Immunohistochemical study of crooke's hyaline change

Yoshio Uei1, Masaki Kanzaki2, Toshio Ohta3

  • 1Cytology Section, Clinical Laboratory, National Cancer Center Hospital, Japan.

Insights

Crooke's hyaline change in the pituitary gland is caused by an accumulation of intermediate-subunit molecular weight cytokeratins. These cytokeratins are normal components of adrenocorticotropic hormone (ACTH) cells, identified using immunohistochemical methods.

Area of Science:

  • Endocrinology
  • Cell Biology
  • Histopathology

Background:

  • Crooke's hyaline change is an ultrastructural alteration in human pituitary glands.
  • It is characterized by intracytoplasmic accumulation of fine filaments.
  • The precise composition of these filaments was previously unclear.

Purpose of the Study:

  • To identify the molecular composition of the fine filaments in Crooke's hyaline change.
  • To utilize immunohistochemical techniques for filament identification.
  • To correlate filament composition with normal pituitary cell constituents.

Main Methods:

  • Examined 28 postmortem pituitary glands with Crooke's hyaline change.
  • Employed immunohistochemistry with monoclonal antibodies against various proteins including cytokeratins, vimentin, desmin, neurofilaments, GFAP, and actin.
  • Utilized avidin-biotin-peroxidase complex method on mirror image sections.

Main Results:

  • Crooke's cells exhibited variable cytoplasmic staining for 55- to 57-kilodalton (kd) cytokeratins.
  • Intense staining formed a ring around the nucleus or beneath the cell membrane, with severe cases replacing secretory granules.
  • Cells were negative for vimentin, desmin, neurofilaments, GFAP, and actin; 68-kd cytokeratin was not unequivocally demonstrated.

Conclusions:

  • Crooke's hyaline change is composed of intermediate-subunit molecular weight cytokeratins.
  • These cytokeratins are normal constituents of adrenocorticotropic hormone (ACTH) cells.
  • The findings elucidate the molecular basis of this pituitary alteration.

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