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Direct visualization of a stratified epithelium reveals that wounds heal by unified sliding of cell sheets

机译:分层上皮的直接可视化显示伤口通过细胞片的统一滑动而愈合

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摘要

Observing cells in their original niche is a key link between the information gleaned from planar culture and in vivo physiology and pathology. A new approach combining the transparency of the cornea, Hoffman modulation optics, and digital imaging allowed movements of individual corneal cells to be viewed directly in situ. 3-Dimensional time-lapse movies imaging unstained cells within the stratified corneal epithelium during wound healing were made. Tracking cell movements dynamically provided a definitive answer to the long-standing question: does a stratified epithelium heal by “sliding” of cell sheets as a coherent unit or do individual cells “leap frog” each other at the wound margin? A wound in the corneal epithelium healed primarily by sliding of the whole epithelium, with ~95% of cells moving with similar speed and trajectories and with little change in their relative position. Only 5% of cells changed layers, with equal proportions moving up or down. Epithelial healing in situ occurred in three phases: a latency, migration, and reconstruction phase. This model provides a unique system to study the behaviors of individual cells in their original niche. It shows that cells slide into a wound as a unified unit to heal a stratified epithelium.
机译:在原始生态位中观察细胞是平面培养收集的信息与体内生理和病理之间的关键联系。结合了角膜透明度,霍夫曼调制光学和数字成像的新方法,可以直接在原位查看单个角膜细胞的运动。制作了三维延时电影,对伤口愈合期间分层的角膜上皮内未染色的细胞进行了成像。动态跟踪细胞运动为长期存在的问题提供了明确的答案:分层的上皮是否通过“滑动”细胞片作为一个连贯单位而愈合,还是单个细胞在伤口边缘彼此“跳蛙”?角膜上皮的伤口主要通过整个上皮的滑动而愈合,约95%的细胞以相似的速度和轨迹运动,并且其相对位置几乎没有变化。只有5%的细胞改变了层,以相同的比例向上或向下移动。上皮原位愈合发生在三个阶段:潜伏期,迁移和重建阶段。该模型提供了一个独特的系统来研究单个细胞在其原始位中的行为。它显示细胞作为统一单位滑入伤口以治愈分层的上皮。

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