Microsurgical Procedures for Studying the Developmental Significance of the Proepicardium and Epicardium in Avian Embryos: PE-Blocking, PE-Photoablation, and PE-Grafting
نویسنده
چکیده
The epicardium is the outer skin of the mature vertebrate heart. Its embryonic origin and its possible roles in the developing and mature heart did not receive much recognition during the 19th and most of the 20th century. During the past 25 years, however, the epicardium came into the focus of developmental biology and regenerative medicine. Clinical researchers usually prefer genetically modified mouse models when they want to gain insight into developmental or pathological processes. The story of research on the embryonic epicardium, however, nicely demonstrates the value of non-mammalian species, namely avian species, for elucidating fundamental processes in embryonic and fetal development. Studies on chick and quail embryos have not only led to the identification of the primarily extracardiac source of the epicardium presently called the proepicardium (PE) they have also significantly contributed to our current knowledge about the developmental significance of the embryonic epicardium. In this review article, I describe three classical microsurgical experiments that have been developed for studying the developmental significance of the PE/epicardium in avian embryos (mechanical PE-blocking, PE-photoablation, orthotopic PE-grafting). Furthermore, I show how these microsurgical experiments have contributed to our current knowledge about the roles of the PE/epicardium in cardiac development. There are still some unsolved aspects in the physiology of the developing epicardium, which may be clarified with the aid of these classical microsurgical experiments. OPEN ACCESS J. Dev. Biol. 2013, 1 48
منابع مشابه
Left-Right Asymmetrical Development of the Proepicardium
The proepicardium (PE) is a cluster of cells that forms on the cardiac inflow tract and gives rise to the epicardium and connective tissue and largely contributes to the coronary vasculature. In many vertebrates, the PE undergoes left-right asymmetrical development. While PE cells and marker genes can be initially found on both sides, only the right-sided PE will fully develop and ultimately de...
متن کاملSubpopulation of proepicardial cells is derived from the somatic mesoderm in the chick embryo.
RATIONALE The proepicardium (PE) is a transient structure forming at the venous pole of the heart and gives rise to the epicardium, fibroblasts, and smooth muscle cells. The embryological origin of the PE is presently unclear. Asymmetrical formation of the PE on the right inflow tract is a conserved feature of many vertebrate embryos, and in the chicken is under the control of fibroblast growth...
متن کاملA right-sided pathway involving FGF8/Snai1 controls asymmetric development of the proepicardium in the chick embryo.
The proepicardium (PE) is a transient structure that forms at the venous pole of the embryonic vertebrate heart. This cardiac progenitor cell population gives rise to the epicardium, coronary vasculature, and fibroblasts. In the chicken embryo, the PE displays left-right (L-R) asymmetry and develops only on the right side, while on the left only a vestigial PE is formed, which subsequently gets...
متن کاملPerformance Evaluation of Nursing Faculty Members: A Qualitative Study
Introduction: Performance evaluation (PE) of nurse faculty members is complicated and difficult but seems necessary. Deans of the faculties, their educational assistants, and faculty member nurses are responsible for planning, performing, and revising evaluation. Finding their common views in developing PE is of special importance. The aim of this study was to elucidate and describe PE of nurse...
متن کاملTbx5 and Bmp signaling are essential for proepicardium specification in zebrafish.
RATIONALE The proepicardial organ (PE) contributes to the cellular diversity of the developing heart by giving rise to the epicardium as well as vascular smooth muscle cells and fibroblasts. Despite the importance of these cells in cardiac development, function and regeneration, the signals required for the specification of the PE remain largely unexplored. OBJECTIVE We aim to identify the si...
متن کامل