Horakova Dana, Cela Petra, Krejci Pavel, Balek Lukas, Moravcova Balkova Simona, Matalova Eva, Buchtova Marcela
Department of Anatomy, Histology and Embryology, Faculty of Veterinary Medicine, University of Veterinary and Pharmaceutical Sciences, Brno, Czech Republic.
Dev Growth Differ. 2014 Oct;56(8):555-72. doi: 10.1111/dgd.12156. Epub 2014 Oct 3.
Fibroblast growth factor (FGF) signalling appears essential for the regulation of limb development, but a full complexity of this regulation remains unclear. Here, we addressed the effect of three different chemical inhibitors of FGF receptor tyrosine kinases (FGFR) on growth and patterning of the chicken wings. The inhibitor PD173074 caused shorter and thinner wing when using lower concentration. Microinjection of higher PD173074 concentrations (25 and 50 mmol/L) into the wing bud at stage 20 resulted in the development of small wing rudiment or the total absence of the wing. Skeletal analysis revealed the absence of the radius but not ulna, deformation of metacarpal bones and/or a reduction of digits. Treatment with PD161570 resembled the effects of PD173074. NF449 induced shortening and deformation of the developing wing with reduced autopodium. These malformed embryos mostly died at the stage HH25-29. PD173074 reduced chondrogenesis also in the limb micromass cultures together with early inhibition of cartilaginous nodule formation, evidenced by lack of sulphated proteoglycan and peanut agglutinin expression. The effect of FGFR inhibition on limb development observed here was unlikely mediated by excessive cell death as none of the inhibitors caused massive apoptosis at low concentrations. More probably, FGFR inhibition decreased both the proliferation and adhesion of mesenchymal chondroprogenitors. We conclude that FGFR signalling contributes to the regulation of the anterior-posterior patterning of zeugopod during chicken limb development.
成纤维细胞生长因子(FGF)信号传导似乎对肢体发育的调节至关重要,但这种调节的全部复杂性仍不清楚。在这里,我们研究了三种不同的FGF受体酪氨酸激酶(FGFR)化学抑制剂对鸡翅膀生长和模式形成的影响。较低浓度使用抑制剂PD173074时会导致翅膀更短更细。在第20阶段向翅芽显微注射较高浓度(25和50 mmol/L)的PD173074会导致小翅原基发育或完全没有翅膀。骨骼分析显示没有桡骨但有尺骨,掌骨变形和/或指骨减少。用PD161570处理产生的效果与PD173074相似。NF449导致发育中的翅膀缩短和变形,附肢减少。这些畸形胚胎大多在HH25 - 29阶段死亡。PD173074在肢体微团培养中也减少软骨形成,并早期抑制软骨结节形成,这可通过缺乏硫酸化蛋白聚糖和花生凝集素表达来证明。此处观察到的FGFR抑制对肢体发育的影响不太可能是由过度细胞死亡介导的,因为在低浓度下没有一种抑制剂会导致大量细胞凋亡。更有可能的是,FGFR抑制降低了间充质软骨祖细胞的增殖和黏附。我们得出结论,FGFR信号传导有助于鸡肢体发育过程中zeugopod前后模式的调节。