Reid Brian, Song Bing, Zhao Min
Department of Dermatology, University of California, Davis CA 95616, USA.
Dev Biol. 2009 Nov 1;335(1):198-207. doi: 10.1016/j.ydbio.2009.08.028. Epub 2009 Sep 4.
Xenopus laevis tadpoles can regenerate tail, including spinal cord, after partial amputation, but lose this ability during a specific period around stage 45. They regain this ability after stage 45. What happens during this "refractory period" might hold the key to spinal cord regeneration. We hypothesize that electric currents at amputated stumps play significant roles in tail regeneration. We measured electric current at tail stumps following amputation at different developmental stages. Amputation induced large outward currents leaving the stump. In regenerating stumps of stage 40 tadpoles, a remarkable reversal of the current direction occurred around 12-24 h post-amputation, while non-regenerating stumps of stage 45 tadpole maintained outward currents. This reversal of electric current at tail stumps correlates with whether tails regenerate or not (regenerating stage 40-inward current; non-regenerating stage 45-outward current). Reduction of tail stump current using sodium-free solution decreased the rate of regeneration and percentage regeneration. Fin punch wounds healed normally at stages 45 and 48, and in sodium-free solution, suggesting that the absence of tail re-growth at stage 45 is regeneration-specific rather than a general inhibition of wound healing. These data suggest that electric signals might be one of the key players regulating regeneration.
非洲爪蟾蝌蚪在部分截肢后能够再生尾巴,包括脊髓,但在第45期左右的特定时期会失去这种能力。它们在第45期之后会重新获得这种能力。在这个“不应期”发生的事情可能是脊髓再生的关键。我们假设截肢残端的电流在尾巴再生中起重要作用。我们测量了不同发育阶段截肢后尾巴残端的电流。截肢引发了大量离开残端的外向电流。在第40期蝌蚪的再生残端中,截肢后约12 - 24小时电流方向发生了显著反转,而第45期蝌蚪的非再生残端则维持外向电流。尾巴残端电流的这种反转与尾巴是否再生相关(再生的第40期——内向电流;不再生的第45期——外向电流)。使用无钠溶液降低尾巴残端电流会降低再生速率和再生百分比。在第45期和第48期,鳍穿刺伤口在无钠溶液中能正常愈合,这表明第45期尾巴无法再生是再生特异性的,而非对伤口愈合的普遍抑制。这些数据表明电信号可能是调节再生的关键因素之一。