Novel Glutamatergic Modulators for the Treatment of Mood Disorders: Current Status.
Ioline D Henter, Lawrence T Park, Carlos A Zarate
CNS drugs May 1, 2021 DOI: 10.1007/s40263-021-00816-x via PubMed
Summary
AI-generated from the abstractMany patients with mood disorders such as major depressive disorder and bipolar depression do not respond well to standard antidepressants, creating a need for new treatments. Dysfunction in the brain's glutamate system is thought to play a role in these disorders. Subanesthetic doses of racemic (R,S)-ketamine, a glutamatergic modulator, have been observed to produce rapid reductions in depressive symptoms. This has led to investigation of other glutamate-modulating agents, including broad modulators, glycine site modulators, NMDA receptor antagonists, metabotropic glutamate receptor modulators, and mTORC1 activators. Most are in early development and have shown modest effects compared to (R,S)-ketamine and esketamine, though some have more favorable characteristics. The most promising agents appear to be those targeting ionotropic glutamate receptors.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Interventions | (R S)-ketamine esketamine (R)-ketamine (2R 6R)-hydroxynorketamine dextromethorphan Nuedexta deudextromethorphan axsome dextromethadone nitrous oxide AZD6765 CLE100 AGN-241751 D-cycloserine NRX-101 rapastinel apimostinel sarcosine 4-chlorokynurenine eliprodil traxoprodil rislenemdaz basimglurant AZD2066 RG1578 TS-161 NV-5138 |
| Key finding | Agents targeting ionotropic glutamate receptors appear to be the most promising novel glutamatergic modulators for mood disorders, though most have shown relatively modest effects compared to (R,S)-ketamine and esketamine. |
Abstract
The efficacy of standard antidepressants is limited for many patients with mood disorders such as major depressive disorder (MDD) and bipolar depression, underscoring the urgent need to develop novel therapeutics. Both clinical and preclinical studies have implicated glutamatergic system dysfunction in the pathophysiology of mood disorders. In particular, rapid reductions in depressive symptoms have been observed in response to subanesthetic doses of the glutamatergic modulator racemic (R,S)-ketamine in individuals with mood disorders. These results have prompted investigation into other glutamatergic modulators for depression, both as monotherapy and adjunctively. Several glutamate receptor-modulating agents have been tested in proof-of-concept studies for mood disorders. This manuscript gives a brief overview of the glutamate system and its relevance to rapid antidepressant response and discusses the existing clinical evidence for glutamate receptor-modulating agents, including (1) broad glutamatergic modulators ((R,S)-ketamine, esketamine, (R)-ketamine, (2R,6R)-hydroxynorketamine [HNK], dextromethorphan, Nuedexta [a combination of dextromethorphan and quinidine], deudextromethorphan [AVP-786], axsome [AXS-05], dextromethadone [REL-1017], nitrous oxide, AZD6765, CLE100, AGN-241751); (2) glycine site modulators (D-cycloserine [DCS], NRX-101, rapastinel [GLYX-13], apimostinel [NRX-1074], sarcosine, 4-chlorokynurenine [4-Cl-KYN/AV-101]); (3) subunit (NR2B)-specific N-methyl-D-aspartate (NMDA) receptor antagonists (eliprodil [EVT-101], traxoprodil [CP-101,606], rislenemdaz [MK-0657/CERC-301]); (4) metabotropic glutamate receptor (mGluR) modulators (basimglurant, AZD2066, RG1578, TS-161); and (5) mammalian target of rapamycin complex 1 (mTORC1) activators (NV-5138). Many of these agents are still in the preliminary stages of development. Furthermore, to date, most have demonstrated relatively modest effects compared with (R,S)-ketamine and esketamine, though some have shown more favorable characteristics. Of these novel agents, the most promising, and the ones for which the most evidence exists, appear to be those targeting ionotropic glutamate receptors.