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Zebrafish fin regeneration after cryoinjury-induced tissue damage

机译:冷冻损伤组织损伤后斑马鱼鳍再生

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摘要

Although fin regeneration following an amputation procedure has been well characterized, little is known about the impact of prolonged tissue damage on the execution of the regenerative programme in the zebrafish appendages. To induce histolytic processes in the caudal fin, we developed a new cryolesion model that combines the detrimental effects of freezing/thawing and ischemia. In contrast to the common transection model, the damaged part of the fin was spontaneously shed within two days after cryoinjury. The remaining stump contained a distorted margin with a mixture of dead material and healthy cells that concomitantly induced two opposing processes of tissue debris degradation and cellular proliferation, respectively. Between two and seven days after cryoinjury, this reparative/proliferative phase was morphologically featured by displaced fragments of broken bones. A blastemal marker msxB was induced in the intact mesenchyme below the damaged stump margin. Live imaging of epithelial and osteoblastic transgenic reporter lines revealed that the tissue- specific regenerative programmes were initiated after the clearance of damaged material. Despite histolytic perturbation during the first week after cryoinjury, the fin regeneration resumed and was completed without further alteration in comparison to the simple amputation model. This model reveals the powerful ability of the zebrafish to restore the original appendage architecture after the extended histolysis of the stump.
机译:尽管截肢程序后的鳍片再生已得到很好的表征,但对于斑马鱼附肢中延长的组织损伤对执行再生程序的影响知之甚少。为了在尾鳍中诱导组织溶解过程,我们开发了一种新的冰冻分离模型,该模型结合了冷冻/解冻和局部缺血的有害作用。与普通横切模型相反,鳍的受损部分在冷冻伤后两天内自发脱落。剩下的残端包含一个扭曲的边缘,边缘带有死物质和健康细胞的混合物,分别伴随着两个相反的组织碎片降解和细胞增殖过程。冷冻损伤后的两到七天之间,这种修复/增生阶段的形态特征是骨折的移位碎片。在受损的树桩边缘下方的完整间充质中诱导出胚芽标记物msxB。上皮和成骨细胞转基因报告基因系的实时成像显示,清除受损材料后,开始组织特异性再生程序。尽管在冷冻损伤后的第一周发生了组织溶解性扰动,但与简单的截肢模型相比,鳍的再生得以恢复,并且无需进一步改动即可完成。该模型揭示了斑马鱼在残端组织分解后恢复原始肢体结构的强大能力。

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