Tyler M S, Pratt R M
J Embryol Exp Morphol. 1980 Aug;58:93-106.
Previous studies have shown that epidermal growth factor (EGF), a peptide of M.W. 6045, can specifically inhibit in organ culture the cessation of DNA synthesis and programmed cell death that normally occur in the presumptive fusion zone (PFZ) of the secondary palatal epithelium. The aim of this study was to determine if EGF acts directly on the epithelium to exert its effect and if there is a requirement for the underlying mesenchyme. Palatal processes from 13- and 14-day Swiss Webster embryonic mice were enzymatically separated into epithelium and mesenchyme which were then cultured alone or in transfilter recombination for up to 72 h. Tissues were examined by transmission- and scanning-electron microscopy and DNA synthesis was monitored autoradiographically using [3H]thymidine incorporation: In isolated epithelium cultured in control medium, cell death occurred in the PFZ and DNA synthesis did not occur in the oral and nasal epithelial regions. EGF (20-50 ng/ml) did not prevent cell death in the PFZ and failed to stimulate DNA synthesis in the isolated epithelium; EGF, however, did have an effect on epithelial cell morphology. In the presence of mesenchyme and EGF, there was extensive proliferation in the entire epithelium and cell death within the PFZ was not evident. The results indicate that the stimulation of DNA synthesis in the palatal epithelium by EGF requires the presence of the underlying mesenchyme and that EGF alone is not sufficient to inhibit programmed cell death within the PFZ of the isolated palatal epithelium.
以往的研究表明,分子量为6045的肽类表皮生长因子(EGF),在器官培养中可特异性抑制通常发生于继发腭上皮预定融合区(PFZ)的DNA合成停止和程序性细胞死亡。本研究的目的是确定EGF是否直接作用于上皮细胞以发挥其效应,以及是否需要其下方的间充质。将13日龄和14日龄瑞士韦伯斯特胚胎小鼠的腭突用酶法分离为上皮和间充质,然后单独培养或进行跨滤器重组培养长达72小时。通过透射电子显微镜和扫描电子显微镜检查组织,并使用[3H]胸腺嘧啶核苷掺入通过放射自显影监测DNA合成:在对照培养基中培养的分离上皮中,PFZ发生细胞死亡,口腔和鼻上皮区域未发生DNA合成。EGF(20 - 50 ng/ml)不能防止PFZ中的细胞死亡,也不能刺激分离上皮中的DNA合成;然而,EGF确实对上皮细胞形态有影响。在有间充质和EGF存在的情况下,整个上皮有广泛的增殖,PFZ内的细胞死亡不明显。结果表明,EGF对腭上皮DNA合成的刺激需要其下方间充质的存在,且单独的EGF不足以抑制分离腭上皮PFZ内的程序性细胞死亡。