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 abstractTwo 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.