首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >TrkB receptor antagonism inhibits stab injury induced proliferative response in adult zebrafish (& IT;Dario rerio & IT;) brain
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TrkB receptor antagonism inhibits stab injury induced proliferative response in adult zebrafish (& IT;Dario rerio & IT;) brain

机译:TRKB受体拮抗作用抑制成年斑马鱼(⁢ Dario Rerio⁢)大脑中刺伤抗伤诱导的增殖性反应

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摘要

The Tropomyosin related kinase B (TrkB) receptor, is known to promote neuronal maturation, differentiation, maintenance and survival through its cognate ligands Brain derived neurotrophic factor (BDNF) and neurotrophin 4 (NT4). BDNF, NT4 and TrkB are highly conserved proteins among vertebrates. Although the role of TrkB during brain development is well established, its role in adult neurogenesis and brain regeneration awaits thorough investigation. In this study, we used the zebrafish stab wound injury model to determine whether the injury induced regeneration response in the telencephalon region is governed by TrkB or not. We induced stab wound injury in the mid-dorsal region of telencephalon of ANA-12 (selective TrkB antagonist) treated and non-treated zebrafish brain and examined the proliferation activity in selected brain regions using immunohistochemistry. We found that proliferation activity was significantly low in ANA-12 injected injured fishes as compared to vehicle control injured fishes. Other major findings of the study include the temporal pattern of proliferation activity after an injury and activation of adult neural stem cells (aNSCs) situated distantly apart from the injury site in the adult zebrafish brain.
机译:已知通过其同源配体脑衍生的神经营养因子(BDNF)和神经营养蛋白4(NT4)促进神经元成熟,分化,维持和存活的神经元成熟,分化,维持和存活,并促进了神经元血酶B(TRKB)受体。 BDNF,NT4和TRKB是脊椎动物中高度保守的蛋白质。虽然TRKB在脑发展期间的作用是很好的,但其在成人神经发生和脑再生中的作用等待彻底调查。在这项研究中,我们使用了斑马鱼刺伤伤害模型来确定损伤诱导的静电区域的再生响应是否受TRKB的控制。我们在ANA-12(选择性TRKB拮抗剂)治疗和未处理过的斑马鱼脑中的斜核骨髓中脉冲损伤诱导伤口损伤,并使用免疫组织化学检查选定的脑区中的增殖活性。我们发现,与载体控制受伤的鱼类相比,ANA-12注入的残疾鱼类中的增殖活性显着低。该研究的其他主要发现包括损伤和激活成年斑马鱼脑中的损伤部位的成年神经干细胞(ANSCs)损伤和激活后的增殖活性的时间模式。

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