Zeitler P, Markoff E, Handwerger S
J Clin Endocrinol Metab. 1983 Oct;57(4):812-8. doi: 10.1210/jcem-57-4-812.
An enriched fraction of human placental cells that synthesize and release both placental lactogen (hPL) and hCG was obtained by isopycnic centrifugation of collagenase/hyaluronidase-dispersed cells through a density gradient of 40% Percoll. The enriched cells, which banded at a density of approximately 1.01 g/ml, comprised 10-15% of the total DNA. During the first 24 h after attachment, the cells released 50-250 ng hPL and 4-10 mIU hCG/10(6) cells. Thereafter, the rate of hPL release decreased, while the rate of hCG and [35S]trichloroacetic acid-precipitable protein release remained constant. The enriched cells responded to phospholipase A2, low extracellular calcium, and (Bu)2cAMP in a manner similar to that of placental explants. Phospholipase A2 (0.1 and 1 U/ml) stimulated hPL release by 270% and 568%, respectively, and low extracellular calcium (0-0.18 mM) stimulated hPL release by 48%. (Bu)2 cAMP (1 mM) stimulated hCG release by 42%, but had no effect on hPL. Estradiol (10(-5)-10(-12) M) and progesterone (10(-5)-10(-10) M) had no effect on the synthesis and release of either hPL or hCG over a 6-day period. In addition, insulin (8.3 X 10(-7) M) and changes in medium glucose content (0-5 mg/ml) had no effect on hPL release over a 72-h period. Since the enriched trophoblast cells respond to provocative stimuli in a manner similar to that of explants and placental fragments, this cell population is a useful model system for investigations of the cellular mechanisms of hPL and hCG release.
通过胶原酶/透明质酸酶分散的细胞在40% Percoll密度梯度中进行等密度离心,获得了一种富含合成并释放胎盘催乳素(hPL)和人绒毛膜促性腺激素(hCG)的人胎盘细胞组分。富集的细胞在密度约为1.01 g/ml处形成条带,占总DNA的10%-15%。在贴壁后的最初24小时内,细胞释放50-250 ng hPL和4-10 mIU hCG/10⁶个细胞。此后,hPL的释放速率下降,而hCG和[³⁵S]三氯乙酸沉淀蛋白的释放速率保持恒定。富集的细胞对磷脂酶A2、低细胞外钙和(Bu)₂cAMP的反应方式与胎盘外植体相似。磷脂酶A2(0.1和1 U/ml)分别刺激hPL释放270%和568%,低细胞外钙(0-0.18 mM)刺激hPL释放48%。(Bu)₂cAMP(1 mM)刺激hCG释放42%,但对hPL无影响。雌二醇(10⁻⁵-10⁻¹² M)和孕酮(10⁻⁵-10⁻¹⁰ M)在6天内对hPL或hCG的合成和释放均无影响。此外,胰岛素(8.3×10⁻⁷ M)和培养基葡萄糖含量变化(0-5 mg/ml)在72小时内对hPL释放无影响。由于富集的滋养层细胞对刺激物的反应方式与外植体和胎盘碎片相似,因此该细胞群体是研究hPL和hCG释放细胞机制的有用模型系统。