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胚胎组织的表面张力可预测它们的相互包绕行为。

Surface tensions of embryonic tissues predict their mutual envelopment behavior.

作者信息

Foty R A, Pfleger C M, Forgacs G, Steinberg M S

机构信息

Department of Molecular Biology, Princeton University, NJ 08544, USA.

出版信息

Development. 1996 May;122(5):1611-20. doi: 10.1242/dev.122.5.1611.

Abstract

During embryonic development, certain tissues stream to their destinations by liquidlike spreading movements. According to the 'differential adhesion hypothesis', these movements are guided by cell-adhesion-generated tissue surface tensions (sigmas), operating in the same manner as surface tensions do in the mutual spreading behavior of immiscible liquids, among which the liquid of lower surface tension is always the one that spreads over its partner. In order to conduct a direct physical test of the 'differential adhesion hypothesis', we have measured the sigmas of aggregates of five chick embryonic tissues, using a parallel plate compression apparatus specifically designed for this purpose, and compared the measured values with these tissues' mutual spreading behaviors. We show that aggregates of each of these tissues behave for a time as elasticoviscous liquids with characteristic surface tension values. Chick embryonic limb bud mesoderm (sigma = 20.1 dyne/cm) is enveloped by pigmented epithelium (sigma = 12.6 dyne/cm) which, in turn, is enveloped by heart (sigma = 8.5 dyne/cm) which, in turn, is enveloped by liver (sigma = 4.6 dyne/cm) which, in turn, is enveloped by neural retina (sigma = 1.6 dyne/cm). Thus, as predicted, the tissues' surface tension values fall in the precise sequence required to account for their mutual envelopment behavior.

摘要

在胚胎发育过程中,某些组织通过类似液体扩散的运动流向它们的目的地。根据“差异黏附假说”,这些运动由细胞黏附产生的组织表面张力(σ)引导,其作用方式与不混溶液体相互扩散行为中的表面张力相同,其中表面张力较低的液体总是会在其伙伴上扩散。为了对“差异黏附假说”进行直接的物理测试,我们使用专门为此设计的平行板压缩装置测量了五种鸡胚组织聚集体的σ,并将测量值与这些组织的相互扩散行为进行了比较。我们发现,这些组织中的每一种聚集体在一段时间内都表现为具有特征表面张力值的弹性黏性液体。鸡胚肢芽中胚层(σ = 20.1达因/厘米)被色素上皮(σ = 12.6达因/厘米)包裹,而色素上皮又被心脏(σ = 8.5达因/厘米)包裹,心脏又被肝脏(σ = 4.6达因/厘米)包裹,肝脏又被神经视网膜(σ = 1.6达因/厘米)包裹。因此,正如预测的那样,组织的表面张力值按照解释它们相互包裹行为所需的精确顺序下降。

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