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The Structural Changes in the Rat Uteri During the Postpartum Period

Year 2011, Volume: 20 Issue: 2, 83 - 91, 01.06.2011

Abstract

This study was performed to determine quantitatively the structural changes occuring in the involution period in rat uterus. Uterus samples taken from 25 female rats in the 1th, 3th, 5th 10th and 15th days postpartum were examined by using routine histological methods. In the first postpartum day, it was observed that wide lumen of uterus was to be surrendered with mucosal folds, whereas the cyrpts were deep and irregular. Additionally, it was determined that the epithelium including different cell types together with intraepithelial capillary vessels had properties of pseudostrafied columnar epithelium, and the edema was presence in the lamina propria. In the 3th day postpartum, it was observed that the intraepithelial vessels disappeared, the depth cyrpt decreased, and the cell density of lamina propria containing a few siderophage increased. In the 5th day postpartum, it was observed that the narrowing lumen of the uterus had a T shape, the epithelium was comprised of columnar cells of the same type, and a few crypt existed. In the 10th and 15th days postpartum, it was seen that the crypts diappeared completely, the surface epithelium had the features of high columnar epithelium and the number of siderophages increased. While the height of epithelium in the 1st, 3th and 5th days postpartum was different from that in the 10th and 15th days postpartum (p<0.01), it was determined that the measurable height of crypts in the 1st, 3th and 5th days postpartum exhibited differences as well (p<0.01). When thicknesses of the stroma were compared, the quantifications in the 3th and 5th days postpartum were different from those in the 10th and 15th days postpartum (p<0.01). Myometrium thickness in the 1st and 3th days postpartum was different from that in the 5th, 10th and 15th days postpartum (p<0.01). In the light of these findings, we concluded that uterinal involution in rats was completed on the 10th day postpartum

References

  • Kiracofe GH. Uterine involution: its role in regulating postpartum intervals. J Anim Sci 1980; 51: 16-28.
  • Lebas F. Physiologie de la reproduction chez le lapin. Journée AERA-ASFC “La reproduction chez le lapin”, 1994; pp 2-11.
  • Slama H, Tainturier D, Chemli J, Zaiem I, Bencharif J. Involution utérine chez les femelles domestiques: étude comparée. Revue Med Vet 1999; 150: 779-790.
  • Kim M, Kitson R, Albertson P, et al. Secreted a n d metalloproteinases of IL-2-activated NK cells and their inhibitors. J Immunol 2000; 164: 5883-5889. m a t r i x
  • Salamonsen LA. Tissue injury and repair in the female Reproduction 2003; 125: 301-311. tract.
  • Okano A, Tomizuka T. Postpartum uterine involution in the cow. JARQ 1996; 30: 113- 121.
  • Gier HT, Marion GB. Uterus of the cow after parturition: Involutional changes. Amer J Vet Res 1968; 29: 83-96.
  • Mochow R, Olds D. Effect of age and number of calvings on histological characteristics of the bovine uterus. J Dairy Sci 1966; 49: 642- 646.
  • Gomes CC, Flores JM, Sanchez J, Rodrıguez A, Sanchez MA. Histological changes in the uterus during postpartum in the mare. Anat Histol Embryol 1995; 23: 19-23.
  • Gyax AP, Ganjam VK, Kenney RM. Clinical, microbiological and histological changes associated with uterine involution in the mare. J Reprod Fert 1979; 27: 571-578.
  • Kanter M, Koç A. Sıçanlarda Doğumdan sonra uterus involüsyonunun histolojik olarak ince- lenmesi. YYÜ Vet Fak Derg 1997; 8: 21-24.
  • Shkurupiy VA, Dubenin EV, Dubinina NN. Dynamics of myocytes of different types in rat myometrium during pregnancy and early postpartum involution. B Exp Biol Med 2008a; 146: 849-852.
  • Crossman G. A modification of Mallory’s connective tissue stain with a discussion of the principles involved. Anat Rec 1937; 69: 33-38.
  • Bancroft JD, Cook HC. Manual of histological tecniques. (1 th ed), Churchill Livingstone, Edinburgh London Melbourne and New York 1984; pp 151-152.
  • SPSS Statistical package for windows version 14.0.1 (Serial: 9869264). SPSS Inc. Chicago, 2001.
  • Shkurupiy VA, Dubinin EV, Dubinina NN. Structural transformations of myocytes during gestation and early postpartum involution of the uterus. B Exp Biol Med 2008b; 146: 97- 100.
  • Nilsen-Hamilton M, Lıu Q, Ryon J, et al. Tissue Involution and the acute phase response. Ann N Y Acad Sci 2003; 995: 94- 108.
  • Warbrick JG. Postpartum Changes in the uterus of rat. J Embryol Exp Morph 1955; 3: 256-264.
  • Elkhalil AO, Maejıma Y, Aoyama M, Tanaka H, Sugita S. Morphometric and histochemical study of involution in the rat uterus after parturition. Anim Sci J 2005; 76: 313-323.
  • Takamoto N, Leppert PC, Yu SY. Cell death and proliferation and its relation to collagen degradation in uterine involution of rat. Connect Tissue Res 1998; 37: 163-175.
  • Deno RA. Uterine macrophages in the mouse and their relation to involution. Am J Ant 1937; 60: 433-471.
  • Agricola R, Pessa P, Barbosa M, Medeiros AS, Ferreira-Digas G. Microvascularization and proliferation of cell nuclear antigen expression in the postpartum endometrium in the mare. Proceeding of the 9th International Symposium on Equine Reproduction, Rolduc, Holanda, 6- 11 August 2006, Anim Reprod Sci 94: 417-419.
  • Cruchten SV, Broeck VD, Duchateau L, Simoens P. Apopitosis in the canine endometrium during the estrous cycle. Theriogenology 2003; 60: 1595-1608.
  • King AE, Critchley HO, Kelly RW. Innate immune defences in the human endometrium. Reprod Biol Endocrin 2003; 1:116.
  • Epstein CE, Elidemir O, Colasurdo GN, Fan LL. Time course of hemosiderin production by alveolar macrophages in a murine model. Chest 2001; 120: 2013-2020.
  • Sherman JM, Winnie G, Thomassen MJ, Abdul-Karim FW, Boat TF. Time course of hemosiderin production and clearance by human pulmonary macrophages. Chest 1984; 86: 409-411.
  • Morselt AF, Cambier PH, James J. Electron- microscopical and microphometric studies on the breakdown of erythrocytes by macrophages. Histochemie 1973; 37: 161-168.

POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER

Year 2011, Volume: 20 Issue: 2, 83 - 91, 01.06.2011

Abstract

Bu araştırma, sıçan uterusunda involüsyon sürecinde oluşan yapısal değişimleri kantitatif olarak belirlemek amacıyla yapıldı. Postpartum 1., 3., 5., 10. ve 15. günlerdeki 25 dişi sıçandan alınan uterus örnekleri rutin histolojik yöntemlerle incelendi. Postpartum 1. günde geniş olan uterusun lumeninin mukozal dürümlerle kuşatıldığı, kriptlerin ise derin ve düzensiz olduğu gözlendi. Ayrıca intraepiteliyal kapilar damarlarla birlikte farklı hücre tipleri içeren epitelin yalancı çok katlı prizmatik özellik gösterdiği ve lamina propriyanın da ödemli olduğu tespit edildi. Postpartum 3. günde intraepiteliyal derinliklerinin azaldığı, lamina propriyanın hücre yoğunluğunun arttığı ve az miktarda siderofaj da içerdiği belirlendi. Postpartum 5. günde ise uterus lumeninin daralarak T şeklini aldığı, epitelin aynı tipteki prizmatik hücrelerden oluştuğu, çok az kript bulunduğu gözlendi. Postpartum 10. ve 15. günde kriptlerin tamamen kaybolduğu, yüzey epitelinin ise yüksek prizmatik özellik kazandığı ve siderofajların sayıca arttığı görüldü. Postpartum 1., 3. ve 5. günlerdeki yüzey epitel yüksekliklerinin postpartum 10. ve 15. günlerdekinden farklı olduğu (p<0.01) belirlenirken, postpartum 1., 3., ve 5. günlerde ölçülebilen kript yüksekliklerinin de farklılık gösterdiği (p<0.01) tespit edildi. Stroma kalınlıkları karşılaştırıldığında postpartum 3. ve 5. gün ile postpartum 10. ve 15. gün arasındaki farklılığın önemli olduğu (p<0.01), miyometriyum kalınlıkları karşılaştırıldığında ise postpartum 1. ve 3. gün ile postpartum 5., 10. ve 15. gün arasındaki farklılıkların anlamlı olduğu (p<0.01) saptandı. Bu bulgular ışığında sıçanlarda uterus involüsyonunun postpartum 10. günde tamamlandığı sonucuna varıldı

References

  • Kiracofe GH. Uterine involution: its role in regulating postpartum intervals. J Anim Sci 1980; 51: 16-28.
  • Lebas F. Physiologie de la reproduction chez le lapin. Journée AERA-ASFC “La reproduction chez le lapin”, 1994; pp 2-11.
  • Slama H, Tainturier D, Chemli J, Zaiem I, Bencharif J. Involution utérine chez les femelles domestiques: étude comparée. Revue Med Vet 1999; 150: 779-790.
  • Kim M, Kitson R, Albertson P, et al. Secreted a n d metalloproteinases of IL-2-activated NK cells and their inhibitors. J Immunol 2000; 164: 5883-5889. m a t r i x
  • Salamonsen LA. Tissue injury and repair in the female Reproduction 2003; 125: 301-311. tract.
  • Okano A, Tomizuka T. Postpartum uterine involution in the cow. JARQ 1996; 30: 113- 121.
  • Gier HT, Marion GB. Uterus of the cow after parturition: Involutional changes. Amer J Vet Res 1968; 29: 83-96.
  • Mochow R, Olds D. Effect of age and number of calvings on histological characteristics of the bovine uterus. J Dairy Sci 1966; 49: 642- 646.
  • Gomes CC, Flores JM, Sanchez J, Rodrıguez A, Sanchez MA. Histological changes in the uterus during postpartum in the mare. Anat Histol Embryol 1995; 23: 19-23.
  • Gyax AP, Ganjam VK, Kenney RM. Clinical, microbiological and histological changes associated with uterine involution in the mare. J Reprod Fert 1979; 27: 571-578.
  • Kanter M, Koç A. Sıçanlarda Doğumdan sonra uterus involüsyonunun histolojik olarak ince- lenmesi. YYÜ Vet Fak Derg 1997; 8: 21-24.
  • Shkurupiy VA, Dubenin EV, Dubinina NN. Dynamics of myocytes of different types in rat myometrium during pregnancy and early postpartum involution. B Exp Biol Med 2008a; 146: 849-852.
  • Crossman G. A modification of Mallory’s connective tissue stain with a discussion of the principles involved. Anat Rec 1937; 69: 33-38.
  • Bancroft JD, Cook HC. Manual of histological tecniques. (1 th ed), Churchill Livingstone, Edinburgh London Melbourne and New York 1984; pp 151-152.
  • SPSS Statistical package for windows version 14.0.1 (Serial: 9869264). SPSS Inc. Chicago, 2001.
  • Shkurupiy VA, Dubinin EV, Dubinina NN. Structural transformations of myocytes during gestation and early postpartum involution of the uterus. B Exp Biol Med 2008b; 146: 97- 100.
  • Nilsen-Hamilton M, Lıu Q, Ryon J, et al. Tissue Involution and the acute phase response. Ann N Y Acad Sci 2003; 995: 94- 108.
  • Warbrick JG. Postpartum Changes in the uterus of rat. J Embryol Exp Morph 1955; 3: 256-264.
  • Elkhalil AO, Maejıma Y, Aoyama M, Tanaka H, Sugita S. Morphometric and histochemical study of involution in the rat uterus after parturition. Anim Sci J 2005; 76: 313-323.
  • Takamoto N, Leppert PC, Yu SY. Cell death and proliferation and its relation to collagen degradation in uterine involution of rat. Connect Tissue Res 1998; 37: 163-175.
  • Deno RA. Uterine macrophages in the mouse and their relation to involution. Am J Ant 1937; 60: 433-471.
  • Agricola R, Pessa P, Barbosa M, Medeiros AS, Ferreira-Digas G. Microvascularization and proliferation of cell nuclear antigen expression in the postpartum endometrium in the mare. Proceeding of the 9th International Symposium on Equine Reproduction, Rolduc, Holanda, 6- 11 August 2006, Anim Reprod Sci 94: 417-419.
  • Cruchten SV, Broeck VD, Duchateau L, Simoens P. Apopitosis in the canine endometrium during the estrous cycle. Theriogenology 2003; 60: 1595-1608.
  • King AE, Critchley HO, Kelly RW. Innate immune defences in the human endometrium. Reprod Biol Endocrin 2003; 1:116.
  • Epstein CE, Elidemir O, Colasurdo GN, Fan LL. Time course of hemosiderin production by alveolar macrophages in a murine model. Chest 2001; 120: 2013-2020.
  • Sherman JM, Winnie G, Thomassen MJ, Abdul-Karim FW, Boat TF. Time course of hemosiderin production and clearance by human pulmonary macrophages. Chest 1984; 86: 409-411.
  • Morselt AF, Cambier PH, James J. Electron- microscopical and microphometric studies on the breakdown of erythrocytes by macrophages. Histochemie 1973; 37: 161-168.
There are 27 citations in total.

Details

Other ID JA66ZU97MB
Journal Section Research Article
Authors

Emel Alan This is me

Narin Liman This is me

Publication Date June 1, 2011
Submission Date June 1, 2011
Published in Issue Year 2011 Volume: 20 Issue: 2

Cite

APA Alan, E., & Liman, N. (2011). POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER. Sağlık Bilimleri Dergisi, 20(2), 83-91.
AMA Alan E, Liman N. POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER. JHS. June 2011;20(2):83-91.
Chicago Alan, Emel, and Narin Liman. “POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER”. Sağlık Bilimleri Dergisi 20, no. 2 (June 2011): 83-91.
EndNote Alan E, Liman N (June 1, 2011) POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER. Sağlık Bilimleri Dergisi 20 2 83–91.
IEEE E. Alan and N. Liman, “POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER”, JHS, vol. 20, no. 2, pp. 83–91, 2011.
ISNAD Alan, Emel - Liman, Narin. “POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER”. Sağlık Bilimleri Dergisi 20/2 (June 2011), 83-91.
JAMA Alan E, Liman N. POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER. JHS. 2011;20:83–91.
MLA Alan, Emel and Narin Liman. “POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER”. Sağlık Bilimleri Dergisi, vol. 20, no. 2, 2011, pp. 83-91.
Vancouver Alan E, Liman N. POSTPARTUM DÖNEMDE SIÇAN UTERUSUNDAKİ YAPISAL DEĞİŞİKLİKLER. JHS. 2011;20(2):83-91.