Study on cornea histogenesis in sheep embryo
Subject Areas :
Veterinary Clinical Pathology
M.A Ebrahimi
1
,
ناصر Motallebi
2
1 - Department of Basic Science, Faculty of Veterinary Medicine, Tabriz Branch, Islamic Azad University, Tabriz, Iran
2 - Graduate of Veterinary Medicine, Faculty of Veterinary Medicine, Tabriz Branch, Islamic Azad University, Tabriz, Iran
Received: 2011-06-08
Accepted : 2011-10-15
Published : 2011-08-23
Keywords:
Sheep,
Eye,
Cornea,
Histogenesis,
Abstract :
In this study, 36 samples of sheep fetal at different and modal ages have been used. Sample after preparation and determination of age immediately fixed and anatomic and histological studies were done. In Histological studies in addition to conventional H&E staining, two staining that include Masson trichrome and verhuff staining was used. The yield results revealed that cornea is distinct in the second month of embryonic period and in the next ages spends the stages of growth. From the beginning in cornea formed in horizontal ellipse type so the internal curve of is larger than external curve. The growth process from the point of longitudinal diameter, transverse diameter and corneas height from the border of sclera is ascending with the raising of age. Upper and lower eyelids was impacted in the early and late time of the second month and separated from together again in the third month of embryonic period. Third eyelid approximately appears in 120 days of age in the internal angle of the eye. Histology of external epithelial tissue growth observed from simple cubic to six layers stratified cubic form. Matrix has been strengthened from point of cells (fibroblast) and a filaments (collagen) with the rising of age. Increases in the elastic filaments are appreciable at the end of embryonic stages. Desmit membrane appears as limiting membrane in the early time of the second month of embryonic period in the beneath of internal epithelial tissue and also growth with rising of age. Desmit membrane has any elastic filaments. No Bowman layer or the external limiting membrane was seen in this animal. Tricrummasson staining confirms collagen filaments and verhuff staining confirm elastic filaments growth with rising of age.
References:
پوستی، ا. 1385. بافت شناسی مقایسهای، انتشارات دانشگاه تهران، چاپ ششم، ص:404 – 415.
دزفولیان، ع.، شریعت زاده، س.، م.، ع.، 1386. بافت شناسی، انتشارات آییژ، صفحات: 849-791.
سعادت نوری، م. و سیاه منصور، ح.، 1382. اصول نگهداری و پرورش گوسفند، انتشارات اشرفی.
سلیمانی راد، ج. 1376. بافت شناسی، انتشارات سالار، صفحات: 395-385.
قاضی، س، ر.، رادمهر، ب.، رشیدی، ه.، 1372، جنینشناسی حیوانات اهلی، انتشارات دانشگاه شیراز، 188-184.
محسنی، ه.، پریور، ک.،1378، روشهای فنی بافت شناسی، جنینشناسی و جانور شناسی، صفحات: 63-64.
Azuma, M., Shearer, TR. 1992. Induction of elongation in cultured rat lens epithelial cells by FGF and inhibition by selenite, Invest Ophthalmol Vis Sci. 36:317-326.
Banks, W. 1993. Applied veterinary histology, Third edition, Mosby year book, P: 371-389.
Bergmanson, J.P., Townsend, W.D. 1980. The morphology of the cat tapetum lucidum, Am.,J.,Optom., Physiol., Opt., 57 (3):138-44.
Braekevelt C.R., Mcintyre, D. B. and Ward, F.J. 1989. Development of the retinal tapetum lucidum of the walleye, Histol. Histopa thol., 4(1):63-70.
Churchill, A.J. and Booth, A. 1996. Growth and differentiation sheep lens epithelial cells in vitro on matrix, Br. J. Ophthalmol, 80: 669-673.
Collinson, J. M., Hill, R. E. and West, J.D. 2000. Development (Cambridge,U.K.) 127, 945-956.
Dellmann, H.D. and Carithers, J.R. 1996. Cytology and microscopic anatomy, Williams and wilkins, P: 349-358.
Dellmann, H.D. and Eurell, J. 2006. Textbook of veterinary histology, six edition, Lea and Febiger, p: 350- 363.
Dieterich, C.E. and Dieterich, H.J. 1978. Electron microscopy of retinal tapetum, Albrecht Von Graefes Arch Klin Exp Ophthalmo 1,208 (1-3):159-68.
Dyce, K.M., Sae, W.O. and Wensing, C.Y.G. 1995. Text Book of Veterinary Anatomy, Saunders Company,P:323-336.
Eleanor, A., Blakely, M., Kathleen, A., Bjornstad, P., Chang, l. and Morgan, P. 2001. Growth and Differentiation of Human Lens Epithelial Cells In Vitro on Matrix, embryology jurnal, p, Volume 193 Issue 6., P:85.
Eurell, J.A. and Frappier, B.L. 2006. Dellmann's textbook of veterinary histology, six edition, Blackwell publishing, p: 350-363.
Franco, A.J., Masot, A.J., Aguado, M.C., Gomez, L., and Redondo, E. 2004. Morphometric and immunohistochemical study of the eye development, Journal of Anatomy, Volume 204 Issue 6, P: 501.
Getty, R. 1975. Sissen and Grossman's Anatomy of the Domestic Animals, Vol.1 and 2, 5th ed, P: 224-244, 703-716, 1180-1204, 1741-1768.
Hamburg, A. 1967. The role of platelet growth factor in sheep lens cells differentiation, Am. J. Ophthalmol. 64: 729-733.
Hanson, I., Fletcher, J., Jordan, T., Brown, A., Taylor, D., Adams, R., Punnett, H. and Heyningen, V. 1994. Effect of grouth factor on eye lens development, Genet, 6: 168-173.
Hitchcock, P.F., Macdonald, R.E., van de Ryt, J.T. and Wilson, S.W. 1996. Growwth and Differentiation of goat lens cells in vitro, Neurobiol. 29, 399–413.
Hogoz, K., and Whalter, H. 1998. Early organogenesis of the eye, Nippon Juigalku Zasshi, 65(2).
Junqueira, L.C., Carneiro, J. and Kelly, R. 1998. Basic histology, ninth edition, PP:448-464.
Kassa, A., Aogama, M. and Sugita, S. 2001. The morphology of the iridocorneal angle of buffaloes (bos bubalis), A light and scaning electron microscopic study, Okajimas folia. Anat. Jpn., 78(4): 145-52.
Kassa, A. and Sugita, S. 2001. Study of the distribution of retinal blood vessels in buffaloes (bos bubalis), J. Vet. Med. Sci., 63(8):917-20.
Kohler, T. 1981. Histochemical and cytochemical demonstration of zinc cysteinate in the tapetum lucidum of the cat, Histochemistry, 70:173-8.
Lesiuk, T.P. and Braekevelt, C.R. 1983. Fine structure of the canine tapetum lucidum, J. anat., 136:157-64.
McAvoy, J.W., Chamberlain, C.G., deIongh, R.U., Richardson, N.A. and Lovicu, F.J. 1991. The role of fibroblast growth factor in eye lens development, Ann NY Acad Sci., 638:256–274.
McGeady, T.A., Quinn, P.J., FitzPatrick, E.S. and Ryan, M.T. 2006. Veterinary Embryology, Blackwell Publishing, P: 295-305.
Mirzayans, F., Pearce, W. G., MacDonald, I. M. and Walter, M.A. 1995. Mutation in the RIEGI gene in patients with iridogonal syndrome, Am. J.Hum. Genet. 57: 539-548.
Oliver,F.J., Samuelson, D.E., Brooks, P.A., Lewis, M.E. and Kallberg, A.M. 2004. Comparative morphology of the tapetum lucidum (among selected species), Veterinary ophthalmology, Vol 7, p: 11.
O'Rahilly, R. 1983. The timing and sequence of events in the development of the human eye and ear during the embryonic period proper, Anat Embryol,168:87.
Piatigorsky, J. 1973. Insulin initiation of lens fiber differentiation in culture elongation of embryonic lens epithelial cells, Dev Biol.,30:214–216.
Quinn, J. C., West, J. D. and Hill, R. E. 1996. Multiple functions for pax 6 mouth, eye and nasal development, Genes Dev, 10: 435–446.
Richard A. Lang. 1996. Apoptosis in mammalian eye development: lens morphogenesis, vascular regression and immune privilege, Cell Death and Differentiation jurnal, Volume 301, Issue 6, P:121.
Sadler, T.W. 2008. Langmans`s medical Embryology, 9th ed, P:394-404.
Samuelson, D., A. 2007. Textbook of veterinary histology, Sunders Elsevier,P: 487-512.
Walther, C.&Gruss, P. 1991. Development (Cambridge, U.K.) 113, 1435–1449.
Weng,Y., Sturman, J., A., Shek, J., W. 1985. A comparative study of the tapetum, retina and skull of the ferret, dog and cat, Lab. Anima. Sci., 35(3):200-10.
Wheater, P.R. and Burkitt, H.G. 1989. Functional Histology, Churchill livingstone, 2th, p:318-330.
Wormstone, I.M., Liu, C.S.C. and Rakic, J.M. 1992. Human lens epithelial cell proliferation in a protein-free mediu, Invest Ophthalmol, Vis Sci. 35:214–226.