CIL:44502, Canis lupus familiaris, kidney epithelial cell. In Cell Image Library ...

Preparation: living tissue Relation to intact cell: whole mounted tissue Item type: recorded image Imaging mode: differential interference contrast microscopy Parameter imaged: optical path length gradient Source of contrast: boundaries between regions with different refractive index Visualization m...

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Bibliographic Details
Main Authors: Zaritsky, Assaf, Kaplan, Doron
Format: Dataset
Language:unknown
Published: UC San Diego Library Digital Collections 2021
Subjects:
Online Access:https://dx.doi.org/10.6075/j0ms3s5v
https://library.ucsd.edu/dc/object/bb12020344
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Summary:Preparation: living tissue Relation to intact cell: whole mounted tissue Item type: recorded image Imaging mode: differential interference contrast microscopy Parameter imaged: optical path length gradient Source of contrast: boundaries between regions with different refractive index Visualization methods: visualization of contiguous regions Processing history: unprocessed raw data ... : Madin-Darby Canine Kidney (MDCK) epithelial cells expressing YFP-membrane were maintained in DMEM supplemented with 5% fetal FCS in a 37°C, 5% CO2 incubator. Wound healing assay: Cells were grown to 90% confluence in 24-well plates. Prior to scratching, the cells were starved by changing the medium to DMEM plus 0.1% FCS (starvation medium) for 24 hours. The medium was then changed to either fresh starvation medium (control), or starvation medium with 80 ng ml-1 HGF/SF for an additional 2 hours. A scratch of approximately 300 μm in width was generated using a 200 μl tip. The plate was subjected to time lapse microscopy in a stage incubator (OKOLAB, Italy) on a computer-controlled motorized stage of a confocal microscope (CLSM-510, Carl Zeiss, Germany), used in non-confocal DIC mode, with a 10x (NA 0.30) objective. Image acquisition was initiated 2 hours post scratching. Images were acquired every 15.7 minutes for 15 hours. The coordinates of each scratch were predefined, and a macro that repetitively ...