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Biomedical subjects

P L Mann

Publications and source records attributed to P L Mann.

At least 19 recordsLinked to original sources

Seemingly diverse activities of beta-alethine.

beta-Alethine (beta-alanyl-cysteamine disulfide) exhibits striking biological activities in diverse systems. At an optimum of about 10 ng/ml, beta-alethine (a) adapts murine liver cells to culture (53 colonies/10(6) cells versus none in controls), (b) delays aging of human IMR-90 fetal lung fibroblasts (102 population doubling levels versus 47 in controls, producing 3 x 10(16) greater biomass), and (c) markedly stimulates antibody-producing plaque-forming cells from murine splenocytes (16,875/10(6) cells versus 55/10(6) cells in controls) or human peripheral blood leukocytes (1826/10(6) cells versus 0/10(6) cells in controls). Early interventions with beta-alethine (1 ng/kg to 100 micrograms/kg) successfully treat NS-1 myeloma in a syngeneic murine tumor model (NS-1 myeloma). Although there are indications in this model that beta-alethine is also effective when intervention is late, beta-alethine is ineffective in an allogeneic murine melanoma model (Cloudman S-91 melanoma). It is inferred that beta-alethine enhances cellular phenotypic expression, function, and vitality in diverse biological systems and may treat certain types of neoplasia. Because atomic spacings between the amide moieties in beta-alethine are the same as in the differentiating agent hexamethylene-bis-acetamide and because the radioprotectors WR 2721 and WR 1065 lack only the carbonyl oxygen of the thiol form (beta-aletheine), biological activities already reported for these compounds are compared with those presented herein for beta-alethine. Although these comparisons have not been made in the same systems, the tentative conclusion is that the amide moieties of beta-alethine may be critical to its potency and lack of obvious toxicity in cell culture and animal models.

Animals

Aldose reductase expression and prostaglandin E2 production are coordinately regulated in cultured rat mesangial cells.

There is increasing evidence that a link between the polyol pathway and prostaglandins is important in the pathogenesis of diabetic nephropathy. The presence of the polyol pathway in the kidneys of normal animals, the galactose-fed rat, and animals with experimental diabetes has been established. While aldose reductase (AR) immunoreactive protein (AR-IRP) and AR mRNA are expressed at high levels in renal medulla, the sites of AR synthesis and regulation and metabolic consequences of AR activity in renal cortex are uncertain. The present study was conducted to test the hypothesis that AR expression and PGE2 production are coordinately regulated in glomerular mesangial cells. To test this hypothesis, we measured AR-IRP, AR mRNA, and PGE2 production in mesangial cells isolated from rats maintained on diets containing normal chow (MC-N), 50% galactose (MC-G), and 50% dextrin (MC-D). The rank order for each parameter studied (AR-IRP, AR mRNA, PGE2) was MC-N > MC-G > MC-D. Western blot analysis demonstrated that MC-N (optical density [OD] 1.0), MC-G (OD 0.59), and MC-D (OD 0.25) express AR-IRP. Slot-blot analyses demonstrated that levels of AR mRNA were greatest in MC-N (1.0), intermediate in MC-G (0.49), and lowest in MC-D (0.31). Ribonuclease (RNase) protection analyses demonstrated a similar pattern of AR mRNA expression, with MC-N at 1.0, MC-G at 0.60, and MC-D at 0.33. PGE2 production (pg/5 x 10(4) cells/30 min) was highest in MC-N (278 +/- 29), intermediate in MC-G (110 +/- 9), and lowest in MC-D (37 +/- 4).(ABSTRACT TRUNCATED AT 250 WORDS)

Aldehyde Reductase

Enhanced tumor imaging with pokeweed mitogen.

Traditional tumor imaging with biotracer techniques relies solely on the target specificity of the biomolecule. We hypothesize that specific imaging is possible by altering the rate of tissue clearance (both normal and aberrant) of any given radiotracer. Pokeweed mitogen (PWM) as a biomodulator, represents a class of molecules which regulate cellular differentiation and cell-cell interactions and, as part of these mechanisms alter tissue clearance rates (both normal and aberrant). Utilizing the B-16/C57BL/6 model, 7 days post-transplantation (which represents log phase growth of the tumor), 10 animals were imaged following an i.v. injection of 1-2 mCi 99mTc-PWM in order to visualize the tumors and determine the optimal imaging kinetics. A specific tumor image is achieved between 120 and 240 min post-injection. In addition, tumor imaging studies using a non-tumor-specific biomolecule were conducted by injecting 19 animals i.v. with 1-2 mCi of 99mTc-human serum albumin (HSA). Twelve of these animals were given 10 micrograms of PWM i.p. at various intervals prior to the 99mTc-HAS administration. Imaging and biodistribution studies were performed at various intervals up to 2 h post-99mTc-HSA injection. A 32-59% increase in the tumor-to-muscle ratio was observed in the PWM-treated animals relative to the non-treated controls. To further investigate the PWM-induced tissue clearance alteration hypothesis, tissue clearance studies using 99mTc-diethylenetriaminepentaacetic acid (DTPA) were conducted in non-tumor bearing ICR mice and the B-16/C57BL/6 tumor bearing animals. 99mTc-DTPA normal tissue clearance rates were significantly increased in the PWM treated animals relative to the non-treated controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Cell surface oligosaccharide modulation during differentiation: V. Partial characterization of the regulated surface during substrate adhesion and spreading.

In previous studies with IMR-90 human fetal lung fibroblasts, it was shown that modulation of a small finite number of unique cell surface oligosaccharide structural specificities (as defined by reaction with specific lectins and monoclonal antibodies) define the cellular senescence phenotype. The cell surface oligosaccharide display can be characterized by assessing the epitope density and conformational arrangement of three or four individual carbohydrate specificities. Development of the senescence morphological phenotype was preceded by specific alterations in the cell surface oligosaccharide display. The senescence-dependent changes in these displays are primarily related to the binding affinity (the Kij of the Scatchard analyses) rather than the epitope density (the binding capacity, Rij of the Scatchard analyses). These alterations involve rearrangements within specific carbohydrate classes. In the course of these studies, the observation was made that low-density and contact-inhibited growth-retarded Phase II cells showed similar surface modulation of the oligosaccharide display. This suggests a broader significance for the date in growth regulation. These data suggest a structural/functional relationship between cellular senescence mechanisms and growth control in general. In this study we have investigated the possible role of cell surface oligosaccharide regulation in substrate interactions. Trypsinized cells were studied during substrate adherence, spreading and initiation of growth on control and poly-L-ornithine-treated polystyrene substrate. The cell surface oligosaccharide display was characterized using both biological assays and NMR-based measurements of the mobility of water at the cell surface. Results show that trypsinization does not remove or diminish the oligosaccharide display. The initial adherence of the cells to unmodified substrate is mediated by oligosaccharides. Cellular spreading results in specific changes in the display. Initiation of growth corresponds to further specific changes in the display. These data suggest a mechanistic connection between the cell surface oligosaccharide display and growth control of these fibroblasts.

Cell Adhesion

Cell surface oligosaccharide modulation during differentiation: VI. The effect of biomodulation on the senescent and neoplastic cell phenotype.

These investigations test the hypothesis developed previously, that there are biomolecules which control and integrate cellular differentiation. Our specific interest in cellular differentiation lies in the area of what we refer to as basal or primitive cellular differentiation mechanisms. These mechanisms are common to all cells, and are required for simple recognition and growth regulation. We have investigated two models, the IMR-90 human fetal lung fibroblast model as a representative of normal growth control, and the CG model, canine glioma cells, a transplantable growth transformed cell line. These two models represent normal, and aberrant cellular differentiation control. In previous studies we have shown that the arrangement of the cell surface oligosaccharide structure on these cell types are predictive of phenotypic transition. We have developed, and partially characterized a series of BIOMODULATORS (BM) which delay the onset of display of neoplastic cells. Three classes of BIOMODULATOR have been explored; (1) a large molecular weight natural product (25-35 kDa), PokeWeed Mitogen (PWM); (2) a small molecular weight natural product (500 Da) Cellular Activator and Differentiator (CAD) and a number of natural and synthetic analogs; and (3) an indolizidine alkaloid natural product, Swainsonine (Sw) which has a known cellular target (oligosaccharide biosynthesis). Preliminary data is presented which structurally links some of these BIOMODULATORS in terms of their effective stereochemistry. These BIOMODULATORS, when used before PDL 38, prevent the cell surface oligosaccharide display changes typical of morphological senescence and delay their onset to PDL 100 or more. These BIOMODULATORS also appear to have regulatory effects on the neoplastic cell models. This re-regulation results in increases in generation time and an increase in the ability of these cells to be recognized by cytotoxic lymphocytes. Proton NMR linewidth measurements of the fraction of 'bound' water associated with the cellular surface of treated and untreated cell populations showed induced physical changes in the cell surface related to the use of the BIOMODULATOR and correlated to the oligosaccharide display changes. These data were interpreted as indicating an increase in the organizational level of these cells. The data for normal and neoplastic cell populations are compared and contrasted in an effort to form the basis for an analytical approach to the control and integration of differentiation mechanisms.

Animals

In vitro studies with the platelet-reactive antibody 50H.19 and its fragments.

The platelet-reactive monoclonal antibody 50H.19, its F(ab')2 fragments, and 99m-technetium (99m-Tc)-labeled fragments used in thrombus imaging were evaluated for their ability to cause platelet aggregation. The intact antibody caused a dose-dependent platelet aggregation in either platelet-rich plasma (PRP) or defined buffer solutions. The F(ab')2 fragments did not cause platelet aggregation except at high calcium concentrations. Neither stannous-ion-treated antibody fragments nor 99m-Tc-labeled antibody fragments caused platelet aggregation. The antibody-induced platelet aggregation was completely inhibited by 8-bromo-cAMP, caffeine, theophylline diltiazem, and staurosporin; partially inhibited by EDTA, EGTA, cytochalasin B, colchicine, aspirin, or indomethacin. Treatment of platelets with the intact 50H.19 antibody resulted in phosphorylation of a 40K dalton platelet protein, similar to that caused by treatment with phorbol myristate acetate (PMA). Phosphorylization of the 40K protein was not observed after treatment with either the 50H.19 F(ab')2 fragments or the calcium ionophore A23187.

Antibodies, Monoclonal

Senescence-induced alteration in cell surface carbohydrates correlated using proton NMR spectroscopy and a lectin-based affinity-binding assay.

Changes in the cell surface oligosaccharides in human fetal lung fibroblasts (IMR-90) are studied as the cells progress to senescence using nuclear magnetic resonance spectroscopy (NMR) and a biochemical assay. A lectin-based affinity-binding technique is used which measures the organization of carbohydrates on the cell surface. Proton NMR studies of the water in samples of frozen cell suspensions of young and old cells provide information on the local dynamics of the cell surface by monitoring the motion of bound water. Changes in the lectin binding density and affinity class distribution correlate with a decrease in the water proton linewidth in frozen cells. These observations reflect alterations in the conformation or structure of the cell surface oligosaccharides and local constituent water.

Butanols

Cell surface oligosaccharide modulation during differentiation: III. Lectin affinity class distributions.

In previous studies we showed that the onset of the morphological phenotype of cellular senescence (IMR-90) in vitro is preceded by complex cell surface changes. Using fluorescently conjugated lectins these studies showed: (1) quantitative PDL-dependent decreases in cell surface mannosyl, galactosyl, and N-acetyl-glucosamine residues; (2) these changes were correlated with changes in ligand/lectin membrane mobility, suggesting a functional relationship for the quantitative changes. To further investigate the biological significance of these observations we have developed a synthetic ligand competition assay to analyze the lectin binding event itself. The results of these analyses show that: (1) the number of binding affinity class distributions is highly restricted; (2) the PDL-dependent mannosyl change is due to the loss of a high-affinity class distribution without significant change in the low-affinity site; and (3) PDL-dependent changes in both galactosyl and N-acetyl glucosamine binding events are the result of changes in the affinity class distributions. These results are interpreted in terms of the potential available energy to act as the basis for signal transduction at the cell surface.

Binding, Competitive

Cell surface oligosaccharide modulation during differentiation: IV. Normal and transformed cell growth control.

In previous studies it was shown that cell surface oligosaccharide affinity class distributions and binding capacities were down-regulated as normal cells approach senescence. Using a sensitive, amplified, lectin/specific-ligand competition analysis three other growth regulation states were compared to that of cellular senescence. Non-senescent and senescent low-density and contact-induced growth inhibition was compared with neoplastic cell growth control. Non-senescent human fetal lung fibroblasts (IMR-90) down-regulated their mannosyl and galactosyl specificities in response to both low-density and contact-induced growth inhibition. Senescent IMR-90 down-regulate their mannosyl residues in response to contact conditions while they up-regulate their galactosyl residues under the same conditions. Growth-transformed transplantable canine glioma cells did not show density-dependent regulation of their cell surface oligosaccharide structures. Modulation of the CG cells with a specific alpha-mannosidase II inhibitor, Ricinus communis a galactosyl specific lectin, and pokeweed mitogen a cellular differentiating agent resulted in an altered growth phenotype and up-regulation of the mannosyl and galactosyl surface oligosaccharides. These data indicate a controller function for the cell surface oligosaccharides and a general influence on growth control.

Alkaloids

Technetium-99m labeled 50H.19 antibody fragments: interaction of the antibody with platelets.

The monoclonal antibody 50H.19 recognized three antigens (Mr = 31-, 40-, 45-K) on normal and thromboasthenic platelets, but only one (Mr = 31-K) on Bernard-Soulier platelets. The intact antibody and its F(ab')2 fragments, had direct platelet-aggregating activity, and induced the platelet release reaction. The intact antibody potentiated platelet aggregation induced by platelet-activating factor or thrombin. Additions of indomethacin did not inhibit aggregation: addition of PGI2, or a calcium channel blocker completely inhibited aggregation. A reduced amount of platelet-aggregating activity was observed with antibody fragments prepared for labeling with 99mTc by pre-exposure to stannous ions, and herein used in biodistribution studies and elsewhere in thrombus imagining studies (J. Nucl. Med. 27: 1315; 1986). Antibody fragments radiolabeled with 99mTc bound to isolated platelets and to clots containing platelets.

Antibodies, Monoclonal

Membrane oligosaccharides: structure and function during differentiation.

Recent results gathered by normal light microscopy, immunocytochemistry, fluorescent-analog cytochemistry, and electron microscopy have allowed an improved interpretation of ameboid movement and related phenomena. 1. The contractile system responsible in Amoeba proteus for the generation of motive force for protoplasmic streaming and a large variety of dynamic activities is represented mainly by a thin cortical filament layer at the cytoplasmic face of the cell membrane (Fig. 18I). During normal locomotion this layer exhibits a distinct structural and physiological polarity with three different zones: a zone of reformation at the front (A), a zone of contraction in the intermediate cell region (B), and a zone of destruction at the uroid (C). 2. Two types of filaments participate in the formation of the cortical layer: (1) randomly distributed thin (actin) filaments exhibiting a parallel orientation in the anterior (Fc1) and a disordered arrangement in the intermediate and posterior cell region (Fc2; see also Fig. 17b), and (2) thick (myosin) filaments in close association with F-actin and mostly restricted to the intermediate and posterior cell region (Fc2). 3. The internal hydraulic pressure generated by localized active contraction of the cortical layer is transmitted to the endoplasm via the cell membrane and converted into directed streaming by a gel-sol gradient of decreasing viscosity between the uroid and the front. Calcium ions, ATP, and regulative proteins (profilin and a kinase) play an essential role in controlling both the interaction of actin and myosin and the sol-gel state of the cytoplasmic matrix. 4. Any alterations externally induced in the polarity of the cortical filament system by chemical or physical stimulation and inhibition cause immobilization of the amebas (Fig. 18II) with characteristic changes in (1) cell shape (spherulation and cell flattening), (2) membrane dynamics (cytotic and cytokinetic activities), and (3) cytoplasmic organization (hyalogranuloplasmic separation). pseudopodial tip (Fig. 18III, b----c, d----e), (3) destruction of the old layer at the hyalogranuloplasmic border (Fig. 18III, c,e), and (4) alternate solation (Fig. 18III, b and d) and gelation (Fig. 18III, c and e) of the hyaloplasm between the layer and the plasma membrane. The retraction of pseudopodia is accomplished by a local contraction of the cortical layer in conjunction with a simultaneous gel-sol transformation of the ectoplasmic cylinder. 6. The expression of a rather complex cytoskeleton which is composed not only of microfilaments and associated proteins, but also of intermediate- and microtubularlike structures has to be considered in future

Aging

Cell surface oligosaccharide modulation during differentiation. I. Modulation of lectin binding.

IMR-90 human lung fibroblasts exhibit quantitative and qualitative changes in their cell surface oligosaccharide expression as a result of low-density growth, contact inhibition of growth and changes in population doubling level (PDL). Binding of Concanavalin-A (CON-A), wheat germ agglutinin (WGA) and Ricinus communis (RCA-120) was shown to decrease by 20-40% as the cells advanced through their lifespan (but significantly before morphological manifestations commonly associated with senescence, which occur at approximately PDL 45). The binding of Dolichos biflorus agglutinin (DBA) increased by 100% over the same time interval. These changes were detected by quantitation of FITC conjugated lectins on single cells and the use of a sensitive analytical biotin-avidin-enzyme amplification assay on whole populations of cells. These studies were performed on randomly growing cultures. These results suggest an important and dynamic role for the cell surface oligosaccharide in growth control and cellular senescence.

Cell Differentiation

Cell surface oligosaccharide modulation during differentiation. II. Membrane mobility of oligosaccharide lectin conjugates.

The quantitative, population doubling level (PDL) dependent changes in cell surface oligosaccharides on IMR-90 cells, were investigated from the perspective of membrane mobility of the lectin-oligosaccharide conjugates. Concanavalin-A (CON-A), wheat germ agglutinin (WGA), Ricinus communis agglutinin (RCA-120), and Dolichos biflorus agglutinin (DBA) were all observed to cluster, cap, and endocytose in cultured human diploid fibroblasts (IMR-90). Quantitative photometry at 37 degrees C over defined periods of time indicated that as the IMR-90s approached cellular senescence a specific lectin-dependent inability to either endocytose or process the capped complex occurred. The development of a biotin/avidin/enzyme amplification assay permitted the assignment of the accumulating signal to the internal compartment. Kinetic data indicate that there are at least three separate (and separable) mechanisms for the PDL related changes in lectin binding. Data for the CON-A complex indicates that at least two classes of functional complexes are present. Regression analysis of the kinetic data for the RCA-120 complex indicates a similar membrane clearance for the IMR-90s at all population doubling levels (PDL), suggesting that the quantitative differences observed earlier were due to simple quantitative reductions in the RCA complexing molecules. Data for WGA mobility on the membrane indicates that they are both changes in the number and mobility status of the complexes. These results indicate that the quantitative changes in lectin binding observed previously as IMR-90 cells approach senescence are correlated with alterations in membrane mobility patterns of the lectin oligosaccharide conjugates.

Cell Compartmentation

Cell surface galactosyltransferase: immunochemical localization.

A cell surface UDP-galactose:N-acetylglucosamine galactosyltransferase (GT) has been directly localized on bovine cells in tissue culture by immunohistochemical techniques. A conventional rabbit heteroantiserum was prepared against an affinity-purified soluble form of GT from bovine milk, and a monospecific IgG fraction was isolated by affinity chromatography on a GT adsorbent. As demonstrated by indirect immunofluorescence, antigen to this antibody is present on the surface of all three bovine cell lines tested. It was uniformly distributed over the exposed membrane surface of fixed cells. Exposure of living cells to the anti-GT antibody resulted in its time-dependent aggregation in the plane of the membrane. Antigen (GT) was released from the membrane surface by trypsin digestion, and its reappearance required protein synthesis, since cycloheximide effectively prevented repopulation of the cell surface.

Actins

Reduction of filamin in late passage human diploid fibroblasts (IMR-90).

Progressive subcultivation of IMR-90 cells results in non-proliferative, heterogeneous cultures which may reflect aging of the diploid line (Hayflick, Exp. Cell Res., 37 (1965) 614). We have observed that late passage cells exhibit different rates of spreading and morphogenesis when compared to early passage groups, phenomena which we attribute to altered reassembly of the cytoskeleton in senescent cells (Kelley et al. Mech. Ageing Dev., 13 (1980) 127). To determine whether potential differences in cytoskeletal proteins develop with progressive subcultivation, early and late passage cultures were extracted with 0.5% Triton X-100 for 1 min followed by 1.0% sodium dodecyl sulfate (SDS) prior to separation and characterization of extracted proteins by electrophoresis on 7.5-15% gradient SDS gels. Extractions were made of both culture groups 3, 6 and 24 h after reseeding. Cytoskeletal ultrastructure at each stage of spreading was examined either in replicas of extracted cells or directly by scanning electron microscopy. Although considerable variation in cytoskeletal organization was observed, qualitative differences in gel banding patterns of actin, myosin and tubulin were not apparent at selected time points. However, late passage cells at 6 h and 24 h did not exhibit filamin associated with the Triton insoluble fraction as did early passage cells. Since it has been demonstrated that filamin is capable of cross-linking actin microfilaments into bundles or sheets, we suggest that it is a principal element for the variant cell shape and cytoskeletal morphology observed during altered spreading behavior of late passage human diploid fibroblasts.

Cell Survival

Relationship between in vivo mitomycin C exposure, sister chromatid exchange induction and in vitro mitogenic proliferation. I. Development of murine splenic cell system.

In vivo administration of mitomycin C (MMC) to C57BL/6J mice induced a rapid, initial suppression (24 hours post injection) of in vitro mitogenesis. This was followed by of the mitogen concentration-response curves were found of the three mitogens, phytohemagglutinin and concanavalin A, but not for lipopolysaccharide. By 144 hours post injection, the dose-response curves and magnitude of the responses had returned to approximately control (untreated) levels. This approach provides a model system for the functional assessment of in vivo cellular damage by MMC.

Animals

Relationship between in vivo mitomycin C exposure, sister chromatid exchange induction and in vitro mitogenic proliferation. II. Effect of aging on spleen cell mitogenesis and sister chromatid exchange induction.

In vivo administration of mitomycin C (MMC) produces an increase in both the frequencies of sister chromatid exchange (SCE) as well as inhibition of in vitro mitogenic responses. At low concentrations of MMC (2 mg/kg) spleen cell suspensions from both young and old mice showed similar patterns of mitogen inhibition and increased SCE frequencies. At high MMC concentrations (5 mg/kg) significant differences between young and old responses were observed. Spleen cells from young animals displayed mitogen-inhibition curves which plateaued with increasing doses of MMC, while the cells from old animals displayed a continuing increase in mitogenic inhibition. MMC-induced SCE frequencies revealed a complementary pattern: increasing SCE frequencies as a function of MMC concentration in young spleen cells while SCE levels plateaued in old spleen cell populations. The results of these studies suggest (1) that an inverse relationship exists between sister chromatid exchange induction and mitogenic response, (2) that cells from older animals may have an increased sensitivity to high levels of DNA damage (5 mg/kg MMC), and (3) that this sensitivity may be expressed functionally by increased inhibition of in vitro mitogenic responses.

Aging

The effect of various dietary restricted regimes on some immunological parameters of mice.

To test the effect of dietary protein restriction on mitogenesis and the mixed leukocyte reaction in the mouse immune system two protocols were followed: 1) a 4% protein diet ad libitum and 2) a standard diet of 24% protein fed only on alternate days, Monday, Wednesday, and Friday (intermittent feeding). The effect of dietary restriction was tested on weanling animals, placed on the dietary regimes for 1 and 6 month periods and adult animals (17 months of age) for 6 months of restriction. The results indicate that dietary restriction has a profoundly suppressive effect on mitogenesis and MLC1 during the first months of growth (i.e. weanling animals tested after 1 month of restriction). After 6 months of continued restriction suppression was no longer observed in the weanling animals. The 17 month old animals placed on restricted dietary regimes for 6 months showed results similar to the control group. The intermittently fed animals present a more complex picture. Initial suppression of the responses, observed in weanling animals after 1 month of restriction gave way to responses which are significantly higher than control levels after 6 months of dietary restriction. The results are discussed in terms of a general model of immunological stress.

Age Factors