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Biomedical subjects

W Oertel

Publications and source records attributed to W Oertel.

17 recordsLinked to original sources

Neurotoxic effect of prenatal exposure to MPTP on the dopaminergic systems of the marmoset brain.

MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine) was incidentally administered to pregnant marmosets during the whole gestational period, except for the last 15 days before term. The infant monkeys were killed 5 months after birth, and dopamine and its metabolites were measured in the striatum and the nucleus accumbens. Prenatal exposure to MPTP produced a marked dopamine depletion in these brain regions of the offspring, showing that MPTP is able to cross the placental barrier in primates.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine

The competitive NMDA antagonist CGP40.116 enhances L-dopa response in MPTP-treated marmosets.

Experiments in MPTP-treated non-human primates testing potential antiparkinsonian action have shown both, beneficial and adverse effects of gutamate receptor antagonists. To investigate this matter further, the novel competitive NMDA antagonist CGP40.116 was administered systemically to three adult MPTP-treated marmosets. When coadministered subcutaneously with a subthreshold dose of L-DOPA, 2 mg/kg, CGP40.116 25-250 micrograms/kg, increased locomotor activity. However, when administered alone, CGP40.116 had no effect on locomotor activity.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine

[The dependence of rapid voluntary contractions on the tremor phase in parkinsonism].

Parkinsonian patients sometimes have problems to produce really fast motor responses. Often, these are significantly delayed in comparison to those of normal controls. In patients with tremor-at-rest, this delay might be induced by some attraction of the movement execution to the tremor oscillator, according to a hypothesis of Hallet et al. (1977). This study now examined the phase relationship between the on-going tremor and the onset of fast voluntary contractions in Parkinson's disease (PD), quantitatively. Five patients with prominent tremor-at-rest performed rapid isometric index finger abductions under self paced (SP) and reaction time (RT) conditions, and force and surface EMG signals from the FDI muscle were analyzed. In both conditions the SP and the RT, data showed that the onset of the contraction mostly occurs during the descending phase of the tremor oscillation and, accordingly, the phasic EMG burst synchronously with the tremor bursts confirming the above mentioned hypothesis.

Aged

The nucleotide sequence of a DNA fragment from the replication origin of the antibiotic resistance factor R1drd19.

The recombinant plasmid pRK101 contains a DNA fragment which carries the complete replication origin of the antibiotic resistance factor R1drd-19 inserted into the vector plasmid pBR322. In a spontaneously arising mutant of this plasmid (pRK103) a deletion of about 215 base pairs (bp) has been detected by heteroduplex analysis and mapping with restriction endonucleases. Essential parts of the replication origin must be located in the deleted sequence. The deletion mutant pRK103, in contrast to its parent plasmid pRK101 is not replicated under the control of the R1 replicon, even when the R1 factor or copy mutants of it are present within the same cell. These latter plasmids can complement a plasmid-specific protein not coded by pRK101 but essential for R1-directed replication. The nucleotide sequence of a 252 bp HpaII fragment covering about 170--200 bp of the deletion was determined. This piece of DNA is rich in G and C and contains a series of small palindromes, symmetrically arranged repeated sequences and short selfcomplementary structures which may be of significance for the initiation of the DNA replication. The possiblity that the sequenced DNA fragment comprises a major part of the replication origin of R1drd-19 is discussed.

Base Sequence

Deoxyribonucleic acid synthesis in Saccharomyces cerevisiae cells permeabilized with ether.

Cells of Saccharomyces cerevisiae permeabilized by treatment with ether take up and incorporate exogenous deoxynucleoside triphosphate into deoxyribonucleic acid (DNA). With rho(+) strains, more than 95% of the product was mitochondrial DNA (mtDNA). This report characterizes ether-permeabilized yeast cells and describes studies on the mechanism of mtDNA synthesis with this system. The initial rate of in vitro mtDNA synthesis with one strain (X2180-1Brho(+)) was close to the rate of mtDNA replication in vivo. The extent of synthesis after 45 min was sufficient for the duplication of about 25% of the total mtDNA in the cells. The incorporated radioactivity resulting from in vitro DNA synthesis appeared in fragments that were an average of 30% mitochondrial genome size. Density-labeling experiments showed that continuous strands of at least 7 kilobases after denaturation, and up to 25 kilobase pairs before denaturation, were synthesized by this system. Pulse-chase experiments demonstrated that a large proportion of DNA product after short labeling times appeared in 0.25-kilobase fragments (after denaturation), which served as precursors of high-molecular-weight DNA. It is not yet clear whether the short pieces participate in a mechanism of discontinuous replication similar to that of bacterial and animal cell chromosomal DNA or whether they are related to the rapidly turning over, short initiation sequence of animal cell mtDNA. In rho(0) strains, which lack mtDNA, the initial rate of nuclear DNA synthesis in vitro was 1 to 2% of the average in vivo rate. With temperature-sensitive DNA replication mutants (cdc8), the synthesis of nuclear DNA was temperature sensitive in vitro as well, and in vitro DNA synthesis was blocked in an initiation mutant (cdc7) that was shifted to the restrictive temperature before the ether treatment.

DNA, Fungal

Isolation and characterization of the minimal fragment required for autonomous replication ("basic replicon") of a copy mutant (pKN102) of the antibiotic resistance factor R1.

The mini plasmids deriving from pKN102, a copy mutant of the antibiotic resistance factor R1drd-19 of E. coli, share a common DNA sequence of 2.6 kb, which carries the minimal functions for autonomous replication. By cloning of two PstI fragments of this region it could be demonstrated that the "basic replicon" is a DNA segment not larger than 1.8 kb, which carries the orgin of replication and the genetic information for at least two proteins. Protein F (NW=11.000 dalton) seems to be synthesed in larger amounts in minicells of E. coli than protein C (20.000). Plasmids containing this isolated replicon of R1 are completely compatible with the parental plasmid R1drd-19.

Anti-Bacterial Agents

Evidence that GABA is not the afferent transmitter in the cochlea.

The GABA antagonists picrotoxin, bicuculline and bicuculline-methochloride, when applied intracochlearly, do not affect the compound action potential of the cochlear nerve. It is therefore concluded that these drugs do not interfere with afferent synaptic transmission, and therefore that GABA is not the afferent transmitter. With very high doses, picrotoxin as well as bicuculline-methochloride partially block the efferent synapses. This effect is most likely to be unspecific, but shows that with the technique used the agents can reach the synaptic site.

Acoustic Stimulation

Deoxyribonucleic acid synthesis in permeabilized spheroplasts of Saccharomyces cerevisiae.

Osmotically shocked spheroplasts from Saccharomyces cerevisiae incorporated deoxynucleoside triphosphates specifically into double-stranded nuclear and mitochondrial deoxyribonucleic acid (DNA). Results with this in vitro system for cells with and without mitochondrial DNA were compared. Strains lacking mitochondrial DNA were used to study nuclear DNA replication. With a temperature-sensitive mutant defective in DNA replication in vivo, DNA synthesis in vitro was temperature sensitive as well. The product of synthesis with all strains after very short labeling times consisted principally of short fragments that sedimented at approximately 4S in alkali; with longer pulse times or a chase with unlabeled nucleotides, they grew to a more heterogenous size, with an average of 6 to 8S and a maximum of 15S. There was little, if any, integration of these DNA fragments into the high-molecular-weight nuclear DNA. Analysis by CsCl density gradient centrifugation after incorporation of bromodeoxyuridine triphosphate showed that most of the product consisted of chains containing both preexisting and newly synthesized material, but there was also a small fraction (ca. 20%) in which the strands were fully synthesized in vitro. (32)P-label transfer ("nearest-neighbor") experiments demonstrated that at least a part of the material synthesized in vitro contained ribonucleic acid-DNA junctions. DNA pulse-labeled in vivo in a mutant capable of taking up thymidine 5'-monophosphate, sedimented in alkali at 4S, as in the case of the in vitro experiments.

Adenosine Triphosphate

[Morphology and physiopathology of Billroth I gastroduodenostomy].

97 patients subjected from 1 to 7 years previously to partial gastric resection by gastroduodenostomy (Billroth I) have been studied endoscopically and radiologically. Acid secretion after pentagastrin injection has also been determined. The most frequent mucous alterations identified by endoscopy were erosions in the stomach residue with inflammatory granulation in the anastomosis region. Recurrent ulcers were observed in 3% of cases. Acid secretion was reduced in 87% by comparison with the preoperative picture. The quantity of residual recretion depended on the greater curvature of the residual stomach. Radiological studies highlighted functional modifications indicative of organized motility in the residual stomach and pseudopyloric function at anastomosis level making coordinated draining possible.

Follow-Up Studies

[Morphology and pathophysiology of Billroth I gastro-duodenostomy (author's transl)].

Endoscopic and radiological studies were undertaken in 97 patients who had had a partial gastric resection with gastro-duodenostomy (Billroth I) one to seven years previously. Acid secretion was also analyzed after injection of pentagastrin. The most frequent mucosal changes seen at endoscopy were erosion in the residual stomach, with inflammatory granulation in the region of the anastomosis. Recurrent ulcers were seen in 3%. Acid secretion was reduced by 87% from its pre-operative level. The amount of residual secretion depended on the length of the greater curvature in the residual stomach. Radiological studies revealed functional changes indicating that there is a motility pattern in the residual stomach and a pseudopyloric function at the anastomosis which makes co-ordinated emptying possible.

Follow-Up Studies