昂丹司琼阻断氟西汀对成年大鼠梨状皮质II层未成熟神经元的作用。

IF 2.5 4区 医学 Q3 NEUROSCIENCES Neuroscience Letters Pub Date : 2025-01-31 DOI:10.1016/j.neulet.2024.138099
Marina Recatalá , Pablo Hidalgo , Juan Nàcher , José Miguel Blasco-Ibáñez , Carlos Crespo , Emilio Varea
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引用次数: 0

摘要

神经元结构可塑性使成人大脑具有通过结构和分子变化来适应内部或外部因素的能力。这些可塑性过程似乎是由神经递质5-羟色胺通过特定受体(5-HTRs)的作用介导的。既往研究表明,海马颗粒细胞的成熟是由5-HT3介导的。在本研究中,我们想要检查第II层梨状皮质的神经成熟是否也由5-HT3介导。在梨状皮质,与海马体相反,没有出生后的神经发生。所有未成熟神经元(PSA-NCAM免疫反应性)均来源于产前。该区域的未成熟细胞最初是小细胞(I型细胞),然后成熟为较大的细胞(II型细胞),最后成熟为主细胞(PSA-NCAM免疫阴性)。为了研究5HT3在这一群体中的作用,我们首先证明了5HT3受体在I型和II型细胞上的存在。然后,我们使用慢性氟西汀增加血清素浓度,导致I型细胞数量减少,II型细胞数量增加,但未诱导主细胞成熟的最后阶段,未成熟细胞的数量高于对照组。这种作用被昂丹司琼(一种5ht3拮抗剂)阻断。综上所述,血清素可诱导PSA-NCAM免疫负性神经元由I型细胞向II型细胞发展,而非由II型细胞向成熟细胞发展。这种作用是由存在于未成熟细胞中的5-HT3受体介导的。
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Ondansetron blocks fluoxetine effects in immature neurons in the adult rat piriform cortex layer II
Neuronal structural plasticity gives the adult brain the capacity to adapt to internal or external factors by structural and molecular changes. These plastic processes seem to be mediated, among others, by the action of the neurotransmitter serotonin through specific receptors (5-HTRs). Previous studies have shown that the maturation of granule cells in the hippocampus is mediated by 5-HT3. In the present study, we wanted to check if the neural maturation in layer II piriform cortex is also mediated by 5-HT3. In the piriform cortex, in contrast to the hippocampus, there is no postnatal neurogenesis. All immature neurons (PSA-NCAM immunoreactive) were originated prenatally. Immature cells in this area begin as small cells (type I cells) that then mature to larger cells (type II cells), and finally, mature to principal cells (PSA-NCAM immunonegative). To study the role of 5HT3 in this population, we first demonstrated the presence of 5HT3 receptors on both type I and II cells. Then we increased serotonin concentration using chronic fluoxetine administration, producing a reduction in the number of type I cells and an increment of type II cells but not an induction in the final stage of maturation to principal cells, as shown by the higher number of immature cells than in controls. This effect was blocked by ondansetron (a 5 HT3 antagonist). In conclusion, serotonin induces the progression from type I cells to type II cells but not from the later to mature PSA-NCAM immunonegative neurons. This effect is mediated by 5-HT3 receptors present in the immature cells.
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来源期刊
Neuroscience Letters
Neuroscience Letters 医学-神经科学
CiteScore
5.20
自引率
0.00%
发文量
408
审稿时长
50 days
期刊介绍: Neuroscience Letters is devoted to the rapid publication of short, high-quality papers of interest to the broad community of neuroscientists. Only papers which will make a significant addition to the literature in the field will be published. Papers in all areas of neuroscience - molecular, cellular, developmental, systems, behavioral and cognitive, as well as computational - will be considered for publication. Submission of laboratory investigations that shed light on disease mechanisms is encouraged. Special Issues, edited by Guest Editors to cover new and rapidly-moving areas, will include invited mini-reviews. Occasional mini-reviews in especially timely areas will be considered for publication, without invitation, outside of Special Issues; these un-solicited mini-reviews can be submitted without invitation but must be of very high quality. Clinical studies will also be published if they provide new information about organization or actions of the nervous system, or provide new insights into the neurobiology of disease. NSL does not publish case reports.
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