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Biomedical subjects

S L Goodman

Publications and source records attributed to S L Goodman.

70 records · Page 4Linked to original sources

Dissociation of Madin-Darby canine kidney epithelial cells by the monoclonal antibody anti-arc-1: mechanistic aspects and identification of the antigen as a component related to uvomorulin.

It has previously been shown that the monoclonal antibody anti-Arc-1 dissociates Madin-Darby canine kidney (MDCK) epithelial cells and changes their morphology in vitro (Imhof, B.A., H.P. Vollmers, S.L. Goodman, and W. Birchmeier, 1983, Cell, 35:667-675). In this article we demonstrate that the anti-Arc-1 antibody recognizes an uvomorulin-like molecule on MDCK cells, i.e., it immunoprecipitates an 84-kD protein fragment from a tryptic digest of cell surfaces in the presence of Ca2+ (as does anti-uvomorulin antiserum). Furthermore, anti-uvomorulin antiserum prevents the binding of anti-Arc-1 to MDCK cells. The distribution of the Arc-1 antigen is also quite similar to that of uvomorulin: it is enriched at the cell-cell contacts both of MDCK cells and of cells in various canine tissues. In the intestinal epithelium the antigen could be further localized in the region of the junctional complex. To study the mechanism of action of the dissociating antibody, MDCK cells grown on Nuclepore filters in Boyden chambers were exposed to anti-Arc-1 from either the upper or lower compartment. It could be shown that the antibody interfered with cell adhesion only from the basolateral but not from the apical cell surface. Antibody action was inhibited in the presence of colchicine but not cytochalasin B. Furthermore, cell dissociation was prevented when the cellular cAMP level was raised. These findings indicate that the anti-Arc-1 antibody acts on a target below the tight junctions (possibly on the antigen located in the junctional complex), and they confirm that cytoskeleton and metabolic factors are actively involved in the maintenance of junctional integrity.

Animals↗

In vitro vs. ex vivo platelet deposition on polymer surfaces.

The initial adherence and activation of platelets on a surface may be a major determinant of the thrombogenicity of that surface. The response of platelets to four polymers: polyethylene (PE), polyvinyl chloride (PVC), silicone rubber (SIL), and oxidized polyethylene (OX-PE) was studied in vitro with scanning electron microscopy. Platelets from mongrel canines and rhesus monkeys were obtained just prior to cannulation of the donor animal with an ex vivo arteriovenous series shunt evaluating the same four polymers. Thus, the in vivo response of circulating platelets could be compared to the in vitro response of purified platelets from the same animal. In the canine the in vitro response of individual platelets deposited on the four polymers studied was nearly the same as the ex vivo response although the extent of shape-change was usually somewhat greater ex vivo. Large numbers of fully spread platelets were seen on OX-PE and fewer numbers on PE both in vitro and ex vivo. Mixtures of platelets in all degrees of shape-change/activation wer characteristic on PVC, while platelets on SIL showed little shape-change over all time intervals. Rhesus platelet response was similar to the canines' except that fewer attached or shape-changed, and differences in responses to the four polymers were less pronounced. The similarity of the in vitro to the ex vivo response in each of the species suggests that this simple in vitro model can be informative in studying platelet shape-change/activation as a precursor to surface induced thrombosis with less complexity and expense than in vivo methods.

Adenosine Diphosphate↗

Collateral immunoprecipitation and localization of cellular antigens using monoclonal antibody--gold conjugates.

Colloidal gold--protein complexes have been used to precipitate iodinated cell surface glycoproteins from cellular lysates. Both direct and 'sandwich' techniques with monoclonal antibodies were used. The same reagents were employed for immunolocalization of the antigenic determinants at the SEM level. The immunoprecipitation had a low background and was efficient. No washing of the precipitate was necessary. The gold-antibody precipitation (GAP) technique thus bridges the gap between immunocytochemistry and biochemistry.

Antibodies, Monoclonal↗

Cell-cell interaction and polarity of epithelial cells: specific perturbation using a monoclonal antibody.

With functional assays we selected a monoclonal antibody (anti-Arc-1) that perturbs specific cell-cell contacts of MDCK epithelial cells in tissue culture. The cells loosen their tight junctions, become uncoupled, and their polarity is abolished. Several findings show that the corresponding antigen appears to be a cell-surface protein of MDCK epithelial cells but not of other established cell lines: radioactively labeled antibody could be absorbed on the surface of intact cells; immunoscanning electron microscopy showed a homogeneous surface distribution of the antigen; and the antigen was extractable from the cells by EDTA. Absorption on Western blots and gel filtration showed antigenicity at 130 and 40 kd. This study shows that the hybridoma technique, in combination with functional screening of the monoclonal antibodies, allows the identification of new and specific molecules involved in cell-cell adhesion.

Animals↗

Disruption of the keratin filament network during epithelial cell division.

The behaviour of keratin filaments during cell division was examined in a wide range of epithelial lines from several species. Almost half of them show keratin disruption as described previously: by immunofluorescence, filaments are replaced during mitosis by a 'speckled' pattern of discrete cytoplasmic dots. In the electron microscope these ' speckles ' are seen as granules around the cell periphery, just below the actin cortical mesh, with no detectable 10 nm filament structure inside them and no keratin filament bundles in the rest of the cytoplasm. A time course of the filament reorganization was constructed from double immunofluorescence data; filaments are disrupted in prophase, and the filament network is intact again by cytokinesis. The phenomenon is restricted to cells rich in keratin filaments, such as keratinocytes; it is unrelated to the co-existence of vimentin in many of these cells, and vimentin is generally maintained as filaments while the keratin is restructured. Some resistance to the effect may be conferred by an extended cycle time. Filament reorganization takes place within minutes, so that a reversible mechanism seems more likely than one involving de novo protein synthesis, at this metabolically quiet stage of the cell cycle.

Animals↗

Colloidal gold markers and probes for routine application in microscopy.

Colloidal gold can be used as an electron-dense cytochemical probe for direct or indirect labelling techniques. Gold markers can be prepared in a size range of 5-150 nm, and show size-dependent shape characteristics and absorption spectra. Size and shape distribution increases with mean particle diameter, with appreciable overlapping between populations of different mean size. Using radio isotope-binding assays, spectrophotometric analysis and an innovative rapid microtitration technique, the effect of pH, ionic strength and protein concentration on gold-protein interaction has been studied. Efficient adsorption of protein to gold occurs at, or near, the pI of the protein. The amount of protein needed to effect stabilization is both a function of pH and of ionic strength, but does not reflect the amount of protein binding for all proteins. There is evidence for multilamellar adsorption of proteins to gold, which is discussed in context of the bioactivity, and stability of the probe. A working protocol for the routine reproducible manufacture of protein-gold probes is given, making use of the microtitration assay.

Colloids↗

Cell surface distribution of fibronectin in cultures of fibroblasts and bladder derived epithelium: SEM-immunogold localization compared to immunoperoxidase and immunofluorescence..

Expression of cell surface fibronectin in cultures of untransformed fibroblasts is well documented, but little is known of its presence and distribution in cultured epithelial cells. Using species monospecific anti-fibronectin antibodies, the distribution of fibronectin in untransformed fibroblasts and in normal and neoplastic bladder epithelial cells was characterized by indirect labelling experiments using immunogold scanning electron microscopy (SEM). The surface matrix of fibronectin expressed in rodent and human fibroblast cell lines was demonstrated with ease by SEM of gold-tagged second antibodies. However, no fibronectin could be detected on any of the mouse and human bladder epithelium-derived cells studied in single or in mixed epithelial-fibroblast cultures. These SEM-immunogold observations were compared to and confirmed by immunofluorescence and immunoperoxidase microscopy. Immunofluorescence and SEM localization of the fibronectin in the extracellular matrix presented similar distribution patterns but the higher resolution of the SEM provided a more detailed analysis.

Animals↗

A review of the colloidal gold marker system.

Colloidal gold can be used as a particulate marker for the detection and localization of target molecules by various modes of microscopy (light and fluorescent microscopy, scanning and transmission electron microscopy) using both direct and indirect labeling approaches. Several techniques are available for the preparation of gold markers in a size range of 5nm to 150nm, their mean size and shape characteristics and absorption spectra varying with particle size. Under appropriate conditions, colloidal gold will bind macromolecules by non-covalent electrostatic adsorption with little change in the specific activity of the bound macromolecule. This interaction is influenced by a number of factors including ionic concentration, pH conditions (in correlation with the protein pI values) and protein stabilizing levels. Presence of reactive protein on probes can be demonstrated and quantitated by direct and indirect radioactive binding assays and agglutination assays. These assays provide convenient procedures for characterizing stability, and behaviour in storage, of gold probes. Stability of gold probes under conditons where competing proteins are present, under freeze-thaw cycles and under SEM preparation conditions have been evaluated in this paper. Some of the basic procedures in the application of gold probes to cell labeling are briefly discussed together with certain limitations of the colloidal gold marker system. A bibliography of gold probe cell labeling studies is included.

Animals↗

Prophylactic lidocaine in suspected acute myocardial infarction.

The incidence of serious ventricular arrhythmias following acute myocardial infarction is highest during the first few hours after injury, and thereafter declines. Several investigations into the prophylactic use of lidocaine to prevent the development of arrhythmias have shown that lidocaine, given in therapeutic doses, is effective in preventing ventricular fibrillation and in reducing early mortality. Lidocaine was found to be effective when given either by the intravenous or by the intramuscular routes. The recommended dosage is 100 mg given as an intravenous bolus followed by 2 to 4 mg/min as an infusion, which should be given by infusion pump. Another recommendation is to use two 100 mg boluses 20 minutes apart, along with the same infusion. We recommend that lidocaine be started as soon as possible in all patients suspected of having suffered acute myocardial infarction.

Arrhythmias, Cardiac↗

Colloidal gold probes--a further evaluation.

Colloidal gold provides an immuno- and cytochemical marker suitable both for TEM and SEM. Various parameters involved in the preparation and stability of gold markers of various sizes and of probes have been reviewed and modifications in methodology suggested based on a study of factors affecting the performance of the gold marker system. In particular, dependence of protein adsorption on pH conditions correlating with protein pI is further confirmed. Presence of bioactive protein in gold probes is demonstrated and quantitated by radioassay (125I) and agglutination procedures.

Cell Line↗

A simple and rapid method for the reversible removal of lipids from a membrane-bound enzyme.

A simple, rapid and reproducible method for the reversible removal of lipids from a membrane-bound enzyme is described. Essentially, a membrane preparation containing (Na+ + K+)-dependent adenosine triphosphatase was extracted with the non-ionic detergent Lubrol WX in the presence of glycerol, and partial separation of protein from lipid was achieved with the use of only two centrifugations. About 74% of the endogenous phospholipid and 79% of the cholesterol were removed, concomitant with a virtually complete loss of ouabain-sensitive adenosine triphosphatase activity, but with retention of 60-100% of the K+-dependent phosphatase activity. The addition of pure phosphatidylserine re-activated the enzyme to more than 80% of the initial activity, and up to 30% of the protein was recovered. Excess of phosphatidylserine could be washed off the enzyme to give a stable 'reconstituted' preparation. The effects of variation in the experimental conditions were examined, and the results are discussed with respect to the possibility of adapting the method to the study of other lipid-dependent enzymes bound to membranes.

Adenosine Triphosphatases↗

Ouabain binding to phospholipid-dependent adenosine triphosphatase.

The role of phospholipid in the binding of ouabain to the (Na+ + K+)-dependent adenosine triphosphatase was studied. Enzyme preparations obtained from rabbit kidney were treated with Lubrol WX to remove the phospholipid component essential for ATPase activity. Reconstituted enzyme samples were prepared by the addition of phosphatidylserine and sedimentation of an enzymically active lipid-protein complex. The binding of ouabain to both kinds of preparations was measured under equilibrium conditions with the use of 3H-labelled ouabain and initial ouabain concentrations in the range 0.01-1 micrometer. The main findings were: (i) (Mg2+ + Pi) promoted binding of significant quantities of ouabain only to the reconstituted enzyme; (ii) the absence of added Na+, (Mg2+ + ATP) similarly promoted binding only to the reconstituted samples; (iii) the addition of Na+ in the presence of (Mg2+ + ATP) increased the amount of ouabain bound to the reconstituted enzyme when the ouabain concentration was below about 0.1 micrometer, but it had no effect when the ouabain concentration was about 1 micrometer; (iv) (Mg2+ + ATP) induced ouabain binding to the depleted enzyme only when Na+ was also added; (v) the amount of ouabain bound to both depleted and reconstituted enzymes was the same in the presence of (Mg2+ + ATP + Na+); (vi) the reconstituted enzyme appeared to have a greater affinity for Na+ than did the depleted enzyme.

Adenosine Triphosphatases↗

Distribution and movement of membrane-associated platelet glycoproteins: use of colloidal gold with correlative video-enhanced light microscopy, low-voltage high-resolution scanning electron microscopy, and high-voltage transmission electron microscopy.

Scanning electron microscopy (SEM), especially low-voltage (1 KeV) high-resolution SEM, can be used in conjunction with stereo pair high-voltage (1 MeV) transmission electron microscopy (HVEM) of whole spread cells or thick sections effectively to correlate surface structure with internal structure. Surface features such as microvilli, pits, pseudopodia, ruffles, attached virus, and other surface-related morphologic characteristics can be identified using SEM, while underlying cytoskeletal structure and organelle organization can be viewed by HVEM of the same preparation. However, the need to "prepare" cells for electron microscopy precludes observation in the living state. The use of several types of video-enhanced light microscopy (VLM) permits observation of living cells such that certain surface and internal features can be observed at a relatively high level of resolution or detection. Thus, changes in living cells can be followed, and at appropriate times the cells may be chemically fixed or rapidly frozen and prepared for ultrastructural examination by electron microscopy. We have utilized VLM in conjunction with SEM and HVEM to correlate changes in shape and surface structure with changes in the internal structure of platelets. In addition, we have found it advantageous to use colloidal gold-labeling procedures, because these markers are detectable by all three forms of microscopy. Using this approach we have labeled platelet membrane GPIIb/IIIa, a receptor for RGD-containing adhesive proteins, with gold-fibrinogen or gold-anti-IIb/IIIa. The initial binding and subsequent movement of gold-fibrinogen-IIb/IIIa complexes in living platelets was followed by VLM. The movement of individual labels could be mapped. Subsequent observation by low-voltage (1 KeV) high-resolution SEM and HVEM permits visualization of the same individual receptors tracked by LM. The final position on the membrane or the position-in-transit when fixative was added was determined relative to surface ultrastructure (SEM) and internal, particularly cytoskeletal, ultrastructure (HVEM).

Biological Transport↗