Skip to content

The 5-HT1A receptor biased agonists, NLX-204 and NLX-101, like ketamine, elicit rapid-acting antidepressant activity in the rat chronic mild stress model via cortical mechanisms.

Mariusz Papp, Piotr Gruca, Ewa Litwa, Magdalena Lason, Adrian Newman-Tancredi, Ronan Depoortère

Journal of psychopharmacology (Oxford, England) July 1, 2024 DOI: 10.1177/02698811241254832 via PubMed

Summary

AI-generated from the abstract

Two compounds that selectively activate serotonin 5-HT1A receptors in a biased manner, NLX-101 and NLX-204, produce rapid antidepressant effects in rats exposed to chronic mild stress, similar to ketamine. When injected directly into the prefrontal cortex, these compounds reversed stress-induced anhedonia, reduced anxiety, and improved working memory deficits. Blocking 5-HT1A receptors in the prefrontal cortex eliminated these benefits, showing that the compounds work specifically through these receptors. The findings suggest that biased agonism at 5-HT1A receptors is a promising strategy for rapid-acting antidepressants that may avoid ketamine's side effects while also addressing cognitive deficits and anxiety.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Male Wistar rats
Interventions NLX-101 NLX-204 ketamine WAY-100 635
Dose 16 µg (NLX-204 and NLX-101), 10 µg (ketamine), 2 µg (WAY-100,635), 0.16 mg/kg i.p. (systemic NLX-204 and NLX-101)
Topics Depression Ketamine
Keywords Serotonin 5-ht1a receptors Biased agonist Chronic mild stress
Citations 15
Key finding NLX-101 and NLX-204 produce rapid antidepressant-like effects in rats through activation of prefrontal cortex 5-HT1A receptors, sharing a common neuroanatomical site with ketamine.

Abstract

The highly selective 5-HT1A serotonin receptor "biased" agonists NLX-101 and NLX-204 display, like ketamine, potent and efficacious rapid-acting antidepressant (RAAD) activity in the rat chronic mild stress (CMS) model with systemic (i.p.) administration. They rapidly (within 1 day) reverse anhedonia (i.e., CMS-induced sucrose consumption deficit), attenuate working memory deficit (novel object recognition: NOR), and decrease anxiety behavior in the elevated-plus maze (EPM). Here, we sought to explore the contribution of prefrontal cortex (PFC) 5-HT1A receptor activation in the RAAD activity of NLX compounds. In male Wistar rats, unilateral PFC microinjections of NLX-204 and NLX-101 (16 µg), like ketamine (10 µg), reproduced the effects of their systemic administration: they reversed CMS-induced sucrose consumption deficit, attenuated anxiety (EPM), and reduced working memory deficits (NOR). In addition, unilateral PFC microinjections of the selective 5-HT1A antagonist, WAY-100,635 (2 µg), attenuated the beneficial effects of systemic NLX-204 and NLX-101 (0.16 mg/kg i.p.) in the sucrose intake and NOR models, indicating that these compounds exert their RAAD activity specifically through activation of PFC 5-HT1A receptors. These data indicate that 5-HT1A receptor biased agonists share with ketamine a common neuroanatomical site for RAAD activity, which can be obtained not only by targeting glutamatergic/NMDA neurotransmission (ketamine's primary mechanism of action) but also by activating 5-HT1A receptors, as is the case for the NLX compounds. The present observations also reinforce the notion that biased agonism at 5-HT1A receptors constitutes a promising strategy to achieve RAAD effects, with additional benefits against cognitive deficits and anxiety in depressed patients, without ketamine's troublesome side effects.

Explore topics

Comments

No comments yet.

Log in to comment