Atomic force microscopy analysis of progenitor corneal epithelial cells fractionated by a rapid centrifugation isolation technique

PLoS One. 2013;8(3):e59282. doi: 10.1371/journal.pone.0059282. Epub 2013 Mar 26.

Abstract

Purpose: To investigate the use of atomic force microscopy (AFM) to image the three groups of corneal epithelial cells fractionated by a novel rapid centrifugation isolation technique.

Methods: Epithelial cells harvested from primary cultures of rabbit limbal rings were centrifuged onto uncoated dishes, first at 1400 rpm and then at 1800 rpm. The adherent cells after centrifugation at 1400 rpm (ATC1), the adherent cells at 1800 rpm (ATC2) and the non-adherent cells at 1800 rpm (NAC) were investigated for BrdU retention and were subjected to contact mode AFM and Transmission Electron Microscopy (TEM).

Results: Compared with unfractionated cells, the ATC1 group, accounting for about 10% of the whole population, was enriched in BrdU label-retaining cells. There were dramatic overall shape, surface membrane and intra-cellular ultrastructure differences noted among ATC1, ATC2 and NAC populations. The whole cell roughness measurements were 21.1±1.5 nm, 79.5±3.4 nm and 103±4.6 nm for the ATC1, ATC2 and NAC groups, respectively. The mero-nucleus roughness measurements were 34.2±1.7 nm, 13.0±0.8 nm and 8.5±0.5 nm in the ATC1, ATC2 and NAC populations, respectively.

Conclusions: AFM was found to be a good tool for distinguishing among the three groups of cells. BrdU label retention, the AFM parameters and TEM together suggest that the ATC1, ATC2 and NAC populations may be progenitor corneal epithelial cells, transit amplifying cells and terminal differentiation cells, respectively.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Bromodeoxyuridine
  • Cell Adhesion
  • Cell Count
  • Cell Differentiation
  • Cell Nucleus / ultrastructure*
  • Cell Separation / methods*
  • Cell Shape
  • Centrifugation / methods*
  • Cornea / cytology*
  • Epithelial Cells / classification
  • Epithelial Cells / ultrastructure*
  • Microscopy, Atomic Force
  • Primary Cell Culture
  • Rabbits

Substances

  • Bromodeoxyuridine

Grants and funding

This work was supported by the Key Programs of Health Bureau of Guangzhou City (Project No. 201102A212025); the Medical Scientific Research Foundation of Guangdong Province, China (Project No. WSTJJ20111023342124197509260867); the Key Programs of Guangzhou Municipal Science and Technology Plan Project (Project No. 2011J4100028); and the Programs of Health Bureau of Guangzhou City (Project No. 20121A011011). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.