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Biomedical subjects

P Külling

Publications and source records attributed to P Külling.

6 recordsLinked to original sources

Cerebral beta-endorphin levels in a woman with Prader-Labhart-Willi syndrome.

By means of a specific two-site immunoradiometric assay, we explored the beta-endorphin levels in various brain regions of a patient affected by Prader-Labhart-Willi Syndrome. The rank of the beta-endorphin levels of five cerebral zones (hypothalamus, substantia grisea centralis, pons dorsalis, medulla oblongata dorsalis medialis, thalamus medialis) of the patient was homologous to that of subjects without the syndrome, except for the medulla oblongata dorsalis medialis. In patient with the Prader-Labhart-Willi Syndrome this region had a higher ranking level than in subjects without it. However, a functional meaning cannot be attributed to such difference because the patient of this study did not exhibit neurological disturbances relating to elevated beta-endorphin levels in the medullary region investigated.

Adult↗

Beta-endorphin-like immunoreactivity levels in the hypothalamus, the periaqueductal grey and the pituitary of the DBA mouse: determination by ELISA and relationship to nociception.

The present paper describes the development and application of an enzyme-linked immunosorbent assay (ELISA) for the assessment of beta-endorphin-like immunoreactivity (beta-ELIR) level in the hypothalamus, the periaqueductal grey (PAG) and the pituitary of DBA/2 mice that were subjected to mild social stress (aggressive confrontation). After confrontation these subjects showed elevated tail-flick latencies (TFL) when compared to controls, a finding that indicates stress-induced analgesia (SIA). A positive correlation was found between individual TFLs and beta-ELIR levels in the PAG but not in the hypothalamus and the pituitary. These results suggest that individual baseline PAG beta-ELIR levels may be taken as a predictor of high degrees of stress-induced analgesia.

Agonistic Behavior↗

Social conflict-induced changes in nociception and beta-endorphin-like immunoreactivity in pituitary and discrete brain areas of C57BL/6 and DBA/2 mice.

The present study characterizes the time course of social conflict analgesia and its reversibility by opioid antagonist drugs in the C57BL/6 and DBA/2 inbred strains of mice and examines the relationship between alterations in brain and pituitary levels of beta-endorphin-like immunoreactivity (beta-ELIR) and the antinociception elicited by social stress. Data revealed statistically significant strain differences in regard to beta-ELIR in control animals. The pituitary content of beta-ELIR was higher in DBA/2, while the values in the periaqueductal grey (PAG) and in the amygdala were higher in C57BL/6 mice. No interstrain differences were found in the hypothalamus. Exposure to 50 attack bites resulted in a 6-fold higher analgesia in DBA/2 mice and in a strain-independent fall of beta-ELIR in pituitary (approximately 27%) and PAG (23%). PAG but not pituitary beta-ELIR levels in C57BL/6 mice correlated positively with the increase in tail-flick latency after attack. Mere confrontation with a non-aggressive opponent failed to induce analgesia and was associated in C57BL/6 mice with a significant reduction in the beta-ELIR content of both the pituitary and the PAG. The data are discussed in terms of genotype-dependent sensitivity of the beta-endorphin system to stress and its relation to analgesia.

Aggression↗

Effects of repeated as compared to single aggressive confrontation on nociception and defense behavior in C57BL/6 and DBA/2 mice.

Behavioral reactions (submissive postures, escape, immobility, activity, locomotion) in C57BL/6 and DBA/2 test mice were recorded during single (50 bites) or three repeated (3 X 50 bites, separated by 24 hr) aggressive confrontations, as well as during a nonaggressive confrontation 24 hr after the last aggressive confrontation with opponents of the opposite strain. Nociception (hot plate response latency) was measured 1 min after aggressive or nonaggressive confrontations. During repeated aggressive confrontation, DBA mice reacted with a stable pattern of escape and analgesia, whereas C57 mice failed to develop an analgesic response and changed their behavioral defense strategy during repeated aggressive confrontations (decrease of escape, increase of defensive upright). The conditioned display of submission and of escape behavior during nonaggressive confrontation did not change as a function of earlier repeated aggressive confrontations in DBA mice, while C57 mice showed a significant increase of defensive upright postures and immobility. Conditioned analgesia was not observed after nonaggressive confrontations. The results point toward a dissociation between attack-elicited behavior and antinociception and suggest that encounter-induced analgesia may influence the processing of aversive experience.

Aggression↗

Cerebral distribution of beta-lipotropin and beta-endorphin in infantile progressive spinal muscular atrophy of Werdnig and Hoffman disease.

The regional distribution's profile of beta-endorphin (beta-EP) and beta-lipotropin (beta-LPH) was determined in the brain of an infant who died from Werdnig-Hoffmann's disease. Regional levels of beta-endorphin-like immunoreactivity (beta-ELIR), resulting from beta-EP and beta-LPH, were generally low in comparison to the homologous levels found in victims dying of other diseases.

Brain Chemistry↗

A novel two-site immunoradiometric assay for beta-endorphin using nitrocellulose as solid phase.

A two-site immunoradiometric assay for the highly specific direct quantitation of nonacetylated beta h-EP in crude brain tissue samples has been developed with a detection limit of 10 fmol per well. The assay used two different antibodies with distinct specificities: a polyclonal rabbit anti-beta h-EP antibody binding between the middle portion and the C-terminal end of beta h-EP was bound to nitrocellulose membrane discs, a solid phase with a high protein binding capacity. In the following two incubation steps, the beta h-EP containing crude tissue extract--or the beta h-EP-standard--and, subsequently, the 125I-labeled monoclonal 3-E7 mouse antibody directed against the N-terminus of beta h-EP were added. Binding of beta h-EP to the solid phase antibody in the first incubation step was not affected by the addition of cross reacting opioid peptides derived from beta h-LPH up to 10 pmol per disc. Nonspecific binding of the labeled antibody to the solid phase could be lowered to 3% of total counts by the use of PBS containing nonfat dry milk as blocking solution and incubation buffer, a procedure that did not reduce maximum specific binding. Dilution studies performed with extracts sampled from the anterior hypothalamus excluded the interference of tissue factors in the assay.

Brain↗