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B Lindner

Publications and source records attributed to B Lindner.

At least 73 records · Page 4Linked to original sources

Structural characterization of the lipid A component of Pseudomonas aeruginosa wild-type and rough mutant lipopolysaccharides.

The structure of the lipid A component of lipopolysaccharides isolated from two wild-type strains (Fisher 2 and 7) and one rough mutant (PAC 605) of Pseudomonas aeruginosa was investigated using chemical analysis, methylation analysis, combined gas-liquid chromatography/mass spectrometry, laser-desorption mass spectrometry and NMR spectroscopy. The lipid A backbone was found to consist of a pyranosidic beta 1,6-linked D-glucosamine disaccharide [beta-D-GlcpN-(1----6)-D-GlcpN], phosphorylated in positions 4' and 1. Position 6' of the beta-D-GlcpN-(1----6)-D-GlcpN disaccharide was identified as the attachment site of the core oligosaccharide and the hydroxyl group at C-4 was not substituted. Lipid A of the three P. aeruginosa strains expressed heterogeneity with regard to the degree of acylation: a hexaacyl as well as a pentaacyl component were structurally characterized. The hexaacyl lipid A contains two amide-bound 3-O-acylated (R)-3-hydroxydodecanoic acid groups [12:0(3-OH)] at positions 2 and 2' of the GlcN dissacharide and two ester-bound (R)-3-hydroxydecanoic acid groups [10:0(3-OH)] at positions 3 and 3'. The pentaacyl species, which represents the major lipid A component, lacks one 10:0(3-OH) residue, the hydroxyl group in position 3 of the reducing GlcN residue being free. In both hexa- and pentaacyl lipid A the 3-hydroxyl group of the two amide-linked 12:0(3-OH) residues are acylated by either dodecanoic (12:0) or (S)-2-hydroxydodecanoic acid [12:0(2-OH)], the lipid A species with two 12:0(2-OH) residues, however, being absent. The presence of only five acyl residues in the major lipid A fraction may account for the low endotoxic activity observed with P. aeruginosa lipopolysaccharide.

Carbohydrate Conformation↗

Intrabacterial sodium-to-potassium ratios and ATP contents of Mycobacterium leprae from ofloxacin-treated patients.

In a clinical trial including 17 multibacillary leprosy patients the in vivo effectiveness of ofloxacin on Mycobacterium leprae was tested via mass spectrometric determination of intrabacterial ratios of the concentrations of the sodium and potassium ions of individual organisms and of the ATP content per 10(6) bacteria isolated from skin biopsies. After 3 months of treatment, the in vivo drug effect could be determined with at least one of the two methods in 14 cases. Both methods revealed that in two cases the bacteria definitely did not respond to a 3-month ofloxacin monotherapy (200 mg twice daily). In three further cases a nonresponse of the M. leprae organisms was suspected from the mass spectrometric measurements. In the responder cases, the M. leprae were severely impaired. From the intrabacterial cation ratios the percentage of viable organisms averaged over all untreated biopsies was determined to be 58% and the percentage-killing during the first 3 months of treatment was 72%.

Adenosine Triphosphate↗

Determination of in vivo and in vitro drug effects of mycobacteria from the mass spectrometric analysis of single organisms.

Laser microprobe mass analysis of single bacterial organisms allows the determination of their intrabacterial ratio of sodium-to-potassium ions and the registration of fragment ions originating from their organic bacterial cell matrices as mass fingerprint spectra. It has been established previously that the intrabacterial cation ratio provides information on the physiological state of an individual bacterial cell. In the present experiments it is also shown, with different cultivable mycobacterial species and strains (drug sensitive and resistant) exposed to various drugs, that data derived from the evaluation of the mass fingerprint spectra reflect changes in the degree of impairment. The analysis of Mycobacterium leprae derived from a limited number of skin biopsies of lepromatous/borderline lepromatous leprosy patients under World Health Organization-recommended multiple-drug therapy (WHO/MDT) showed impairment of the organisms with both of the methods of measurement in proportion to the duration of treatment except in one case. In one M. leprae population from a patient who had been treated for 19 months, the fingerprint evaluation gave the first evidence for an insufficient response to treatment. This was further confirmed by the unusual frequency distribution of the Na+,K+ ratios which revealed the existence of two subpopulations, one impaired and one unimpaired.

Anti-Bacterial Agents↗

Comparative investigations of regional lymph nodes and pseudocapsules after implantation of joint endoprostheses.

Morphological alterations of pseudocapsules and regional lymph nodes were studied by light and electron microscopy and by Laser Microprobe Mass Analysis (LAMMA). The tissue specimens originated from 32 autopsies of patients with hip joint endoprostheses (time in situ: 3 weeks - 15 years, average: 6 years) and two cases with knee joint endoprostheses. Characteristic changes of the lymph nodes as well as of the pseudocapsules consisted in an infiltration by monocytic histiocytes with various intracytoplasmatic wear particles. The foreign material consisted mainly of the components of bone cement: polymethylmethacrylate (PMMA) and zirconium oxide, to a lesser degree of polyethylene from the articulating surfaces. In two cases with special types of prostheses ceramic or metallic wear particles could be detected too. Most of the wear particles were found in the ipsilateral parailiac lymph nodes and in the paraaortic lymph nodes bilaterally. In the cases with mostly stable prostheses small amounts of wear particles were found in the lymph nodes as soon as 1.5 years after insertion and their number increased in all groups of lymph nodes after longer duration of the implant. The phagocytosing histiocytes showed degenerative changes. At present it is not clear, if the cell damage is caused by the amount of phagocytosed wear particles alone or if specific toxic effects of certain substances are of importance.

Granulation Tissue↗

[The value of sleep EEG following sleep deprivation before terminating anticonvulsive therapy in epileptic children and adolescents].

A sleep electroencephalogram was carried out after deprivation of sleep in 70 epileptic children and young people. The EEG was done before an intended reduction of anticonvulsants. Patients who had generalized paroxysmal patterns in the sleep EEG suffered from significantly more frequent relapse after and of therapy than those ones with local paroxysmal activity or electroencephalogram without paroxysmal activity respectively. A sleep EEG after deprivation of sleep should be carried out before a decision is made on the end of the therapy in patients with expected generalized paroxysmal patterns.

Adolescent↗

Chemical structure of the lipopolysaccharide of Haemophilus influenzae strain I-69 Rd-/b+. Description of a novel deep-rough chemotype.

The chemical structure of the lipopolysaccharide of a deep-rough mutant (strain I-69 Rd-/b+) of Haemophilus influenzae was investigated. The hydrophilic backbone of lipid A was shown to consist of a beta-(1',6)-linked D-glucosamine disaccharide with phosphate groups at C-1 of the reducing D-glucosamine and at C-4' of the non-reducing one. Four molecules of (R)-3-hydroxytetradecanoic acid were found directly linked to the lipid A backbone, two by amide and two by ester linkage (positions 2,2' and 3,3', respectively). Laser-desorption mass spectrometry showed that both 3-hydroxytetradecanoic acids linked to the non-reducing glucosamine carry tetradecanoic acid at their 3-hydroxyl group, so that altogether six molecules of fatty acid are present in lipid A. The lipopolysaccharide was the first described to contain only one sugar unit linked to lipid A. This, sugar in accordance with a previous report [Zamze et al. (1987) Biochem. J. 245, 583-587], was shown to be a dOclA phosphate. The phosphate group was found at position 4, but the analytical procedures employed (permethylation and methanolysis followed by gas-liquid chromatography/mass spectrometry) also revealed dOclA 5-phosphate. Since a cyclic 4,5-phosphate could be ruled out by 31P-NMR, we conclude that, in this lipopolysaccharide, a mixture of dOclA 4- and 5-phosphate is present. By methylation analysis of the dephosphorylated, deacylated and reduced lipopolysaccharide the attachment site of the dOclA was assigned to position C-6' of the non-reducing glucosamine of lipid A. The anomeric linkages present in the lipopolysaccharide were assessed by 1H-NMR and 13C-NMR of deacylated lipopolysaccharide. The saccharide backbone of this Haemophilus influenzae lipopolysaccharide possesses the following structure: (Formula; see text)

Gas Chromatography-Mass Spectrometry↗

Monitoring of bacterial drug response by mass spectrometry of single cells.

The application of the laser microprobe mass analyser LAMMA 500 to the solution of problems in the field of microbiology is reported. The special features of this instrument allow the analysis of single bacterial cells, and questions can be answered which are not accessible to the normally applied integral methods. Thus it is possible to establish distributions of, for instance, elemental concentrations within a bacterial population and of correlations between measured characteristics of a bacterium with its morphology. The mass spectrum of a single bacterial cell comprises information on its intracellular cation contents as well as on the organic matrix. The relation between the sodium and potassium contents can serve as a criterion of the physiological state of a cell and of its viability. The information from the organic matrix can be extracted from the complex spectra of fragment ions produced by the interaction of the laser with the cell by applying multivariate data analysis, thus rendering additional information. Examples will be given for in vitro drug screening and in vivo therapy control in leprosy, an infection which is caused by a mycobacterial species, Mycobacterium leprae; this organism does not multiply in artificial growth media so that only limited numbers of organisms are available for microbiological investigations.

Mass Spectrometry↗

Isolation and structural analysis of two lipid A precursors from a KDO deficient mutant of Salmonella typhimurium differing in their hexadecanoic acid content.

The extraction, purification and structural characterization of two lipid A precursors (Ia and Ib) differing only in one hexadecanoic acid are described. Both precursors were synthesized at elevated temperatures by a new mutant of Salmonella typhimurium (mutant Ts5) which is conditionally defective in synthesis of the 3-deoxy-D-manno-octulosonic acid region of lipopolysaccharides. Both precursors were purified by repeated phenol/chloroform/petroleum ether (PCP) extractions followed by thin layer chromatography. The precursor preparation was free of lipopolysaccharides and phospholipids and contained less than 0.1% protein. Structural analysis which included chemical degradation procedures as well as positive ion laser desorption (LDMS) mass spectroscopy of dephosphorylated lipid A precursors showed together that precursor Ia represents a diphosphorylated glucosamine disaccharide containing two ester, two amide-linked residues of 3-hydroxytetradecanoic acid and lacks the ester-linked dodecanoic, tetradecanoic and hexadecanoic acid as well as 3-deoxy-D-manno-octulosonic acid. Precursor Ib has the same basic structure as precursor Ia, but contains in addition one mol of hexadecanoic acid per mol disaccharide which is linked to the 3-hydroxy group of the amide-bound 3-hydroxy-tetradecanoic acid of the reducing, terminal glucosamine residue. The structure of precursor Ib supports the conclusion that hexadecanoic acid incorporation occurs at an early stage in lipid A biosynthesis prior to the attachment of 3-deoxy-D-manno-octulosonic acid and/or other polar substituents.

Chromatography, DEAE-Cellulose↗

Newer aspects of the chemical structure and biological activity of bacterial endotoxins.

Gram-negative bacteria express at their surface various amphiphiles among which the lipopolysaccharides (endotoxins, O-antigens) have been studied most intensively. Lipopolysaccharides consist of a heteropolysaccharide portion (O-specific chain and core) which is responsible for the O- (and R-) antigenic properties and a covalently bound lipid component, termed lipid A, which contains the endotoxic principle of lipopolysaccharides. The detailed chemical structure of a large number of O-chains and the general architecture of the core oligosaccharide has been established. Recent analyses of the enterobacterial inner core region indicate the presence of a linear trisaccharide of alpha 2.4-linked 3-deoxy-D-manno-2-octulosonic acid (KDO) residues of which only the reducing group is believed to be located in the main core chain. This KDO residue which provides the link between the polysaccharide and the lipid A component appears to be involved in a recently detected ubiquitous immunodeterminant expressed by lipopolysaccharides of various origin. The chemical structure of enterobacterial lipid A's is now known in some detail. Lipid A of Salmonella, Escherichia coli and Proteus consists of a beta 1.6-linked D-glucosamine disaccharide which carries four (R)-3-hydroxytetradecanoyl groups in positions 2, 3, 2' and 3' and two phosphoryl residues in positions 1 and 4'. Up to three of the hydroxy fatty acids (positions 2, 2' and 3') are, at their 3-hydroxyl groups, acylated by non-hydroxylated acyl residues, and to phosphoryl groups non-acylated, nitrogen-containing residues such as 4-amino-4-deoxy-L-arabinopyranose and phosphorylethanolamine may be bound. The hydroxyl group in position 4 of the glucosamine disaccharide is free and that in position 6' serves as the attachment site for KDO (i.e. the polysaccharide component) in lipopolysaccharide. Based on this structure lipid A analogues have been chemically synthesized and analysed for endotoxic activity in vivo and in vitro. In two test systems (pyrogenicity, local Shwartzman reaction) the synthetic part structures exhibited weak or no endotoxic activity, as did a precursor of lipid A biosynthesis which is structurally identical to one of the analogues. In many other systems, however, including lethal toxicity, B-lymphocyte mitogenicity, macrophage activation, induction of cross tolerance, expression of lipid A antigenicity, the synthetic materials were of comparable activity as bacterial free lipid A. These findings support the structural proposals made for lipid A and they prove the previous hypothesis that the endotoxic principle is embedded in lipid A.(ABSTRACT TRUNCATED AT 400 WORDS)

Endotoxins↗

Results from cation and mass fingerprint analysis of single cells and from ATP measurements of M. leprae for drug sensitivity testing: a comparison.

The physiologic states of Mycobacterium leprae isolated from patient biopsies were studied using single cell mass spectrometry by laser microprobe mass analysis (LAM-MA) and ATP bioluminescence assay. The changes in the physiologic state of M. leprae after the patients had been treated with dapsone (DDS) monotherapy were also studied. The shift of the low intracellular Na+, K+-ratio of untreated M. leprae cells to higher values under DDS therapy, as measured from a limited number of single bacteria, correlates with a decrease in the ATP content. Further information on the influence of the drug could be drawn from the multivariate analysis of mass fingerprints of the organic matrix of the cells. Evidence is provided that the combination of the measurement of the intracellular cation ratios and of the mass fingerprint analysis could give fast answers to the question of drug resistance and to the persister hypothesis. The ATP bioluminescence assay and the single cell mass analysis should be alternatives to the mouse foot pad test.

Animals↗

Structural studies on the lipid A component of enterobacterial lipopolysaccharides by laser desorption mass spectrometry. Location of acyl groups at the lipid A backbone.

In the present paper laser desorption mass spectrometry (LDMS) was applied to dephosphorylated free lipid A preparations obtained from lipopolysaccharides of Re mutants of Salmonella minnesota, Escherichia coli and Proteus mirabilis. The purpose of this study was to elucidate the location of (R)-3-hydroxytetradecanoic acid and 3-O-acylated (R)-3-hydroxytetradecanoic acid residues which are bound to amino and hydroxyl groups of the glucosamine disaccharide backbone of lipid A. Based on the previous finding from biochemical analyses that the amino group of the nonreducing glucosamine residue (GlcN II) of the backbone carries, in S. minnesota and E. coli, 3-dodecanoyloxytetradecanoic acid and, in P. mirabilis, 3-tetradecanoyloxytetradecanoic acid, a self-consistent interpretation of the LDMS was possible. It was found that: (a) in all three lipids A GlcN II is, besides the amide-linked 3-acyloxyacyl residue, substituted by ester-linked 3-tetradecanoyloxytetradecanoic acid; (b) the reducing glucosamine (GlcN I) is substituted by ester-linked 3-hydroxytetradecanoic acid; (c) the amino group of GlcN I carries a 3-hydroxytetradecanoic acid which is non-acylated in E. coli and which is partially acylated by hexadecanoic acid in S. minnesota and P. mirabilis. In lipids A which were obtained from the P. mirabilis Re mutant grown at low temperature (12 degrees C) LDMS analysis revealed that specifically the one fatty acid bound to the 3-hydroxyl group of amide-linked 3-hydroxytetra-decanoic acid at GlcN II is positionally replaced by delta 9-hexadecenoic acid (palmitoleic acid). It appears, therefore, that enterobacterial lipids A resemble each other in that the 3-hydroxyl groups of the two 3-hydroxytetradecanoic acid residues linked to GlcN II are fully acylated, while those of the two 3-hydroxytetradecanoic acid groups attached to GlcN I are free or only partially substituted.

Chemical Phenomena↗

Nature and location of amide-bound (R)-3-acyloxyacyl groups in lipid A of lipopolysaccharides from various gram-negative bacteria.

It has previously been demonstrated [Eur. J. Biochem. 124, 191-198 (1982) and 137, 15-22 (1983)] that the lipid A component of Salmonella and Proteus lipopolysaccharides contains amide-linked (R)-3-acyloxyacyl residues. In the present study lipid A of other gram-negative bacteria was analysed for the presence of amide-bound 3-acyloxyacyl residues. It was found that such residues are constituents of all lipid A tested (Agrobacterium tumefaciens, Chromobacterium violaceum, Pseudomonas aeruginosa, Xanthomonas sinensis, Bacteroides fragilis, Vibrio cholerae, Fusobacterium nucleatum, Rhodospirillum tenue, Acinetobacter calcoaceticus, and Escherichia coli). Amide-linked (R)-3-acyloxyacyl groups, therefore, represent common and ubiquitous structural elements of bacterial lipid A. The composition of 3-acyloxyacyl groups differed considerably among different bacteria. As amide-bound (R)-3-hydroxy fatty acids straight chain and isobranched acyl groups with 10-17 carbon atoms were identified. The most frequently encountered fatty acids, substituting the 3-hydroxyl group of 3-hydroxy fatty acids, were nonhydroxylated straight chain and isobranched acyl residues with 10-17 carbon atoms as well as (S)-2-hydroxy fatty acids with 12 carbon atoms. In some cases, using laser desorption mass spectrometry, the distribution of 3-acyloxyacyl residues over the two available glucosamine amino groups of the lipid A backbone was investigated.

Acinetobacter↗

Laser desorption mass spectrometry of synthetic lipid A-like compounds.

The applicability and the present limitations of the laser microprobe mass analyser LAMMA -500 as an instrument for the structural analysis of higher molecular weight, non-volatile, bio-organic compounds (less than or equal to 2000 u) were investigated. For this purpose mass spectra of various synthetic and natural compounds representing cell wall components of Gram-negative bacteria, e.g. phospholipids and lipid A-like molecules were studied. In several cases these spectra exhibited relatively simple and interpretable patterns with a prominent quasi-molecular ion originating from alkali attachment. For one group of the compounds studied--synthetic lipid A-like molecules containing a phosphate moiety--the spectra were rather complicated and lacked pronounced quasi-molecular peaks. Possible reasons for this observation are discussed.

Bacteria↗

Mass spectrometric analysis of drug-induced changes in Na+ and K+ contents of single bacterial cells.

Time-dependent changes in the intracellular Na+/K+ ratio of Escherichia coli, induced by the nitrofuran derivative HN32 [2,4-diamino-6-(5-nitrofuryl-2)-5-ethylpyrimidine], were measured by laser-induced mass spectrometry of single bacterial cells. The results show good agreement with data on viable cell and total cell counts, release of ATP and 14CO2 production demonstrating that the single cell analysis of intracellular sodium and potassium concentrations may supply reliable information on cell viability and, furthermore, offer additional information not available from established gross methods.

Escherichia coli↗

Detection of externally induced impairments in single bacterial cells by laser microbe mass analysis.

Applying the laser microbe mass analyzer method (LAMMA), mass spectra (fingerprints) were taken from single bacterial cells not treated or treated with high temperature, X-irradiation, isonicotinic acid hydrazide (INH), or diaminodiphenylsulfone (DDS). Spectra of treated cells ("M. lufu," M. tuberculosis H37Ra, E. coli) differ from those of controls in that the K+/Na+ ratio was smaller and in that the intensities of peaks with m/e greater than 100 were lower. From the results with M. leprae the possible application of this new method for monitoring the effectiveness of leprosy therapy is proposed.

Animals↗

[Protein deficiency in hospital food. Possibilities of using protein preparations].

During a twenty days period, the daily supply of protein with the normal diet was investigated for thirty patients of an emergency station. The system of food distribution allowed precise weighing of each patient's portion. According to the calculation by the "kleine Nährwerttabelle" an average daily protein allowance of 12.4 kcal% at an average daily energy allowance of 2100 kcal with an average worth of material of 20 öS was found. The nitrogen loss accounted in the literature for different stress situations enables to calculate a far higher protein need. The use of protein preparations is discussed for satisfying the need. The possibility to use milk-protein for food preparations was tested. In a trial was found that 46.2% of the patients accepted the given protein-enriched soup. Thus the share of protein in total daily calories should be lifted from 12.4 kcal% to 14.6 kcal% spending only 4.44 öS more than before. Elevating the protein portion with normal food is possible only by spending multiple costs.

Energy Metabolism↗