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鸡胚肢体芽发育过程中的液体-组织行为及差异黏附性

Liquid-tissue behavior and differential cohesiveness during chick limb budding.

作者信息

Heintzelman K F, Phillips H M, Davis G S

出版信息

J Embryol Exp Morphol. 1978 Oct;47:1-15.

PMID:722227
Abstract

Emerging chick limb-buds at first grow only in length, not width. The growth parameters of limb mesoderm--cell shapes, distributions, division patterns and cleavage orientations--are incompatible with representations of this tissue as an elongating solid composed of proliferating but immobile cells. We observe that samples of both early limb mesoderm and also surrounding flank mesoderm round up like liquid droplets in organ culture. Therefore, liquid-like tissue rearrangments, including cell shuffling movements and neighbor exchanges, may occur in limb and flank mesoderm during in vivo limb budding. If so, differences in limb-flank surface tension properties would have to be present to keep these two fluid cell populations segregated into distinct tissues and properly positioned underneath limb and flank ectoderm. Previous studies have shown that tissue surface tensions are reflected in the spreading behavior of fused pairs of cell aggregates. To determine whether or not they possess differing surface tension properties, we pair excised pieces of early leg-bud, wing-bud or intervening flank mesoderm with pieces of 5 3/4-day heart or liver in hanging drop cultures. For more rapid determinations of relative liquid-tissue cohesiveness than can be obtained in conventional, long-term experiments, aggregate pairs are fixed shortly after fusion. Since partial-envelopment configurations depend upon relative aggregate sizes as well as their tissue surface tensions, new procedures are used to deduce relative aggregate cohesiveness from cross-sections of these briefly fused aggregate pairs. The envelopment tendencies of aggregates fixed 6--9 h after fusion are similar to those fixed 15--19 h after fusion: heart tends to surround leg; heart and wing surround each other with similar frequencies, but flank tends to surround heart. Also, liver tends to surround leg and wing, but flank tends to surround liver. When the effects of relative aggregate size are taken into account, these non-random, tissue-specific patterns of aggregate envelopment indicate that the relative cohesiveness of these tissues falls into the sequence: leg greater than heart congruent to wing greater than liver greater than flank. The in vitro behavior of early limb-bud and neighboring flank mesoderm in these studies suggests that they are not simply mechanically identical portions of a single liquid tissue. We have previously proposed that early limb-bud mesoderm may act like a non-dispersing, cohesive liquid droplet which is embedded within a less cohesive fluid layer of flank tissue (and which is molded distally into paddle-shaped conformations by solid-like limb ectoderm and/or subjacent extracellular matrix). This proposal is not only compatible with the growth parameters of limb-bud mesoderm in vivo, but is also consistent with our observation that flank mesoderm surrounds tissues which surround limb mesoderm in these aggregate-fusion experiments. Our model suggests that differences in the surface tension properties of limb vs...

摘要

新出现的鸡胚肢芽最初仅在长度上生长,而非宽度。肢中胚层的生长参数——细胞形状、分布、分裂模式和分裂方向——与将该组织视为由增殖但不移动的细胞组成的伸长固体的表征不相符。我们观察到,早期肢中胚层以及周围侧腹面中胚层的样本在器官培养中会像液滴一样聚集。因此,在体内肢芽形成过程中,肢和侧腹面中胚层可能会发生类似液体的组织重排,包括细胞洗牌运动和相邻细胞交换。如果是这样,肢-侧腹面表面张力特性就必须存在差异,以将这两个流体细胞群体分隔成不同的组织,并正确定位在肢和侧腹面外胚层下方。先前的研究表明,组织表面张力反映在细胞聚集体融合对的铺展行为中。为了确定它们是否具有不同的表面张力特性,我们将切除的早期腿芽、翅芽或中间侧腹面中胚层片段与5 3/4天龄的心脏或肝脏片段在悬滴培养中配对。为了比传统的长期实验更快地确定相对液体-组织内聚性,聚集体对在融合后不久就被固定。由于部分包被构型取决于聚集体的相对大小及其组织表面张力,因此采用了新的程序从这些短暂融合的聚集体对的横截面中推断相对聚集体内聚性。融合后6 - 9小时固定的聚集体的包被倾向与融合后15 - 19小时固定的聚集体相似:心脏倾向于包围腿部;心脏和翅膀以相似的频率相互包围,但侧腹面倾向于包围心脏。此外,肝脏倾向于包围腿部和翅膀,但侧腹面倾向于包围肝脏。当考虑到相对聚集体大小的影响时,这些非随机的、组织特异性的聚集体包被模式表明,这些组织的相对内聚性顺序为:腿部大于心脏等同于翅膀大于肝脏大于侧腹面。这些研究中早期肢芽和相邻侧腹面中胚层的体外行为表明,它们并非简单地是单一液体组织中机械相同的部分。我们之前曾提出,早期肢芽中胚层可能像一个不分散的、有内聚性的液滴,嵌入在侧腹面组织的内聚性较低的流体层中(并且通过类似固体的肢外胚层和/或下方的细胞外基质在远端塑造成桨状构型)。这一观点不仅与体内肢芽中胚层的生长参数相符,也与我们在这些聚集体融合实验中观察到的侧腹面中胚层包围包围肢中胚层的组织一致。我们的模型表明,肢与……表面张力特性存在差异。

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