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首页> 外文期刊>Developmental biology >GERM-LAYER SURFACE TENSIONS AND TISSUE AFFINITIES IN RANA PIPIENS GASTRULAE - QUANTITATIVE MEASUREMENTS
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GERM-LAYER SURFACE TENSIONS AND TISSUE AFFINITIES IN RANA PIPIENS GASTRULAE - QUANTITATIVE MEASUREMENTS

机译:林蛙的生殖层表面张力和组织亲和力-定量测量

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The morphogenetic properties causing germ-layer spreading and stratification in amphibian gastrulation were called ''tissue affinities'' by Holtfreter. The differential adhesion hypothesis (DAH) attributes such liquidlike tissue rearrangements to forces generated by intercellular adhesions within and between the migrating cell populations. This theory predicts that, among the primary germ layers, the cohesiveness of deep ectoderm should be the greatest, that of deep mesoderm should be intermediate, and that of deep endoderm should be the least. Also, the cohesiveness of differentiating neural ectoderm should increase after induction, causing it to internalize and segregate from epidermis. The DAH also explains why the cohesiveness of ''liquid'' tissues, whose cells are free to rearrange, should be measurable as tissue surface tensions. Using a specially designed tissue surface tensiometer, we demonstrate that (i) aggregates of Rana pipiens deep germ layers do possess liquid-like surface tensions, (ii) their surface tension values lie in precisely the sequence necessary to account for germ-layer stratification in vitro and in vivo, and (iii) the surface tension of deep ectoderm just underlain by the archenteron roof is twice that of not-yet-underlain deep ectoderm. These measurements provide direct, quantitative evidence that the ''tissue affinities'' governing germ-layer now during early stages of vertebrate morphogenesis are reflected in tissue surface tensions. (C) 1997 Academic Press. [References: 64]
机译:Holtfreter将导致两栖动物生殖中细菌层扩散和分层的形态发生特性称为``组织亲和力''。差异粘附假设(DAH)将此类液体状组织重排归因于由迁移细胞群内部和之间的细胞间粘附产生的力。该理论预测,在主要的细菌层中,深外胚层的内聚力应该最大,深中胚层的内聚力应该是中间的,深内胚层的内聚力应该是最小的。同样,分化后的神经外胚层的凝聚力应在诱导后增加,从而使其内在化并与表皮分离。 DAH还解释了为什么细胞可以自由重排的“液体”组织的凝聚力可以​​通过组织表面张力来测量。使用专门设计的组织表面张力计,我们证明(i)淡皮蛙深层细菌层的聚集体确实具有液体状的表面张力,(ii)它们的表面张力值恰好位于解决细菌层分层所必需的顺序中在体外和体内,以及(iii)刚体顶下方的深层外胚层的表面张力是尚未底层的深层外胚层的两倍。这些测量提供了直接的,定量的证据,表明在脊椎动物形态发生的早期,控制细菌层的“组织亲和力”反映在组织表面张力中。 (C)1997学术出版社。 [参考:64]

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