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Development (Cambridge, England). 2025 Jun 16:dev.204334. doi: 10.1242/dev.204334 Q13.62025

Serotonin neuromodulation directs optic nerve regeneration

五羟色胺神经调质指导视神经再生 翻译改进

Kristian Saied-Santiago  1, Melissa Baxter  1, Jaffna Mathiaparanam  1, Michael Granato  1

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  • 1 Department of Cell and Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, 19104, USA.
  • DOI: 10.1242/dev.204334 PMID: 40521655

    摘要 中英对照阅读

    Optic nerve (ON) regeneration in mammalian systems is limited by an overshadowing dominance of inhibitory factors. This has severely hampered the identification of pro-regenerative pathways. Here, we take advantage of the regenerative capacity of larval zebrafish to identify pathways that promote ON regeneration. From a small molecule screen, we identified modulators of serotonin (5-HT) signaling that inhibit ON regeneration. We find several serotonin type-1 receptor genes are expressed in RGC neurons during regeneration and that inhibiting 5-HT1 receptors or components of the 5-HT pathway selectively impedes ON regeneration. We show that 5-HT1 receptor signaling is dispensable during ON development yet is critical for regenerating axons to emerge from the injury site. Blocking 5-HT receptors once ON axons have crossed the chiasm does not inhibit regeneration, suggesting a selective role for 5-HT receptor signaling early during ON regeneration. Finally, we show that agonist-mediated activation of 5-HT1 receptors leads to enhanced and ectopic axonal regrowth. Combined, our results provide evidence for mechanisms through which serotonin-dependent neuromodulation directs ON regeneration in vivo.

    Keywords: Optic nerve; 5HT; Axon regeneration; Serotonin; Zebrafish.

    Keywords:optic nerve regeneration; serotonin neuromodulation

    在哺乳动物系统中,视神经(ON)的再生受到抑制因子占主导地位的影响而受到限制。这严重阻碍了促进再生途径的识别。在这里,我们利用斑马鱼幼虫的再生能力来鉴定促进ON再生的途径。从小分子筛选中,我们发现调节血清素(5-HT)信号传导的调制剂会抑制ON再生。我们在RGC神经元再生过程中发现了几种血清素类型-1受体基因,并且我们发现抑制5-HT1受体或血清素通路的组分会特异性阻碍ON再生。我们证明,5-HT1受体信号在ON发育中是可有可无的,但在受损部位再生轴突出现时却是至关重要的。一旦ON轴突穿过交叉点后阻断5-HT受体不会抑制再生,这表明5-HT受体信号传导在ON再生早期具有选择性作用。最后,我们证明了激动剂介导的5-HT1受体激活会导致增强和非特异性的轴突再长。总的来说,我们的结果提供了血清素依赖性神经调节如何在体内指导ON再生的机制。

    关键词:视神经;5-羟色胺(5HT);轴突再生;血清素;斑马鱼。

    关键词:视神经再生; 血清素神经调质

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    期刊名:Development

    缩写:DEVELOPMENT

    ISSN:0950-1991

    e-ISSN:1477-9129

    IF/分区:3.6/Q1

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