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Rhodamine-labelled phalloidin stains components in the chromosomal spindle fibres of crane-fly spermatocytes and Haemanthus endosperm cells.

In crane-fly spermatocytes and Haemanthus endosperm, all metaphase and anaphase chromosomal spindle fibres were stained with rhodamine-labelled phalloidin. In crane-fly spermatocytes, each kinetochore was stained with rhodamine-labelled phalloidin at diakinesis of prophase and after colcemid caused metaphase spindles to depolymerize. Since phalloidin stains actin filaments, the distributions of rhodamine-labelled phalloidin-stained material in crane-fly spermatocytes and Haemanthus endosperm suggest that actin filaments might interact with microtubules to produce forces that move chromosomes during cell division, either directly or via an intermediate motor molecule.

Animals

Techniques for typing Herpesvirus hominis antibody: a comparison of inhibition of peroxidase-labelled antibody staining with inhibition of indirect haemagglutination and with microneutralisation.

A new technique based upon the inhibition of the peroxidase-labelled antibody staining (PLAS) has been used to type Herpesvirus hominis (HVH) antibodies in four groups of human sera taken from patients with one or both types of HVH infection and in mixtures of different proportions of type 1 and type 2 antisera. The results were compared with those of the microneutralisation (MN) test and the indirect haemagglutination (IHA) inhibition test. The sensitivity and specificity of the three methods were identical for sera containing only one type of HVH antibody. The MN test was slightly more sensitive than the other tests for detecting small amounts of HVH-1 antibody mixed with large amounts of HVH-2 antibody. Nevertheless, the PLAS inhibition technique was far more rapid and it would seem a satisfactory alternative to the IHA inhibition test for HVH antibody typing.

Antibodies, Viral

Differentiation of herpes simplex virus type 1 and type 2 by immunofluorescence: discriminative staining by labelled IgG preparations.

While evaluating herpes simplex virus (HSV) typing by indirect immunofluorescence staining, an undesired specific staining pattern turned out to be a reliable marker for herpes simplex type 1. Cells infected with herpes simplex type 1 displayed clear staining with a FITC-conjugated antiglobulin preparation, also in the absence of herpes simplex-specific antibodies. Using the same conjugate, herpes simplex type-2-infected cells exhibited no fluorescence. The particular type of staining observed was influenced by neither the anatomical site of origin of the virus isolate nor the cell type used for virus preparation. Herpes simplex type 1-specific fluorescence was only obtained with the use of FITC-conjugates possessing anti-IgG activity. Both reliability and specificity of this discriminating procedure as a diagnostic tool has been established by typing 282 virus isolates over a period of 4 years.

Antibodies, Anti-Idiotypic

Antibodies against neuroactive amino acids and neuropeptides. II. Simultaneous immunoenzymatic double staining with labeled primary antibodies of the same species and a combination of the ABC method and the hapten-anti-hapten bridge (HAB) technique.

In the present study we developed an immunoenzymatic double staining technique allowing the simultaneous detection of two neuroactive substances with primary antibodies of the same species and their simultaneous visualization in semithin sections of epoxy-embedded material. For this purpose, primary antibodies against glutamate, GABA, and serotonin were either biotinylated or labeled with the trinitrophenyl (TNP) group. The latter was visualized by a detection system here referred to as the hapten-anti-hapten bridge (HAB) technique. The HAB technique consists of anti-TNP antibodies, serving as bridges between the TNP-ylated primary antibody, and a TNP-ylated marker enzyme, such as alkaline phosphatase. The single components of the HAB technique were optimized by use of a dot-blot assay and an "artificial tissue" system. The optimal staining sequence consisted of TNP-ylated primary antibody with a molar TNP:antibody ratio of 12:1, followed by anti-TNP antibody and TNP-ylated alkaline phosphatase (molar TNP:enzyme ratio of 20:1). No further improvement of detection sensitivity could be obtained when soluble immunocomplexes between anti-TNP antibody and TNP-ylated alkaline phosphatase on the side of phosphatase excess were prepared and used instead of simple TNP-ylated alkaline phosphatase. When compared with other established procedures, such as avidin-conjugated alkaline phosphatase or the ABC method, the HAB technique revealed a similar detection sensitivity. The TNP-ylated primary antibody, however, had to be used at higher concentration than the corresponding unlabeled primary antibody. The suitability of the HAB technique in combination with a modified three-step ABC technique for the simultaneous demonstration of glutamate-like and GABA-like immunoreactivity in the rat brain was demonstrated. The advantages of the new technique in comparison with existing double staining methods are discussed.

Alkaline Phosphatase

FITC-labelled antibody staining of tropomyosin-containing fibrils in smooth, cardiac and skeletal muscle cells, prefusion myoblasts, fibroblasts, endothelial cells and 3T3 cells in culture.

FITC-labelled antibodies to purified chicken gizzard smooth muscle tropomyosin were prepared and used to stain muscle and non-muscle cells in culture. Skeletal muscle myoblasts stained both diffusely throughout the cytoplasm and in fine filamentous structures. Once myotubes developed the staining was localized exclusively in the I-band region of the myofibrils. Similarly, cardiac muscle cells stained in the I-band alone. Primary and subcultured smooth muscle cells, irrespective of their state of differentiation, stained exclusively in long, straight fibrils. The staining of the fibrils was interrupted with stained regions 1-2 micrometer long and unstained spacings 0.5 micrometer. Interrupted fibrils were also observed in fibroblasts and endothelial cells, however their staining reaction was very weak (almost indistinguishable from that with pre-immune serum) and they were few in number. 3T3 cells demonstrated moderate staining in interrupted fibrils. Sheaths of very fine fibrils staining with a similar intensity were also found throught the cytoplasm. Interruptions in these fine fibrils were often aligned to give the whole cell a striated appearance. Sheaths of fibrils were not found in the other cell types studied.

Animals

The use of silver-enhanced 1-nm gold probes for light and electron microscopic localization of intra- and extracellular antigens in skin.

We used colloidal gold (1-nm diameter) with silver enhancement, in conjunction with a low-temperature post-embedding immunolabeling technique, to localize several antigens in normal skin at both the light and the electron microscopic level within the same tissue blocks. Normal skin subjected to cyrofixation and cryosubstitution and embedded in Lowicryl K11M was used as a substrate. Semi-thin sections (1 micron) were incubated in primary antibody (against epidermal basement membrane zone associated antigens and two keratin sub-types), biotinylated secondary antibodies, and then in 1-nm gold-conjugated streptavidin. Finally, the 1-nm gold label was enhanced using silver staining. Labeling of both basement membrane and keratin antigens was well demonstrated, and the area in the semi-thin sections showing the best structural preservation and the greatest intensity of immunolabeling was used to identify the part of the block to be used for ultra-thin sectioning. Ultra-thin sections were treated using a similar procedure to that employed for semi-thin sections. The labeling with silver-enhanced 1-nm gold probes was intense and readily visible by electron microscopy, even at low magnification. We have found this technique to have a high degree of specificity and sensitivity for labeling both intra- and extracellular antigens in skin, with the added advantage of providing the means for studies at both light microscopic and electron microscopic level.

Antibodies

Cell cycle analysis of asynchronous cell populations by flow cytometry using bromodeoxyuridine label and Hoechst-propidium iodide stain.

Continuous labelling of cells with deoxybromouridine (BrdUrd) followed by staining with a bis-benzimidazole (Hoechst 33258) and a phenanthridinium (propidium iodide or ethidium bromide) allows the cells to be separated by flow cytometry according to the extent of their DNA replication. This BrdUrd-Hoechst/PI method has been used mainly to observe perturbations of the cell cycle in synchronously growing cells. In this paper we demonstrate that, when the method is applied to asynchronously dividing cells, more extensive information can be derived about the effects of cytotoxic and other treatments on the kinetics of the cell cycle. The interpretation of the data is explained, the effects of different types of cytotoxic agent are described, and the method is compared briefly to other methods for following cell cycle kinetics.

Animals

Binding and endocytosis of thrombospondin and thrombospondin fragments in endothelial cell cultures analyzed by cuprolinic blue staining, colloidal gold labeling, and silver enhancement techniques.

We investigated the distribution of thrombospondin-specific binding sites and the uptake of thrombospondin-gold conjugates in cultured porcine endothelial cells by light and electron microscopy. Colloidal gold marker and silver enhancement techniques were applied for cytochemical detection of monomeric thrombospondin and fragments of thrombospondin. Thrombospondin binds to granular and fibrillar structures and to sites of cell-cell contact on the cell surface, as indicated by many proteoglycan-cuprolinic blue precipitates. Cell migration tracks on the culture dish bottom are most heavily stained. Labeling of intact thrombospondin and of proteolytic fragments of thrombospondin with colloidal gold followed by silver intensification enables one to detect its binding and uptake in endothelial cells. Binding to the cell surface and uptake of thrombospondin-gold particles was inhibited by heparin but not by hyaluronic acid or chondroitin sulfate. The heparin binding region at the N-terminal end of the thrombospondin molecule proved to be essential for cell surface binding. Gold-conjugated thrombospondin fragments devoid of the heparin binding region were not internalized. After 60 min incubation at 37 degrees C, thrombospondin-gold particles accumulated in the lysosomal compartment close to the nucleus. In the presence of monensin and ammonium chloride, vesicles in this area are swollen and the concentration of particulate marker is reduced. Binding and uptake of thrombospondin by vascular endothelial cells appears to require linkage of the heparin binding region of the thrombospondin molecule to coated pits and heparan sulfate-rich molecules as receptors. Colloidal gold conjugation of thrombospondin fragments proved to be useful for cytochemical characterization of molecular domains.

Ammonium Chloride

Immunoperoxidase labelling of previously stained tissue sections: application in oral histopathology.

We have investigated by the avidin-biotin peroxidase technique a wide variety of recognized cellular antigens in paraffin sections of both normal and pathological material which have been previously stained with hematoxylin and eosin. The intensity of peroxidase reaction was adequate to permit the diagnosis and the background of the immunoreaction minimal. This technique therefore, appears useful either for retrospective analysis of cellular antigens or when limited unstained material is available.

Acetates

The extracellular matrix in human myocardium: Part I: Collagens I, III, IV, and VI.

The composition of the extracellular matrix in normal human myocardium obtained at open-heart surgery was investigated using monoclonal antibodies against the collagens I, III, IV, and VI, and fluorescence microscopy. The aim of the study was to provide information on normal myocardium that could be used in the evaluation of pathological changes. Porcine myocardium was used for comparison, and both tissues showed a perfect agreement of the results, apart from collagen IV. This was negative in pig myocardium, due to the species specificity of the antibody. Collagens I and III were localized in the extracellular space as either coarse or fine fibrillar structures; the cellular elements of the interstitium, except for the endothelial cells, were also stained. Labeling for collagen VI was much finer than for the other collagens, and was present throughout the interstitium. Collagen IV stained the basement membranes of myocytes and capillary endothelial cells, and also labeled the T-tubular system in the myocytes. The second part of this communication will describe the localization of fibronectin, laminin and vimentin in normal human myocardium.

Animals

[Detection of coagulation factor XIII in the vitreous body and periretinal membranes in proliferative retinal diseases].

The human blood coagulation factor catalyses the cross-linking of fibrin monomers at the end of the coagulation cascade. Additional functions are the coupling of fibronectin and collagen to each other and fibrin. Therefore we tried to investigate the significance of factor XIII in the development of intraocular membranes. Using gel electrophoresis and western blotting, both subunits (A and B) of factor XIII could be detected in vitreous aspirates from patients with "idiopathic" proliferative vitreoretinopathy (PVR) (n = 5), traumatic PVR (n = 5), and proliferative diabetic retinopathy (n = 5). In contrast the vitreous of five human "normal" post mortem eyes did not contain the subunits of factor XIII. Furthermore, we observed immunofluorescence staining for both subunits of factor XIII in 20 surgically obtained periretinal membranes. In early cellular as opposed to late hypocellular membranes we observed stronger labeling for both subunits of factor XIII. With double label staining techniques, the fibroblastic cells recognized by vimentin staining did not contain factor XIII. About 50% of the macrophages stained positive for the A-subunit of factor XIII. We observed no labeling for the B-subunit in macrophages. Therefore, we hypothesize that factor XIII in proliferative vitreoretinal disorders (PVR, PDR) is derived from the exudation of plasma and platelets through disrupted blood-retinal barriers.

Diabetic Retinopathy

A reliable method for simultaneous demonstration of two antigens using a novel combination of immunogold-silver staining and immunoenzymatic labeling.

We have developed a reliable and sensitive immunohistochemical staining technique which allows the simultaneous demonstration of two different antigens expressed in or on the same cell (referred to as mixed labeling), together with the evaluation of the general histopathological appearance of the tissue. The staining procedure combines a three-step (streptavidin-biotin) immunogold-silver staining (IGSS) with a three-step immunoenzymatic labeling. For this purpose, we investigated the compatibility of IGSS with various substrates of peroxidase or alkaline phosphatase (AP). Highly reliable and discernible mixed labeling was achieved only after initial labeling with IGSS followed by AP labeling using the substrates naphthol AS-MX phosphate/Fast Blue or naphthol AS-BI phosphate/New Fuchsin, respectively. To ensure utmost specificity, we applied FITC-conjugated mouse monoclonal antibodies and rabbit anti-FITC immunoglobulins visualized by AP-labeled immunoglobulins and the respective substrate in a final step. This novel approach provides an excellent means for demonstration of immunocompetent cells and unequivocal determination of the percentage of specific cell subsets in infiltrated tissue. The advantages of this method, as compared with double immunofluorescence or double immunoenzymatic labeling, were investigated and are discussed.

Antibodies, Anti-Idiotypic

The atherogenic effect of lupus sera: systemic lupus erythematosus-derived immune complexes stimulate the accumulation of cholesterol in cultured smooth muscle cells from human aorta.

The influence of systemic lupus erythematosus (SLE) patients' sera on lipid accumulation in the cultured smooth muscle cells (SMC) from unaffected human aortic intima was examined. It was demonstrated that the cholesterol uptake in the SMC cultured in the presence of SLE sera is 1.5- to 6-fold higher than in the cells cultured with normal human sera (NHS) obtained from healthy donors. Incubation of the SMC with circulating immune complexes (CIC) isolated from lupus sera by precipitation with 2.5% polyethylene glycol 6000 (PEG) caused a 3- to 4-fold rise in the intracellular cholesterol level. The atherogenic effect of lupus sera, as well as isolated CIC, strongly correlated (r = 0.98) with the low density lipoprotein (LDL) content in the PEG-precipitated CIC. The cholesterol level in cultured SMC also increased 2- to 3-fold when growth medium was supplemented with LDL, DNA, and anti-DNA autoantibodies (IgG) affinity isolated from lupus sera. Using immunofluorescent staining, it was shown that the addition of a DNA-anti-DNA IgG mixture to the growth medium, together with NHS, stimulated LDL incorporation in the SMC. The results of double-label staining suggest the formation of LDL-DNA-IgG complexes which seem to be entrapped in cells more actively than free LDL. The composition of PEG-precipitated CIC was studied by electrophoresis and immunoblotting. Significant amounts of apolipoprotein B, as well as low molecular weight DNA and immunoglobulins, were found in SLE-derived CIC. The data obtained suggest that the atherogenic effect of human lupus sera in vitro is generally due to the appearance of LDL-containing immune complexes. Different mechanisms possibly involved in the lupus atherogenesis are discussed.

Adult

Neural tissue compatibility of Teflon as an implant material for microvascular decompression.

Teflon is utilized in neurosurgery as well as in plastic, vascular and heart surgery. Although the effect of Teflon on different types of cells and tissues has been previously studied, we are not aware of any study in which the effect of Teflon was tested on cells of the central nervous system. We have therefore examined the tissue compatibility of spongy and fibrous Teflon by directly exposing the Teflon to dissociated cerebellar cells containing both glia and neurons in tissue culture. Daily examination of the growth of the cells adjacent to Teflon fibers using an inverted phase contrast microscope revealed that Teflon has little or no effect on the growth of these cells. When the cells are fixed after 7 days in culture and stained by the Jenner-Giemsa method, adhesion of both glia and neurons to the surface of the Teflon was seen. Attachment of neural cells to the Teflon was not extensive, as was shown by indirect immunofluorescence technique in connection with double-label staining with antiGFAP as glia marker and anti-M6 as mouse neuron marker. Thus, these experiments show that Teflon is relatively inert when used as an implant in the central nervous system.

Biocompatible Materials

Fluorescent antibody localization of myosin in the cytoplasm, cleavage furrow, and mitotic spindle of human cells.

We have studied the distribution of myosin molecules in human cells using myosin-specific antibody coupled with fluorescent dyes. Rabbits were immunized with platelet myosin or myosin rod. They produced antisera which precipitated only myosin among all the components in crude platelet extracts. From these antisera we isolated immunoglobulin-G (IgG) and conjugated it with tetramethylrhodamine or fluorescein. We separated IgG with 2-5 fluorochromes per molecule from both under- and over-conjugated IgG by ion exchange chromatography and used it to stain acetone-treated cells. The following controls established the specificity of the staining patterns: (a) staining with labeled preimmune IgG; (b) staining with labeled immune IgG adsorbed with purified myosin; (c) staining with labeled immune IgG mixed with either unlabeled preimmune or immune serum; and (d) staining with labeled antibody purified by affinity chromatography. In blood smears, only the cytoplasm of platelets and leukocytes stained. In spread Enson and HeLa cells, stress fibers stained strongly in closely spaced 0.5 mum spots. The cytoplasm stained uniformly in those cells presumed to be motile before acetone treatment. In dividing HeLa cells there was a high concentration of myosin-specific staining in the vicinity of the contractole ring and in the mitotic spindle, especially the region between the chromosomes and the poles. We detected no staining of erythrocytes, or nuclei of leukocytes and cultured cells, or the surface of platelets and cultured cells.

Antibodies

Entorhinal cortex of the human, monkey, and rat: metabolic map as revealed by cytochrome oxidase.

The entorhinal cortex (EC) is a medial temporal lobe area involved in memory consolidation. Results from previous studies suggest that the upper layers of the EC may be organized into anatomical-neurochemical modules associated with pathways through the neuron clusters in layers II and III. To study metabolic patterns in the EC and to look for correlates of the proposed modules, we examined the distribution of cytochrome oxidase (CO) in the human, monkey, and rat EC. CO is a mitochondrial enzyme that has been used to study modules in other cortical areas. In all three species, the neuron clusters in layers II-III were darkly CO-reactive, whereas most of the neuropil between clusters was lightly or moderately CO-reactive. However, some neuropil regions directly adjacent to the neuron clusters were also darkly CO-reactive, especially in the human; these neuropil areas included portions of layers I and II. In tangential sections through layers I-II, the areas of dark staining formed a consistent pattern, comprised of partially interconnected islands and stripes associated with the neuron clusters. In the EC from one human hemisphere, approximately 200-250 CO-reactive layer II islands were present. EC layers other than I-III also showed characteristic CO staining intensities, but no evidence of modularity. Our results indicate that CO staining labels distinct compartments related to the neuron clusters in the upper EC layers. We propose that these compartments may represent modules for cortical processing, analogous to the CO-labeled modules in some other areas of cortex.

Animals