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首页> 外文期刊>Animal Cells and Systems >Suppressive effects of valproic acid on caudal fin regeneration in adult zebrafish
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Suppressive effects of valproic acid on caudal fin regeneration in adult zebrafish

机译:丙戊酸对成年斑马鱼尾翅片再生的抑制作用

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Zebrafish can regenerate fins following injury through an epimorphic process that includes the formation of new tissues and reconstruction of the original morphology. In this study, the effects of valproic acid (VPA), a widely used anti-epileptic drug, on fin regeneration were studied after the caudal fin amputation of adult zebrafish. In the control group, zebrafish formed new tissues and reconstructed the original rays 14 days after amputation (dpa). Meanwhile, VPA treatments between 20 and 200?μM following amputation suppressed fin regeneration in a dose-dependent manner and altered morphological characteristics, such as bifurcation and segmentation, in the rays. Compared to the control, VPA also delayed blastema formation and decreased cell proliferation in the mesenchymal area of the regenerated fin. The mRNA expression of lef1, a downstream signaling gene in the Wnt pathway, was transiently increased in the regenerated fin of the control at 2?dpa; the same increase was not observed in the VPA-treated zebrafish. Sodium butyrate (SB), an histone deacetylase activity (HDAC) inhibitor, suppressed the fin regeneration without affecting the morphological characteristics of the regenerated ray. Furthermore, the transient increase of lef1 mRNA was not suppressed in the SB-treated zebrafish. These results suggested that VPA's suppressive effects on fin regeneration are partly mediated through decreased cell proliferation and lef1 mRNA expression.
机译:斑马鱼可以通过映像过程再生翅片,其包括形成新组织的形成和原始形态的重建。在这项研究中,在成年斑马鱼的尾鳍截肢后,研究了丙戊酸(VPA),广泛使用的抗癫痫药物对翅片再生的影响。在对照组中,斑马鱼形成新的组织并在截肢(DPA)后14天重建原始光线。同时,在截肢后20至200μm之间的VPA处理以​​剂量依赖性方式抑制翅片再生,并在光线中改变了形态特征,例如分叉和分割。与对照相比,VPA也延迟了再生鳍片的间充质区域中的Blastema形成和降低细胞增殖。在Wnt途径中的下游信号基因的 lef1的mRNA表达在2°DPA的再生翅片中瞬时增加;在VPA处理的斑马鱼中未观察到同样的增加。丁酸钠(Sb),组蛋白脱乙酰酶活性(HDAC)抑制剂,抑制翅片再生而不影响再生射线的形态特征。此外,在Sb处理的斑马鱼中, lef1 mRNA的瞬时增加不会抑制。这些结果表明,通过降低的细胞增殖和lef1 mRNA表达,部分介导VPA对翅片再生的抑制作用。

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