Comparison of different lipid staining methods in human meibomian gland epithelial cells

Yang Liu1, Shan Yang2, Xiaomin Chen1

  • 1Department of Ophthalmology, Zhongnan Hospital of Wuhan University, Wuhan, China.

Experimental Eye Research
|September 23, 2023
PubMed

Insights

Four dyes were tested for intracellular lipid detection in human meibomian gland cells. Oil Red O, Sudan III, and LipidTOX green effectively identified lipid accumulation during differentiation, unlike Nile Red.

Area of Science:

  • Cell Biology
  • Ocular Surface Research
  • Lipid Metabolism

Background:

  • Intracellular lipid accumulation is crucial in meibomian gland epithelial cell differentiation.
  • Accurate detection methods are needed to study lipid changes in immortalized human meibomian gland epithelial cells (IHMGECs).

Purpose of the Study:

  • To compare the efficacy of four common dyes (Oil Red O, Sudan III, LipidTOX green, Nile Red) for intracellular lipid detection in IHMGECs.
  • To evaluate how these dyes reveal lipid changes induced by Roxadustat, a differentiation agent.

Main Methods:

  • IHMGECs were cultured and treated with or without Roxadustat to induce differentiation.
  • Cells were stained using Oil Red O, Sudan III, LipidTOX green, or Nile Red.
  • Lipid vesicle size, number, area, and staining intensity were quantified using microscopy and ImageJ software.

Main Results:

  • Oil Red O and Sudan III increased lipid vesicle size and area in Roxadustat-treated cells, with Oil Red O showing larger vesicles than Sudan III.
  • LipidTOX green indicated increased intracellular lipid intensity, while Nile Red did not show significant changes.
  • All tested dyes revealed differences in lipid patterns, but Oil Red O, Sudan III, and LipidTOX green were more effective than Nile Red.

Conclusions:

  • Oil Red O, Sudan III, and LipidTOX green are suitable for quantifying intracellular lipid accumulation in differentiating IHMGECs.
  • Nile Red is less effective for detecting Roxadustat-induced lipid changes in this cell model.
  • Dye selection significantly impacts the assessment of lipid dynamics in IHMGECs.