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Amputation-induced reactive oxygen species signaling is required for axolotl tail regeneration

机译:Axolotl尾部再生需要截肢诱导的活性氧物质信号传导

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Background Among vertebrates, salamanders are unparalleled in their ability to regenerate appendages throughput life. However, little is known about early signals that initiate regeneration in salamanders. Results Ambystoma mexicanum embryos were administered tail amputations to investigate the timing of reactive oxygen species (ROS) production and the requirement of ROS for regeneration. ROS detected by dihydroethidium increased within minutes of axolotl tail amputation and levels remained high for 24 hr. Pharmacological inhibition of ROS producing enzymes with diphenyleneiodonium chloride (DPI) and VAS2870 reduced ROS levels. Furthermore, DPI treatment reduced cellular proliferation and inhibited tail outgrowth. Conclusions The results show that ROS levels increase in response to injury and are required for tail regeneration. These findings suggest that ROS provide instructive, if not initiating cues, for salamander tail regeneration. Developmental Dynamics 248:189-196, 2019. (c) 2018 Wiley Periodicals, Inc.
机译:背景技术在脊椎动物中,蝾螈是无与伦比的,他们可以再生吞吐量的吞吐量。然而,关于在蝾螈中引发再生的早期信号很少。结果Ambystoma Mexicanum Embryos尾截肢,以研究活性氧物质(ROS)生产的时间和ROS的再生。二氢羟乙钠检测的ROS在腋下尾巴截肢的几分钟内增加,水平仍然高24小时。用二苯基碘碘氯化物(DPI)和VAS2870降低ROS水平的ROS生产酶的药理抑制。此外,DPI治疗降低了细胞增殖和抑制尾部过度。结论结果表明,ROS水平随着损伤的反应而增加,尾部再生需要。这些调查结果表明,ROS为蝾螈尾再生提供了指导性的话,如果没有启动线索。发展动力学248:189-196,2019。(c)2018 Wiley期刊,Inc。

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