earlier estimates derived from entirely different methods of analysis. The general usefulness of this form of light microscopy in helping one appreciate some three-dimensional problems in mucosal architecture is emphasized.

Animals↗

[The application of interference contrast microscopy in biology (author's transl)].

Like phase contrast, Nomarski interference contrast microscopy can be used to examine unstained specimens in biology and medicine. The properties of both contrast enhancement techniques are illustrated by various examples. The phase contrast method is especially suited for thin specimens with small differences in refractive index, whereas the interference contrast method supplies good results even of thick specimens. Interference contrast is a valuable supplement to the phase contrast method, and expands the application of microscopy in biology

Animals↗

Immediate diagnosis in vaginal cytology using interference contrast microscopy (Nomarski).

Studying fresh aspiration material from the posterior fornix and cervix, by Interference Contrast Microscopy (Nomarski) is a good method of cytologic examination. It is shown how most cell types can be observed, just as they can be by the classical Papanicolaou staining. Normal and abnormal, even dysplastic and malignant cells can be recognized. This method is also very useful for identifying parasites, fungi and bacteria, by morphology and active movements. While encoraging the use of this method, it is advisable to compare the results with slides examined later by the Papanicolaou technique, for maximum safety of the patient.

Bacteria↗

Quantitation of cell-matrix adhesion using confocal image analysis of focal contact associated proteins and interference reflection microscopy.

We have developed an approach for the quantitation of vinculin, a focal contact associated protein, based on a multimodal confocal microscopy and image analysis. Vinculin spot distribution was imaged in confocal fluorescence microscopy and the corresponding focal contacts were imaged in confocal interference reflection microscopy. These images were analyzed with a SAMBA image cytometer. The image analysis program provided 12 morphometric features describing cellular area, shape, and proportions of vinculin spots as well as six topographical features describing the distribution of vinculin and the relative overlap of vinculin and focal contacts. This approach was applied to the study of rat osteosarcoma cells submitted to mechanical stresses: successions of 2g and 0g accelerations during a series of parabolic flights. The measured features were assessed by means of correlation analysis and stepwise discriminant analysis. After correlation analysis, only ten parameters were retained. Quantitation of cell morphological parameters indicated that cell area was significantly affected by gravitational stresses as well as vinculin distribution. Cell area was reduced by 50% and vinculin spots were restricted to cell periphery. Cell adhesion measured by IRM decreased significantly in the first part of the flight and remained stable at the end of the flight. These results suggest that cell-matrix adhesion is affected by gravitational stresses. Image analysis provides useful tools to investigate focal adhesion re-organization under different physiological stimuli.

Animals↗

Phagocytosis of yeast: a method for concurrent quantification of binding and internalization using differential interference contrast microscopy.

In studies of phagocytosis there is a need to distinguish targets that are internalized by the cell from those that are bound to the cell surface. The present work describes a simple method by which internalized and surface-bound yeast particles can be identified by differential interference contrast microscopy, using trypan blue to stain surface-bound yeast particles. The method has the advantage that both internalized and surface-bound particles can be visualized without the need to switch the illumination source and/or filter sets, thus facilitating concurrent quantitation of binding and internalization. The method was evaluated with the phagocytosis-modulating agents horseradish peroxidase (HRP) and cytochalasin D, using adherent resident macrophages as phagocytic cells. When macrophages are challenged with a particular type of target, they usually bind many more targets than they ingest. It was shown that yeast particles were arrested in the initial binding phase of phagocytosis depending on the region of macrophage plasma membrane where binding sites were formed. Failure of surface-bound yeast particles to trigger internalization was not due to modifications of the yeast particle surface. Nor was it due to binding to non-phagocytic receptors, or low-affinity receptor-ligand interactions. The glycoprotein HRP inhibited only the binding stage of phagocytosis, whereas cytochalasin D, a drug that affects actin polymerization, inhibited both binding and internalization. However, when the yeast particles were pre-incubated in fresh mouse serum, cytochalasin D inhibited only the internalization step. The assay described here may be useful in studies concerned with the function and expression of phagocytosis-mediating surface lectins.

Animals↗

Growth cone interactions with purified cell and substrate adhesion molecules visualized by interference reflection microscopy.

The migration of growth cones on substrates consisting of naturally occurring cell adhesion molecules has been extensively studied in cell culture. However, relatively little is known about how growth cones contact the substrate or how the patterns of contact change as growth cones move forward. We have examined the interactions of chick retinal ganglion cell growth cones with laminin, merosin, N-cadherin, L1 and poly-L-lysine by time-lapse interference reflection microscopy (IRM) using a laser scanning confocal microscope. In images obtained by IRM, areas of a cell that are closely apposed to the substrate appear dark whereas areas that are farther away appear light. Growth cones on Jaminin and merosin were almost uniformly light, indicating that very little of the membrane was in close contact with the substrate. Growth cones on N-cadherin had a mottled appearance with some relatively large dark gray areas. The proximal portions of filopodia often were dark, in contrast to those on laminin and merosin which were light. In addition, growth cones on N-cadherin had numerous dark gray punctate regions of close association with the substrate. Growth cones on L1 had darker regions than growth cones on other substrates and these comprised a larger fraction of their area. There also were differences in the temporal dynamics of growth cone interactions with different substrates and these differences correlated with differences in rates of growth. None of the contacts observed in growth cones were as dark or stable as focal contacts of fibroblasts.

Animals↗

Sputum screening by Nomarski interference contrast microscopy.

Gram-stained smears of specimens submitted for sputum cultures were compared with direct wet mounts examined by Nomarski interference contrast microscopy (NIM) for enumeration of squamous epithelial cells (EPC) and leukocytes (WBC). The results obtained by the two methods were comparable, but specimens were more rapidly screened and cell types were more readily differentiated by NIM. Specimens submitted for sputum culture over a 3-month period were examined for EPC and WBC by NIM. Twenty-two percent of the specimens had greater than 25 EPC/field or a predominance of EPC (class I), 30% had greater than 25 EPC and greater than 25 WBC/field (class II), and 48% had greater than 25 WBC/field or a predominance of WBC (class III). The clinical relevance of the culture results was determined by reviewing the records of patients whose specimens were included in the study. Class I specimens provided only 30% clinically relevant culture results. Specimens in class II provided useful culture results in 63% of the patients, and 96% of those in class III provided clinically relevant information. The results confirm the value of sputum screening and demonstrate that NIM provides a rapid, simple, and accurate method for sputum screening.

Diagnosis, Differential↗

Differential interference contrast microscopy as a polarimetric instrument.

Differential interference contrast (DIC) microscopy is shown to be equivalent to an incomplete Stokes polarimeter capable of probing optical properties of materials on microscopic-length scales. The Mueller matrix for a DIC microscope is calculated for various types of samples, and the polarimetric properties for DIC component parts of a spaceflight microscope are spectrally measured. As a practical application, a measurement of the index mismatch between colloidal particles and a nearly index-matched fluid bath was performed.

Journal Article↗

Lipopolysaccharide-caused fragmentation of individual microtubules in vitro observed by video-enhanced differential interference contrast microscopy.

Microtubule disassembly is commonly believed to be a process of endwise tubulin dimer release. The present study demonstrates by video interference contrast microscopy that Escherichia coli lipopolysaccharide (LPS) caused microtubule disassembly in vitro by both endwise shortening and fragmentation. In contrast, the microtubules were only shortened from their ends in the presence of DNA, used as another example of a macromolecular microtubule effector. LPS-caused microtubule fragmentation was confirmed by transmission electron microscopy. Because of its ability to induce both fragmentation and endwise shortening, LPS, which is involved in sepsis pathogenesis, has to be regarded as a highly active microtubule-destabilizing agent.

Animals↗

Trace formation during locomotion of L929 mouse fibroblasts continuously recorded by interference reflection microscopy (IRM).

The recently reported formation of highly ordered traces by migrating cells has been studied on L929 fibroblasts in time lapse experiments by means of interference reflection microscopy (IRM) as well as by conventional microscopy. Formation of pronounced traces on glass substrates correlates to migration after cell division, and the trace arrangement on the substrate depends on migration velocity: slow migration results in a highly branched, broad, and relatively short trace, while fast migration yields a slim and long trace with few branches. IRM-irradiation caused cessation of locomotion and trace formation and accelerated degradation of existing traces. Traces consist of cord-like cytoplasmic strands, which contain F-actin filaments and they seem to be enveloped by a membrane. It is supposed that cell traces are homologous to filopodia. Traces arise mainly from non-retracted filopodia at the rear margin of the migrating cell. The branches within the traces are the result of the repeated stretching out of a backwardly directed lamellipodium. They arise from the formation of new filopodia that emerge at the actin ribs of the lamellipodium.

Animals↗

Mapping cell-glass contacts of Dictyostelium amoebae by total internal reflection aqueous fluorescence overcomes a basic ambiguity of interference reflection microscopy.

The widespread ability of eukaryotic cells to produce thin cytoplasmic sheets or lamellae 100-200 nm thick can give rise to uncertainties in the interpretation of interference reflection microscopy (IRM) images when cell-substratum topography is the key interest. If allowed to spread upon a poly-L-lysine-coated surface, Dictyostelium discoideum amoebae typically form ultrathin lamellae of approximately equal to 100 nm thickness by cytoplasmic retraction. Whereas the cell body is grey, the lamellae appear very dark under IRM optics. These dark areas could be misinterpreted as stemming from a closer cell-substratum apposition beneath the lamellae than the cell body. This ambiguity can be avoided if the technique of total internal reflection aqueous fluorescence (TIRAF) is used in conjunction with a high refractive index glass (n = 1.83) as substratum. Contributions to the image generated by thin cytoplasm and also variable cytoplasmic refractive index are thereby minimized due to the extremely short range of the 'illuminating' evanescent wave. From our comparative IRM and TIRAF study of the ultrathin lamellae of Dictyostelium amoebae it is concluded that the cell-glass gap is relatively uniform beneath the entire cell. We briefly discuss the sensitivity of several cell types to TIRAF, the generation of ultrathin lamellae and the nature of the cell-glass gap.

Cell Adhesion↗

Stages in axon formation: observations of growth of Aplysia axons in culture using video-enhanced contrast-differential interference contrast microscopy.

The regenerative growth in culture of the axons of two giant identified neurons from the central nervous system of Aplysia californica was observed using video-enhanced contrast-differential interference contrast microscopy. This technique allowed the visualization in living cells of the membranous organelles of the growth cone. Elongation of axonal branches always occurred through the same sequence of events: A flat organelle-free veil protruded from the front of the growth cone, gradually filled with vesicles that entered by fast axonal transport and Brownian motion from the main body of the growth cone, became more voluminous and engorged with organelles (vesicles, mitochondria, and one or two large, irregular, refractile bodies), and, finally, assumed the cylindrical shape of the axon branch with the organelles predominantly moving by bidirectional fast axonal transport. The veil is thus the nascent axon. Because veils appear to be initially free of membranous organelles, addition of membrane to the plasmalemma by exocytosis is likely to occur in the main body of the growth cone rather than at the leading edge. Veils almost always formed with filopodial borders, protruding between either fully extended or growing filopodia. Therefore, one function of the filopodia is to direct elongation by demarcating the pathway along which axolemma flows. Models of axon growth in which the body of the growth cone is pulled forward, or in which advance of the leading edge is achieved by filopodial shortening or contraction against an adhesion to the substrate, are inconsistent with our observations. We suggest that, during the elongation phase of growth, filopodia may act as structural supports.

Animals↗