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2008 | 64 | 01 |

Tytuł artykułu

Morfogeneza naczyn serca na wybranych przykladach

Warianty tytułu

EN
Morphogenesis of heart vessels on chosen examples

Języki publikacji

PL

Abstrakty

EN
Research studies on the development of the cardiovascular system and its formation during embryologic development have been conducted for a long time. However, such studies have only gained a significant interest less than two decades ago. This can be related to the introduction of immunohistochemical methods, in which endothelium cell markers and their precursors as well as smooth muscle cell markers have been applied, lining the interior surface of a blood vessel wall of a larger diameter. In the process of coronary blood vessel formation two main mechanisms are involved: vasculogenesis and angiogenesis. The formation of vessels occurs in several stages. First a monolayer of endothelial cells begins sprouting to form tubes. These are then transformed into capillaries, veins and arteries.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

64

Numer

01

Opis fizyczny

s.31-34,fot.,bibliogr.

Twórcy

  • Szkola Glowna Gospodarstwa Wiejskiego, ul.Nowoursynowska 159 C, 02-776 Warszawa

Bibliografia

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  • 8. Licata R. H.: Human embryonic heart in the ninth week. Am. J. Anat. 1954, 94, 73-125.
  • 9. Manasek F. J.: Embryonic development of the heart. I. A light and electron microscopic study of myocardial development in the early chick embryo. J. Morphol. 1968, 125, 329-366.
  • 10. Mikawa T., Fischman D. A.: Retroviral analysis of cardiac morphogenesis: discontinuous formation of coronary vessels. Dev. Biol. 1992, 89, 9504-9508.
  • 11. Mikawa T., Gourdie R. G.: Pericardial mesoderm generates a population of coronary smooth muscle cells migrating into the heart along with ingrowth of the epicardial organ. Dev. Biol. 1996, 174, 221-232.
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  • 13. Pardanaud L., Altmann C., Kitos P., Dieterlen-Licvre F., Buck C. A.: Vasculogenesis in the early quail blastodisc as studies with a monoclonal antibody recognizing endothelial cells. Dev. 1987, 100, 339-349.
  • 14. Poelmann R. E., Gittenberger-de-Groot A. C., Mentink M. M. T., Bokenkamp R., Hogers B.: Development of the cardiac coronary vascular endothelium, studied with antiendothrlial antibodies, in Chicken-Quail Chimeras. Circ. Res. 1993, 73, 559-568.
  • 15. Ratajska A.: Rozwój osobniczy naczyń wieńcowych oraz niektóre zagadnienia jego regulacji. Post. Biol. Kom. 2002, 29, 503-525.
  • 16. Ratajska A., Fiejka E.: Prenatal development of coronary arteries in the rat: morphologic pattern. Anat. Embryol. 1999, 200, 533-540.
  • 17. Rongish B. J., Torry R. J., Tucker D. C., Tomanek R. J.: Neovascularization of embryonic rat hearts cultured in oculo closely mimics in utero coronary vessel development. J. Vasc. Res. 1994, 31, 205-215.
  • 18. Rychter Z., Ostadal B.: Mechanism of the development of coronary arteries in the chick embryo. Folia Morphol. 1971, 19, 113-124.
  • 19. Schlaeger T. M., Qin Y., Fujiwara Y., Magram J., Sato T. N.: Vascular endothelial cell lineage-specific promoter in transgenic mice. Dev. 1995, 121, 1089-1098.
  • 20. Scholz D., Schaper J.: Platelet/endothelial cell adhesion molecule-1 (PECAM-1) is localized over the entire plasma membrane of endothelial cells. Cell. Tis. Res. 1997, 290, 623-631.
  • 21. Skubiszewka D.: Morfogeneza żył serca myszy i szczura w rozwoju płodowym oraz ich topografia u osobników dorosłych. Praca doktorska, SGGW, Warszawa 2005.
  • 22. Tomanek R. J., Haung L., Suvarna P. R., O’Brien L. C., Ratajska A., Sandra A.: Coronary vascularization during development in the rat and its relationship to basic fibroblast growth factor. Cardiovasc. Res. 1996, 31, E116-E126.
  • 23. Vecchi A., Garlanda C., Lampugnani M. G., Resnati M., Matteucci C., Stoppacciaro A., Schnurch H., Risau W., Ruco L., Mantovani A., Dejana E.: Monoclonal antibodies specific for endothelial cells of mouse blood vessels. Their application in the identification of adult and embryonic endothelium. Eur. J. Cell. Biol. 1994, 63, 247-254.
  • 24. Virágh S., Gittenberger-de-Groot A. C., Poelmann R. E., Kalman F.: Early development of quail heart epicardium and associated vascular and glandular structures. Anat. Embryol. 1993, 188, 381-393.
  • 25. Virágh S., Kalman F., Gittenberger-de-Groot A. C., Poelmann R. E., Moorman F. M.: Angiogenesis and hematopoiesis in the epicardium of the vertebrate embryo heart, [w:] Bockman D. E., Kirby M. L. (wyd.): Embryonic origin of defective heart development. Ann. NY Acad Sci USA 1990, 588, 455-458.
  • 26. Vrancken Peeters M.-P. F. M., Gittenberger-de-Groot A. C., Mentlik M. M. T., Hungerford J. E., Little C. D., Poelmann R. E.: Differences in development of coronary arteries and veins. Cardiovasc. Res. 1997 (a), 36, 101-110.
  • 27. Vrancken Peeters M.-P. F. M., Gittenberger-de-Groot A. C., Mentlik M. M. T., Hungerford J. E., Little C. D., Poelmann R. E.: The Development of the coronary vessels and their differentiation into arteries and veins in the embryonic quail heart. Dev. Dyn. 1997 (b), 208, 338-348.
  • 28. Vrancken Peeters M.-P. F. M., Gittenberger-de-Groot A., Mentink M. M. T., Poelmann R. E.: Smooth muscle cells and fibroblasts of the coronary arteries derive from epithelial-mesenchymal transfomation of the epicardium. Anat. Embryol. 1999, 199, 367-378.
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Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-0704ad73-141c-47a6-b1c7-9cb940b37caa
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