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Biomedical subjects

A Hensel

Publications and source records attributed to A Hensel.

At least 55 records · Page 3Linked to original sources

Polysaccharides from fresh Viscum album L. berry extract and their interaction with Viscum album agglutinin I.

A special microfiltrated colloidal preparation from fresh Viscum album L. berries was investigated concerning the occurrence and structural features of polymeric carbohydrates. A crude polysaccharide fraction was isolated from lectin-, tannin- and protein-depleted microfiltrates. Further fractionation by exchange chromatography revealed a neutral fraction (average molecular weight 30 kDa) and three acidic fractions (average molecular weights 1300 kDa). Structural analysis of the respective polysaccharide fractions by quantitative and qualitative determination of the sugar composition and linkage analysis indicated that all acidic fractions contained an acidic arabinogalactan with a rhamnose-galactoronic acid backbone and highly branched arabinose-galactose side chains attached by the rhamnose residues to the backbone. The neutral fraction consisted of a neutral arabinogalactan beside minor amounts (about 10%) of a low substituted xyloglucan. Further studies on interaction between the 1340 kDa acidic rhamno-arabinogalactans II and III and mistletoe lectin Viscum album agglutinin I (VAA I) revealed binding capacities between these compounds, while the neutral polymers interacted significantly less with VAA I. Only partial binding of VAA I was observed by incubation of the lectin with polysaccharide II. Similar interactions of polysaccharide fraction III with VAA I was measured in a BIACRORE biosensore system. Using the hemagglutination test, increased agglutination of erythrocytes was observed when mistletoes lectin I and the respective polysaccharide fractions were present together in the assay. All these data indicate clearly strong interaction between VAA I and Viscum polysaccharides.

Adult↗

Evidence for bioadhesive effects of polysaccharides and polysaccharide-containing herbs in an ex vivo bioadhesion assay on buccal membranes.

Aqueous extracts of polysaccharide-containing plants are widely used in therapy for irritated mucus membranes in the pharynx region. In order to prove the existence of mucilaginous effects of polysaccharide hydrocolloids on epithelia an ex vivo system based on porcine buccal membranes was established. The tissue culture was stable and there was no indication of cytolytic processes during the 5 hour incubation period. This was confirmed through histological studies and the respective LDH values as toxicity marker. The test system was shown to discriminate the adhesive effects of different raw polysaccharides, obtained from a variety of medicinal plants. While polysaccharides from Altheae officinalis, Plantago lanceolata, Malva moschata, or Tilia cordata showed only moderate bioadhesion to epithelial tissue, strong adhesive processes were observed with polysaccharides from Fucus vesiculosus and Calendula officinalis. The adhesive effects were concentration-dependent. Histological studies of membranes, incubated with a fluorescence-labelled rhamnogalacturonan, indicated the presence of distinct polysaccharide layers on the apical membrane surface. With these results, adsorption effects of certain polysaccharides on mucus membranes were shown for the first time. Such effects suggest that this may account, at least in part, for the therapeutic effects of mucilage-containing plants in the treatment of irritated buccal membranes.

Adhesives↗

Polysaccharides from Melittis melissophyllum L. herb and callus.

For comparison of the water-soluble polysaccharides from Melittis melissophyllum L. herb with that produced by Melittis callus cultures the polymeric carbohydrates were extracted from both sources, fractionated by IEC and GPC and the respective fractions analysed concerning sugar composition and linkage characteristics. The dominant structures found in all fractions isolated from herb material and callus were type-II arabinogalactans with a (1-->3)-galactose backbone and arabinose-galactose side chains. No significant differences were found between herb and callus polysaccharides. To optimize the Melittis cell culture systems the culture media were varried systematically. A modified Murashige-Skoog (MS) medium, supplemented with GA3, NAA and BAP was found to be most suitable for large-scale production of callus material.

Chromatography, Gel↗

Specific detection of plasmid bearing Yersinia isolates by PCR.

A total of 210 isolates belonging to 9 different species of the genus Yersinia (Y.) was investigated with three different PCR assays targeting two plasmoidal genes, the Yersinia adhesin gene (yadA) and the V-antigen gene. The yadA PCR assay described in 1995 by Blais and Phillipe, targeting a Y. enterocolitica specific gene region and a newly designed assay targeting the gene region functionally responsible for autoagglutination, were compared. Both assays identified the same Y. enterocolitica strains. To exclude the possibility that false negative results were obtained due to mutations that had occurred in parallel in both gene regions, a third PCR assay by Neubauer et al. (2000) targeting a conserved region of the V-antigen gene was used as control. Again, DNA of the same Y. enterocolitica strains was amplified. In contrast to the yadA PCR assay described by Blais and Phillipe, the newly established yadA and the V-antigen PCR assays amplified DNA from Y. pseudotuberculosis strains. Therefore, by using the PCR technique as a molecular tool spontaneous mutations could be excluded as the cause of anomalous reactions in PCR assays targeting genes of the Yersinia virulence plasmid. Based on these results, it can be assumed that all presumptive pathogenic Yersinia isolates can be identified on the basis of PCR analysis. These molecular assays may also produce fewer false positive reactions in comparison to phenotypic tests such as the autoagglutination test which depend heavily on the handler's experience. It has to be stressed that the PCR assays used in this study have not been evaluated for routine use. Therefore, standardization of the PCR methodology including sample preparation, primer target sequences and PCR reagents is needed for the reliable and safe diagnosis of pathogenic Yersinia spp. in future.

Adhesins, Bacterial↗

Pigs aerogenously immunized with genetically inactivated (ghosts) or irradiated Actinobacillus pleuropneumoniae are protected against a homologous aerosol challenge despite differing in pulmonary cellular and antibody responses.

Aerosol immunization is a safe way to induce complete protection against pleuropneumonia in pigs caused by the lung pathogenic bacterium Actinobacillus pleuropneumoniae. In order to determine the local immune responses of vaccinees in concomitant with protection, lung lining fluid before and 3 weeks after immunization from pigs immunized three times with aerosols of either genetically inactivated ghosts which represent whole cell envelope preparations, or irradiated bacteria were examined following an homologous aerosol challenge. Specific antibody isotypes in the bronchoalveolar lavage were assayed by whole cell ELISAs. Total and relative numbers of cells including lymphocyte subsets were determined. In both vaccinated groups a net influx of plasma cells and lymphocytes, as well as a significant increase of specific IgG occurred. Concurrently, the CD4+/CD8+ ratio was found to increase after aerosol immunization. The lymphocyte subsets of IgG+ and IgA+ cells were found significantly higher in the group immunized with irradiated bacteria when compared to pigs immunized with bacterial ghosts. The latter group showed a significant increase of IgA, IgM, and a net influx of lymphoid blasts and granulocytes in the bronchoalveolar lining fluid. Although differences between the local immune responses of both immunized groups occurred, a significant increase of specific IgG and a net influx of plasma cells and lymphocytes were found to be associated with complete protection against a homologous aerosol challenge infection.

Actinobacillus Infections↗

Extended recombinant bacterial ghost system.

Controlled expression of cloned PhiX174 gene E in Gram-negative bacteria results in lysis of the bacteria by formation of an E-specific transmembrane tunnel structure built through the cell envelope complex. Bacterial ghosts from a variety of bacteria are used as non-living candidate vaccines. In the recombinant ghost system, foreign proteins are attached on the inside of the inner membrane as fusions with specific anchor sequences. Ghosts have a sealed periplasmic space and the export of proteins into this space vastly extends the capacity of ghosts or recombinant ghosts to function as carriers of foreign antigens. In addition, S-layer proteins forming shell-like self assembly structures can be expressed in candidate vaccine strains prior to E-mediated lysis. Such recombinant S-layer proteins carrying foreign epitopes further extend the possibilities of ghosts as carriers of foreign epitopes. As ghosts have inherent adjuvant properties, they can be used as adjuvants in combination with subunit vaccines. Subunits or other ligands can also be coupled to matrixes like dextran which are used to fill the internal lumen of ghosts. Oral, aerogenic or parenteral immunization of experimental animals with recombinant ghosts induced specific humoral and cellular immune responses against bacterial and target components including protective mucosal immunity. The most relevant advantage of recombinant bacterial ghosts as immunogens is that no inactivation procedures that denature relevant immunogenic determinants are employed in this production. This fact explains the superior quality of ghosts when compared to other inactivated vaccines. The endotoxic component of the outer membrane does not limit the use of ghosts as vaccine candidates but triggers the release of several potent immunoregulatory cytokines. As carriers, there is no limitation in the size of foreign antigens that can be inserted in the membrane and the capacity of all spaces including the membranes, peri-plasma and internal lumen of the ghosts can be fully utilized. This extended recombinant ghost system represents a new strategy for adjuvant free combination vaccines.

Adjuvants, Immunologic↗

New strategies for combination vaccines based on the extended recombinant bacterial ghost system.

Controlled expression of cloned PhiX174 gene E in Gram-negative bacteria results in lysis of the bacteria by formation of an E-specific transmembrane tunnel structure built through the cell envelope complex. Bacterial ghosts have been produced from a great variety of bacteria and are used as non-living candidate vaccines. In the recombinant ghost system, foreign proteins are attached on the inside of the inner membrane as fusions with specific anchor sequences. Ghosts have a sealed periplasmic space and the export of proteins into this space vastly extents the capacity of ghosts or recombinant ghosts to function as carriers of foreign antigens, immunomodulators or other substances. In addition, S-layer proteins forming shell-like self assembly structures can be expressed in bacterial candidate vaccine strains prior to E-mediated lysis. Such recombinant S-layer proteins carrying inserts of foreign epitopes of up to 600 amino acids within the flexible surface loop areas of the S-layer further extend the possibilities of ghosts as carriers of foreign epitopes. As ghosts do not need the addition of adjuvants to induce immunity in experimental animals they can also be used as carriers or targeting vehicles or as adjuvants in combination with subunit vaccines. Matrixes like dextran which can be used to fill the internal lumen of ghosts can be substituted with various ligands to bind the subunit or other materials of interest. Oral, aerogenic or parenteral immunization of experimental animals with recombinant ghosts induced specific humoral and cellular immune responses against bacterial and target components including protective mucosal immunity. The most relevant advantage of ghosts and recombinant bacterial ghosts as immunogens is that no inactivation procedures that denature relevant immunogenic determinants are employed in the production of ghosts. This fact explains the superior quality of ghosts when compared to other inactivated vaccines. As carriers of foreign antigens there is no limitation in the size of foreign antigens to be inserted and the capacity of all spaces including the membranes, periplasma and internal lumen of the ghosts can be fully utilized. Using the different building blocks and combining them into the recombinant ghost system represents a new strategy for adjuvant free combination vaccines.

Adjuvants, Immunologic↗

How optimal are computer-calculated optimal diets?

OBJECTIVE: This paper aims at clarifying the meaning of 'optimal diets'. DESIGN: Two different optimization approaches are considered. Both depart from people's actual diets which in general do not meet all their nutrient requirements. In the first case (non fuzzy approach) the actual diets are modified such that all nutrient intake recommendations are met and the resulting changes in the persons' food habits are as little as possible. In the second case (fuzzy approach) the actual diets are modified such that the persons' food habits undergo little change and the nutrient intake recommendations are met as well as possible. Both approaches are evaluated using data on the actual diets of three randomly chosen participants of the Bavarian Food Intake Survey. RESULTS: With both approaches feasible solutions can be found. The optimal diets computed with the non fuzzy approach satisfy all the persons' nutrient requirements, but make it necessary to change the persons' food habits considerably. When compared to the subjects' actual diets, the optimal diets computed with the fuzzy approach yield improvements for the intake of many nutrients, but in some cases deteriorations also occur (for example, concerning folate, calcium and iodine). So, the process and the results of the fuzzy approach are not 'Pareto efficient'. But it has the advantage that the corresponding optimal diets deviate from the actual diets by no more than about 3-5 kitchen units per day. CONCLUSIONS: The term 'optimal' does not have a general meaning. An 'optimal diet' does not necessarily meet all the nutrient requirements of a person. Optimality only depends on the respective conditions any optimization is based on.

Adult↗

Pectins and xyloglucans exhibit antimutagenic activities against nitroaromatic compounds.

Because a high daily consumption of polysaccharides-containing food is assessed to decrease the risk of cancer of the gastrointestinal system, different types of carbohydrates were investigated for their antimutagenic activity against different standard mutagens. Within the screening pronounced antimutagenic effects were found for xyloglucan and different pectins and pectin-like rhamnogalacturonans against 1-nitropyrene induced mutagenicity. Inhibition rates were dose-dependent and varied between 20 and 50%. Concerning the mode of action a direct interaction of the polymers with the cells is claimed, protecting the organisms from the mutagenic attack.

Anticarcinogenic Agents↗

[Effect of aerobic fermentation on the survival of Salmonella typhimurium (DT 104) and Escherichia coli in swine liquid manure].

In this study aerobic-thermophilic fermentation of untreated liquid pig manure was examined for the potential of inactivating pathogenic microorganisms. As microbial tracer organisms, Salmonella typhimurium DT 104 and Escherichia coli were used. An effective reduction of survival of these microorganisms could be demonstrated by aerobic fermentation at temperatures of 50 degrees C for at least 3 h. However, these optimal process conditions without the need of additional heating, can only be achieved by microbial substrate reduction. In contrast to the impact of temperature on hygienization processes, alteration of the pH value which occurs during fermentation had no or little influence on the tenacity of the tracer bacteria. Even under mesophilic reaction conditions the influence of the pH value was not measurable. A technical realisation of such an aerobic-thermophilic fermentation process for prophylactic disinfection is questionable since a large technical expenditure is necessary to control ammonia emission. Effective partial reduction of nitrogen, phosphate, and free carbon in liquid manure requires retention times of at least 48 h. However, thermophilic reaction conditions may ensure an effective hygienization of the final fermentation products.

Aerobiosis↗

Synthesis of cardenolide glycosides and putative biosynthetic precursors of cardenolide glycosides.

A rapid and efficient procedure for glycosylation of steroids was established using a modified Koenigs-Knorr procedure. Peracetylated beta-glycosides were synthesized by reaction of cardenolides, various pregnanes and 23-nor-5,20(22)E-choldienic acid at room temperature with the peracetylated 1-bromo derivatives of D-glucose, D-galactose, D-fucose and cellobiose. Subsequent deprotection was performed by alkaline hydrolysis with sodium methoxide. Structures of the respective glycosides were established by NMR techniques. The complete protocol was shown to be non-destructive at all stages to the sugar moiety and the steroidal nucleus. The gamma-unsaturated lactone ring of the cardenolides was shown to remain intact and no formation of C-14 unsaturated compounds was observed.

Cardenolides↗

Acceleration of hepatocellular energy by idebenone during early reperfusion after cold preservation ameliorates heat shock protein 70 gene expression in a pig liver model.

BACKGROUND: Heat shock proteins (HSPs) are induced in the liver after warm ischemia/reperfusion and are thought to be markers of hepatocellular injury and oxidative stress. METHODS: The influence of variable periods of cold storage followed by reperfusion on the expression of HSP70 was studied in the isolated perfused pig liver. Organs were harvested and stored in histidine-tryptophan-ketoglutarate solution at 4 degrees C and then perfused (210 min) in a closed water bath (38 degrees C), which subjects the liver to fluctuating outer pressure. The role of energy depletion, reactive oxygen intermediates, Kupffer cells, and circulating leukocytes in HSP70 expression was determined. RESULTS: HSP70 expression was not detectable in liver tissue before explantation or before reperfusion by Northern blot analysis using a pig HSP70 gene probe. HSP70 expression was observed after reperfusion depending on cold storage time. Kinetics of HSP70 expression monitored by reverse transcriptase polymerase chain reaction showed a rapid increase of mRNA within 1 hr, which was closely associated with delayed recovery of hepatocellular energy charge, as assessed by the ketone body ratio. The inactivation of Kupffer cells, the presence or absence of leukocytes, and the suppression of oxidative stress with the antioxidant idebenone, given during reperfusion, had no influence. However, feeding the animals with idebenone over 7 days before explantation led to a faster recovery of ketone body ratio, paralleled by a substantial suppression of HSP70 expression. CONCLUSIONS: Our data show that HSP70 expression during reperfusion is mainly dependent on the preceding cold storage time and the consecutive delayed recovery of the hepatocellular energy charge.

Animals↗

Suppression of leukocyte-enhanced cold ischemia/reperfusion injury of liver endothelium with the benzoquinone antioxidant idebenone.

OBJECTIVE: Despite the large body of evidence for a major role of neutrophils and oxidant stress, the exact pathogenesis of the early ischemia/reperfusion injury after cold preservation of the liver is not well understood. The potential benefit of an antioxidant on metabolic liver function during reperfusion has been demonstrated in several studies. MATERIALS AND METHODS: We describe a cold storage/reperfusion damage model with isolated perfused pig livers, where the effects of neutrophils and idebenone, a recently developed benzoquinone antioxidant were studied. The integrity of sinusoidal endothelial cells (SEC) was estimated by hyaluronic acid concentration in perfusate and the expression of endothelial constitutive nitric oxide synthase (ecNOS) after reperfusion and compared to lipid peroxidation and antioxidant content. RESULTS: Hyaluronic acid displayed the highest levels and ecNOS mRNA was most depressed in livers reperfused with neutrophils after 20 h cold storage; this was accompanied by an increase in lipid peroxidation (TBARS) and a breakdown of endogenous lipophilic antioxidants (alpha-tocopherol and coenzyme Q-10). These effects were attenuated, when neutrophils were excluded from reperfusion and almost completely abolished by the addition of 200 mumol/L idebenone. CONCLUSIONS: These data suggest that a leukocyte-mediated damage based on reactive oxygen species markedly contributes to the reperfusion injury of SEC after cold preservation of the liver. Therefore, the presence of effective antioxidants in the early reperfusion phase may be beneficial for liver graft integrity.

Animals↗

Endotoxicity does not limit the use of bacterial ghosts as candidate vaccines.

Gram-negative bacterial ghosts produced by controlled expression of the plasmid-encoded lysis gene E offers a promising approach in non-living vaccine technology. Bacterial cell wall complex and hence the antigenic determinants of the living cells are not affected by denaturation due to cell killing. However, the endotoxin content of the Gram-negative cell wall has been discussed as a potential problem for this kind of whole cell or envelope vaccines. Here we show that bacterial ghosts prepared from Escherichia coli O26:B6 and Salmonella typhimurium C5 induce dose-dependent antibody responses against bacterial cells or their corresponding lipopolysaccharides (LPS) in doses 25 ng kg-1 when administered intravenously to rabbits in a standard immunization protocol. No differences between the immune responses of the rabbits were observed when comparing equivalent doses of bacterial ghosts and antibiotic-treated whole cells. The results indicate that the bacterial ghosts exhibit all the antigenic properties of the living cells. No significant fever responses in rabbits have been recorded in doses of < 250 ng kg-1 E. coli O26:B6 ghosts and up to doses of 250 ng kg-1 S. typhimurium C5 ghosts when applying test methods recommended by the US pharmacopoeia. These findings correlate with cell culture experiments where doses 100 ng ml-1 of bacterial ghosts were needed for the release of tumour necrosis factor alpha (TNF alpha) and prostaglandin E2 (PGE2) from RAW mouse macrophage cultures. Free LPS of Salmonella abortus equi commonly used as a LPS-standard, however, stimulated TNF alpha and PGE2 synthesis of RAW cells in doses of 1 ng ml-1. The endotoxic activity of our bacterial preparations analysed by a standard limulus amoebocyte lysate and 2-keto-3-deoxyoctonate assay correlated with the capacity to stimulate the release of PGE2 and TNF alpha in RAW mouse macrophage cultures and the endotoxic responses in rabbits. It can be concluded that these in vitro systems can be used as easy predictive test systems for preparations of bacterial vaccines, particularly for bacterial ghosts.

Animals↗

Extracellular polysaccharides produced by suspension-cultured cells from Digitalis lanata.

Extracellular polysaccharides (ECP) were isolated in yields of up to 4 mg/ml from the culture media of suspension-cultured cells from Digitalis lanata Ehrh. ECP content was increasing continuously over the first ten days of cultivation and then stayed constant until day 20. ECP were fractionated by ion-exchange chromatography into two neutral and one acidic fractions. Further fractionation was achieved by gel-permeation chromatography (GPC). One neutral fraction was separated into two distinct fractions with average molecular weights of 160 and 70 kDa, respectively. The second neutral fraction was hetero-disperse in GPC with average molecular masses of 112, 32, and 8 kDa. Polysaccharides of all neutral fractions consisted of glucose, xylose, galactose, and arabinose. Methylation analysis indicated these fractions to contain xyloglucans besides minor amounts of highly branched arabinogalactans. Xyloglucans were, using endo-beta-(1-->4)glucanase, fragmented into subunits which were identified mainly as tri- and pentasaccharides. The acidic fraction eluated as a single peak during gel-permeation chromatography with an average molecular weight of 56 kDa. Analysis of carbohydrate composition and linkage analysis indicated that this polysaccharide is an acidic arabinogalactan. 2,6-Dideoxysugars, the typical carbohydrate components of cardiac glycosides in Digitalis lanata, were not detected in ECP.

Carbohydrate Conformation↗

Bacterial ghosts as multifunctional vaccine particles.

Expression of cloned PhiX174 gene E in Gram-negative bacteria results in lysis of the bacteria by formation of an E-specific transmembrane tunnel structure built through the cell envelope complex. Bacterial ghosts have been produced from a variety of bacteria including Escherichia coli. Salmonella typhimurium, Salmonella enteritidis, Vibrio cholerae, Klebsiella pneumoniae, Actinobacillus pleuropneumoniae, Haemophilus influenzae, Pasteurella haemolytica, Pasteurella multocida, and Helicobacter pylori. Such ghosts are used as non-living candidate vaccines and represent an alternative to heat or chemically inactivated bacteria. In recombinant ghosts, foreign proteins can be inserted into the inner membrane prior to E-mediated lysis via specific N-, or C-, or N- and C-terminal anchor sequences. The export of proteins into the periplasmic space or the expression of recombinant S-layer proteins vastly extents the capacity of ghosts or recombinant ghosts as carriers of foreign epitopes or proteins. Oral, aerogenic or parenteral applications of (recombinant) ghosts in experimental animals induced specific humoral and cellular immune responses against bacterial and target components including protective mucosal immunity. The most relevant advantage of ghosts and recombinant bacterial ghosts as immunogens is that no inactivation procedures that denature relevant immunogenic determinants are employed in the production of ghosts used as vaccines or as carriers of relevant antigens. The inserted target antigens into the inner membrane or into S-layer proteins are not limited in size.

Adjuvants, Immunologic↗

Vaccination by aerosols: modulation of clearance mechanisms in the lung.

Inhalation and deposition within the the airways are the initial steps before pathogens of the respiratory tract are able to adhere and colonize their host. Once the microorganisms are deposited in the lung lining fluids they do not remain at the location where they first came in contact with the mucous membranes. It is long known that lung clearance mechanisms translocate all deposited particles. At least, most of them are swallowed and cleared via the gastrointestinal tract. Aerosol vaccination with inactivated or (recombinant) live bacteria has been shown to be an efficient way to induce local protection against lung diseases. It can be assumed that the local concentration of the vaccine and the deposition pattern of the vaccine within the lung limit the strength of a local or systemic immune response. The local concentration of airborne bacterial antigen necessary to initiate a mucosal immunity in the respiratory tract is known for a very few microorganisms. Bacterial survival, infectivity, deposition, and persistence characteristics have to be defined when aerosols are included in vaccination experiments.

Aerosols↗