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Cationic colloidal gold staining of acidic glycoconjugates in mouse Paneth cells

Y B Ge1, D H Yang, J Ohmori

  • 1Department of Anatomy, Faculty of Medicine, Kagoshima University, Japan.

Insights

Cationic colloidal gold (CCG) effectively stains acidic glycoconjugates in mouse Paneth cells. This method provides high resolution for identifying sulfated, sialylated, and phosphated glycoconjugates in both light and electron microscopy.

Area of Science:

  • Cell Biology
  • Histology
  • Biochemistry

Background:

  • Paneth cells in the mouse ileum are crucial for intestinal immunity.
  • Acidic glycoconjugates play significant roles in cellular functions.
  • Accurate visualization of glycoconjugates is vital for understanding their roles.

Purpose of the Study:

  • To evaluate the efficacy of cationic colloidal gold (CCG) for staining acidic glycoconjugates.
  • To determine the optimal pH conditions for CCG staining in mouse ileum Paneth cells.
  • To assess the utility of CCG for both light and electron microscopy.

Main Methods:

  • Mouse ileum tissues were fixed and embedded using Lowicryl K4M resin.
  • Semithin and ultrathin sections were prepared for light and electron microscopy.
  • Cationic colloidal gold (CCG) staining was performed at various pH levels (1.0, 2.5, 4.0, 7.2).

Main Results:

  • CCG staining revealed acidic glycoconjugates in secretory granules, Golgi apparatus, lysosomes, and cytoplasm.
  • Staining patterns varied with pH, indicating differential labeling of sulfated, sialylated, and phosphated glycoconjugates.
  • Electron microscopy demonstrated selective labeling of cellular structures, with enhanced intensity at pH 2.5.

Conclusions:

  • The CCG method offers excellent resolution and contrast for glycoconjugate staining.
  • CCG is a versatile probe for identifying specific acidic glycoconjugates in Paneth cells.
  • This technique is valuable for both light and electron microscopic studies of glycoconjugates.

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