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非洲爪蟾蝌蚪再生和发育后肢的超微结构比较

Ultrastructural comparison between regenerating and developing hindlimbs of Xenopus laevis tadpoles.

作者信息

Khan P A, Liversage R A

机构信息

Ramsay Wright Zoological Laboratories, University of Toronto, Ontario, Canada.

出版信息

Growth Dev Aging. 1990 Winter;54(4):173-81.

PMID:2092016
Abstract

Hindlimbs of Xenopus laevis tadpoles at stages 50 to 55 of embryonic development were amputated in order to study the fine structure associated with ontogenetic decline in regenerative ability of this anuran. Regenerating hindlimbs were compared with their contralateral developing limb so as to determine the similarities and differences in ectodermal-mesenchymal ultrastructural relationships in these systems. Prior to stage 53, mesenchymal cells in regenerating limbs, as well as mesenchyme cells in developing limbs appear undifferentiated; the cells are not visibly different. However, at stage 54 muscle and cartilage differentiation in the developing foot is distinct. Furthermore, in all larvae with regenerates at stages 50 to 52 the basal lamina is not evident subjacent to the apical tip of the epithelium which covers the amputation surface. A distinct basal lamina is present, however, beneath the epidermis in all embryonic limbs examined, including the apical tip, as well as in regenerates of stages 53 to 55 tadpoles. Also, a greater apical accumulation of extracellular matrix (ECM) and organized collagen is observed among the mesenchymal cells in regenerates of stages 53 to 55 tadpoles, and among the mesenchyme cells in developing limbs of stages 50 to 55, compared with pre-stage 53 regenerates. In cases in which an embryonic limb bud is composed of relatively undifferentiated cells (stages 50 to 52), events following amputation result in the complete regeneration of a limb. However, when amputated embryonic limbs contain differentiating tissues, (e.g., muscle and cartilage) only selective tissues undergo regeneration resulting in malformed (heteromorphic) regenerates.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为了研究这种无尾两栖动物再生能力个体发育衰退相关的精细结构,对处于胚胎发育第50至55阶段的非洲爪蟾蝌蚪的后肢进行了截肢。将再生的后肢与其对侧正在发育的肢体进行比较,以确定这些系统中外胚层 - 间充质超微结构关系的异同。在第53阶段之前,再生肢体中的间充质细胞以及发育肢体中的间充质细胞看起来未分化;这些细胞没有明显差异。然而,在第54阶段,发育中的足部肌肉和软骨分化明显。此外,在所有第50至52阶段有再生肢体的幼虫中,覆盖截肢表面的上皮顶端下方没有明显的基膜。然而,在所有检查的胚胎肢体的表皮下方,包括顶端,以及第53至55阶段蝌蚪的再生肢体中,都存在明显的基膜。而且,与第53阶段之前的再生肢体相比,在第53至55阶段蝌蚪的再生肢体中的间充质细胞之间,以及第50至55阶段发育肢体中的间充质细胞之间,观察到细胞外基质(ECM)和有组织的胶原蛋白在顶端有更多积累。在胚胎肢芽由相对未分化的细胞组成的情况下(第50至52阶段),截肢后的事件会导致肢体完全再生。然而,当截肢的胚胎肢体含有分化组织(如肌肉和软骨)时,只有选择性组织会进行再生,从而导致畸形(异形)再生。(摘要截断于250字)

相似文献

1
Ultrastructural comparison between regenerating and developing hindlimbs of Xenopus laevis tadpoles.非洲爪蟾蝌蚪再生和发育后肢的超微结构比较
Growth Dev Aging. 1990 Winter;54(4):173-81.
2
[Regenerative capability in the hindlimb of Xenopus laevis during ontogenetic development].[非洲爪蟾个体发育过程中后肢的再生能力]
Jikken Dobutsu. 1985 Oct;34(4):445-58.
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Fine structure of the forelimb regenerate of the African clawed toad, Xenopus laevis.非洲爪蟾(非洲爪蟾,非洲爪蟾)前肢再生的精细结构。
Anat Rec. 1985 Apr;211(4):444-9. doi: 10.1002/ar.1092110411.
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[Analytical study of Xenopus hindlimb regenerate with special reference to muscle regeneration].[非洲爪蟾后肢再生的分析研究,特别涉及肌肉再生]
Jikken Dobutsu. 1986 Oct;35(4):421-32. doi: 10.1538/expanim1978.35.4_421.
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Regenerative responses in cultured hindlimb stumps of larval Xenopus laevis.非洲爪蟾幼体培养后肢残端的再生反应。
J Exp Zool. 1992 Jul 1;262(4):446-53. doi: 10.1002/jez.1402620412.
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Comparison of the effects of vitamin A on limb development and regeneration in Xenopus laevis tadpoles.维生素A对非洲爪蟾蝌蚪肢体发育和再生影响的比较。
J Embryol Exp Morphol. 1986 Feb;91:35-53.
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Evidence that regenerative ability is an intrinsic property of limb cells in Xenopus.有证据表明再生能力是非洲爪蟾肢体细胞的一种内在特性。
J Exp Zool. 1988 Jul;247(1):39-44. doi: 10.1002/jez.1402470106.
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Global analysis of gene expression in Xenopus hindlimbs during stage-dependent complete and incomplete regeneration.非洲爪蟾后肢在阶段依赖性完全再生和不完全再生过程中的基因表达全局分析。
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The influence of denervation on grafted hindlimb regeneration of larval Xenopus laevis.去神经支配对非洲爪蟾幼体移植后后肢再生的影响。
J Exp Zool. 1991 Nov;260(2):210-9. doi: 10.1002/jez.1402600210.
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Apical epithelial cap morphology and fibronectin gene expression in regenerating axolotl limbs.再生蝾螈肢体中的顶端上皮帽形态和纤连蛋白基因表达
Dev Dyn. 2000 Feb;217(2):216-24. doi: 10.1002/(SICI)1097-0177(200002)217:2<216::AID-DVDY8>3.0.CO;2-8.

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BMC Dev Biol. 2014 Jul 25;14:32. doi: 10.1186/1471-213X-14-32.