Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “LYSERGIC ACID DIETHYLAMIDE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 721 records · Page 40Linked to original sources

Influence on 5-[3H]hydroxytryptamine binding site development in chick embryo by serotonergic compounds.

Saturable and specific binding sites for 5-[3H]hydroxytryptamine (5-HT, serotonin) characterized by a KD of 3.5-4.5 nM were detected in the chick embryo brain and were shown to develop linearly as a function of age, weight, and protein content. Saturation and displacement studies using unlabeled 5-HT as the displacing ligand suggested a single population of binding sites. However, displacement studies using 5-methoxytryptamine, lysergic acid diethylamide (LSD), 2-bromo-lysergic acid diethylamide (BOL), methysergide, and spiperone as competing ligands suggested the existence of subclasses of [3H]5-HT binding sites because the Hill coefficients were less than unity. When compared with the reported [3H]5-HT binding sites (5-HT1) in the rat forebrain, the IC50 values of the competing ligands were similar. However, the Hill coefficients for LSD and methysergide were less than unity which suggested that the [3H]5-HT binding sites in the chick embryo brain may be more similar to those found in rat spinal cord than rat forebrain. To study [3H]5-HT binding site regulation and development, various serotonergic compounds were injected into the chorioallantoic fluid of the eggs at different times during embryonic development. Multiple pretreatments with d,l-5-hydroxytryptophan, 5-HT, or BOL were found to have no significant effects on either the affinity (KD) or number (Bmax) of specific [3H]5-HT binding sites. Multiple pretreatments with p-chlorophenylalanine were found to increase the Bmax of specific [3H]5-HT binding by 23% (p less than 0.01) whereas multiple pretreatments with LSD were found to decrease the Bmax of specific binding by 45% (p less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

5-Hydroxytryptophan↗

Characterization of a 5-hydroxytryptamine receptor in mouse neuroblastoma N18TG2 cells.

Cyclic AMP formation was found to increase in mouse neuroblastoma N18TG2 cells exposed to 5-hydroxytryptamine (5-HT). This response was concentration-dependent with an EC50 value of 0.22 microM. Tryptamine and other tryptamine-related compounds were also agonists in this assay with a rank order of potency of 5-methoxytryptamine > 5-HT > tryptamine > 2-methyl-5-HT > 5-carboxamidotryptamine >> alpha-methyl-5-HT. (D)-Lysergic acid diethylamide and 2-bromo-lysergic acid diethylamide were partial agonists in this system with maximal responses of 44 and 34%, respectively, compared to 5-HT. 5-HT-stimulated cyclic AMP formation was inhibited by clozapine, mianserin and methiothepin with pA2 values of 6.6, 6.5 and 6.4, respectively. Radioligand binding studies using [125I]iodolysergic acid diethylamide revealed a binding site present at a density of 10.4 fmol/mg of protein, with an affinity for the ligand of 1.18 nM. In competition studies this binding site displayed a pharmacology similar to that defined in studies of cyclic AMP formation. The pharmacological profile of this receptor, characterized by both radioligand binding and functional coupling to adenylyl cyclase, does not correspond to that of any of the currently classified subtypes of 5-HT receptor, but is similar to the 5-HT receptor cloned recently from rat striatum and referred to as the 5-HT6 receptor. The N18TG2 cell line represents a useful model system in which this novel 5-HT receptor may be characterized fully.

Adenylyl Cyclases↗

On the nature of the chemical mediators involved in anaphylactic reactions in mice.

The effects of mepyramine, promethazine, chlorpromazine and lysergic acid diethylamide have been compared on the capillary permeability changes of the skin, produced by histamine, by 5-hydroxytryptamine and by passive cutaneous anaphylaxis in mice. Promethazine, mepyramine and chlorpromazine can inhibit, in decreasing order of activity, the effect of histamine, whilst lysergic acid diethylamide is inactive. Lysergic acid diethylamide and chlorpromazine are equally potent inhibitors of the action of 5-hydroxytryptamine on the peripheral vascular bed, whilst mepyramine is inactive. Promethazine has intermediate activity. Passive cutaneous anaphylaxis is strongly inhibited by chlorpromazine and by promethazine. Mepyramine and lysergic acid diethylamide, each injected alone, affect only weakly the anaphylactic reaction. However, passive cutaneous anaphylaxis is almost completely abolished by the simultaneous injection of the two last antagonists. It is suggested that the anaphylactic reaction in mice is the result of simultaneous release of both mediators, histamine and 5-hydroxytryptamine, each of them strengthening the effect of the other.

Anaphylaxis↗

Serotonin-sensitive adenylate cyclase activity of immature rat brain.

Cell-free preparations from superior and inferior colliculi of very young rats (1-3 days old) contained adenylate cyclase systems which were highly responsive to serotonin. The response to serotonin declined markedly during early development and was very low at maturity. Adenylate cyclase activity in the 10,000 times g particulate fraction from colliculi of newborn rats was significantly stimulated by 0.05 muM serotonin. Half-maximal activation was produced with less than 1 muM serotonin. Maximal stimulation of collicular adenylate cyclase was about 80% above basal enzyme activity and occurred with approximately 50 muM serotonin. Tryptamine and several derivatives of serotonin produced responses which were comparable to that obtained with serotonin; 5-methoxytryptamine was uniformly the most active compound tested. Norepinephrine or dopamine produced much smaller increases in adenylate cyclase activity. Stimulation of collicular adenylate cyclase by serotonin was significantly but incompletely blocked by serotonin antagonists, including d-lysergic acid diethylamide (d-LSD), 2-bromo-d-lysergic acid diethylamide, methysergide, 1-methyl-8 beta-carbobenzyloxy-aminomethyl-10 alpha-ergoline and cyproheptadine. Chlorpromazine also produced partial blockade. In contrast, l-lysergic acid diethylamide, haloperidol, propranolol, phenoxybenzamine and morphine were ineffective as serotonin blocking agents. Of the compounds which produced a partial blockage of serotonin action, d-LSD, cyproheptadine and chlorpromazine were themselves capable of stimulating adenylate cyclase activity. These results are consisent with the existence of multiple receptors in rat brain which are capable of interacting with indoleamines.

5-Hydroxytryptophan↗

Lysergic acid.

Explore the source record for details and available documents.

Lysergic Acid↗

LSD 25.

Explore the source record for details and available documents.

Humans↗

Effects of LSD and BOL on the catecholamine synthesis and turnover in various brain regions.

In the rat, lysergic acid diethylamide (LSD) 0.5 mg/kg and 2-bromo lysergic acid diethylamide (BOL) 0.5 mg/kg increased the rate of the striatal in vivo tyrosine hydroxylation as measured by the DOPA accumulation after decarboxylase inhibition. Neither LSD nor BOL significantly changed the DOPA accumulation in the olfactory tubercle, a dopamine-rich part of the limbic system. LSD but not BOL increased the DOPA accumulation in the cerebral cortex and in the brain stem. LSD and BOL appeared not to alter the rate of alpha-MT-induced disappearance of DA or of NA in the whole brain, nor did they change the rate of the alpha-MT-induced disappearance of DA in the striatum. It is suggested that in the striatum LSD and BOL block autoreceptorss (presynaptic receptors) regulating the tyrosine hydroxylation. These receptors may be DA receptor, but may also be 5-HT- or LSD-sensitive receptors. The regional differences observed between LSD and BOL suggest that LSD in the cerebral cortex and in the brain stem increases the DOPA accumulation by mechanism other than that functioning in the striatum. One possible explanation is that LSD and BOL may differ in their effects on 5-hydroxytryptaminergic systems in the cerebral cortex and in the brain stem.

Animals↗

Potentiation of substance P by lysergic acid diethvlamide in vivo.

In doses of 10 mug/kg or more, lysergic acid diethylamide enhanced the fourth potential (DR IV) of the dorsal root potential complex in the cat. Smaller doses of lysergic acid diethylamide did not in themselves alter the DR IV, but revealed an enhancement of the potential by substance P, which by itself had no effect. 2-Bromolysergic acid diethylamide had no action on the dorsal root potentials, but prevented the actions of lysergic acid diethylamide.

Animals↗