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A Paraxial Exclusion Zone Creates Patterned Cranial Neural Crest Cell Outgrowth Adjacent to Rhombomeres 3 and 5

机译:旁轴排斥区创建与Rhombomeres 3和5相邻的图案化颅神经C细胞生长

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Cranial neural crest cell migration is patterned, with neural crest cell-free zones adjacent to rhombomere (R) 3 and R5. These zones have been suggested to result from death of premigratory neural crest cells via upregulation of BMP-4 and Msx-2 in R3 and R5, consequent to R2-, R4-, and R6-derived signals. We reinvestigated this model and found that cell death detected by acridine orange staining in avian embryos varied widely numerically and in pattern, but with a tendency for an elevated zone centered at the R2/3 boundary. In situ hybridization of BMP-4 mRNA resolved to centers at R3 and R5 but Msx-2 resolved to the R2/3 border with only a faint smear from R5 to R6. Outgrowth of neural crest cells was less in isolated R3 cultures than in R1+2, R2, and R4 cultures, but R3 showed neither a decrease in outgrowth of neural crest cells nor an increase in cell death when cocultured with R1+2, R2, or R4. In addition, in serum-free culture, exogenous BMP-4 strikingly reduced neural crest cell outgrowth from R1+2 and R4 as well as R3. Thus we cannot confirm the role of intraneural cell death in patterning rhombomeric neural crest outgrowth. However, grafting quail R2 or R4 adjacent to the chick hindbrain demonstrated a neural crest cell exclusion zone next to R3 and R5. We suggest that one important pattern determinant for rhombomeric neural crest cell migration involves the microenvironment next to the neural tube.
机译:颅神经neural细胞迁移的模式,与菱形(R)3和R5相邻的神经c无细胞区。这些区域被认为是由于R2,R4和R6衍生信号通过R3和R5中BMP-4和Msx-2的上调而导致的迁移前神经rest细胞的死亡所致。我们对这个模型进行了重新研究,发现在禽类胚胎中a啶橙染色检测到的细胞死亡在数值和模式上变化很大,但存在以R2 / 3边界为中心的升高区域的趋势。 BMP-4 mRNA的原位杂交解析为R3和R5的中心,但Msx-2解析为R2 / 3的边界,从R5到R6仅有轻微的涂片。与R1 + 2,R2和R4培养相比,分离的R3培养物中神经c细胞的生长较少,但是当与R1 + 2,R2,R2和R1 + 2共培养时,R3既不显示神经c细胞的生长减少也不显示细胞死亡增加。或R4。此外,在无血清培养中,外源性BMP-4显着减少了神经c细胞从R1 + 2和R4以及R3的生长。因此,我们不能确认神经内细胞死亡在菱形的神经c增生模式中的作用。但是,将鹌鹑R2或R4嫁接在鸡后脑附近,显示出紧邻R3和R5的神经c细胞排斥区。我们建议,菱形神经c细胞迁移的一个重要模式决定因素涉及神经管旁的微环境。

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