PubMed HealthSearch

SEARCH · PubMed Health

Results for “Fructans”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

The inhibitory effects of high molecular levan on transport across the vascular wall stimulated by histamine.

Administration of levan to mice and rats inhibited the passage of intravenously injected trypan blue into the area of skin injected with histamine. In the mouse, the optimal dose of levan was about 5 mg/25 g body weight; higher doses, on the other hand, enhanced diffusion. In the rat, the inhibitory effect was directly related to the dose of levan, the optimal dose being five times higher than for mice. Treatment of rats with levan caused a marked reduction in the uptake and transport of colloidal carbon. In normal and histamine- or turpentine-injected cremaster muscles, treatment with levan prevented carbon from being adsorbed and endocytosed by the endothelial cells. Levan itself was frequently attached to the lumenal surface of endothelial cells, or less frequently was enclosed within pinocytic vesicles. Occasionally, transport across the interendothelial junction was also seen, but the impression gained was that the frequency and extent of patent junctions were reduced in animals receiving phlogistic stimuli and treated with levan. Carbon particles were generally aggregated in the central zone of vessels and were seldom seen near the endothelial cells, within endothelial cells or within any open junctions, presumably because of the coating effect of levan. With partly depolymerised levan, carbon particles were found in endothelial cells and intercellular spaces, but at lower concentrations than in non-levanised control animals. It is suggested that levan acts by altering the rheologic patterns in the microcirculation, by modifying the surface of endothelial cells and by influencing their behaviour, and, finally, by changing the constitution of the ground substance and basement lamina.

Animals

Histological study of homografts showing delayed rejection following levan administration.

The delaying effect of continued administration of levan on mouse skin homograft rejection was found to be due mainly to inhibition of thrombotic occlusion of the nutrient blood vessels. Levan administration did not appear to affect epidermal regeneration, but it seemed to inhibit degranulation of mast cells, resorption of plasma extravasated during the operation and growth of granulation tissue. The delayed rejection caused by levan treatment was apparently caused by infiltration of the graft by activated mononuclear cells from the blood stream. The phenomenon is believed to represent a late stage of the graft rejection process, its apperance depending on the survival of the graft beyond the stage of vascular occlusion.

Animals

A novel biological function of macrophages associated with antigen discrimination properties.

The ability of fresh or cultured subpopulation of adherent peritoneal exudate cells to perform discrete biological functions commonly associated with macrophages, namely antibody dependent cytotoxicity (ADCC) and phagocytosis, has been compared with the ability of the same cells to present TNP coupled to carbohydrate or protein carriers for a subsequent antibody response, or semi-allogeneic cells for T cell cytotoxic responses, in tissue culture. Data are presented to show that ADCC reactivity rapidly disappears on cultures of peritoneal cells, though phagocytic activity is more persistent throughout the 14 days of culture. When ADCC activity reappeared it was no longer restricted to those fractions active initially. Antigen handling of different TNP-protein conjugates was pronounced throughout the culture period and was not easily explained in terms of the ADCC/phagocytic activity of the macrophage subpopulation concerned. In contrast, however, antigen handling of carbohydrate antigens for presentation to T or B lymphocytes by the different macrophage populations varied during the culture period in fashions which were in some degree correlated with the phagocytic activity of the various cells but were also a function of the antigen under consideration. These data are interpreted in terms of a novel role for the macrophage in discrimination of carbohydrate antigens for presentation to lymphocytes.

Animals

Renal clearances of 14C-inulin and polyfructosan in the rat. Effect of increased ureteral pressure.

Polyfructosan has been used as a substitute for inulin in GFR determinations. However, the validity of this substitution in conditions where renal tubular permeability to other substances, such as mannitol, sucrose and other substances, such as mannitol, sucrose and iothalamate, is increased has not been tested. Experiments were performed on 8 rats to compare the clearances of polyfructosan (CPF) and 14C-inulin (CIN) during hydropenia, 3% BW saline expansion, elevation of one ureteral catheter by 30 cm, and following return of increased ureteral pressure to the control level. No significant difference between CPF and CIN could be detected except in the kidney subjected to increased ureteral pressure. However, the magnitude of this difference--which may relate to the different molecular weights of the two compounds--was so small that we conclude that the use of CPF, as an index of GFR, is no less reliable than CIN under the conditions tested.

Animals

The cell wall-associated levansucrase of Actinomyces viscosus.

Actinomyces viscosus produces both a soluble extracellular levansucrase and a cell wall-associated levansucrase. The enzyme from cell walls was solubilized by lysozyme digestion. The soluble extracellular and cell wall-associated forms of the enzyme were compared and appeared to be identical, based on molecular weight estimations, kinetic parameters, and reactions with antisera. The product of both forms of the enzyme was a high molecular weight, branched levan, as shown by its reactivity with myeloma proteins specific for beta(2 leads to 1) and for beta(2 leads to 6) linkages in fructosans. Although levansucrase remained tightly bound to the levan which it synthesized, the enzyme did not bind to exogeneously added levan. Regarding the potential pathogenicity of the levan product, pure levan, produced using purified levansucrase, did weakly activate complement by the alternative pathway. However, the pure levan did not directly cause bone resorption in an in vitro bone resorption assay.

Actinomyces

Dependence of the cardiac uptake of digitalis glycosides on the extracellular calcium concentration in guinea pig isolated hearts.

The purpose of the present study was to investigate, at the myocardial level, the divergent influences of Ca2+ on the action of various cardiotonic steroids. Therefore, the cardiac uptake of 3-H-digitoxin and 3-H-digitoxin was studied in experiments on guinea pig isolated hearts. The following results were obtained: with digitoxin the increase of the extracellular calcium concentration from 0.45 upto 7.2 mM resulted in a concomitant decrease of the myocardial glycoside uptake from about 1.8 nmoles/g wet weight down to about 1.2 nmoles/g wet weight. Similar results were obtained when digoxin uptake was studied under the same conditions: with 0.45 mM Ca2+ about 0.6 nmoles/g wet weight were bound, increasing the calcium concentration upto 7.2 mM lead to a concomitant decrease of the cardiac digoxin uptake down to about 0.45 nmoles/g wet weight. Despite the different physicochemical behaviour of these two drugs and the different amounts of drug present in the hearts the influence of Ca2+ was almost identical if calculated on a relative basis. So far, no experimental based explanation can be given for the above discrepancies. Other possible interpretations are discussed.

Animals

The role of macrophages and polymorphs in the levan-induced inhibition of Lewis lung carcinoma in C57BL mice.

High-mol.-wt levan injected locally inhibits the growth of Lewis lung carcinoma in C57BL mice. The inhibition is dependent on the number of tumour cells injected and on the dose of levan. The inhibition decreases tumour incidence and size as well as prolonging survival. The polysaccharide is most effective when injected daily beginning on the day of tumour-cell inoculation. Treatment begun on later dates is less effective. Treatment begun one day before tumour-cell inoculation enhances tumour growth. Histological studies showed that levan induces an intense polymorphonuclear (PMN) reaction followed by accumulation of vacuolated, levan-laden macrophages. Both PMN and activated macrophages seemed to have an inhibitory effect upon the growth of the tumour. The effector role of PMN was not explained by the histological study. Tumour cells in close contact with levan-laden macrophages appeared mostly necrotic. Administration of levan begun one day before tumour-cell inoculation produced a similar reaction, but the infiltrating cells did not appear to approach and damage the tumour cells.

Animals

Synthesis of levan by levansucrase. Some factors affecting the rate of synthesis and degree of polymerization of levan.

The addition of levan as a so-called "acceptor" accelerated the rate of polymerization of levan catalyzed by levansucrase [EC 2.4.1.10]. However, this effect was seen only under conditions of low ionic strength. Under conditions of high ionic strength, only levan with an average degree of polymerization (DP) of 120 was synthesized with a reasonable yield. Incorporation of [14C]fructose residues into levan of high molecular weight (DP 1,200) added as an "acceptor" at high ionic strength was slight. It is suggested that the DP of levan synthesized is generally regulated by ionic strength, and that enzymic synthesis of levan occurs in the absence of an "acceptor."

Bacillus subtilis

Degradation of levan by Actinomyces viscosus.

Actinomyces viscosus ATCC 15987 was examined for its ability to hydrolyze its own levan. Washed whole cells and an ammonium sulfate fraction from cell-free culture fluids were shown to possess levan hydrolase activity. Analyses of reaction mixtures by gel filtration and thin-layer chromatography demonstrated that the product of levan hydrolysis was free fructose. The cell-associated and extracellular enzyme preparations also hydrolyzed inulin and the levans synthesized by Aerobacter levanicum and Bacillus subtilis. Growth of A. viscosus in media supplemented with 0.1% A. viscosus levan resulted in a 33-fold increase and a 7-fold increase in the specific activities of the respective extracellular and cell-associated enzymes when compared with those from 55 mM glucose cultures. Growth in the presence of 29.2 mM sucrose resulted in a 28-fold increase and a 5-fold increase in the specific activities of the respective enzymes when compared with those from the glucose cultures. The extracellular enzyme exhibited high activity over a wide pH range, with 87 and 89% of its pH 6.0 optimum activity at pH 5.0 and 7.0, respectively. The cell-associated enzyme also exhibited optimum activity at pH 6.0, but this was decreased to 10 and 20% at pH 5.0 and 7.0, respectively. Analysis for the presence of extracellular levan during growth of A. viscosus in sucrose broths demonstrated that peak levan concentrations occurred during the mid-exponential to late-exponential phase of growth followed by a rapid decline in extracellular levan as a result of levan hydrolase activity.

Actinomyces

Specificity of coaggregation reactions between human oral streptococci and strains of Actinomyces viscosus or Actinomyces naeslundii.

Coaggregation reactions between actinomycete and streptococcal cells occurred frequently when human strains of Actinomyces viscosus or A. naeslundii were mixed with human isolates of Streptococcus sanguis or S. mitis, but were infrequent with other oral actinomycetes and streptococci. Two groups of actinomycetes and four groups of streptococci were defined by the patterns of their coaggregation reactions and by the ability of beta-linked galactosides (i.e., lactose) to reverse these reactions. Coaggregations occurred by one of the following three kinds to cell-cell interactions: (i) coaggregation that was blocked by heating the streptococcus but not the actinomycete and was not reversed by lactose; (ii) coaggregation that was blocked by heating the actinomycete but not the streptococcus and was reversed by lactose; and (iii) coaggregation that was blocked only by heating both cell types. The latter reaction was a combination of the first two since lactose reversed coaggregation between heated streptococci and unheated actinomycetes but did not reverse coaggregations between unheated streptococci and heated actinomycetes. Cells that could be heat inactivated also were inactivated by amino group acetylation or protease digestion, whereas cells that were unaffected by heat were not inactivated by these treatments. Coaggregation reactions of each kind were Ca2+ dependent and insensitive to dextranase treatment. These findings are consistent with the hypothesis that human strains of A. viscosus and A. naeslundii coaggregate with strains of S. sanguis and S. mitis by a system of specific cell surface interactions between protein or glycoprotein receptors on one cell type and carbohydrates on the other type.

Acetylation

Export of extracellular levansucrase by Bacillus subtilis: inhibition by cerulenin and quinacrine.

Bacillus subtilis B secretes an inducible, extracellular enzyme, levansucrase. Inhibition studies were undertaken to investigate the possible mechanism of release of this enzyme. The antibiotic cerulenin, at a concentration of 10 micrograms/ml, totally inhibited de novo lipid synthesis in B. subtilis B for at least 1 h, while only slightly reducing protein and RNA synthesis. At this concentration cerulenin, added concomitantly with the inducer sucrose, prevented the release of levansucrase for at least 150 min. This was not due to the prevention of inducer uptake by the cells. The release of the enzyme was also independent of cell division. In B. subtilis 1007 the induction of beta-galactosidase by 5 mM lactose was not prevented by cerulenin. Preliminary evidence indicated the association of a lipid moiety with the enzyme as it passes through the cytoplasmic membrane. Quinacrine (0.2 mM), which inhibits the penicillinase-releasing protease of Bacillus licheniformis, inhibited levansucrase release from B. subtilis B, but had no effect on lipid synthesis.

Antifungal Agents

Periplasmic SacB as a robust counter-selection tool for genome engineering in the polyploid bacterium Zymomonas mobilis.

UNLABELLED: The alpha-proteobacterium Zymomonas mobilis exhibits exceptional ethanologenic physiology, which makes it a traditional alcoholic beverage producer and a promising chassis for biofuel production. Although genetic tools for this organism have expanded in recent years, a fundamental aspect of its chromosome organization remains to be understood. In particular, Z. mobilis has been suggested to exhibit polyploidy, but this feature is not fully confirmed because of discrepancies among studies reporting the copy number of chromosomes. Here, we tagged the chromosome-partitioning protein ParB with a fluorescent marker to visualize its cellular localization and estimate chromosome copy number in individual cells. Imaging showed that Z. mobilis exhibits several distinctive ParB foci throughout the cytoplasm and an accumulated focus at the pole, indicating that a single Z. mobilis cell contains >5 copies of the chromosome at the oriC regions. We then sought to establish an efficient counter-selection system, which is crucial for engineering multiple copies of the chromosome. We assessed the efficacy of levan-sucrase (SacB) toxicity in Z. mobilis. We found that, despite Z. mobilis secreting a native extracellular sucrase SacB, heterologous periplasmically localized Bacillus subtilis SacB rendered Z. mobilis cells sensitive to sucrose. We successfully used this effect for counter-selection when deleting and inserting targeted DNA sequences into the Z. mobilis genome. Together, this work provides important insights and tools for advancing Z. mobilis genetics and its biotechnological applications. IMPORTANCE: Zymomonas mobilis is a promising industrial bacterium with the capacity to convert sugars into ethanol at nearly maximum theoretical yield. With its expanding use in industrial applications, it is crucial to clarify if individual Z. mobilis cells carry multiple copies of the chromosome, as this has important implications for genome engineering. Two previous studies have used quantitative PCR to address this question, but their reported chromosome copy numbers varied widely from 20 to 100. Here, we used a cell biological approach to estimate the copy number and confirmed that a single Z. mobilis cell possesses multiple copies. In addition, we show that a SacB-based counter-selection works in Z. mobilis, enabling efficient and complete mutation of all chromosome copies.

Zymomonas

The use of hapten-polysaccharide conjugates for the induction of B-cell tolerance involving IgE responses. II. Specific tolerance induced by sulphonamide-substituted levan in the mouse.

Normal and sulphonamide-sensitised mice were made tolerant with 4-sulphanilamido-benzoic-diaminopropyl-carboxymethyl-levan (4-SABA-Le). The tolerance was demonstrably specific for the sulphanilamide moiety of the hapten and extended to related compounds sharing this determinant. Mice sensitised with a 4-SABA-chicken gamma-globulin conjugate developed fatal anaphylactic shock after the injection of sulphanilamide or 4-SABA-ovalbumin, whereas allergic mice subsequently tolerised with 4-SABA-Le did not. The tolerance induced was long lasting since mice were still tolerant 7 months after an injection of an optimal dose of tolerogen. Suppressor cells play little or no part in the maintenance of this unresponsive state since even a 10-fold excess of splenic cells from tolerant animals failed to inhibit the responsivenss of 4-SABA-primed cells when they were transferred together into irradiated recipients.

Animals