TY - JOUR
T1 - Studying peripheral sympathetic nervous system development and neuroblastoma in zebrafish
AU - Stewart, Rodney A.
AU - Lee, Jeong Soo
AU - Lachnit, Martina
AU - Look, A. Thomas
AU - Kanki, John P.
AU - Henion, Paul D.
N1 - Funding Information:
We would like to thank Hermann Rohrer for comments on the first edition of this manuscript. This work was supported by grant R01 CA104605 (A.T.L.). J.S.L. was supported by the Hope Street Kids foundation. R.A.S is supported by NIH/NINDS award R00 NS058608.
PY - 2010
Y1 - 2010
N2 - The combined experimental attributes of the zebrafish model system, which accommodates cellular, molecular, and genetic approaches, make it particularly well-suited for determining the mechanisms underlying normal vertebrate development as well as disease states, such as cancer. In this chapter, we describe the advantages of the zebrafish system for identifying genes and their functions that participate in the regulation of the development of the peripheral sympathetic nervous system (PSNS). The zebrafish model is a powerful system for identifying new genes and pathways that regulate PSNS development, which can then be used to genetically dissect PSNS developmental processes, such as tissue size and cell numbers, which in the past haves proved difficult to study by mutational analysis in vivo. We provide a brief review of our current understanding of genetic pathways important in PSNS development, the rationale for developing a zebrafish model, and the current knowledge of zebrafish PSNS development. Finally, we postulate that knowledge of the genes responsible for normal PSNS development in the zebrafish will help in the identification of molecular pathways that are dysfunctional in neuroblastoma, a highly malignant cancer of the PSNS.
AB - The combined experimental attributes of the zebrafish model system, which accommodates cellular, molecular, and genetic approaches, make it particularly well-suited for determining the mechanisms underlying normal vertebrate development as well as disease states, such as cancer. In this chapter, we describe the advantages of the zebrafish system for identifying genes and their functions that participate in the regulation of the development of the peripheral sympathetic nervous system (PSNS). The zebrafish model is a powerful system for identifying new genes and pathways that regulate PSNS development, which can then be used to genetically dissect PSNS developmental processes, such as tissue size and cell numbers, which in the past haves proved difficult to study by mutational analysis in vivo. We provide a brief review of our current understanding of genetic pathways important in PSNS development, the rationale for developing a zebrafish model, and the current knowledge of zebrafish PSNS development. Finally, we postulate that knowledge of the genes responsible for normal PSNS development in the zebrafish will help in the identification of molecular pathways that are dysfunctional in neuroblastoma, a highly malignant cancer of the PSNS.
UR - https://www.scopus.com/pages/publications/78649469110
U2 - 10.1016/B978-0-12-384892-5.00005-0
DO - 10.1016/B978-0-12-384892-5.00005-0
M3 - Article
C2 - 21111216
AN - SCOPUS:78649469110
SN - 0091-679X
VL - 100
SP - 127
EP - 152
JO - Methods in Cell Biology
JF - Methods in Cell Biology
IS - C
ER -