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色素视网膜上皮细胞对鸡胚脉络膜成纤维细胞运动的非互惠接触抑制

Non-reciprocal contact inhibition of locomotion of chick embryonic choroid fibroblasts by pigmented retina epithelial cells.

作者信息

Parkinson E K, Edwards J G

出版信息

J Cell Sci. 1978 Oct;33:103-20. doi: 10.1242/jcs.33.1.103.

Abstract

Using light and electron microscopy, we have confirmed an earlier observation that chick embryonic pigmented retina epithelial cells (PRE cells) seeded in vitro on cultured sheets of choroid fibroblasts, are able to spread. Spreading is as rapid (and shows the same dependence on lateral contact between PRE cells) as on a serum-coated culture substrate. After 1 h most cells are spreading on the upper surface of the choroid sheet, but after 4 h, some PRE cells can be found sandwiched between overlapping choroid cells, and thus have invaded the sheet. Choroid fibroblasts underlie PRE in vivo, but the ability of PRE cells to spread on cultured fibroblasts is not specific for choroid, since PRE cells spread also on BKH21 hamster kidney fibroblasts, and on fibroblasts from chick embryonic heart. As reported by others for various fibroblastic cells, choroid cells seeded on to choroid sheets or on to cultured PRE are unable to spread. A possible explanation is that spreading of adherent cells is contact-inhibited by the cells in the sheet, just as their leading edges are paralysed on contact, and thus locomotion is inhibited, when fibroblasts collide on a plane substratum. If spreading of seeded cells and cell locomotion are inhibited by the same mechanism, PRE cells should contact-inhibit choroid fibroblasts with which they collide, but not themselves be so inhibited. Using time-lapse cinemicrography, we have found this to be the case. We first established that in homotypic collisions, choroid fibroblasts do show contact inhibition of locomotion, despite the criss-cross (not well monolayered) appearance of confluent cultures. In heterotypic collisions between choroid and PRE we found the predicted nonreciprocal behaviour: the choroid leading edge is paralysed on collision, and the cell subsequently retracts, whereas the active PRE margin appears to be completely unaffected. Speed measurements from a series of such collisions show that the speed of choroid cells is markedly reduced on collision with PRE, whereas the slight slowing of PRE is not statistically significant. We have observed similar behaviour in heterotypic collisions between various epithelial and fibroblastic cells, and so it seems possible that non-reciprocity may prove general for this interaction. If so, it has important implications for the role of contact inhibition of locomotion in phenomena such as morphogenesis, wound healing and the invasiveness of carcinoma cells. On the one hand, non-reciprocal contact-inhibition of locomotion may permit the spreading of epithelia over mesenchymal cells, thus generating or restoring an epithelial bounding membrane. On the other hand, in the absence of other interactions, it would fail to inhibit the invasion of mesenchymal territory by aberrant epithelial cells, or presumably by epithelial free edges.

摘要

利用光学显微镜和电子显微镜,我们证实了一项早期观察结果,即体外接种在脉络膜成纤维细胞培养片上的鸡胚色素视网膜上皮细胞(PRE细胞)能够铺展。PRE细胞在脉络膜成纤维细胞培养片上的铺展速度与在血清包被的培养底物上一样快(并且对PRE细胞之间的侧向接触表现出相同的依赖性)。1小时后,大多数细胞在脉络膜片的上表面铺展,但4小时后,可以发现一些PRE细胞夹在重叠的脉络膜细胞之间,从而侵入了脉络膜片。在体内,脉络膜成纤维细胞位于PRE之下,但PRE细胞在培养的成纤维细胞上的铺展能力并非脉络膜所特有,因为PRE细胞也能在BKH21仓鼠肾成纤维细胞以及鸡胚心脏的成纤维细胞上铺展。正如其他人对各种成纤维细胞所报道的那样,接种在脉络膜片或培养的PRE上的脉络膜细胞无法铺展。一种可能的解释是,贴壁细胞的铺展受到片层中细胞的接触抑制,就像当成纤维细胞在平面基质上碰撞时,它们的前缘在接触时会麻痹,从而运动受到抑制一样。如果接种细胞的铺展和细胞运动受到相同机制的抑制,那么PRE细胞应该对与其碰撞的脉络膜成纤维细胞产生接触抑制,但自身不会受到这种抑制。通过延时电影显微镜观察,我们发现情况确实如此。我们首先确定,在同型碰撞中,尽管汇合培养物呈现交叉(并非良好的单层)外观,但脉络膜成纤维细胞确实表现出运动的接触抑制。在脉络膜和成纤维细胞之间的异型碰撞中,我们发现了预期的非相互作用行为:脉络膜前缘在碰撞时麻痹,随后细胞回缩,而活跃的PRE边缘似乎完全不受影响。对一系列此类碰撞的速度测量表明,脉络膜细胞与PRE碰撞时速度明显降低,而PRE的轻微减速在统计学上并不显著。我们在各种上皮细胞和成纤维细胞之间的异型碰撞中也观察到了类似的行为,因此这种非相互作用可能在这种相互作用中具有普遍性。如果是这样,它对运动接触抑制在形态发生、伤口愈合和癌细胞侵袭等现象中的作用具有重要意义。一方面,运动的非相互接触抑制可能允许上皮细胞在间充质细胞上铺展,从而形成或恢复上皮边界膜。另一方面,在没有其他相互作用的情况下,它将无法抑制异常上皮细胞或可能是上皮游离边缘对间充质区域的侵袭。

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