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Biomedical subjects

M D Prager

Publications and source records attributed to M D Prager.

At least 19 recordsLinked to original sources

Radiochemical studies on contact lens soilation. I. Lens uptake of 14C-lysozyme from simple and complex artificial tear solutions.

A systematic study has been made of the uptake of lysozyme by various contact lens materials. Lens uptake of 14C-methylated lysozyme was assessed using simple to complex artificial tear solutions. The data reflect prominent uptake by Group IV (ionic, high-water-content) hydrogel lenses, consistent with the literature. This includes protein on the lens surface and in the lens matrix, the former being estimated at about 33% of the total deposit for the DuraSoft 3 lenses used. Uptake appears to be contingent upon the nature of the lens material, the composition of the deposit model used, and the duration of lens exposure to the artificial tear solution.

Animals↗

Radiochemical studies on contact lens soilation. II. Lens uptake of cholesteryl oleate and dioleoyl phosphatidylcholine.

Employing an artificial tear preparation composed of six proteins and six lipids as a deposit model, uptake of the lipids 3H-cholesteryl oleate and 14C-dioleoyl phosphatidylcholine was measured on contact lenses representative of the four FDA hydrogel groups and on select RGP lenses. Cholesteryl oleate uptake after 24 h at 37 degrees C generally was less than 1 microgram/lens although occasionally reaching 1-2 micrograms. DuraSoft 3 lenses (Group IV) accumulated the deposits in greater amounts (p = 0.04) with other lens groups not differing significantly from each other. Ionic DuraSoft 2 and 3 lenses bound more phosphatidylcholine (also < 1 microgram) than other lens groups, possibly reflecting an interaction between the positively charged choline residue and the negative surface of the lens. Lysozyme deposition, measured simultaneously with cholesteryl oleate, bound to a far greater extent to Group IV lenses (e.g., DuraSoft 3, mean surface deposit 279 micrograms) than to other lens types (p < 0.01). Multiple application of the artificial tear solution did not produce a statistically significant increase in cholesteryl oleate accumulation.

Cholesterol Esters↗

Anti-platelet action of nitric oxide and selective phosphodiesterase inhibitors.

Nitric oxide gas is a potent inhibitor of platelet aggregation, with an IC50 of 3.6 microM for rabbit platelets. Since the NO effect is mediated via increased cGMP, this in vitro study was undertaken to test the hypothesis that selective phosphodiesterase (PDE) inhibitors might enhance aggregation inhibition at lower NO concentrations. Because the cAMP-selective PDE III and the cGMP-selective PDE V are prominent in platelets, milrinone, a PDE III inhibitor, and zaprinast, a PDE V inhibitor, were tested alone and in the presence of NO for their effect on aggregation. Aggregometry was performed on rabbit platelet-rich plasma following addition of ADP as agonist. Milrinone alone gave an IC50 of 12.4 microM. With each agent set to give suboptimal inhibition of aggregation, the combination of milrinone (3-16 microM) and NO (2-10 microM) produced a greater effect than either agent alone. Zaprinast exhibited no effect on aggregation in concentrations up to 160 microM. However, adding zaprinast to 2 microM NO, which alone reduced aggregation approximately 30%, produced a marked synergism in the inhibitory effect up to and including no observable aggregation. These results indicate that elevation of either cAMP or cGMP is sufficient to inhibit platelet function. The platelet cAMP concentration appears high enough to be inhibitory when degradation is suppressed by milrinone. However, basal cGMP levels must be increased by NO before the zaprinast effect is observed.

Animals↗

Endothelial cells on Dacron vascular prostheses: adherence, growth, and susceptibility to neutrophils.

Human umbilical vein endothelial cells (HUVEC) on knitted and woven Dacron prostheses were compared with HUVEC on smooth surfaces (tissue culture polystyrene, PET film, and Natrix) with regard to adherence, growth, and susceptibility to injury by neutrophils (PMN). These are properties of importance for successful seeding or coating of prostheses. For prosthetic material of given macroscopic dimensions, more endothelial cells (EC) adhered than to smooth surfaces. However, the prostheses had a greater effective surface area as determined by the number of EC at confluency. When this parameter was taken into account, fewer EC were found adherent to prosthetic material per unit effective surface area than for the smooth surface substrates. Growth on prostheses was clearly inferior to that on smooth surfaces, and EC on prostheses were more susceptible to attack by activated PMN than on smooth surfaces. These differences may reflect the topographic differences in cells attached to fibers where they assume more distorted shapes by stretching to span fibers.

Antibodies, Monoclonal↗

Comparison of tissue factor and prostacyclin production by human umbilical vein endothelial cells on Dacron vascular prostheses and Dacron smooth films.

The functional capacity of human umbilical vein endothelial cells (HUVEC) grown on Dacron (polyethylene terephthalate; PET) vascular prosthetic material was compared with the function of cells on smooth surfaced PET, tissue culture polystyrene (TCPS), and Natrix-coated TCPS. Prosthetic materials include two knitted fabrics (Bionit I and II) and two woven preparations (DeBakey Soft Woven and Extra Low Porosity). Two entities produced by HUVEC that influence blood coagulation were assessed: the procoagulant tissue factor (TF) and the anticoagulant prostacyclin (PGI2). Although TF activity was stimulated on all substrates by endotoxin (LPS), there was no difference among prostheses and no difference among smooth surface materials, but TF was reduced in cells on the prosthetic materials relative to those on smooth surface substrates. The reduced TF production by HUVEC on prosthetic material could be reversed by returning them to TCPS. In contrast, PGI2 production on prostheses was comparable to that on smooth surfaces for both stimulated and unstimulated cells. Stimulation with histamine (1 microM) gave a 2.4-fold increase in PGI2 whereas mellitin (10 micrograms/ml) increased production 12.5-fold. The differential response of HUVEC with regard to these two coagulation factors, one of which is secreted and the other membrane bound, may reflect the distorted shape of cells on fibers of the prosthesis.

Biocompatible Materials↗

Dipeptidyl peptidase IV and aminopeptidase in burn wound exudates: implications for wound healing.

Two catalytically active proteases, dipeptidyl peptidase IV (DP IV) and aminopeptidase (AP), not previously reported as present in burn wound exudates, have been identified by substrate specificity and susceptibility to known enzyme inhibitors. The ratio of the two enzymes in exudates is significantly different from the ratio in plasma collected from the same patient during the same time interval, suggesting that measurement of exudate components may be more significant than plasma activities in evaluating local conditions in the wound. A number of biologically significant substances are DP IV substrates, and the list can be considerably extended by the sequential action of AP and DP IV. Some polypeptides are converted to their biologically active form by DP IV action, while others are degraded to inactive forms. Either action generates X-Pro dipeptides, which have a demonstrably beneficial effect on wound healing. Although not resolved by molecular sizing or anion exchange chromatography, DP IV and AP in a burn wound exudate were purified by affinity chromatography.

Adult↗

Human renal carcinoma: asparagine independence with asparaginase susceptibility in culture.

A human renal carcinoma cell line (Caki-1) was examined for asparagine (Asn) dependence and susceptibility to Escherichia coli asparaginase. Because this enzyme hydrolyzes glutamine (Gln) as well as Asn, even though at only 2-3% the rate, Asn- Gln+ and Asn- Gln- media were prepared. Only the former supported Caki growth. The Asn- Gln- medium was then repleted with Asn, Gln, or both. Although Asn repletion failed to promote growth, addition of Gln alone or the combination supported growth as well as complete medium. With [3H]leucine and [3H]mannose incorporation to indicate protein and glycoprotein synthesis, respectively, the Gln repleted medium supported these processes as well as complete medium. Asparaginase added to complete medium was highly toxic to the Caki cells, but this is a reflection of Gln depletion rather than Asn depletion.

Asparaginase↗

Modulation of secreted plasminogen activator activity of human renal carcinoma cells by dimethylsulfoxide, butyrate and retinoate.

Dimethylsulfoxide, butyrate and retinoic acid, agents which induce differentiation of certain malignant cells, were examined for their effect on the activity of plasminogen activator (PA) of serumless conditioned medium (CM) of two human renal carcinoma cell lines. All three agents produced a decrease in PA activity. More than 90% of the PA was secreted in latent form, and this was not altered by the agents. Active PA components of Mr 52,000 and 93,000 were identified in cell secretions by zymography. In the presence of DMSO or butyrate the Mr 52,000 component was markedly reduced. Reversibility of the effect on PA was demonstrated for both DMSO and retinoic acid with activity of CM returning to control level after removal of the agent. That the effect was temporary agrees with most observations of the effects of these and similar agents on cells from solid tumors.

Butyrates↗

Characterization of plasminogen activator from two human renal carcinoma cell lines.

Plasminogen activator (PA) activity was identified in the conditioned medium of two human renal carcinoma cell lines, Cur and Caki-1. PA activity of medium, following chromatography on Con A-Sepharose, was divided into effluent and eluate fractions, the latter obtained after elution with methyl mannoside. The ratio of PA activity in effluent:eluate was 90:10 for Caki-1 and 60:40 for Cur. The PA of both effluent fractions and the Caki-1 eluate fraction was of the urokinase (UK) type. Identification rested on molecular weight determination by zymography (major component with Mr 52,000 and a less prominent component of 93,000), lack of binding to fibrin, inhibition by anti-UK antibodies, and lack of inhibitory effect of anti-tissue type PA (TPA) antibodies or the Erythrina trypsin inhibitor, which inhibits TPA but not UK. PA of the Cur eluate fraction gave a more complex pattern in that it bound significantly to fibrin (like TPA), was completely inhibited by both anti-UK and anti-TPA antibodies, but was unaffected by Erythrina trypsin inhibitor. These results raise the possibility of an unusual PA-like enzyme that immunologically cross reacts with anti-UK and anti-TPA. Most of the PA of both cell lines was secreted in a latent form that could be activated by trypsin treatment. The latency appears to result largely from secretion of urokinase proenzyme, which is consistent with the Mr 52,000 of the major PA species and the insensitivity to diisopropyl fluorophosphate inhibition prior to trypsin activation. However, in addition, a UK binding component was found in the conditioned medium, which produced an Mr 93,000 component by reaction with UK.

Aprotinin↗

Effect of dimethyldioctadecylammonium bromide induced macrophages on malignant cell proliferation.

Murine peritoneal macrophages elicited by dimethyldioctadecylammonium bromide (DDA), which is a potent immunologic adjuvant, were examined for cytotoxic and growth inhibiting activity for malignant cells. DDA macrophages had no cytolytic activity for murine B16BL-6 melanoma or human SMS-SB pre-B leukemia cells even in the presence of up to 1 microgram bacterial endotoxin (lipopolysaccharide, LPS)/ml. However, they exhibited a variable inhibitory effect on the growth of several lines of leukemia cells. The number of SMS-SB and human NALL cells remained essentially static in the presence of DDA macrophages while they increased significantly when cultured with resident macrophages. In contrast, L1210 cells increased 5-8-fold in the presence of macrophages elicited either by DDA or the inflammatory agent proteose peptone (PP). Although DDA macrophages retarded L1210 growth relative to PP macrophages, both populations responded to LPS in a comparable dose dependent manner to become essentially cytostatic at 1 microgram LPS/ml.

Adjuvants, Immunologic↗

Studies with a human plasma-derived immunosuppressive, anti-lymphoma factor.

A low-molecular-weight (1,400) factor isolated from a human plasma alpha-globulin concentrate by acid-salt dissociation and ultrafiltration inhibits proliferation of mitogen-stimulated T cells and L1210 leukemia cells. The factor (UM05R) inhibits DNA, RNA, and protein synthesis in sensitive cells, acts in G1 of the cell cycle, and appears to suppress mitogen-responsive T cells without an accessory cell requirement. UM05R activity is enhanced by known cAMP-elevating agents and by sulfhydryl compounds. The results of the present study are consistent with the hypothesis that the plasma-derived agent inhibits lympho-proliferation as a result of elevation of intracellular cAMP.

Animals↗

Effect of dimethylsulfoxide and butyrate on 5'-nucleotidase of human renal carcinoma cells.

The effect of dimethylsulfoxide (DMSO) and butyrate, agents which induce differentiation of certain cancer cells, on membrane associated 5'-nucleotidase (5'-NT) of 2 human renal carcinoma cell lines (Cur and Caki) was investigated. Under a variety of conditions of agent addition, 5'-NT specific activity increased in Cur and decreased in Caki cells. This opposite response pattern was observed for assays performed on lysates at pH 9.0 and 7.4 and assays with intact cell monolayers, even under conditions of identical cellular growth inhibition. It is concluded that the cell lines responded in a fundamentally different way to the chemical agents. An increase in 5'-NT has correlated with cell maturation for a number of processes. The DMSO induced increase in Cur 5'-NT was dependent on protein synthesis.

5'-Nucleotidase↗

Inhibition of lymphoproliferation by dipyridamole.

Dipyridamole (DP, Persantin) was examined for its effects on the proliferation of mitogen-stimulated murine splenocytes and L1210 leukemia cells. In keeping with its reported activity as an inhibitor of nucleoside transport, DP inhibited incorporation by lymphoid cells of labeled thymidine and uridine ino macromolecules. That this inhibition resulted from activities in addition to suppression of nucleoside transport was verified by measured decreases of cellular DNA and viable cell numbers. In addition, protein synthesis was also decreased as indicated by labeled valine incorporation and total protein content of the cells. The rapid accumulation of cAMP in phytohemagglutinin-stimulated splenocytes in the presence of DP may provide an explanation for the anti-proliferative effect of DP on lymphoid cells.

Animals↗

Interaction of antigens with dimethyldioctadecylammonium bromide, a chemically defined biological response modifier.

Dimethyldioctadecylammonium bromide (DDA) stimulates immune responses, primes (or activates) macrophages, and binds to antigens. Because relatively little is known about the binding of adjuvants to antigens, the nature of the interaction of DDA with soluble protein and cellular antigens was investigated. Dose-dependent, stable complexes are formed between cells and the lipoidal cation of DDA. Since the interaction is independent of negatively charged sialic acid residues of the cell membrane and little DDA binds to intracellular structures, it is suggested that binding occurs primarily at the cell membrane, probably through hydrophobic interaction with lipids. The idea of membrane perturbation is supported by the leak of macromolecules (lactic dehydrogenase) from treated cells. Reaction of varying amounts of DDA with a constant amount of ovalbumin was also dose dependent. Because of a minimal effect of ionic strength on the reaction, it is concluded that ionic interaction may make a minor contribution to product formation. Complexes of DDA and antigen are articularly effective in eliciting a delayed hypersensitivity reaction, which has been postulated to be desirable for an antitumor effect.

Adjuvants, Immunologic↗

The effect of butyrate on sulfated glycoprotein biosynthesis by human kidney tumor cells.

Human kidney tumor cells in culture incorporate [3H]glucosamine and 35SO4 into several classes of glycoconjugate products. After a 24-h labeling period, the 3H/35S-glycosaminoglycans and 3H-glycoproteins synthesized were found associated with both the cell layer and the culture medium. These tumor cells also synthesized a class of 35S-glycoproteins which contained alkali-stable 35S-oligosaccharide chains. These 35S-glycoproteins did not accumulate with the cell layers but were preferentially found in the culture medium (82-96%). After treatment with 2.5 mM butyrate for 24 h, the tumor cells assumed a more flattened and spread morphology with more clearly defined cell borders. These butyrate-treated cell cultures showed less than a 2-fold increase in the cell-associated form of both 3H/35S-glycosaminoglycans and 3H-glycoproteins, compared to cells cultured in the absence of butyrate. In contrast, butyrate-treated cell cultures had a 3-fold increase in the total incorporation of 35SO4 into glycoproteins and a dramatic 10-30-fold increase in the cell-associated form of these 35S-glycoprotein products as compared to untreated cell cultures.

Butyrates↗

Specific immunoprophylaxis in experimental tumour-host systems.

A variety of animal species have been rendered resistant to syngeneic tumours of many histologic types of immunoprophylaxis. Among the types of preparation of tumour-associated antigens that have merit as vaccines are tumour cells treated with radiation, mitomycin C, certain viruses, neuraminidase, sulfhydryl blocking agents and lipoidal reagents. Alternatively, tumour-associated antigens of the cell membrane may be solubilized and used for vaccination. Recent studies with dimethyldioctadecylammonium bromide (DDA) indicate that it both modifies tumour cells and serves as an immunologic adjuvant in that it enhances protective responses to iodoacetamide-treated lymphoma cells and acts as a potent macrophage activator. By judicious application of DDA either delayed hypersensitivity or antibody response may be selectively enhanced. Several advantages of DDA over other adjuvants are its water solubility, the fact that it does not produce deleterious lesions at the site of injection and the fact that it eliminates the risk of systemic infection that exists with the use of live bacteria.

Adjuvants, Immunologic↗

Identification of autoanti-Thi-1 antibody in the sera of BALB/c mice immune to P1798 lymphoma.

The specificity was established for the anti-thymocyte autoantibody which appeared in BALB/c mice (BAA) during immunization to the P 1798 lymphoma. The results indicate that BAA is specific for the Thy-1 alloantigen of murine T cells. By immunoprecipitation of 125I-labeled A/J thymocyte surface antigens from freeze-thaw lysates and electrophoretic resolution of the immunoprecipitates on sodium dodecyl sulfate polyacrylamide gels, the BAA and congenic anti-Thy-1.1 or 1.2 were shown to be specific for determinants on the same antigens. Specificity of BAA for Thy-1.2 was shown also quantitative absorption studies. Coating P 1798 lymphoma cells with either BAA or anti-Thy-1.2 reduced the absorptive capacity of these cells for the same or the reciprocal antiserum. Coating P 1798 with an antiserum to P 1798 which was indifferent to the Thy-1.2 alloantigen did not diminish the absorptive capacity of these cells for either BAA or anti-Thy-1.2. These studies have provided firm evidence that BAA is specific for determinants on the Thy-1 alloantigen.

Absorption↗