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Immunogenicity and antigenicity of soluble cross-linked enzyme/albumin polymers: Advantages for enzyme therapy.

Soluble cross-linked polymers of hog-liver uricase and an excess of either rabbit or dog albumin were injected repeatedly into rabbits in order to determine their antigenicity and immunogenicity. Whereas the enzyme in its free form induces antibody production, homologous albumin polymerised with the enzyme renders the complex non-immunogenic and non-antigenic. Dog-albumin/uricase polymers injected into rabbits induce antibody formation against the dog albumin but not against the uricase. The results suggest an important advantage of these soluble enzyme polymers in enzyme-replacement therapy.

Albumins

Sensory irritation and incapacitation evoked by thermal decomposition products of polymers and comparisons with known sensory irritants.

A decrease in respiratory rate in mice during exposure to irritating airborne chemicals has been utilized as a response parameter to characterize the degree of upper respiratory tract irritation (sensory irritation) to the thermal decomposition products of various polymers. These included polystyrene, polyvinyl chloride, flexible polyurethane foam, polytetrafluorethylene, a fiber glass reinforced polyester resin, and Douglas Fir. Each of the materials was thermally decomposed in a low-mass vertical furnace in an air atmosphere at a programmed heating rate of 20 degrees C/min. Mice, in groups of four, were exposed to graded concentrations of the thermal decomposition products of each of the above materials. Dose-response curves were obtained by utilizing the maximum percent decrease in respiratory rate as the response parameter during each exposure. Comparison of these dose-response curves with other sensory irritants such as chlorine, ammonia, hydrogen chloride, sulfur dioxide, and toluene diisocyanate gave an indication of the sensory irrtation potential of the thermal decomposition products of these various polymers versus that of well-known single airborne chemical irritants. Total stress and incapacitation of the organism during exposure to sensory irritants such as from the thermal decomposition products of synthetic polymers is discussed.

Air Pollutants

A new polymer-iodine combination (iodoplex) for treatment of donor sites: a preliminary controlled study.

A recently introduced polymer preparation (Iodoplex) is described. It is based on a new type of hydrophilic polymeric carrier into which iodine can be incorporated to the extent of 50% or more. Its main feature is that the polymer and the petroleum jelly base are water-insoluble. The iodine is slowly released from the polymer by body fluids, which are rich in protein and dead cells. Iodine has been found to be useful in the treatment of donor sites; no pain or discomfort attends its use, and the dressing peels off easily from the healed epithelium. A controlled study comparing iodoplex-impregnated and scarlet red-impregnated gauze on donor sites was carried out, and the use of Iodoplex was found to have some real advantages over scarlet red.

Adolescent

Characterization of cell wall polymers secreted into the growth medium of lysis-defective pneumococci during treatment with penicillin and other inhibitors of cell wall synthesis.

Autolysin-defective pneumococci secrete large quantities of choline-containing cell wall polymers into the growth medium during treatment with inhibitors of peptidoglycan synthesis. The secreted polymers were separated into three fractions by a combination of gel filtration on agarose and sodium dodecyl sulfate-gel electrophoresis. Fraction I had a high apparent molecular size and contained the Forssman antigen in complex with material exhibiting properties of cell wall teichoic acid. Choline-containing polymers of as yet uncharacterized structure were present in both fractions IIA and IIB, and fraction IIA also contained peptidoglycan components.

Antibodies, Bacterial

Immunological properties of ampicillin polymers.

The immunologic effects of ampicillin polymers were studied in mice and rabbits. Polymerized ampicillin--in contrast to monomers--had a suppressive effect on the antibody response to penicilloylated proteins. Unfractionated ampicillin polymer, and high molecular weight fractions were found to have an immunogenic effect in mice, when tested by a haemolytic plaque assay. The immunogenic effect of variously sized polymers did not correspond to their antigenic activity as reflected by passive cutaneous anaphylaxis experiments.

Ampicillin

Studies on glomerular permeability using inert polymers.

Dextrans and other macromolecular inert polymers such as polyvinyl pyrrolidone fulfil all the criteria of an ideal test material for measuring glomerular permeability. Following a single intravenous injection of radioactively labelled polydisperse material serial plasma and urine samples can be analysed by gel filtration chromatography and the polymer fractionated into its constituent molecular sizes. Polymer of molecular size 24 A is capable of passing through the glomerulus as readily as water while material larger than 60 A is affectively excluded from the glomerular filtrate and one can determine the clearance of 20--30 intermediate molecular sized fractions. The accumulated data can be analysed by a number of different theoretical mathematical models; furthermore the technique can be employed in the study of proteinuria induced by vasoactive amines such as renin or angiotensin.

Animals

Chromatin structures from integrated AI and polymer physics model.

The physical organization of the genome in three-dimensional space regulates many biological processes, including gene expression and cell differentiation. Three-dimensional characterization of genome structure is critical to understanding these biological processes. Direct experimental measurements of genome structure are challenging; computational models of chromatin structure are therefore necessary. We develop an approach that combines a particle-based chromatin polymer model, molecular simulation, and machine learning to efficiently and accurately estimate chromatin structure from indirect measures of genome structure. More specifically, we introduce a new approach where the interaction parameters of the polymer model are extracted from experimental Hi-C data using a graph neural network (GNN). We train the GNN on simulated data from the underlying polymer model, avoiding the need for large quantities of experimental data. The resulting approach accurately estimates chromatin structures across all chromosomes and across several experimental cell lines despite being trained almost exclusively on simulated data. The proposed approach can be viewed as a general framework for combining physical modeling with machine learning, and it could be extended to integrate additional biological data modalities. Ultimately, we achieve accurate and high-throughput estimations of chromatin structure from Hi-C data, which will be necessary as experimental methodologies, such as single-cell Hi-C, improve.

Chromatin

[Immobilization of commercial glucoamylase on the polymer carrier].

Commercial glucoamylase was immobilized on the polymer carrier produced by the binding of 4--8 mol.% 4,4'-diamine diphenyl oxide of the maleic anhydride copolymer with N-vinyl pyrrolidone. Two types of immobilized preparations were obtained: with covalent absorption and covalent attachment of the enzyme to the polymer. Glucoamylase activity of the first preparation was 20,000--60,000 and that of the second was 40--120 units/g polymer. Covalent-attached preparations showed a more prolonged action than covalent-absorbed ones.

Enzymes, Immobilized

[Polymer linked N-(hexyl)-5-azido-2-nitro-benzoic acid amide; a photoreactive resin for the immobilization of ligands (author's transl)].

The preparation of a new photochemically-activatable polymer was accomplished by condensation of aminohexyl-6-yl-agarose with the N-hydroxysuccinimide ester of 5-azido-2-nitro-benzoic acid. The latter compound was obtained by diazotization of 5-amino-2-nitro-benzoic acid, exchange of the diazonium group through azide and condensation with N-hydroxysuccinimide. As shown for the photolysis on the monomer level, irradiation of the polymer led to the intermediate formation of a highly reactive nitrene, which is able to immobilize ligands e. g. L-phenylalanine to the polymer.

Azides

[Antiheparin activity of polymers based on the alkaloid, lupinine].

Antiheparin activity and acute toxicity of a monomer and polymer quaternary ammonium salts obtained on the basis of the alkaloid lupinine were investigated. The monomer was shown to have no antiheparin activity even when administered in high doses. Lupinine polymetakryloyl iodoethylate is a selective heparin antagonist. This activity of polymers is relative to the extent of polymerization. A compound with a molecular weight of 20 000 turned out the most effective in the tested series of ready-made polymers. Acute toxicity of polycations is considerably less than that elicited by the monomer. The effect of heparin complete neutralization is accompanied by transitory thrombocytopenia.

Alkaloids

Gas-solid chromatographic procedures for determining acrylonitrile monomer in acrylonitrile-containing polymers and food simulating solvents.

A gas chromatographic method is described for acrylonitrile monometer (AN), using a nitrogen/phosphorus detector. Procedure for the analysis of AN in 5 food simulants (water, 3% acetic acid, heptane, 50% ethanol, and 8% ethanol) as well as in the polymer matrix are included. The quantitation limit for direct injection of AN/food simulant solution is 0.04 ng AN/microliter. AN-based polymers are dissolved in N,N-dimethylacetamide and injected directly. Residual AN in the polymer can be quantitated at the 0.5 ng/microliter level. Results of migration studies are also presented.

Acrylonitrile

Carchesium stalk fibrillar matrix as a highly filled polymer network.

Glycerolated stalks of the sessile peritrich ciliate Carchesium sp. were treated with 10(-6) g ion/1 Ca2+ to disrupt the contractile spasmoneme. The resulting preparation consisted primarily of the fibrillar matrix, a dense extra-cellular meshwork of microfibrils. Some mechanical properties of this preparation have been investigated. The matrix tensile force-extension ratio relation for an initial stretch was characteristic of a soft, swollen polymer network, elastic modulus in young stalks 1.7 X 10(5) Nm-2, in mature stalks 4.0 X 10(5) Nm-2. The higher elastic modulus in mature stalks implies an increase in the interchain cross-link frequency. In young stalks, elastic modulus was found to be independent of the ambient Ca2+ concentration in the threshold range for spasmonemal contraction. Stalk relaxation was pronouncedly irreversible, showing stress softening and permanent hysteresis on repeated loading. Hysteresis was time independent and stiffness was not recovered after four hours at zero strain. Hysteresis was enhanced by repeated loading to the same tensile force. Stress-strain hysteresis at a low extension is characteristic of highly filled polymer networks in which polymer chains are interconnected via rigid filler particles as well as directly cross-linked.

Biopolymers

Experimental polymer storage disease in rabbits. An approach to the histogenesis of sphingolipidoses.

Water-soluble polymer compound, polyvinyl alcohol(PVA), and water-insoluble polymer compounds, polyvinyl acetate (PVAc) and polystylol (PS), were administered in 297 rabbits. When high polymerized PVA, PVAc or PS were continuously injected intravenously for a long period of time, lesions resembled to those of Gaucher and Niemann-Pick diseases were developed. From these experimental results, pathological development of various sphingolipidoses found in the human body was discussed and pathological findings were analysed polymer-chemically from the chemical properties of the substances stored.

Animals

Morphology and anionic polymer content in the cell wall of a glycerol-requiring mutant of Bacillus subtilis.

A glycerol-requiring mutant of Bacillus subtilis formed irregular spheres and showed disturbed septum formation, when subjected to growth limitation by the supply of glycerol. Under phosphate limitation the cells were also round and developed asymmetric septa. In magnesium-limited cultures the cells contained a thickened wall, as compared with that of the parent strain grown under the same conditions. Chemical analysis revealed the presence of teichoic acid as the major anionic polymer in the wall of the glycerol-, as well as the magnesium-limited cells of the glycerol-requiring B. subtilis mutant. Under phosphate limitation teichuronic acid was the only anionic polymer present in the wall. Thus, in this respect, there were no apparent differences between mutant organisms and the parent strain when grown under magnesium and phosphate limitation, respectively and the observed morphological deviations could not be correlated with an altered anionic polymer content of the wall.

Acetylgalactosamine

Rate of polymer formation and entropy production during competitive replication.

The rate of increase in the mean polymer formation rate constant during competitive replication by Qbeta RNA variants (Kramer et al., 1974) has been shown to agree statistically with the variance in their formation rate constants. This result demonstrates that Fisher's fundamental theorem of natural selection (Fisher, 1930) can define time variations in the mean rate of synthesis for a heterogeneous population of replicating polymers. It was also revealed that RNA replication, far from equilibrium, accompanied a progressive decrease in the order of the entropy production derivative, with respect to time, that reached a maximum (with the next higher order being zero). Maximization of entropy at equilibrium, in compliance with the second law of thermodynamics, therefore appears as a natural extension of the earlier non-equilibrium pattern of entropy production within the system. The order of the zero-valued entropy production derivative was shown to be determined by the chemical affinity, and its rate of decrease was specified by the mean polymer formation rate constant.

Biological Evolution

Polymer concentration dependence of the helix to random coil transition of a charged polypeptide in aqueous salt solution.

The helix to coil transition of poly(L-glutamic acid) was investigated in 0.05 and 0.005 M aqueous potassium chloride solutions by use of potentiometric titration and circular dichroism measurement. Polymer concentration dependence of the transition was observed in the range from 0.006 to 0.04 monomol/e in 0.005 M KG1 solution. The polymer concentration dependence can be interpreted by current theories of the transition of charged polypeptides and of titration curves of linear weak polyelectrolytes taking the effect of polymer concentration into consideration.

Glutamates

Mercurated polynucleotides: new probes for hybridization and selective polymer fractionation.

Polynucleotides containing covalently bound mercury atoms have been prepared by chemical or enzymatic syntheses and some of their physical and biochemical properties studied. The mercury substituents do not appear to alter significantly normal polynucleotide structure. Mercurated polymers function efficiently as templates for nucleic acid polymerases, they are fully susceptible to degradation by standard nucleases, and their denaturation and reannealing properties resemble those of the corresponding nonmercurated polymers. While the Tm's of DNA duplexes are lowered by extensive mercuration, the Tm's of DNA-RNA hybrids and RNA duplexes are either unaffected or elevated. Mercuration, as would be expected, greatly increases the buoyant density of both DNA and RNA. The introduction of as few as one mercury atom per 200 bases permits the selective and quantitative retention of the mercurated polymer probe (and associated nucleotide sequences) on columns of sulfhydryl-agarose. The use of mercurated nucleotides (as polymerase substrates) and oligonucleotides (as primers) in conjunction with sulfhydryl-agarose chromatography provides a simple and efficient method for the isolation of selected polynucleotide sequences, such as specific in vitro transcription products or terminal fragments of duplex DNA. Products absorbed to the affinity resin are readily recovered for further analysis by eluting with buffers containing mercaptoethanol. Although the mercury-carbon bond is somewhat thermolabile, mercurated polynucleotides are suitable as probes in low temperature hybridization studies.

Carbon Radioisotopes

Intrachain reactions of a pair of reactive groups attached to polymer ends. 3. Intrachain charge-transfer complex on polysarcosine chains having terminal electron donor and terminal electron acceptor groups in chloroform solution.

Polysarcosine having a terminal p-dimethylaminoanilide group and a terminal 3,5-dinitrobenzoyl group was synthesized. The number-average degree of polymerization n was varied from 6 to 25. In chloroform solution this polymer showed a distinct absorption band around 455 nm, which was attributed mostly to intramolecular charge-transfer interactions. The extinction coefficient of the charge-transfer complex was determined for low molecular weight model compounds. Using the same extinction coefficient, the fraction of polymers forming intrachain charge-transfer complex was evaluated at infinite dilution. The fraction was about 0.15 for n = 6 and decreased asymptotically with increasing n finally to 0.03 for n = 25. These values are almost 20-100 times as large as those estimated from the Monte Carlo calculation and on the basis of the intramolecularly catalyzed hydrolysis of polysarcosine chain. This indicates that the cyclized conformations of polysarcosine chain are greatly stabilized by the formation of intrachain charge-transfer complex. The fraction of the cyclized polymer was decreased with increasing temperature for short chains. The thermodynamic parameters characterizing the conformational change required for cyclization in chloroform were obtained and compared with those for the same reaction in ethanol solution, as well as those for the intramolecularly catalyzed hydrolysis on polysarcosine chain in aqueous solution.

Chemical Phenomena