Hildreth Victoria, Webb Sandra, Bradshaw Lucy, Brown Nigel A, Anderson Robert H, Henderson Deborah J
Institute of Human Genetics, Newcastle University, UK.
J Anat. 2008 Jan;212(1):1-11. doi: 10.1111/j.1469-7580.2007.00833.x. Epub 2007 Nov 21.
Cells migrating from the neural crest are known to septate the outflow tract of the developing heart, and to contribute to the formation of the arterial valves, their supporting sinuses, the coronary arteries and cardiac neural ganglia. Neural crest cells have also been suggested to contribute to development of the venous pole of the heart, but the extent and fate of such cells remains unclear. In this study, in the mouse, it is shown that cells from the neural crest contribute to the parasympathetic and, to a lesser extent, the sympathetic innervation of the venous pole of the heart. Nerves within the venous pole of the heart are shown to be of mixed origin, with some being derived from the neural crest, while others have an alternative origin, presumably placodal. The neurons innervating the nodal tissue, which can exert chronotropic effects on cardiac conduction, are shown not to be derived from the neural crest. In particular, no evidence was found to support previous suggestions that cells from the neural crest make a direct contribution to the myocardial atrioventricular conduction axis, although a small subset of these cells do co-localize with the developing left bundle branch. We have therefore confirmed that cells from the neural crest migrate to the venous pole of the heart, and that their major role is in the development of the parasympathetic innervation. In addition, in some embryos, a population of cells derived from the neural crest persist in the leaflets of the atrioventricular valves, but their role in subsequent development remains unknown.
已知从神经嵴迁移而来的细胞会分隔发育中心脏的流出道,并参与动脉瓣、其支持窦、冠状动脉和心脏神经节的形成。也有观点认为神经嵴细胞对心脏静脉极的发育有贡献,但这类细胞的程度和命运仍不清楚。在本研究中,在小鼠身上发现,神经嵴细胞对心脏静脉极的副交感神经支配有贡献,对交感神经支配的贡献较小。心脏静脉极内的神经显示为混合起源,一些来自神经嵴,而其他神经可能有另一种起源,推测为基板起源。支配节点组织的神经元对心脏传导可产生变时作用,显示并非源自神经嵴。特别是,没有证据支持先前的观点,即神经嵴细胞直接参与心肌房室传导轴的形成,尽管这些细胞中的一小部分确实与发育中的左束支共定位。因此,我们证实神经嵴细胞迁移至心脏静脉极,其主要作用是参与副交感神经支配的发育。此外,在一些胚胎中,源自神经嵴的一群细胞存在于房室瓣小叶中,但其在后续发育中的作用仍不清楚。