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通过对幼体美西螈失神经支配前肢残端进行神经再支配来挽救受阻细胞。

Rescue of blocked cells by reinnervation in denervated forelimb stumps of larval Ambystoma.

作者信息

Olsen C L, Barger P M, Tassava R A

出版信息

Dev Biol. 1984 Dec;106(2):399-405. doi: 10.1016/0012-1606(84)90239-2.

Abstract

Cells of amputated, denervated larval Ambystoma forelimbs dedifferentiate and enter the cell cycle but do not subsequently proliferate sufficiently to form a blastema. The denervated limb stump resorbs slowly until reinnervation stimulates regeneration. We used this system to investigate the fate of cells in denervated limbs which undergo early but limited cycling in response to amputation. In Experiment 1, cells were labeled with [3H]thymidine (3H-T) on Day 4 postamputation (PA)/Day 3 postdenervation (PD). Labeled cells were still present on Day 7 PA, but were less frequently observed on Day 13 PA when the limbs were reinnervated and beginning to regenerate. In Experiment 2 we denervated 1 day preamputation to obtain earlier reinnervation and prevent loss of Day 4 PA labeled cells. Cells labeled with 3H-T on Day 4 PA/Day 5 PD were present throughout the denervation period and most were still present on Day 13 PA. Little or no mitotic activity was found among the labeled cells after the initial round of cycling. The apparent cell cycle block was released upon reinnervation on Days 12 and 13 PA when cycling resumed. Labeled mitotic figures were present on Day 13 PA, and the mitotic index of the labeled population increased as a result of reinnervation. These results demonstrate that blocked cells are rescued by nerves, re-enter the cell cycle, and thus contribute to the reinnervation blastema.

摘要

切除神经的美西螈幼体前肢细胞会去分化并进入细胞周期,但随后增殖并不充分,无法形成芽基。去神经支配的肢体残端会缓慢吸收,直到重新神经支配刺激再生。我们利用这个系统来研究去神经支配肢体中细胞的命运,这些细胞在截肢后会经历早期但有限的细胞周期循环。在实验1中,在截肢后第4天/去神经支配后第3天用[3H]胸腺嘧啶核苷(3H-T)标记细胞。在截肢后第7天仍能观察到标记细胞,但在截肢后第13天,当肢体重新获得神经支配并开始再生时,观察到的标记细胞较少。在实验2中,我们在截肢前1天进行去神经支配,以更早地重新获得神经支配,并防止截肢后第4天标记的细胞丢失。在截肢后第4天/去神经支配后第5天用3H-T标记的细胞在整个去神经支配期间都存在,并且在截肢后第13天大多数细胞仍然存在。在第一轮细胞周期后,标记细胞中几乎没有有丝分裂活性。在截肢后第12天和第13天重新获得神经支配时,细胞周期阻滞明显解除,细胞开始重新循环。在截肢后第13天出现了标记的有丝分裂图像,由于重新获得神经支配,标记群体的有丝分裂指数增加。这些结果表明,受阻的细胞被神经拯救,重新进入细胞周期,从而有助于重新获得神经支配的芽基形成。

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