PubMed Health⌕ Search

Biomedical subjects

P Wiesner

Publications and source records attributed to P Wiesner.

14 recordsLinked to original sources

Characterization of nicotinic acetylcholine receptors from the insects Aphis craccivora, Myzus persicae, and Locusta migratoria by radioligand binding assays: relation to thiamethoxam action.

Thiamethoxam, a new neonicotinoid insecticide acting at nicotinic acetylcholine receptors, was characterized in competition binding assays with [3-H]-imidacloprid, a specific nicotinic ligand, using membranes from the aphids Aphis craccivora and Myzus persicae, and from the locust Locusta migratoria. In all insects, Scatchard analysis suggested two binding sites for imidacloprid with Kd values in the range of 1 nM and 10 nM, respectively. The Hill values were significantly below 1 (range of 0.63 to 0.85). In contrast to imidacloprid and nicotine, the potency of thiamethoxam to displace [3-H]-imidacloprid varied considerably among these insects. Thiamethoxam was more active than nicotine on Aphis receptors but 100-fold less in Locusta, a nontarget insect. Comparable relations were found to nithiazine. In Myzus, the inhibition curve for thiamethoxam was shallow. This suggested a heterogeneous receptor population displaying a range of binding affinities to thiamethoxam in this aphid. In all three insects, the other neonicotinoid insecticides studied competed with [3-H]-imidacloprid in the same order: thiacloprid > imidacloprid > or = acetamiprid > nitenpyram. N-Methylation of imidacloprid strongly reduced the affinity to the imidacloprid site, whereas N-demethylation of thiamethoxam resulted in a comparable increase of affinity. Supplementary assays were performed with (-)-[3-H]-nicotine and [3-H]-alpha-bungarotoxin on locust membranes. Overall, the data suggested that the outstanding insecticidal properties of thiamethoxam may be due to either a different binding site on nicotinic receptors, or receptor isoforms, or specific pharmakokinetic behavior, rather than to exceptional affinity to one of the examined binding sites.

Animals↗

Candidate target mechanisms of the growth inhibitor cyromazine: studies of phenylalanine hydroxylase, puparial amino acids, and dihydrofolate reductase in dipteran insects.

Cyromazine, an insect growth regulator, affects larval and pupal cuticles in dipterans and some other insects. The mode of action of this aminotriazine is not known yet, though it has been shown not to inhibit the synthesis of chitin and cuticular proteins. Cyromazine may, however, act on some step(s) of sclerotization of the cuticle. In the present study, we have analyzed the key enzyme for the production of sclerotization agents, phenylalanine hydroxylase (PAH), using the enzyme from Drosophila, a cyromazine-sensitive insect. PAH was studied in vitro with cyromazine and three biologically less active derivatives at concentrations ranging from 1 microM to 1 mM. None of the compounds did significantly affect PAH activity. Nor did cyromazine, fed to last instar larvae of Musca domestica, change the relative content of phenylalanine and tyrosine, or the total amount and profile of amino acids of puparial cuticles, which showed a larviform shape typical for cyromazine intoxication. Taken together, this study does not support the hypothesis that phenylalanine hydroxylase represents a target site of cyromazine. In additional studies, the conflicting results, as reported by others, on in vitro inhibition of dihydrofolate reductase (DHFR) by cyromazine were re-examined using the enzymes from larvae of the blowfly, Protophormia terraenovae, and from hen liver. There was no significant inhibition of either DHFR at 100 microM by cyromazine as well as by dicylanil, a pyrimidine analog that is biologically more active than cyromazine. In conclusion, the mode of action of cyromazine remains completely open.

Amino Acids↗

Target-based drug discovery for the development of novel antiinfectives.

In the 20th century and especially during the last 50 years, antiinfectives have been increasingly used to control and prevent infectious diseases. Unfortunately the resistance of microorganisms to these pharmaceuticals has increased as well. At the same time the discovery process for novel antiinfectives, the so-called "conventional" screening approach, involves testing natural products or derivatives of known compounds in in vitro cultures. By now it is obvious that this screening approach did not meet the expectations to generate a sufficient number of novel drug candidates. Consequently, studies for selective antiinfectives with new modes of action, which are able to break resistance, are highly desirable for human and animal health. The enormous advance in sequencing technologies--leading to a constantly growing number of known microbial genomes--together with the rapid development of computer power and bioinformatic software tools, now makes it possible to identify genes and gene products that are essential to the pathogenic organisms and are therefore considered to be novel targets for the development of new antiinfectives. When these potential targets have been validated by sophisticated laboratory methods, large diverse compound libraries can be tested in in vitro assays using high-throughput screening. This approach will most likely generate an increasing number of novel lead structures that will be specifically optimized by modern combinatorial chemistry and subsequently lead to new antiinfective candidates strengthening the armoury of weapons available to fight infectious diseases in humans and animals.

Animals↗

Isolation of mitochondrial porin of the fly Protophormia: porin modification by the pesticide CGA 140'408 studied in lipid bilayer membranes.

Mitochondrial porin from the fly Protophormia was solubilized with detergent from whole mitochondria and purified by chromatography across a hydroxyapatite (HPT) column. The purified protein had an apparent molecular mass of about 30 kDa on SDS-PAGE. Partial sequencing of the protein confirmed that it is porin. When reconstituted in planar lipid bilayer membranes, porin formed ion-permeable channels with single-channel conductances of 2.4 and 4.5 nS in 1 M KCl. At low voltage, Protophormia porin displayed the properties of a general diffusion pore and had a small selectivity for anions over cations. At transmembrane potentials starting with about 20-30 mV, the channel switched in closed state, which is still ion-permeable. Our results suggest that Protophormia porin possesses functional properties similar to those of other mitochondrial porins. Porin was also isolated and purified from mitochondria, which were treated with the carbodiimide CGA 140'408 It represents the active derivative of diafenthiuron a new acaricide and insecticide. This carbodiimide labels both a F0-component of the inner membrane ATPase and outer membrane porin in a similar way as N,N'-dicyclohexylcarbodiimide (DCCD). Reconstitution experiments with the CGA 140'408-modified porin showed no significant effect of the modification on the single-channel conductance, suggesting that CGA 140'408 binds outside the channel. The voltage-dependence of the CGA 140'408-modified porin was changed with respect to the unmodified form. The closed configuration of the pesticide-modified channel was reached at smaller transmembrane potentials, suggesting a shift of the open to the closed state of Protophormia porin by pesticide binding. A possible contribution of this effect to the pesticide action is discussed.

Amino Acid Sequence↗

Identification of mycobacteria to the species level by automated restriction enzyme fragment length polymorphism analysis.

An automated method for the restriction fragment length polymorphism (RFLP) analysis for the differentiation of mycobacteria to the species level is described. After polymerase chain reaction (PCR) amplification of a sequence of the gene encoding the 65-kDa surface antigen common to all mycobacteria the product was investigated by RFLP analysis. For accurate determination of fragment sizes the asymmetrically fluorescein-labelled PCR product was partially digested with restriction site enzymes BstEII and HaeIII. The fragments obtained were analysed electrophoretically using an automated laser fluorescence DNA sequencer. Determination of fragment sizes revealed a deviation of +/- 1 base pair (bp; 0.6%) when compared to expected sizes. The validity of this approach was confirmed by analysing mycobacterial DNA obtained from pure cultures of Mycobacterium (M.) tuberculosis and alcohol-fixed smears as well as paraffin-embedded sputa of patients with culture-proven tuberculosis. Additionally a diagnostic algorithm was established by investigation of cultured M. bovis, M. bovis bacille Calmette-Guérin, M. avium, M. intracellulare and M. fortuitum. The method allows the identification of restriction enzyme sites which are only 40 bp apart. Partial restriction enzyme digestion of asymmetrically fluorescence-labelled PCR products will presumably lead to the discovery of new restriction enzyme sites.

Algorithms↗

The sensitive detection of fluorescently labelled PCR products using an automated detection system.

The polymerase chain reaction plays a central role in many detection assays and methods to improve the sensitivity and specificity of these detection systems are constantly being explored. In this study we investigated the use of an automated laser fluorescent system (ALF) in the context of DNA-based diagnostics for pathogenic bacteria. PCR products were generated using species-specific primer sets, one of which was labelled with a 5' fluorescein. PCR products with a fluorescent label were detected on line with an ALF DNA sequencer and the sensitivity of detection was found to be comparable to that for DNA probe hybridization with a radioactive probe. The technology was successfully applied to the detection of Mycobacterium tuberculosis supplemented into sputum samples and to the detection of listeria in paraffin-embedded tissue samples.

Base Sequence↗

Fluorescent labelling of sequencing primers for automated oligonucleotide synthesis.

A fluorescein derivative is described which can be used as a normal phosphoramidite in oligonucleotide synthesis, giving high yields of fluorescein labelled sequencing primers. The labelled primers were used in automated DNA-sequence analysis without modification of existing protocols, the computer-processed sequences being reproducibly readable up to 400 bases. The procedure described makes the fluorescent labelling of oligonucleotides much easier, and the time of labelling can be significantly reduced. It speeds up the "primer walking" approach of automated DNA sequencing.

Base Sequence↗

An outbreak of cryptosporidiosis in a day-care center in Georgia.

Diarrhea among the 11 million children attending day-care centers in the United States is common, but infection control of enteric pathogens in the day-care center setting remains a challenge. In August 1989, an outbreak of cryptosporidiosis was investigated at a day-care center in Georgia. A total of 49% (39/79) of children and 13% (3/23) of staff members who submitted stool specimens were found to be infected with Cryptosporidium. A total of 77% (30/39) of infected children had mild-to-moderate diarrhea (median duration, 5 days). Children were at highest risk if they were less than age 36 months, in diapers, and not toilet trained. Serial stool specimens were collected from 12 infected children. After diarrhea had ceased, oocyst shedding continued in all children for a mean duration of 16.5 days. It is concluded that the prevalence of asymptomatic infections and the duration of shedding after the end of symptoms may previously have been underestimated. Cohorting or exclusion from the day-care center of children who are asymptomatic shedders is not practical, and the management of cryptosporidiosis in day-care centers remains a major challenge.

Adult↗

[Microbiological studies in children in nurseries (Study A)].

From 1986 to 1988 76 children, aged from 13 to 36 months, being in 8 créches of a large town were tested microbiologically in the phases: healthy (0), initial phase of acute respiratory disease (A), 2nd and 4th week of convalescence (R2, R4). It was possible to proof bacteria 253 times. 17 various kinds of bacteria were found. Bacteria of catarrhal group (30.8%) and streptococcus pneumoniae (28.4%) dominated among other bacteria. In phase 0 they were isolated in 24% of the children, in phase A in nearly 50%, in phase R2 and R4 in 21 and 14%, respectively in 26 and 25%. Most kinds of bacteria followed this trend. This was not the case with the virological and mycological results. 14 isolations of viruses with 10 various kinds and 30 viro-serological proofs of 8 various kinds did not reflect the actual situation with only 2 quadruple increases of titre during the disease. The detection rate of Candida albicans (24% in healthy) is situated in value expected. Conclusions are drawn.

Bacteria↗

[Microbiological studies on nursery children susceptible to infections].

In a microbiological paper from 1986 to 1988 dealing with 76 children aged from 13 to 36 months in 8 crèches of a large town, it could be found that 24 of these children were susceptible to infections and it is established that there were 3-9 bacteria per child. The most important bacteria were: Staphylococcus aureus, Streptococcus pneumoniae, haemolytic streptococci. But bacteria of the catarrhal group played a certain role, too. In 8 of these children dispositional factors and factors caused by exterior conditions of life (risk factors) could be shown, in 50% out of them a prolonged convalescence and in 50% after 4 weeks a reinfection after acute respiratory disease (ARD). The course of phases of ARD (initial phase, 2. and 4. week of convalescence) is introduced from microbiological view at all children. We point out the meaning of microbiological diagnostics with subsequent aiming sanitation by children susceptible to infections with risk factors.

Bacteria↗

Isolation and sequence analysis of the fatty acid synthetase FAS2 gene from Penicillium patulum.

The fatty acid synthetase complex of Penicillium patulum was isolated and shown to be structurally similar to other known fungal fatty acid synthetases. It is composed of two subunit, alpha and beta, each with a molecular mass of about 200 kDa. P. patulum genomic and cDNA libraries were constructed in lambda gt11 and EMBL3 vectors. From these libraries, the P. patulum FAS2 gene together with its flanking DNA was isolated. The cloned genomic DNA was sequenced over a length of 6357 base pairs. The coding sequence of fatty acid synthetase subunit alpha, being 5571 nucleotides long, was identified within this DNA segment. The FAS2 gene is a mosaic of three exons (514, 4949 and 108 base pairs) and two introns, each of 54 base pairs in length. Both introns were absent in the corresponding cDNA sequences. Like other fungal introns both contain an internal CTAAC sequence, located 10 base pairs upstream of their 3'-exon/intron boundaries. In addition, they have, at their ends, the GTCAAGT and TAG consensus sequences characteristic of all eucaryotic introns. Furthermore, two pairs of direct repeats, of as yet unknown significance, were found in the two P. patulum introns. The P. patulum FAS2 gene encodes a protein of 1857 amino acids and 204.5 kDa molecular mass. It is 90 nucleotides shorter than the corresponding S. cerevisiae gene. In both organisms, the FAS2 genes and their products exhibit a high degree of overall sequence similarity at both the DNA (63%) and protein (68%) levels. Therefore, the fatty acid synthetase alpha subunits of P. patulum and S. cerevisiae obviously contain the same catalytic domains in an identical sequential order.

Amino Acid Sequence↗

Evaluation of a new cephalosporin antibiotic, cephapirin.

Cephapirin sodium, a parenterally administered derivative of cephalosporanic acid, was tested in vitro against 150 stock cultures of Enterobacteriaceae and 30 stock cultures each of Pseudomonas aeruginosa and Staphylococcus aureus. Both broth- and agar-dilution techniques were employed with two sizes of inocula of organisms. At a concentration of 7.5 mug or less/ml, cephapirin inhibited and killed 100% of strains of Escherichia coli and Proteus mirabilis and more than 80% of Klebsiella species when tested against an inoculum of 10(5) bacterial cells/ml. However, even at 100 mug/ml, only a few isolates of other Enterobacteriaceae and Pseudomonas were inhibited. A 100-fold increase in the inoculum resulted in decreased susceptibility of organisms. All penicillin-susceptible as well as penicillin-resistant S. aureus isolates were inhibited and killed by 5 mug or less of cephapirin/ml when tested with an inoculum of either 10(4) or 10(6) organisms/ml. The drug also was studied in various doses in the treatment of 77 patients with diverse infections. Cephapirin was effective in the treatment of 27 of 32 patients with pulmonary infection, as well as in 6 of 7 patients with staphylococcal or streptococcal soft tissue infection. Of 25 patients with urinary-tract infections, 19 developed a negative culture during therapy. A single 4-g intramuscular dose of cephapirin was effective in only 2 of 11 patients with gonococcal urethritis or endocervicitis. Two patients with gonococcal urethritis treated with multiple injections were cured. The drug was well tolerated except for pain at the site of injection in 14 patients and phlebitis in 4 patients. No abnormalities in renal or hepatic function could be attributed to cephapirin. In addition, no abnormalities were found in the renal tubules of rabbits challenged with 500 mg of cephapirin/kg. If further studies document that cephapirin is well tolerated by the parenteral route, it may have advantages over cephalothin or cephaloridine.

Acetamides↗