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Ultrastructural localization of glucose-6-phosphatase and alkaline phosphatase in the vaginal epithelium of rat

✍ Scribed by Yuan-Hsu Kang; William L. West


Publisher
John Wiley and Sons
Year
1982
Tongue
English
Weight
813 KB
Volume
171
Category
Article
ISSN
0362-2525

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✦ Synopsis


Abstract

The effect of ovarian hormones on the activities of glucose‐6‐phosphatase and alkaline phosphatase in the vaginal epithelium was studied in immature and ovariectomized rats, using ultracytochemical techniques. Comparative studies were done on normal rats at the luteal phase and on day 14 of pregnancy.

Various vaginal cells show different degrees of response to progesterone and diethylstilbestrol (DES) with regard to glucose‐6‐phosphatase activity. Intense glucose‐6‐phosphatase activity was observed in the cisternae of granular endoplasmic reticulum (rER), Golgi saccules and vesicles, and nuclear envelope of both basal cells and stromal cells of progesterone treated rats, whereas in the basal cells and stromal cells of DES‐treated and control animals the enzyme was totally lacking. Detectable glucose‐6‐phosphatase activity was also observed, however, in the rER cisternae and Golgic complex of keratohyalin‐secreting squamous intermediate cells of the vaginal epithelium of DES‐treated rats. Alkaline phosphatase was observed in the plasma membranes of various cell types of vaginal epithelium in the normal, progesterone‐, and DES‐treated rats, Alkaline phosphatase was also found on the limiting membranes of secretory granules of mucocytes in animals at the luteal phase and during pregnancy. DES and progesterone in the doses used did not affect alkaline phosphatase activity in the rat vagina. Overall, progesterone enhances glucose‐6‐phosphatase activity in basal cells of the rat vagina prior to completion of mucification. Alkaline phosphatase was found in all cells involved in mucin secretion.


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## Abstract Ultrastructural and cytochemical methods were utilized to study the human Fallopian tube fimbrial epithelium during the different stages of the menstrual cycle. Alkaline phosphatase reaction product was located along the apical and lateral plasma membranes of the secretory cells only,