The ultrastructure of the corpus luteum of the guinea-pig

  • Paula R. Crombie
  • Robert D. Burton
  • Nicola Ackland
Article

Summary

An electron-microscopic investigation, based on the suggestion that differences seen in progesterone levels under differing hormonal conditions might be reflected in the ultrastructural organisation of the lutein cells of the guinea-pig was undertaken. Comparisons were made between corpora lutea taken from animals during the normal oestrous cycle, pregnancy and lactation, and after hysterectomy or hypophysectomy.

The lutein cells from the oestrous cycle corpus luteum appeared to be of two types, “light” and “dark”. The former were more numerous. The main difference between them lay in the arrangement of the endoplasmic reticulum. Lutein cells from corpora lutea (with the exception of the “old” degenerating corpora lutea) all contained well-developed agranular endoplasmic reticulum, little granular endoplasmic reticulum, several electron-dense lipid granules, lysosomal bodies which ranged from small spherical bodies to large autophagic vesicles and mitochondria. The mitochondria were numerous, and in the corpus luteum of pregnancy, they were closely associated with the parallel arrays of granular endoplasmic reticulum.

With minor exceptions, the lutein cells of the guinea-pig present a strikingly uniform picture despite their hormonal condition.

The manner in which this uniformity of ultrastructure may be related to observed differences in progesterone levels in the corpus luteum of the guinea-pig is discussed.

Key-Words

Corpus Luteum Guinea-Pig Ultrastructure 

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References

  1. Adams, E. C., Hertig, A. T.: Studies on the human corpus luteum. I. Observations on the ultrastructure of development and regression of the luteal cells during the menstrual cycle. J. Cell Biol. 41, 696–715 (1969a).Google Scholar
  2. —: Studies on the human corpus luteum. II. Observations on the ultrastructure of luteal cells during pregnancy. J. Cell Biol. 41, 716–735 (1969b).Google Scholar
  3. Bjersing, L.: On the ultrastructure of granulosa lutein cells in porcine corpus luteum, with special reference to endoplasmic reticulum and steroid hormone synthesis. Z. Zellforsch. 82, 187–211 (1967).Google Scholar
  4. Blanchette, E. J.: Ovarian steroid cell. I. Differentiation of lutein cell from the preovulatory stage and under the influence of exogenous gonadotrophins. J. Cell Biol. 31, 501–516 (1966a).Google Scholar
  5. —: Ovarian steroid cells. II. The lutein cell. J. Cell Biol. 31, 517–542 (1966b).Google Scholar
  6. Christensen, A. K., Chapman, G. B.: Cup-shaped mitochondria in interstitial cells of the albino rat testis. J. Cell Biol. 18, 576–578 (1959).Google Scholar
  7. Enders, A. C.: Observations on the fine structure of lutein cells. J. Cell Biol. 12, 101–113 (1962).Google Scholar
  8. —, Lyons, W. R.: Observations on the fine structure of lutein cells: II. The effects of hypophysectomy and mammotrophic hormone in the rat. J. Cell Biol. 22, 127–141 (1964).Google Scholar
  9. Fawcett, D. W., Long, J. A., Jones, A. L.: The ultrastructure of endocrine glands. Recent Progr. Hormone Res. 25, 315–380 (1969).Google Scholar
  10. Green, J. A., Garcilazo, J. A., Maqueo, M.: Ultrastructure of the human ovary. III Canaliculi of the corpus luteum. Amer. J. Obstet. Gynec. 102, 57–64 (1968).Google Scholar
  11. —, Maqueo, M.: Ultrastructure of the human ovary. I. The luteal cell during the menstrual cycle. Amer. J. Obstet. Gynec. 92, 946–957 (1965).Google Scholar
  12. Heap, R. B.: The binding of plasma progesterone in pregnancy. J. Reprod. Fertil. 18, 546–548 (1969).Google Scholar
  13. —, Perry, J. S., Rowlands, I. W.: Corpus luteum function in the guinea-pig; arterial and luteal progesterone levels, and the effects of hysterectomy and hypophysectomy. J. Reprod. Fertil. 13, 537–553 (1967).Google Scholar
  14. Illingworth, D. V., Heap, R. B., Perry, J. S.: Changes in the metabolic clearance rate of progesterone in the guinea-pig. J. Endocr. 48, 409–417 (1970).Google Scholar
  15. Laguesse, E.: Structure et developpement du pancreas d'après les travaux récents. J. Anat. (Paris) 30, 591–608 (1894).Google Scholar
  16. Morris, B., Sass, M. B.: The formation of lymph in the ovary. Proc. roy. Soc. B 164, 577–591 (1966).Google Scholar
  17. Palade, G. E.: A study of fixation for electron microscopy. J. exp. Med. 95, 285–298 (1958).Google Scholar
  18. Reynolds, E. S.: The use of lead citrate at high pH as an electron-opaque stain in electron microscopy. J. Cell Biol. 17, 208–212 (1963).Google Scholar
  19. Rowlands, I. W.: The corpus luteum of the guinea-pig. In: Ciba Foundation Coll. Ageing 2, 69–83 (1956).Google Scholar
  20. van Lennep, E. W., Madden, L. M.: Electron microscope observations on the involution of the human corpus luteum of menstruation. Z. Zellforsch. 66, 365–380 (1965).Google Scholar

Copyright information

© Springer-Verlag 1971

Authors and Affiliations

  • Paula R. Crombie
    • 1
  • Robert D. Burton
    • 1
  • Nicola Ackland
    • 1
  1. 1.Agricultural Research Council Institute of Animal Physiology BabrahamCambridgeEngland

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