Cardiac neural crest of the mouse embryo:: axial level of origin, migratory pathway and cell autonomy of the splotch (Sp2H) mutant effect

被引:45
作者
Chan, WY [1 ]
Cheung, CS
Yung, KM
Copp, AJ
机构
[1] Chinese Univ Hong Kong, Fac Med, Dept Anat, Hong Kong, Hong Kong, Peoples R China
[2] UCL, Inst Child Hlth, Neural Dev Unit, London WC1N 1EH, England
来源
DEVELOPMENT | 2004年 / 131卷 / 14期
关键词
cardiac neural crest; migration; splotch; labelling; transplantation; embryo culture; WGA-Au; Dil; grafting; outflow tract; persistent truncus arteriosus;
D O I
10.1242/dev.01197
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
A sub-population of the neural crest is known to play a crucial role in development of the cardiac outflow tract. Studies in avians have mapped the complete migratory pathways taken by 'cardiac' neural crest cells en route from the neural tube to the developing heart. A cardiac neural crest lineage is also known to exist in mammals, although detailed information on its axial level of origin and migratory pattern are lacking. We used focal cell labelling and orthotopic grafting, followed by whole embryo culture, to determine the spatio-temporal migratory pattern of cardiac neural crest in mouse embryos. Axial levels between the post-otic hindbrain and somite 4 contributed neural crest cells to the heart, with the neural tube opposite somite 2 being the most prolific source. Emigration of cardiac neural crest from the neural tube began at the 7-somite stage, with cells migrating in pathways dorsolateral to the somite, medial to the somite, and between somites. Subsequently, cardiac neural crest cells migrated through the peri-aortic mesenchyme, lateral to the pharynx, through pharyngeal arches 3, 4 and 6, and into the aortic sac. Colonisation of the outflow tract mesenchyme was detected at the 32-somite stage. Embryos homozygous; for the Sp(2H) mutation show delayed onset of cardiac neural crest emigration, although the pathways of subsequent migration resembled wild type. The number of neural crest cells along the cardiac migratory pathway was significantly reduced in Sp(2H)/Sp(2H) embryos. To resolve current controversy over the cell autonomy of the splotch cardiac neural crest defect, we performed reciprocal grafts of premigratory neural crest between wild type and splotch embryos. Sp(2H)/Sp(2H) cells migrated normally in the +/+ environment, and +/+ cells migrated normally in the Sp(2H)/Sp(2H) environment. In contrast, retarded migration along the cardiac route occurred when either Sp(2H)/+ or Sp(2H)/Sp(2H) neural crest cells were grafted into the Sp(2H)/Sp(2H) environment. We conclude that the retardation of cardiac neural crest migration in splotch mutant embryos requires the genetic defect in both neural crest cells and their migratory environment.
引用
收藏
页码:3367 / 3379
页数:13
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