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Query: UMLS:C0036341 (
schizophrenia
)
60,220
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
CI-943 is a new drug candidate with antipsychotic-like activity in a variety of behavioural tests in rodents and primates, but without any affinity for brain dopamine receptors. CI-943 does not cause dystonia in monkeys, a predictive symptom of extrapyramidal side effects (EPS). Its mechanism of action remains unclear.
Neurotensin
(NT) concentration in nucleus accumbens and caudate is increased by CI-943; this may be associated with its antipsychotic effect. Indeed various observations suggest that the clinical action of antipsychotic drugs may at least be partially mediated by some neuropeptides. Various actions of
neurotensin
are reviewed. The hypothesis on the role of
neurotensin
represents a new strategy in the development of pharmacological tools for the treatment of
schizophrenia
.
...
PMID:Antipsychotics and neuropeptides: the atypical profile of CI-943 and its relationship to neurotensin. 868 14
Antipsychotic drug therapy mainly rests on the use of antagonists of dopamine D2-like (D2, D3 and D4) receptors, for which all clinically active compounds have high affinity. The D3 receptor has a restricted expression in brain limbic areas, associated with cognitive functions and motivated behavior. D3 selective agonists and antagonists reveal an inhibitory role on motor behaviors for the D3 receptor, opposite to that of the D2 receptor. An opposing role for D2 and D3 receptors is also suggested by the contrasted effects of D2/D3 antagonists on
neurotensin
expression in discrete subdivisions of nucleus accumbens, where D2 and D3 receptors are selectively expressed. Tolerance to the motor but not to the therapeutic effects of neuroleptics is observed after repeated administration, which upregulates the D2, but not the D3 receptor in animals. In genetic association studies, an excess of homozygosity for both alleles of the BalI polymorphism at the D3 receptor gene was found in schizophrenic patients, suggesting that this gene may have subtle influence on the liability to develop
schizophrenia
. These results suggest the D3 receptor as an important target for antipsychotic drug action, and D3 receptor selective antagonists as promising therapeutic agents.
...
PMID:The dopamine D3 receptor and schizophrenia: pharmacological, anatomical and genetic approaches. 877 53
Neurotensin
, an endogenous peptide and putative neurotransmitter, exhibits a wide range of interactions with dopaminergic neurons and displays some actions akin to neuroleptics. Moreover,
neurotensin
receptors are abundant in specific layers of the entorhinal cortex where cytoarchitectural abnormalities have been reported in
schizophrenia
. We therefore examined the entorhinal cortex from postmortem specimens of five control patients and six schizophrenic patients for alterations in neurotensin receptor quantitation and distribution using receptor autoradiography. Specific 125I-
neurotensin
binding was concentrated in layer II cell clusters, with a 40% reduction in binding in the schizophrenic group (p < 0.05). Moderate binding was observed in both cohorts in deep layers V/VI, with negligible binding in the hippocampus. There was no statistical difference in quantitative
neurotensin
binding in other lamina of the entorhinal cortex of schizophrenics compared with controls. The characteristic laminar pattern of binding did not differ between cohorts. The reduction in
neurotensin
binding in schizophrenics is consistent with an increasing number of reports of structural abnormalities in the medial temporal lobe of schizophrenics in general and the entorhinal cortex in particular. Further studies are required to examine the evidence for neuroanatomic and neurochemical pathology in the entorhinal cortex.
...
PMID:Autoradiographic characterization of neurotensin receptors in the entorhinal cortex of schizophrenic patients and control subjects. 878 24
Neurotensin
(NT, pGlu-Leu-Tyr-Glu-Asn-Lys-Pro-Arg-Arg-Pro-Tyr-Ile-Leu) is a tridecapeptide that displays a wide spectrum of biological actions. Cyclic derivatives of a hexapeptide NT [(8-13)] (N alpha MeArg-Lys-Pro-Trp-Tle-Leu, Tle = tert-leucine) were designed and prepared by a combination of solution and solid-phase peptide synthetic methodologies. As reported previously, several analogs possessed nanomolar binding affinities for NT receptors in newborn (10-day-old) mouse brain membrane preparations. In this study, we determined the functional ability of these analogs to mobilize intracellular free calcium, [Ca2+]i, in HT-29 cells (human colonic adenocarcinoma). Of greatest interest were the cyclic compounds 2, 6 and 9 that had Ki values of 0.19, 3.50 and 4.18 microM for [3H]NT labeled receptors in the HT-29 cell membrane assay, respectively. In the functional assay, compounds 2 and 6 mobilized [Ca2+] with EC50 values of 0.13 and 20 microM, respectively. In comparison, Compound 9 blocked the NT-induced mobilization of [Ca2+]i, with an IC50 of 1.70 microM. The present findings indicate that small molecule cyclic analogs, that possess functional activity, can be designed and may have therapeutic utility in the treatment of
schizophrenia
and possibly other neurological disorders.
...
PMID:Functional activity of new C-terminal cyclic-neurotensin fragment analogs. 881 44
Dopaminergic hyperactivity in nucleus accumbens and dopaminergic hypoactivity in prefrontal cortex are thought to underlie positive and negative symptoms of
schizophrenia
, respectively. The caudate putamen is the neuroanatomical substrate for extrapyramidal side effects resulting from chronic antipsychotic treatment. We sought to identify potential endogenous regulators of dopamine release that might produce differential effects in these brain areas. We tested
neurotensin
, N-acetyl-aspartyl-glutamate and beta-endorphin for potential regulation of [3H]dopamine release in these regions of guinea pig brain. All three peptides stimulated dopamine release, above basal activity, at all concentrations tested in the three regions.
Neurotensin
significantly enhanced and N-acetyl-aspartyl-glutamate had no significant effect on N-methyl-D-aspartate-stimulated release from all three regions. In contrast, beta-endorphin significantly inhibited N-methyl-D-aspartate-stimulated release in nucleus accumbens and caudate putamen. These results suggest that these neuropeptides may regulate endogenous dopamine release and therefore may be potential therapeutic targets for antipsychotic drug development.
...
PMID:Neurotensin, N-acetyl-aspartylglutamate and beta-endorphin modulate [3H]dopamine release from guinea pig nucleus accumbens, prefrontal cortex and caudate-putamen. 892 14
Neurotensin
is a 13-amino acid hormonal peptide which was first isolated from bovine hypothalamus. It is present in the digestive tract as well as in the central nervous system. It has a variety of biological activities as a central neurotransmitter or neuromodulator, and a peripheral hormone. NT receptors have been characterized in a variety of tissues and cell lines of peripheral and central organs. The physiological functions of NT include stimulation of pancreatic and biliary secretion, stimulation of colonic motility, inhibition of small bowel and gastric motility, trophic effect on numerous tissues of the gastrointestinal tract. NT exerts hypothermic and analgesic effect when injected into the central nervous system. From a clinical standpoint, studies with NT have led to implications of its involvement in
schizophrenia
, Parkinson's disease and Alzheimer's disease.
...
PMID:[Neurotensin--structure, origin and biological function]. 933 84
Neurotensin
is a neuropeptide which coexists with mesolimbic dopamine and has exhibited neuroleptic-like activity in the nucleus accumbens. This study examined the effects of
neurotensin
infused into the nucleus accumbens on prepulse inhibition (PPI) of the rat's acoustic startle reflex, a measure which is relevant to the sensorimotor gating deficits seen in
schizophrenia
.
Neurotensin
(5 micrograms) had no effect on the amplitude of the acoustic startle reflex nor on baseline PPI, but it potentiated the disruption of PPI produced by amphetamine and apomorphine. This is the first report of a pro-dopamine action for intra-accumbens
neurotensin
, and suggests that a complex behavioral pharmacology is associated with this neuropeptide.
...
PMID:Pro-dopamine effects of neurotensin on sensorimotor gating deficits. 939 52
Agonists of the neuropeptide
neurotensin
have been proposed as potential novel antipsychotics based on their ability to modulate neurotransmission in brain regions associated with
schizophrenia
. To test this hypothesis, we examined the effects of a
neurotensin
mimetic with improved metabolic stability in an animal model with strong predictive validity for antipsychotic activity. Subcutaneous injections of PD149163, a reduced amide
neurotensin
(8-13) mimetic, significantly antagonized the reduction of prepulse inhibition (PPI) of the rat startle reflex produced by amphetamine and by the phencyclidine analog dizocilpine. PD149163 had no significant effect on baseline PPI or on baseline startle amplitude and did not antagonize the reduction of PPI produced by the direct dopamine agonist apomorphine. These findings suggest that PD149163 has novel antipsychotic-like properties that are distinct from known members of both the "typical" and "atypical" families of antipsychotics.
...
PMID:Novel antipsychotic-like effects on prepulse inhibition of startle produced by a neurotensin agonist. 991 79
Neuropeptides: corticotropin releasing factor (CRF), neuropeptide Y (NPY) and somatostatin (STS) have been associated with depression and anxiety, while
neurotensin
(NT), calcitonin gene-related peptide (CGRP) and tachykinins [neurokinin A (NKA) and substance P (SP)] are presumed to also play a role in the function of the dopaminergic system. Moreover, investigations in the past decade have shown that psychotomimetics and antipsychotic drugs as well as lithium affect brain synthesis, tissue concentrations, and release of some neuropeptides. In view of the above, experiments were carried out to explore whether changes in neuropeptides constitute one of the mechanisms of action of electroconvulsive treatment (ECT). Human cerebrospinal fluid (CSF) was studied before and after ECT, and brains from healthy and models of depression rats were investigated in electroconvulsive stimuli (ECS)-treated and sham-treated animals. The major findings were that a series of ECTs, in parallel to clinical recovery, increased CSF concentrations of NPY-like immunoreactivity (-LI), STS-LI, and CRF-LI, and in one study endothelin-LI. A series of ECS, but not a single treatment, reproducibly elevated concentrations of NPY-LI, NKA-LI, and STS-LI--but not NT-LI, SP-LI, galanin-LI, or CGRP-LI--in hippocampus, frontal cortex, and occipital cortex. No changes were measured in other regions, e.g., striatum. NPY and STS mRNAs were also increased indicating that ECS affects peptide synthesis. Generalized seizures induced by, e.g., kainic acid or pentylenetetrazole, had similar effects on neuropeptides. The changes persisted for at least 1 week after the last treatment. Pretreatment with compounds reducing seizures, such as benzodiazepines and MK-801; had no effect on magnitude of neuropeptide changes although the seizure duration was decreased by > 50%. On the basis of these findings, it is suggested that neuropeptides are involved in ECT's mechanisms of action. Since ECT is therapeutically efficient in both
schizophrenia
and depression and, taking into account that antipsychotic drugs and psychotomimetics as well as lithium selectively affect some neuropeptides, it is hypothesized that distinct combinations of neuropeptide and monoamine changes in selected neuronal populations constitute the underpinnings of ECT's effects on specific disease symptoms, conceivably independent of diagnosis.
...
PMID:Neuropeptides and electroconvulsive treatment. 1018 19
1. There has been considerable research in the field of
schizophrenia
over the past few years with emphasis on the discovery of better drugs, particularly those with 5-HT2 antagonist activity. 2. In an effort to enhance identification of such compounds and to further understand the contribution of 5-HT2 activity to the effects of antipsychotic drugs, a series of conventional, atypical and purported antipsychotic compounds were assessed as antagonists of DOI-induced behaviors in rats. 3. DOI (1-(2,5-dimethoxy-4-iodophenyl)-2-aminopropane hydrochloride) is an hallucinogen having high affinity and selectivity as an agonist at 5-HT2A/2C receptors. Over a 30-min period after injection, DOI (0.3-10.0 mg/kg; i.p.) produced dose-related behavioral effects including head-and-body shakes, forepaw tapping and skin-jerks. Effects of the antipsychotic drugs and other compounds (30 min pretreatment; i.p.) were examined against a fixed dose of DOI (3.0 mg/kg). 4. In a dose-dependent manner, M100907 (MDL 100,907), risperidone, haloperidol, clozapine, iloperidone, olanzapine, amperozide, remoxipride, ritanserin and the
neurotensin
agonist NT1 (N alpha MeArg-Lys-Pro-Trp-Tle-Leu) antagonized each of the three behavioral effects of DOI. Drugs attenuating the head-and-body shakes were equally effective in blocking both forepaw tapping and skin-jerks indicating that these behaviors are mediated by similar mechanisms. The following compounds had either inconsistent or no effect on the DOI-induced behaviors: SB 200646A, citalopram, imipramine, fluoxetine, morphine, CP 99994, diazepam, ondansetron and SKF 97541. 5. The data show that antipsychotic agents, as a drug class, effectively block the effects of DOI. These actions are selective, as a series of nine non-antipsychotic and centrally-acting drugs were generally inactive in the procedure.
...
PMID:Selectivity of action of typical and atypical anti-psychotic drugs as antagonists of the behavioral effects of 1-[2,5-dimethoxy-4-iodophenyl]-2-aminopropane (DOI). 1037 35
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