Mulder K M, Childress-Fields K E
Department of Pharmacology, Baylor College of Medicine, Houston, Texas 77030.
Exp Cell Res. 1990 Jun;188(2):254-61. doi: 10.1016/0014-4827(90)90167-9.
We describe the first completely serum-free model culture system for comparing growth control in transformed and untransformed cells. Continuous maintenance of untransformed AKR-2B fibroblasts and chemically transformed AKR-MCA cells in the presence of serum-free medium containing epidermal growth factor (E), insulin (I), and transferrin (T) resulted in cell lines which proliferated with similar doubling times (14 h), comparable to parental lines maintained in 10% serum (16 h). The transformed MCA-SF cells and untransformed AKR-SF cells did not differ in their saturation densities in medium containing E + I + T. However, the monolayer proliferation of MCA-SF cells was significantly greater than that of the AKR-SF cells in the presence of E + T, I + T, or T alone. Both cell lines required T to proliferate in monolayer culture. [3H]-Thymidine incorporation experiments and autoradiographic analysis indicated that quiescent MCA-SF cells could reenter the cell cycle by addition of nutrients alone. The combination of E + I + T produced no additional stimulation of DNA synthesis. In contrast, individual polypeptide growth factors (E, I, IGF-I, PDGF, FGF a or b, or TGF-beta 1) were required to elicit a mitogenic response in the untransformed AKR-SF cells. Peak mitogenesis occurred from 18-20 h for all growth factors except TGF-beta 1 (32 h). Neither AKR-SF nor MCA-SF cells could grow with anchorage independence in serum-free medium, unless both TGF-beta 1 and FGF a or b were simultaneously present. The results indicate that this well-defined, serum-free model system can be utilized to detect growth factor-related alterations associated with the transformed state.
我们描述了首个用于比较转化细胞和未转化细胞生长调控的完全无血清模型培养系统。在含有表皮生长因子(E)、胰岛素(I)和转铁蛋白(T)的无血清培养基中持续培养未转化的AKR - 2B成纤维细胞和化学转化的AKR - MCA细胞,得到了增殖倍增时间相似(14小时)的细胞系,这与在10%血清中培养的亲代细胞系(16小时)相当。在含有E + I + T的培养基中,转化的MCA - SF细胞和未转化的AKR - SF细胞的饱和密度没有差异。然而,在存在E + T、I + T或单独T的情况下,MCA - SF细胞的单层增殖明显大于AKR - SF细胞。两种细胞系在单层培养中增殖都需要T。[3H] - 胸腺嘧啶核苷掺入实验和放射自显影分析表明,静止的MCA - SF细胞仅通过添加营养物质就能重新进入细胞周期。E + I + T的组合对DNA合成没有额外的刺激作用。相比之下,未转化的AKR - SF细胞需要单个多肽生长因子(E、I、IGF - I、PDGF、FGF a或b或TGF - β1)来引发有丝分裂反应。除TGF - β1(32小时)外,所有生长因子的有丝分裂峰值出现在18 - 20小时。除非同时存在TGF - β1和FGF a或b,否则AKR - SF和MCA - SF细胞在无血清培养基中都不能不依赖贴壁生长。结果表明,这个定义明确的无血清模型系统可用于检测与转化状态相关的生长因子相关变化。