Yang C Y, Gonnerman W A, Menconi M, Taylor L, Polgar P R
Department of Oral Biology, Henry M. Goldman School of Graduate Dentistry, Boston University, Massachusetts 02118.
Endocrinology. 1988 Nov;123(5):2549-56. doi: 10.1210/endo-123-5-2549.
In previous studies we demonstrated that PTH stimulates production of prostaglandin E2 (PGE2) by intact chick calvaria. In the present series of experiments, two cell populations were isolated from chick calvaria by centrifugation on a 25%/55% Percoll gradient. Cells harvested from the upper band of the Percoll gradient (designated F-1) appeared large and spindle-shaped in culture. Cells harvested from the lower band of the Percoll gradient (designated F-2) were relatively small and polygonal-shaped. Both cell populations required fetal bovine serum (FBS) for attachment and proliferation. In the presence of FBS the cells formed multilayers, but they formed confluent monolayers in the presence of heat-inactivated FBS. The pattern of cAMP responses to different effectors and biochemical determinations for alkaline and acid phosphatase suggests that the F-2 fraction consists primarily of osteoblasts. No cells with osteoclastic patterns appeared in either fraction. Both cell types synthesized predominantly PGD2. PGE2 was also produced, however, in considerably smaller quantities. PG production in the presence of ionophore A23187 (1 microM) or arachidonate (10 microM) increased significantly when the F-1 and F-2 cells were cocultured at a 1:1 ratio. These results suggest that cell to cell or cell to matrix interactions normally present in intact bone influence PG synthesis.
在先前的研究中,我们证明甲状旁腺激素(PTH)可刺激完整鸡颅骨产生前列腺素E2(PGE2)。在本系列实验中,通过在25%/55%的 Percoll 梯度上离心,从鸡颅骨中分离出两种细胞群体。从 Percoll 梯度上层带收获的细胞(命名为F-1)在培养中呈大的纺锤形。从 Percoll 梯度下层带收获的细胞(命名为F-2)相对较小,呈多边形。两种细胞群体都需要胎牛血清(FBS)来附着和增殖。在有FBS存在的情况下,细胞形成多层,但在有热灭活FBS存在时,它们形成汇合的单层。对不同效应物的cAMP反应模式以及碱性和酸性磷酸酶的生化测定表明,F-2部分主要由成骨细胞组成。在任何一个部分中都没有出现具有破骨细胞模式的细胞。两种细胞类型主要合成PGD2。然而,也产生了少量的PGE2。当F-1和F-2细胞以1:1的比例共培养时,在离子载体A23187(1 microM)或花生四烯酸(10 microM)存在下的PG产生显著增加。这些结果表明,完整骨中正常存在的细胞间或细胞与基质间的相互作用会影响PG的合成。