Endocannabinoid signaling in adult hippocampal neurogenesis: A mechanistic and integrated perspective

IF 14 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Progress in lipid research Pub Date : 2023-07-01 DOI:10.1016/j.plipres.2023.101239
Sergio Oddi , Maria Teresa Fiorenza , Mauro Maccarrone
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引用次数: 1

Abstract

Dentate gyrus of the hippocampus continuously gives rise to new neurons, namely, adult-born granule cells, which contribute to conferring plasticity to the mature brain throughout life. Within this neurogenic region, the fate and behavior of neural stem cells (NSCs) and their progeny result from a complex balance and integration of a variety of cell-autonomous and cell-to-cell-interaction signals and underlying pathways. Among these structurally and functionally diverse signals, there are endocannabinoids (eCBs), the main brain retrograde messengers. These pleiotropic bioactive lipids can directly and/or indirectly influence adult hippocampal neurogenesis (AHN) by modulating, both positively and negatively, multiple molecular and cellular processes in the hippocampal niche, depending on the cell type or stage of differentiation. Firstly, eCBs act directly as cell-intrinsic factors, cell-autonomously produced by NSCs following their stimulation. Secondly, in many, if not all, niche-associated cells, including some local neuronal and nonneuronal elements, the eCB system indirectly modulates the neurogenesis, linking neuronal and glial activity to regulating distinct stages of AHN. Herein, we discuss the crosstalk of the eCB system with other neurogenesis-relevant signal pathways and speculate how the hippocampus-dependent neurobehavioral effects elicited by (endo)cannabinergic medications are interpretable in light of the key regulatory role that eCBs play on AHN.

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内源性大麻素信号在成人海马神经发生:一个机制和综合的观点
海马体的齿状回不断产生新的神经元,即成年出生的颗粒细胞,这些细胞有助于赋予成熟大脑一生的可塑性。在这个神经源性区域内,神经干细胞(NSCs)及其后代的命运和行为源于各种细胞自主和细胞间相互作用信号和潜在途径的复杂平衡和整合。在这些结构和功能不同的信号中,有内源性大麻素(eCBs),这是大脑的主要逆行信使。根据细胞类型或分化阶段,这些多效性生物活性脂质可以通过积极和消极地调节海马生态位中的多种分子和细胞过程,直接和/或间接影响成年海马神经发生(AHN)。首先,eCBs直接作为细胞内在因子,由NSCs在刺激后自主产生细胞。其次,在许多(如果不是全部的话)小生境相关细胞中,包括一些局部神经元和非神经元元件,eCB系统间接调节神经发生,将神经元和神经胶质活性与调节AHN的不同阶段联系起来。在此,我们讨论了eCB系统与其他神经发生相关信号通路的串扰,并根据eCB对AHN的关键调节作用,推测(内源性)大麻能药物引发的海马依赖性神经行为效应是如何解释的。
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来源期刊
Progress in lipid research
Progress in lipid research 生物-生化与分子生物学
CiteScore
24.50
自引率
2.20%
发文量
37
审稿时长
14.6 weeks
期刊介绍: The significance of lipids as a fundamental category of biological compounds has been widely acknowledged. The utilization of our understanding in the fields of biochemistry, chemistry, and physiology of lipids has continued to grow in biotechnology, the fats and oils industry, and medicine. Moreover, new aspects such as lipid biophysics, particularly related to membranes and lipoproteins, as well as basic research and applications of liposomes, have emerged. To keep up with these advancements, there is a need for a journal that can evaluate recent progress in specific areas and provide a historical perspective on current research. Progress in Lipid Research serves this purpose.
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