Snyder J M, D'Ercole A J
Department of Cell Biology, Cecil H. & Ida Green Center for Reproductive Biology Sciences, University of Texas Health Science Center, Dallas 75229.
Exp Lung Res. 1987;13(4):449-58. doi: 10.3109/01902148709069604.
The production of somatomedin C/insulin-like growth factor I (Sm-C/IGFI) by human fetal lung tissue maintained in vitro was examined in the present study. We have shown that epithelial cells in human fetal lung explants maintained in vitro differentiate into type II cells within 4-6 days. During the first 24 h of culture, the fetal lung explants released 2.74 +/- 0.14 ng Sm-C/IGFI/mg tissue protein into the culture medium. At this time the explants contained 0.24 +/- 0.02 ng Sm-C/IGFI/mg tissue protein. During the next 4 days of culture, explant Sm-C/IGFI content and the rate of Sm-C/IGFI secretion into the medium declined by approximately 50%. Sm-C/IGFI secretion was inhibited significantly when fetal lung explants were cultured in media that contained cortisol (10(-7) M), a hormone that is known to stimulate fetal lung type II cell differentiation. The effect of cortisol was both concentration- and time-dependent. While insulin, bovine prolactin, and human growth hormone had no apparent effect on Sm-C/IGFI production by the explants, human prolactin and human placental lactogen both decreased Sm-C/IGFI production. These findings are unprecedented and are suggestive that Sm-C/IGFI synthesis may be regulated in a unique fashion in the fetal lung. The decline in Sm-C/IGFI production by fetal lung tissue temporally correlates with the initiation of fetal lung type II cell differentiation in the human fetal lung explants.
本研究检测了体外培养的人胎肺组织中生长调节素C/胰岛素样生长因子I(Sm-C/IGFI)的产生情况。我们已经表明,体外培养的人胎肺外植体中的上皮细胞在4 - 6天内分化为II型细胞。在培养的最初24小时内,胎肺外植体向培养基中释放2.74±0.14 ng Sm-C/IGFI/毫克组织蛋白。此时外植体中含有0.24±0.02 ng Sm-C/IGFI/毫克组织蛋白。在接下来的4天培养中,外植体Sm-C/IGFI含量以及向培养基中分泌Sm-C/IGFI的速率下降了约50%。当胎肺外植体在含有皮质醇(10^(-7) M)的培养基中培养时,Sm-C/IGFI分泌受到显著抑制,皮质醇是一种已知能刺激胎肺II型细胞分化的激素。皮质醇的作用具有浓度和时间依赖性。虽然胰岛素、牛催乳素和人生长激素对外植体Sm-C/IGFI的产生没有明显影响,但人催乳素和人胎盘催乳素都降低了Sm-C/IGFI的产生。这些发现是前所未有的,提示Sm-C/IGFI的合成在胎肺中可能以一种独特的方式受到调节。人胎肺外植体中胎肺组织Sm-C/IGFI产生的下降与II型细胞分化的开始在时间上相关。