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Behavioral pharmacology of sigma-ligands.

G Skuza, K Wedzony

Pharmacopsychiatry November 1, 2004 DOI: 10.1055/s-2004-832676 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

Sigma receptors are unique brain binding sites distinct from opioid and PCP receptors, classified into sigma-1 and sigma-2 subtypes, with sigma-1 recently cloned. They modulate neurotransmitter systems including noradrenergic, glutamatergic, and dopaminergic pathways. Initially linked to psychotic disorders, they are now implicated in motor disorders, psychotic disorders, and neuroprotective mechanisms. Recent development of high-affinity, selective sigma ligands has enabled investigation of their therapeutic potential. This review summarizes behavioral effects of sigma receptor ligands in animal models related to schizophrenia and affective disorders.

Study at a glance

Characteristics Review Peer reviewed
Key finding Sigma receptors modulate central neurotransmitter systems and are involved in motor disorders, psychotic disorders, and neuroprotective mechanisms.

Abstract

Sigma (sigma) receptors, first defined as a subclass of opioid receptors, later confounded with the high affinity phencyclidine (PCP) binding sites, now are regarded as unique binding sites, distinct from opiate and PCP receptors, and related to higher brain function. The investigation of functional significance of sigma receptors in the brain has been hampered for many years by relative lack of specific tool drugs and by the unavailability of their coherent classification into postulated agonists and antagonists. However, a potential involvement of sigma receptors in psychotic disorders was first suggested soon after their discovery. The sigma receptors are classified into two subtypes, sigma (1) and sigma (2) receptors, of which the first was recently cloned from rodent and human tissues while the second has not yet been fully characterized. Although the precise mechanism of the functional response of these receptors is still uncertain, it is accepted that sigma receptors can modulate a number of central neurotransmitter systems, including noradrenergic, glutamatergic and dopaminergic ones. The sigma receptors have been postulated to be involved in numerous pharmacological and physiological functions, including motor disorders, psychotic disorders, neuroprotective mechanisms. In the last years, a number of compounds with a high affinity and selectivity for sigma binding sites have been discovered and investigated for their therapeutic potential. In this review, we try to summarize the behavioral effects of sigma receptor ligands that have been described, and their activity in animal models related to some brain disorders, especially schizophrenia and affective disorders.

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