A single subanaesthetic dose of the rapid-acting antidepressant S-ketamine raises presynaptic SV2A density in limbic regions of the Wistar Kyoto rat model of depression

Simone Larsen Bærentzen, Anna Lee Waszkiewicz, Majken Thomsen, Celine Knudsen, Betina Elfving, Anne M. Landau
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Abstract

The N-methyl-D-aspartate receptor (NMDA-R) antagonist S-ketamine has been approved as a rapid-acting antidepressant for treatment-resistant depression (TRD). The antidepressant mechanisms have not fully been elucidated; however, alterations of synaptic proteins and mechanisms may play a vital role. Here, we study the effect of a single subanaesthetic dose of 15 mg/kg S-ketamine vs saline 1 h after administration in the Wistar Kyoto rat model of depression on the density of synaptic vesicle glycoprotein 2A (SV2A) and the metabotropic glutamate receptor 5 (mGluR5) using [3H]UCB-J and [3H]MPEPγ autoradiography, respectively, compared with control Wistar Hannover rats. In a separate cohort of Wistar Kyoto rats, we investigate the transcriptional regulation of presynaptic markers Sv2a, Syn 1–3, Syt 1–3, Synaptophysin, Vamp1, 2, 5, and 7, postsynaptic markers Homer1-3, Nrg 1, Nlgn 2, Nlgn 3, Psd95, NMDA receptor subunits Nr2a, Nr2b, AMPA receptor subunits Gria1-3, GABA type A receptor-associated protein (Gabarap), glutamate metabotropic receptor subtype 5 (Grm5), and brain-derived neurotrophic factor (Bdnf) using real-time quantitative polymerase chain reaction (qPCR) in hippocampus in response to S-ketamine vs saline injection. In Wistar Kyoto rats, S-ketamine increases [3H]UCB-J binding to SV2A compared to saline-injected controls in the nucleus accumbens and dorsal and ventral hippocampus, an effect absent in the Wistar Hannover strain. No changes were observed in [3H]MPEPγ binding to mGluR5, nor in gene regulation. S-ketamine can regulate presynaptic SV2A density in brain areas relevant to depression in the Wistar Kyoto model, but not in controls, suggesting a role for SV2A in the antidepressant effects of S-ketamine.

单次亚麻醉剂量的速效抗抑郁药 S-氯胺酮可提高抑郁模型 Wistar Kyoto 大鼠边缘区突触前 SV2A 密度
N-甲基-D-天冬氨酸受体(NMDA-R)拮抗剂S-氯胺酮已被批准作为一种速效抗抑郁剂,用于治疗耐药抑郁症(TRD)。其抗抑郁机制尚未完全阐明;然而,突触蛋白和机制的改变可能起着至关重要的作用。在此,我们使用[3H]UCB-J和[3H]MPEPγ自显影技术,分别研究了在Wistar Kyoto抑郁症大鼠模型中单次亚麻剂量15 mg/kg S-氯胺酮与生理盐水给药1小时后对突触小泡糖蛋白2A(SV2A)和代谢谷氨酸受体5(mGluR5)密度的影响,并与对照组Wistar Hannover大鼠进行了比较。在另一批 Wistar Kyoto 大鼠中,我们研究了突触前标志物 Sv2a、Syn 1-3、Syt 1-3、Synaptophysin、Vamp1、2、5 和 7,突触后标志物 Homer1-3、Nrg 1、Nlgn 2、Nlgn 3、Psd95,NMDA 受体亚基 Nr2a、Nr2b 的转录调控、使用实时定量聚合酶链式反应(qPCR)分析海马对注射 S-Ketamine 和生理盐水的反应,包括 AMPA 受体亚基 Gria1-3、GABA A 型受体相关蛋白(Gabarap)、谷氨酸代谢受体亚型 5(Grm5)和脑源性神经营养因子(Bdnf)。与注射生理盐水的对照组相比,S-氯胺酮可增加 Wistar Kyoto 大鼠凹脑核、海马背侧和腹侧的[3H]UCB-J 与 SV2A 的结合,而 Wistar Hannover 大鼠则没有这种效应。在[3H]MPEPγ与mGluR5的结合以及基因调控方面均未观察到变化。在Wistar Kyoto模型中,S-氯胺酮可以调节与抑郁症相关的脑区突触前SV2A密度,但在对照组中却不能,这表明SV2A在S-氯胺酮的抗抑郁作用中发挥作用。
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