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Detection of Modified Forms of Cytosine Using Sensitive Immunohistochemistry
Published on: August 16, 2016
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.
Abstract:
Crooke's hyaline change of the human pituitary gland appears as an intracytoplasmic accumulation of fine filaments under electron microscopy. This study was attempted to identify the fine filaments by immunohistochemical methods. Twenty-eight postmortem, formalin-fixed or chrome-alum-fixed, paraffin-embedded pituitary glands revealing unequivocal Crooke's hyaline change on hematoxylin and eosin stain were selected for this study. To demonstrate Crooke's cells and fine filaments simultaneously, mirror image sections were sliced and stained with the following monoclonal antibodies using an avidin-biotin-peroxidase complex method: an antibody against synthesized adrenocorticotropic hormone 1-24, human cytokeratins (55-57 kilodalton [kd] and 68 kd), porcine vimentin (57 kd), porcine desmin (53 kd), bovine neurofilaments (70, 160, and 210 kd), human glial fibrilfary acidic protein (GFAP) (56 kd), and chicken actin. Crooke's cells showed a variable intensity of cytoplasmic staining for 55- to 57-kd cytokeratins, from focal to more even and intense staining revealing a characteristic wide brown ring around the nucleus or beneath the cell membrane. The most severely affected cells were totally replaced by dark brown reaction products with no secretory granules detectable in the cytoplasm. However, 68-kd cytokeratin could not be unequivocally demonstrated. Crooke's cells were all negative for vimentin, desmin, neurofilaments, GFAP, and actin. Thus far, it could be concluded that Crooke's hyaline change was composed of intermediate-subunit molecular weight cytokeratins that are normal constituents of the ACTH cell.
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