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Rapid detection of guttae area using aniline blue staining in Fuchs endothelial corneal dystrophy mouse model. | LitMetric

AI Article Synopsis

  • Fuchs endothelial corneal dystrophy (FECD) leads to corneal endothelial degeneration and impaired vision due to the accumulation of guttae on Descemet's membrane.
  • Researchers established a FECD mouse model using UVA exposure and utilized various staining techniques, including aniline blue (AB) and Masson's trichrome, to analyze corneal structures.
  • AB staining proved to be a quick and effective method for identifying guttae areas in the corneas of FECD mice, showing significant correlation with collagen I presence in the affected regions.

Article Abstract

Fuchs endothelial corneal dystrophy (FECD) is a leading cause of corneal endothelial degeneration resulting in impaired visual acuity. Excessive deposition of extracellular matrix (guttae) on Descemet's membrane (DM) is the hallmark of FECD. We sought to detect the guttae area rapidly using aniline blue (AB) staining in FECD mouse model. FECD mouse model was established via ultraviolet A (UVA) exposure. Masson's trichrome staining was utilized to stain the corneal sections. AB staining was utilized to stain both whole cornea tissues and stripped Descemet's membrane-endothelium complex (DMEC) flat mounts, while immunofluorescence staining of collagen I was employed to stain guttae areas. In Masson's trichrome staining, corneal collagen fibrils were stained blue with AB. The DMEC flat mounts were stained into relative dark blue areas and relative light blue areas using 2% AB staining. The areas of dark blue could almost overlap with collagen I-positive areas, and have an acellular centre and a moderately distinct boundary line with the surrounding corneal endothelial cells. In conclusion, AB staining is a rapid and effective method for the evaluation of the guttae areas in the FECD mouse model.

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Source
http://dx.doi.org/10.1111/1440-1681.13921DOI Listing

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