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Uterine glands of the pig during pregnancy

An ultrastructural and cytochemical study

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Summary

The ultrastructure of the porcine uterine glands is described from material taken from 11 pregnant pigs at exactly known stages of gestation (day 30; 58; 80; 100; 110). Fixation was performed by perfusion via a branch of the uterine artery and the tissue was routinely processed for electrom microscopy. Additionally, cytochemical studies (phosphotungstic acid reaction for glycoproteins, according to Rambourg 1967; acid phosphatase reaction; ultrastructural localization of cellular iron, according to Parmley et al. 1978) were performed.

On day 30 of pregnancy the uterine glands are coiled, simple tubular glands with a narrow lumen. The epithelial lining is simple columnar and consists basically of two cell types, ciliated cells and secretory cells. The secretory activity of the glandular epithelium is low; only a few secretory granules are present in the supranuclear cytoplasm.

At midpregnancy the ultrastructure of the glands has significantly changed and the cells now show all the characteristics of high secretory activity: numerous parallel cisternae of rough endoplasmic reticulum, an extensively developed Golgi apparatus and many secretory granules which give a positive reaction for acid phosphatase and glycoproteins. The lumina of the glands are significantly enlarged and filled with a great amount of a granular, acid phosphatase-positive material.

In the last third of pregnancy, only minor changes in the ultrastructure of the uterine glands are observed. The secretory activity is still high. The amount of rough endoplasmic reticulum has further increased and parallel arrays of cisternae occupy a considerable part of the supranuclear cytoplasm. The importance of the uterine secretion for embryonic nutrition and development is only partly understood. One of the secreted glycoproteins, uteroferrin, is believed to play an important role in the iron transfer from mother to fetus.

From midpregnancy onward, a special cell type, the “granule laden cell” is found scattered between normal secretory cells of the uterine glands. Contrary to the opinion of Perry and Cromby (1982), we could demonstrate that these cells frequently extend to the lumen of the gland; hence the term “basal cell” seems inappropriate for this cell type.

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References

  • Amoroso EC (1952) Placentation: In Marshall's physiology of reproduction, 3rd ed, vol. 2, Longman Green, London

    Google Scholar 

  • Barka T, Anderson PJ (1962) Histochemical methods for acid phosphatases using hexazonium pararosanilin as coupler. J. Histochem Cytochem 10:741–753

    Google Scholar 

  • Baska SMM, Bazer FW, Roberts RM (1974) The secretion of a uterine specific, purple phosphatase by cultured explants of porcine endometrium. Dependency upon the state of pregnancy of the animal. Biol Reprod 20:431–441

    Google Scholar 

  • Bazer FW (1975) Uterine protein secretion: relationship to development of the conceptus. J Anim Sci 41:1376–1382

    Google Scholar 

  • Beier HM (1974) Oviductal and uterine fluids. J Reprod Fert 37:221–237

    Google Scholar 

  • Beier HM (1976) Uteroglobin and related biochemical changes in the reproductive tract during early pregnancy in the rabbit. J Reprod Fert Suppl 25:53–69

    Google Scholar 

  • Beier HM (1979) Die Entwicklung der Blastocyste: Differenzierung von Embryoblast und Trophoblast. Verh Anat Ges 73:353–378

    Google Scholar 

  • Björkman N, Dantzer V, Hasselager E, Holm H, Kjaersgaard P (1981) Perfusion in vivo of procine Placenta, Fixation for EM. Placenta 2:287–302

    Google Scholar 

  • Brambel CE (1933) Allantochorionic differentiation of the pig studied morphologically and histochemically. Am J Anat 52:397–459

    Google Scholar 

  • Chen TT, Bazer FW, Gebhardt BM, Roberts RM (1975) Uterine secretion in mammals: Synthesis and placental transport of a purple acid phosphatase in pigs. Biol Reprod 13:304–313

    Google Scholar 

  • Christie GA (1968) Histochemistry of the placenta of the pig. Histochemie 12:208–221

    Google Scholar 

  • Fabian G (1960) Zum zyklishcen Verhalten vornehmlich der Höhe des Endometriums beim Schwein. Med Vet Diss Berlin

  • Flechon JE (1974) Validity of phosphotungstic acid staining of polysaccharide at very low pH on thin sections of glycolmethacrylate embedded material. J Microsc 19:207–214

    Google Scholar 

  • Friess AE, Sinowatz F, Skolek-Winnisch R, Träutner W (1980) The placenta of the pig. I.Fine structural changes of the placental barrier during pregnancy. Anat Embryol 158:179–191

    Google Scholar 

  • Friess AE, Sinowatz F, Skolek-Winnisch R, Träutner W (1981) The placenta of the pig. II. The ultrastructure of the areolae. Anat Embryol 163:43–53

    Google Scholar 

  • Krishnan RS, Daniel JC (1967) Blastokinin: Inducor and regulator of blastocyst development in the rabbit uterus. Science 158:490–492

    Google Scholar 

  • Kuschma D (1980) Histologische und histochemische Untersuchungen am Uterus von Schweinen mit hormonell induziertem und synchronisiertem Geschlechtszyklus. Med Diss Regensburg

  • Leduc EH, Berhard WJ (1967) Recent modifications of the glycolmathcrylate embedding procedure. J Ultrastr Res 19:196–199

    Google Scholar 

  • Mullins DE, Bazer FW, Roberts RM (1980) Secretion of a progesterone induced inhibitor of plasminogen activator by the porcine uterus. Cell 20:865–872

    Google Scholar 

  • Murray FA, Bazer FW, Wallace HD, Warnick AC (1972) Quantitative and qualitative variation in the secretion of protein by the porcine uterus during the estrous cycle. Biol Reprod 7:314–321

    Google Scholar 

  • Nicander L, Ploen L, Larson M (1974) Specific apocrine secretion in the central lobe of the prostate gland of rabbits. Cell Tissue Res 151:69–77

    Google Scholar 

  • Palludan B, Wegger J, Moustgaard J (1970) Placental transfer of iron Roy Vet and Agric Univ Yearbook: 62–91

  • Parmley RT, Spicer SS, Alvarez CJ (1978) Ultrastructural localization of nonheme cellular iron with ferrocyanide. J Histochem Cytochem 26:729–741

    Google Scholar 

  • Perry JS, Crombie PR (1982) Ultrastructure of the uterine glands of the pig. J Anat 134:339–350

    Google Scholar 

  • Perls M (1867) Nachweis von Eisenoxyd in gewissen Pigmenten. Virchows Arch Pathol Anat 39:42–46

    Google Scholar 

  • Rambourg A (1967) Détection des glycoproteines en microscopie, électronique: coloration de la surface cellulaire e de l'appareil de golgi par un melange acide chronique-phosphotung-stique. CR Acad Sci (Paris) 265:1426–1433

    Google Scholar 

  • Reynolds ES (1963) The use of lead citrate at high pH as an electronopaque stain in electron microscopy. J Cell Biol 17:209–212

    Google Scholar 

  • Roberts RM, Bazer FW, Baldwin N, Pollard WE (1976) Progesterone induction of lysozyme and peptidase activities in the porcine uterus. Arch Biochem Biophys 177:499–507

    Google Scholar 

  • Squire GD, Bazer WF, Murray FA (1972) Electrophoresis pattern of porcine uterine protein secretions during the estrous cycle. Biol. Reprod. 7:321–325

    Google Scholar 

  • Wislocky GB, Dempsey EW (1946) Histochemical reactions of the placenta of the pig. Am J Anat 78:181–225

    Google Scholar 

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Sinowatz, F., Friess, A.E. Uterine glands of the pig during pregnancy. Anat Embryol 166, 121–134 (1983). https://doi.org/10.1007/BF00317948

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