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Biomedical subjects

A J Kastin

Publications and source records attributed to A J Kastin.

At least 19 recordsLinked to original sources

Systemic administration of Met-enkephalin, (D-Ala2)-Met-enkephalin, beta-endorphin, and (D-Ala2)-beta-endorphin: effects on eating, drinking and activity measures in rats.

Rats were given four daily, interperitoneal injections (80 micrograms/kg) of Met-enkephalin, (D-Ala2)-Met-enkephalin-NH2, beta-endorphin, (D-Ala2)-beta-endorphin or the diluent (0.9% NaCl acidified to, 0.01 M with acetic acid). Animals were subsequently tested for food and water inake and activity. Met-enkephalin injections did not affect any of the measures but its (D-Ala2) analog reduced food intake and some of the activity measures in a complicated way. beta-Endorphin injections did not affect food or water intake; in familiar situations these animals were less active while novel situations seemed to potentiate activity. The (D-Ala2) analog reduced wheel running over 24 hours.

Animals

Effects of an enkephalin analog on complex learning in the rhesus monkey.

Facilitation of the learning of a discrimination reversal task for a reward of food was found in rhesus monkeys after subcutaneous administration of a potent pentafluorinated enkephalin analog. (D-Ala2)-F5-Phe4-enkephalin-NH2. General activity, short-term memory, startle, and analgesia, however, were not significantly affected. In a within-subject design, each of 6 monkeys (3 males and 3 females) received each of 5 doses of the enkephalin analog (0.1, 1, 10, 100, and 1,000 microgram/kg). One daily injection was made for 7 consecutive days, including pre- and posttests on the first and last days with the diluent control. The enkephalin doses, with the exception of the 0.1 microgram/kg level, produced significantly faster learning than the diluent. Some sex differences were suggested by the data, but these effects are difficult to interpret. The results suggest that relatively small amounts of this analog given systematically can exert a reliable effect on a complex behavior such as reversal learning at doses devoid of opiate effects, due perhaps to enhanced cognitive flexibility rather than improvement in short-term memory or association formation.

Analgesia

Possible non-narcotic component to action of opiate peptides on tonic immobility.

Chickens were tested in a tonic immobility paradigm after a single intraperitoneal injection of either 0.0, 0.1, 1.0, 10.0; 100.0, or 1000.0 microgram/kg of the potent opiate analog, (D-Ala2, F5Phe4)-Met-enkephalin-NH2. An inverted-U relationship was obtained, with 100 microgram/kg being the most effective in prolonging immobility. This dose was used in subsequent studies involving pretreatment with naloxone or diluent followed by treatment with diluent, (D-Ala2, F5Phe4)-Met-enkephalin-NH2 (a strong opiate), or (D-Phe4)-Met-enkephalin (a weak opiate). The results indicated that although naloxone had mixed effects in attenuating the duration of tonic immobility, even the analog with negligible opiate activity reliably potentiated the response. Therefore, a component of the effect of opiate peptides on tonic immobility could be due to a non-narcotic action.

Animals

Analgesia after peripheral administration of enkephalin and endorphin analogues.

Several analogues of Met-enkephalin and beta-endorphin were tested for their analgesic properties after systemic injection. The latencies of mice to flick their tails away from a source of heat revealed that analogues of the opiate peptides can cause analgesia when injected by this route. In particular, compounds specifically designed to be more lipophilic or to possess additional binding sites were shown to be potent analgesic after peripheral administration.

Analgesics

Additional evidence that small amounts of a peptide can cross the blood-brain barrier.

It was determined that an antiserum against delta-sleep inducing peptide (DSIP) required eight of the nine constituent amino acids for antigenic activity. Measurement by this radioimmunoassay (RIA) or DSIP-like material in the rat brain, therefore, would necessarily involve almost the entire molecule present in essentially intact form. Injection of 200 microgram DSIP into the carotid artery of rats resulted in a doubling of brain levels of peptide as measured shortly afterwards by RIA. The brain tissue to plasma ratio of radioactivity in rats injected with labeled DSIP was much higher than that in rats injected with labeled inulin; this suggests that the increased amount of material measured by RIA was not merely trapped in the blood vessels. Thus, the results indicate that a small amount of essentially intact peptide can cross the blood-brain barrier. This could represent one of the mechanisms by which central effects of peripherally injected peptides can be exerted.

Animals

MIF-I's differential actions as an opiate antagonist.

The effects of MIF-I (Pro-Leu-Gly-NH2) were examined in three experimental conditions in which the opiate antagonist naloxone is active. MIF-I was found to block the analgesic effects of enkephalins and also morphine in the tail-flick test but not in the vas deferens assay. Unlike naloxone, MIF-I did not seem to reduce food intake in VMH-lesioned rats. The results suggest the possibility that MIF-I may represent a class of naturally occurring opiate antagonists with varying activities in independent situations.

Analgesics

Naloxone-induced suppression of food intake in normal and hypothalamic obese rats.

Intraperitoneal injections of naloxone hydrochloride (1, 2, 4, and 8 mg/kg) suppressed food intake in both normal and hypothalamic obese rats maintained on a 4-hr per day feeding schedule. The decrease in feeding was more pronounced in the animals with ventromedial hypothalamic lesions. Appetitively motivated feeding, i.e., the consumption of sweetened milk under nondeprived conditions, was also suppressed by naloxone, but there was no reliable difference between groups. It is concluded that opiate receptors located in the ventromedial hypothalamus are not essential for the effects of opiate agonists and antagonists on feeding behavior.

Animals

Experiments with a reported anorexigenic tripeptide: pyro-Glu-His-Gly-OH.

A newly described tripeptide, pyro-Glu-His-Gly-OH, which was reported to produce profound and long-term anorexia and weight loss in female mice, was initially tested in female rats. After total dose of either 8, 16, or 32 microgram SC of the peptide, administered across an eight day interval, there was no detectable effect on food intake, body weight, or estrous cycles of female rats. In a second study, we attempted to verify the anorexigenic potency of this peptide in mice. Total doses of 3.4 and 6.8 microgram, injected across a 20 day period, had no effect on the food intake or body weight of S/W albino female mice. Thus, the anorexigenic potency of pyro-Glu-His-Gly-OH has yet to be established.

Animals

Endogenous opiates: through 1978.

The discovery of receptors in the brain for opiates and the structure of the endogenous peptides for these receptors has led to an explosion of interest in this field. The present review is the first of an annual series. It summarizes many of the highlights of research with opiate peptides published with a date of 1978 or earlier.

Animals

Comparison of long-acting analogues of luteinizing hormone releasing hormone in man.

Currently, LHRH, when used therapeutically, is given by parenteral injection every 8 h. We have looked at the release of LH and FSH induced by five analogues of LHRH and compared this with gonadotrophin release after synthetic LHRH. The analogues were substituted in position 6 or in positions 6 and 10 and were given intravenously, intranasally or subcutaneously in three separate studies. After intravenous administration of 100 micrograms, all analogues caused greater release of LH and FSH than did synthetic LHRH. Given intranasally in a dose of 500 micrograms, three of the four analogues tested caused greater LH and FSH release than did LHRH. With tryptophan substitution in position 6 (D-TRP6-LHRH), mean LH levels in five subjects were still above the normal range 24 h after a single intranasal dose. The intranasal administration of selected analogues of LHRH has great potential in the treatment of conditions associated with deficient gonadotrophin secretion, provided that pituitary overstimulation, which may eventually lead to a decrease in LH and FSH output by the anterior pituitary, is avoided.

Administration, Intranasal

Panhypopituitarism and anemia secondary to traumatic fracture of the sella turcica.

A case of a 27 year old man who developed anemia after fracture of the sella turcica is reported. The diagnosis of anterior pituitary insufficiency was made by a combined provocative test with TRH, LHRH, and insulin. The anemia was characterized by a hypocellular bone marrow which appeared to be functioning only in the thoracic-lumbar vertebrae, an absence of measurable erythropoietic activity, and by the return to normal of the hematological findings after hormonal replacement therapy. This patient had the highly unusual combination of proven panhypopituitarism and significant anemia resulting from a distinct fracture of the sella turcica.

Adult