The role of astrocytes in depression, its prevention, and treatment by targeting astroglial gliotransmitter release

谷氨酸受体 NMDA受体 抗抑郁药 突触后电位 神经科学 细胞外 兴奋剂 慢性应激 药理学 海马体 化学 医学 内科学 心理学 受体 生物化学
作者
Yorley Duarte,Daisy Quintana-Donoso,Rodrigo Moraga‐Amaro,Ivanka Dinamarca,Yordan Lemunao,Kevin Cárdenas,Tamara Bahamonde,Tabita Barrientos,Pedro R. Olivares,Christopher M. Navas,Francisco J. Carvajal,Yessenia Santibánez,Raimundo Castro-Lazo,María Paz Meza,Ramón A. Jorquera,Gonzalo I. Gómez,Marina Henke,Rodrigo Alarcón,Laureen A. Gabriel,Susanne Schiffmann
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:121 (46) 被引量:3
标识
DOI:10.1073/pnas.2307953121
摘要

The role of ventral hippocampus (vHipp) astroglial gliotransmission in depression was studied using chronic restraint stress (CRS) and chronic unpredictable mild stress (CUMS) rodent models. CRS increased Cx43 hemichannel activity and extracellular glutamate levels in the vHipp and blocking astroglial Cx43 hemichannel-dependent gliotransmission during CRS prevented the development of depression and glutamate buildup. Moreover, the acute blockade of Cx43 hemichannels induced antidepressant effects in rats previously subjected to CRS or CUMS. This antidepressant effect was prevented by coinjection of glutamate and D-serine. Furthermore, Cx43 hemichannel blockade decreased postsynaptic NMDAR currents in vHipp slices in a glutamate and D-serine-dependent manner. Notably, chronic microinfusion of glutamate and D-serine, L-serine, or the NMDAR agonist NMDA, into the vHipp induced depressive-like symptoms in nonstressed rats. We also identified a small molecule, cacotheline, which blocks Cx43 hemichannels and its systemic administration induced rapid antidepressant effects, preventing stress-induced increases in astroglial Cx43 hemichannel activity and extracellular glutamate in the vHipp, without sedative or locomotor side effects. In conclusion, chronic stress increases Cx43 hemichannel-dependent release of glutamate and D-/L-serine from astrocytes in the vHipp, overactivating postsynaptic NMDARs and triggering depressive-like symptoms. This study highlights the critical role of astroglial gliotransmitter release in chronic stress-induced depression and suggests it can be used as a target for the prevention and treatment of depression.
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