截肢引发远距离再生生物表皮渗透性变化

Kelly E. Dooling, Ryan T. Kim, Elane M. Kim, Erica Chen, Adnan Abouelela, Benjamin J. Tajer, Noah J. Lopez, Julia C. Paoli, Connor J. Powell, Anna G. Luong, S.Y. Celeste Wu, Kara N. Thornton, Hani D. Singer, Aaron M. Savage, Joel Bateman, Tia DiTommaso, Duygu Payzin-Dogru, Jessica L. Whited
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引用次数: 0

摘要

先前的研究报告称,截肢会引起再生生物全身的反应,但大多数研究并未考察这些变化对组织再生区域以外的影响。具体来说,截肢引起的长程表皮反应在很大程度上还没有定性,对再生生物截肢引起的表皮反应的研究传统上仅限于伤口部位。在这里,我们研究了截肢对两种进化距离遥远的再生生物--斧头虫和扁形动物--表皮长程通透性的影响。我们发现,截肢会引发轴头虫表皮通透性的长程增加,并伴随着表皮 MAPK 信号的长程下调。此外,我们还提供了功能性证据,证明通过药物抑制再生刨腹鱼的 MAPK 信号转导可增加表皮的长程通透性。这些发现增进了我们对再生生物截肢引起的全身变化的了解,值得进一步研究截肢情况下表皮通透性失调是否会导致再生生物和非再生生物的病理变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amputation Triggers Long-Range Epidermal Permeability Changes in Evolutionarily Distant Regenerative Organisms
Previous studies have reported that amputation invokes body-wide responses in regenerative organisms, but most have not examined the implications of these changes beyond the region of tissue regrowth. Specifically, long-range epidermal responses to amputation are largely uncharacterized, with research on amputation-induced epidermal responses in regenerative organisms traditionally being restricted to the wound site. Here, we investigate the effect of amputation on long-range epidermal permeability in two evolutionarily distant, regenerative organisms: axolotls and planarians. We find that amputation triggers a long-range increase in epidermal permeability in axolotls, accompanied by a long-range epidermal downregulation in MAPK signaling. Additionally, we provide functional evidence that pharmacologically inhibiting MAPK signaling in regenerating planarians increases long-range epidermal permeability. These findings advance our knowledge of body-wide changes due to amputation in regenerative organisms and warrant further study on whether epidermal permeability dysregulation in the context of amputation may lead to pathology in both regenerative and non-regenerative organisms.
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