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PubMed · 219989

Pituitary hormones and amnesia.

Abstract

Pituitary hormones profoundly influence behavior through direct actions on the brain. One of these behavioral effects is the attenuation of experimental amnesia. Traditionally, amnesia is considered as a "loss of memory." Memory comprises at least 2 stages: input (memory consolidation) and output (memory retrieval). Theoretically, disturbance of either aspect of memory may be the cause of amnesia. Also, it is possible that amnesia is based on a factor or factors not related to memory. Data and theories on amnesia in man were reviewed. Some salient features were mentioned: (1) amnesia can be induced by a variety of agents; (2) amnesia covers periods ranging from seconds to years; (3) amnesia gradients can be established; (4) amnesia is to a large extent reversible. From this survey, it seems possible that amnesia is not a homogeneous phenomenon and that even in one person a disturbance of both memory consolidation and memory retrieval may be produced by one and the same event. Animal studies in general have confirmed these conclusions. We have developed an animal model in order to study the effects of pituitary peptides on amnesia. This model is based on CO2-induced amnesia for a one-trial passive avoidance response in rats. This amnesia could be attenuated by treatment with ACTH-analogs 1 hour before the retrieval test. This anti-amnesic effect of ACTH-analogs was not dependent on the nature of the behavioral response or the amnesic treatment. The vasopressin-analog DGLVP similarly exerted an anti-amnesic effect when injected before the retrieval trial. In contrast to ACTH-analogs, however, it also reduced the amnesia when injected before acquisition. These results suggest that amnesia may comprise a "faulty-consolidation" and a "faulty-retrieval" component, which may be amended by different pituitary hormones. The study of the anti-amnesic activity of peptides therefore not only serves to characterize the nature of the behavioral effect of these peptides but may also prove to be helpful of the unraveling of processes involved in amnesia.

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BibTeXRIS

H Rigter, H Van Riezen. 1979. Pituitary hormones and amnesia.. https://pubmed.ncbi.nlm.nih.gov/219989/

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[Factor(s) controlling the secretion of adrenocorticotropin (ACTH) in peripheral plasma (author's transl)].

The factor(s) controlling the secretion of ACTH in peripheral plasma are not well known. The effects of non-extracted and extracted plasma on ACTH secretion were investigated using rat anterior pituitary cell cultures. Medium ACTH was assayed by radioimmunoassay, and the corticotropin releasing activity (CRA) was expressed as ACTH released. One hundred ul of non-extracted plasma showed significant CRA, whereas greater volumes of plasma showed reduced activity. Non-extracted plasma (250 approximately 500 microliter) rather reduced the secretion of ACTH evoked by hypothalamic extract (HE). When plasma was extracted with 0.2 N-acetic acid-acetone and divided into an acid phase and an acetone-ether phase by adding ether, the CRA was recovered in the acid phase while no significant activity was observed in the acetone-ether phase. The acid phase extract of plasma showed a positive dose-response relationship between the amount of plasma extract (50 approximately 800 microliter plasma equivalent) and ACTH release in pituitary cell cultures. The organic phase of plasma extract inhibited HE-induced release of ACTH, and this ACTH-release inhibiting activity was presumed to be corticosterone. When the acid phase extract of 20 ml plasma was applied to a Sephadex G-25 (fine) and eluted with 0.2 N acetic acid, two peaks of CRA were observed. One eluted in the region of void volume and another eluted in the retarded region where no activity was found in chromatography of HE. HE increased both ACTH and cyclic AMP release, but the plasma extract reduced cyclic AMP release. These results suggest that plasma contains both CRA and ACTH release inhibiting activity which can be extracted separately, and that plasma CRA is different from the hypothalamic corticotropin releasing factor.

Adrenocorticotropic Hormone