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◆ Biochemical pharmacology2026-09-09

Sigma-1 receptor involvement in the paradigm-dependent anti-amnesic effects of multimodal HBK-10 under NMDA receptor hypofunction, with accompanying hippocampal ERK1/2 and BDNF modulation.

Klaudia Lustyk, Angelika Jagielska, Kinga Sałaciak, Paulina Dudzik, Anurag Soren, Jahnobi Konwar, Dorota Żelaszczyk, Henryk Marona, Lucie Crouzier, Johann Meunier, Tangui Maurice, Jacek Sapa, Karolina Pytka

原始摘要(英文原文)· Original abstract
Cognitive impairment is a clinically relevant yet inadequately treated dimension of depression. N-methyl-D-aspartate (NMDA) receptor hypofunction disrupts hippocampal plasticity and contributes to learning and memory deficits. Sigma-1 receptors regulate glutamatergic neurotransmission and neuronal plasticity and therefore represent a promising target for cognitive rescue. We investigated whether HBK-10, a multimodal methoxyphenylpiperazine derivative with antidepressant-like activity, engages sigma-1 receptors and counteracts memory impairment associated with NMDA receptor hypofunction. Sigma-1 receptor interaction was assessed by radioligand binding and sigma-1 receptor/binding immunoglobulin protein (BiP) dissociation assays. Neuroprotection was evaluated in amyloid-β25-35 (Aβ25-35)-exposed SH-SY5Y cells, and cognitive efficacy in MK-801-treated mice using recognition, spatial, and aversive memory paradigms. Extracellular signal-regulated kinase 1/2 (ERK1/2) and brain-derived neurotrophic factor (BDNF) were measured ex vivo, and dorsal hippocampal ERK1/2 dynamics were monitored in vivo using Förster resonance energy transfer (FRET)-based fiber photometry. HBK-10 bound to sigma-1 receptors, promoted sigma-1 receptor/BiP dissociation, and protected against amyloid-β25-35-induced cytotoxicity in sigma-1 receptor-sensitive manner. In vivo, HBK-10 improved recognition memory and spatial learning and retention, but not aversive non-spatial memory. Its recognition-memory effect was attenuated by the sigma-1 receptor antagonist. Behavioral efficacy was accompanied by normalization of hippocampal phosphorylated ERK1/2 (pERK1/2) and increased BDNF after Morris water maze, whereas acute administration did not evoke a detectable ERK1/2 response. These findings indicate that HBK-10 combines sigma-1 receptor engagement with paradigm-dependent anti-amnesic efficacy and post-behavioral changes in hippocampal plasticity-related markers, supporting its further pharmacokinetic and mechanistic characterization as a multimodal compound with potential relevance for cognitive dysfunction associated with disrupted glutamatergic signaling.
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Sigma-1 receptor involvement in the paradigm-dependent anti-amnesic effects of multimodal HBK-10 under NMDA receptor hypofunction, with accompanying hippocampal ERK1/2 and BDNF modulation. — 科研速览 Science Skim