Ratlarda prenatal, postnatal ve erişkin dönemlerde glandula submandibularis’in gelişimi üzerinde ışık mikroskobik çalışmalar

Bu araştırmada, prenatal, postnatal ve erişkin dönemlerdeki ratların glandula submandibularislerinin histokimyasal açıdan karşılaştırmalı olarak incelenmesi amaçlandı. Çalışmada materyal olarak Wistar albino türü 7 adet erişkin rat ile 7 adet fetüs ve 7 adet yavrudan alınan doku örnekleri kullanıldı. Prenatal dönemde, korpus glandulelerin yavru ve erişkin dönemdekilere oranla daha az sayıda bulundukları ve intersitisyumun postnatal ile erişkin ratlara kıyasla daha geniş alan oluşturduğu belirlendi. Postnatal ve erişkin dönemlerde korpus glandule sayısının ise oldukça artmış olduğu gözlendi. Postnatal ve erişkin dönemlerde akıtıcı kanalların prenatal döneme kıyasla daha gelişmiş oldukları görüldü. Erişkin ratlarda, prenatal ve postnatal ratlarda görülmeyen 3 farklı hücre türünden oluşan granüler kanallara rastlandı. Bu kanallarda hücrelerin içerdikleri granüllerin zayıf PAS pozitif reaksiyon verdikleri saptandı. Histokimyasal metotlar, her üç dönemde de korpus glandule’leri oluşturan salgı epiteli hücrelerinin zayıf PAS pozitif, AB negatif reaksiyon verdiklerini, bazı korpus glandule’lerin ise PAS, AB ve PAS/AB boyamalarında pozitif boyandıklarını gösterdi.

Light microscopic studies on development of submandibular gland in rats in prenatal, postnatal and adult terms

The objective of the present study was to investigate comparatively the histological and histochemical structures of submandibular gland in prenatal, postnatal and adult rats. In the present study, tissue samples obtained from adult, foetal, and offspring Wistar albino rats (7 each) were evaluated, as the research material. We determined that the number of corpus glandule in prenatal tissues were less than that of those in postnatal and adult tissues. In addition, the connective tissue of submandibular gland was seen as occupying a wider area in prenatal rats as compared to that of the tissues of postnatal and adult rats. A considerable increase in the number of corpus glandule was observed in the tissues of postnatal and adult rats. Postnatal and adult rat glandular ducts were found more developed as compared to the glandular ducts at prenatal stage. Granular ducts were observed in adult rats only. Three different cell types were determined in the granular ducts. The granules of granular duct cells showed a weak PAS positive reaction. Histochemical methods showed that the secretory epithelial cells of the corpus glandules in each of the three developmental stages showed weak PAS positive and AB negative reaction whereas some of the corpus glandule had PAS, AB, and PAS/AB positive staining.

___

  • Bahadır A, Yıldız H., 2008. Veteriner Anatomi Hareket Sistemi ve İç organlar. 2. Baskı, Ezgi Kitabevi, Bursa.
  • Barka T., 1980. Biologically active polypeptides in submandibular glands. J Histochem Cytochem 28, 836–859.
  • Böck P., 1989. Romeis Mikroskopische Technik. 17. Aufl., Urban and Schwarzenberg, München.
  • Coire FAS., Umemura ALO., Cestari TM., Taga R. 2003. Increase in the cell volume of the rat submandibular gland during postnatal development. Braz. J. Morphol. Sci., 20, 37- 42.
  • Cutler LS., Chaudhry AP. 1974. Cytodifferentiation of the acinar cells of the rat submandibular gland. Dev. Biol., 41, 31- 41.
  • Denk H., Kunzele H., Plenk H., Ruschoff J., Sellener W. 1989. Romeis Mikroskopische Technik. 17. Neubearbeitete Auflage, Urban and Schwarzenberg, München.
  • Denny PC., Ball WD., Redman RS., 1997. Salivary glands: a paradigm for diversity of gland development. Crit. Rev. Oral Biol. Med., 8, 51-75.
  • Dursun N., 1999. Veteriner Anatomi II. 5. baskı, Ankara: Medisan Yayınevi, 31, 33- 34.
  • Gresik, EW., 1994. The granular convoluted tubule (GCT) cell of rodent submandibular glands. Microsc Res Tech 27:1–24.
  • Kiernan JA., 1990. Histological and Histochemical Methods. 2nd ed., Pergamon Pres, New York. Madrigal FM., Micheau C., 1989. Histology of the major salivary glands. Am. J. Surg. Pathol., 13, 879- 899.
  • Mori M, Takai Y, Kunikata M., 1992. Review: biologically active peptides in the submandibular glands—role of the granular tubules. Acta Histochem Cytochem 25, 325–341.
  • Murphy, RA, Watson AY, Metz J, Forsmann WG., 1980. The Mouse submandibular gland: an exocrine organ for growth factors. J Histochem Cytochem 28, 890–902.
  • Sato A., Miyoshi S., 1998. Topographical distribution of cells in the rat submandibular gland duct system with special reference to dark cells and tuft cells. Anat. Rec., 252, 159- 164.
  • Suzuki S., Nishinakagawa H., Otsuka J., 1982. Fine structure of the submandibular glands of Chinese hamster (Cricetulus griseus). Exp. Anim., 31, 97- 105.
  • Suzuki S., Ago A., Mohri S., Nishinakagawa H., Otsuka J., 1984. Fine structure of the submandibular gland of the Djungarian hamster (Phodopus sungarus). Exp. Anim., 33, 487- 496.
  • Suzuki S., Mifune H., Mohri S., Nishinakagawa H., Otsuka J., 1986. Fine structure of the submandibular gland in Japanese field vole (Microtus montebelli). Exp. Anim., 35, 433- 442.
  • Suzuki S., Mifune H., Kamimura R., Yabuki A., Obara T., Matsumoto M., Tsuchiya K., 2003. Fine structure of the rat parotid and submandibular glands of the cotton rat (Sigmodon hispidus). Exp. Anim., 52, 441- 444.
  • Tamarin A., Sreebny LM., 1965. The rat submaxillary salivary gland: a comperative study by light and electron microscopy. J. Morphol., 117, 295-302.
  • Tandler B., Nagato T., Toyoshima K., Phillips CJ., 1998. Comparative ultrastructure of intercalated ducts in major salivary glands: a review. Anat. Rec., 252, 64- 91.
  • Tandler B., Gresik EW., Nagato T., Phillips CJ., 2001. Secretion by striated ducts of mammalian major salivary glands: review from an ultrastructural functional and evolutionary perspective. Anat. Rec., 264, 121- 145.
  • Tanyolaç A., 1993. Özel Histoloji, 2. baskı, Yorum Basım Yayın Sanayi, Ankara.
  • Triantafyllou A., Fletcher D., Scott J., 1999. Morphological phenotypes and functional capabilities of gl. submandibularis parenchymal cells of ferret investigated by protein, mucosubstance and enzyme histochemistry. Histochem. J., 31, 789- 796.
  • Yamashina S., Barka T., 1973. Development of endogenous peroxidase in fetal rat submandibular gland. J. Histochem Cytochem, 21, 40- 42.