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本文引用的文献

1
Factors controlling cardiac neural crest cell migration.控制心脏神经嵴细胞迁移的因素。
Cell Adh Migr. 2010 Oct-Dec;4(4):609-21. doi: 10.4161/cam.4.4.13489.
2
Myocardial deletion of Smad4 using a novel α skeletal muscle actin Cre recombinase transgenic mouse causes misalignment of the cardiac outflow tract.利用新型α 骨骼肌肌动蛋白 Cre 重组酶转基因小鼠对心肌 Smad4 的缺失导致心脏流出道的错位。
Int J Biol Sci. 2010 Sep 20;6(6):546-55. doi: 10.7150/ijbs.6.546.
3
How to make a heart: the origin and regulation of cardiac progenitor cells.如何生成心脏:心脏祖细胞的起源和调控。
Curr Top Dev Biol. 2010;90:1-41. doi: 10.1016/S0070-2153(10)90001-X.
4
Role of fibroblast growth factor signaling during proepicardium formation in the chick embryo.原肠胚形成中成纤维细胞生长因子信号在鸡胚心外膜形成中的作用。
Dev Dyn. 2010 Sep;239(9):2393-403. doi: 10.1002/dvdy.22384.
5
Epicardium-derived cells (EPDCs) in development, cardiac disease and repair of ischemia.心脏外膜细胞(EPDCs)在发育、心脏疾病和缺血性损伤修复中的作用。
J Cell Mol Med. 2010 May;14(5):1056-60. doi: 10.1111/j.1582-4934.2010.01077.x.
6
The embryonic epicardium: an essential element of cardiac development.胚胎心外膜:心脏发育的重要组成部分。
J Cell Mol Med. 2010 Aug;14(8):2066-72. doi: 10.1111/j.1582-4934.2010.01088.x. Epub 2010 May 14.
7
FGF signaling regulates otic placode induction and refinement by controlling both ectodermal target genes and hindbrain Wnt8a.FGF 信号通过控制外胚层靶基因和后脑 Wnt8a 来调节耳嵴诱导和精细化。
Dev Biol. 2010 Apr 15;340(2):595-604. doi: 10.1016/j.ydbio.2010.02.016. Epub 2010 Feb 18.
8
The sinus venosus progenitors separate and diversify from the first and second heart fields early in development.窦房静脉祖细胞在发育早期从第一和第二心区分离并多样化。
Cardiovasc Res. 2010 Jul 1;87(1):92-101. doi: 10.1093/cvr/cvq033. Epub 2010 Jan 28.
9
Dysregulation of the PDGFRA gene causes inflow tract anomalies including TAPVR: integrating evidence from human genetics and model organisms.PDGFRA 基因失调导致流入道异常,包括 TAPVR:整合人类遗传学和模式生物的证据。
Hum Mol Genet. 2010 Apr 1;19(7):1286-301. doi: 10.1093/hmg/ddq005. Epub 2010 Jan 13.
10
Role of mesodermal FGF8 and FGF10 overlaps in the development of the arterial pole of the heart and pharyngeal arch arteries.中胚层 FGF8 和 FGF10 在心脏动脉干和咽弓动脉发育中的作用重叠。
Circ Res. 2010 Feb 19;106(3):495-503. doi: 10.1161/CIRCRESAHA.109.201665. Epub 2009 Dec 24.

心血管发育中 Fgf3 和 Fgf10 的冗余和剂量敏感要求。

Redundant and dosage sensitive requirements for Fgf3 and Fgf10 in cardiovascular development.

机构信息

Department of Human Genetics, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Dev Biol. 2011 Aug 15;356(2):383-97. doi: 10.1016/j.ydbio.2011.05.671. Epub 2011 Jun 12.

DOI:10.1016/j.ydbio.2011.05.671
PMID:21664901
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3143275/
Abstract

Heart development requires contributions from, and coordinated signaling interactions between, several cell populations, including splanchnic and pharyngeal mesoderm, postotic neural crest and the proepicardium. Here we report that Fgf3 and Fgf10, which are expressed dynamically in and near these cardiovascular progenitors, have redundant and dosage sensitive requirements in multiple aspects of early murine cardiovascular development. Embryos with Fgf3(-/+);Fgf10(-/-), Fgf3(-/-);Fgf10(-/+) and Fgf3(-/-);Fgf10(-/-) genotypes formed an allelic series of increasing severity with respect to embryonic survival, with double mutants dead by E11.5. Morphologic analysis of embryos with three mutant alleles at E11.5-E13.5 and double mutants at E9.5-E11.0 revealed multiple cardiovascular defects affecting the outflow tract, ventricular septum, atrioventricular cushions, ventricular myocardium, dorsal mesenchymal protrusion, pulmonary arteries, epicardium and fourth pharyngeal arch artery. Assessment of molecular markers in E8.0-E10.5 double mutants revealed abnormalities in each progenitor population, and suggests that Fgf3 and Fgf10 are not required for specification of cardiovascular progenitors, but rather for their normal developmental coordination. These results imply that coding or regulatory mutations in FGF3 or FGF10 could contribute to human congenital heart defects.

摘要

心脏发育需要来自几个细胞群体的贡献和协调的信号相互作用,包括内脏和咽中胚层、后神经嵴和心前区。在这里,我们报告说,在心血管祖细胞中动态表达的 Fgf3 和 Fgf10,在早期鼠类心血管发育的多个方面具有冗余和剂量敏感的需求。具有 Fgf3(-/+);Fgf10(-/-)、Fgf3(-/-);Fgf10(-/+)和 Fgf3(-/-);Fgf10(-/-)基因型的胚胎在胚胎存活率方面形成了等位基因系列,其中双突变体在 E11.5 时死亡。对 E11.5-E13.5 具有三个突变等位基因的胚胎和 E9.5-E11.0 的双突变体进行形态分析,发现多个心血管缺陷影响流出道、室间隔、房室瓣垫、心室心肌、背侧间质隆起、肺动脉、心外膜和第四咽弓动脉。对 E8.0-E10.5 双突变体中分子标记物的评估显示每个祖细胞群体都存在异常,这表明 Fgf3 和 Fgf10 不是心血管祖细胞特化所必需的,而是它们正常发育协调所必需的。这些结果意味着 FGF3 或 FGF10 的编码或调节突变可能导致人类先天性心脏缺陷。