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自分泌配体逃逸至细胞外介质:理论模型预测的实验验证

Escape of autocrine ligands into extracellular medium: experimental test of theoretical model predictions.

作者信息

Oehrtman G T, Wiley H S, Lauffenburger D A

机构信息

Department of Chemical Engineering and Center for Biomedical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Biotechnol Bioeng. 1998 Mar 5;57(5):571-82.

Abstract

We have developed an experimental system for testing mathematical model predictions concerning escape of autocrine ligands into the extracellular bulk medium. This system employs anti-receptor blocking antibodies against the epidermal growth factor receptor (EGFR)/transforming growth factor alpha (TGFalpha) receptor/ligand pair. TGFalpha was expressed under the control of a tetracycline-repressed promoter, together with a constitutively expressed human EGFR in B82 mouse fibroblast cells. This expression system allowed us to vary TGFalpha synthesis rates over a roughly 300-fold range by adjusting tetracycline concentration. TGFalpha accumulation in the extracellular bulk medium was then measured as a function of cell density, TGFalpha synthesis rate, and anti-EGFR blocking antibody concentration. Consistent with model predictions, amounts of ligand in the medium on a per cell basis were found to diminish as cell density was increased but with reduced dependence on cell density at higher ligand synthesis rates. Similarly consistent with model predictions, higher ligand synthesis rates also decreased the effect of anti-receptor blocking antibodies. Our investigation has established that we can successfully analyze and understand autocrine ligand secretion behavior from the basis of our theoretical model.

摘要

我们开发了一个实验系统,用于测试关于自分泌配体逃逸到细胞外大量培养基中的数学模型预测。该系统使用针对表皮生长因子受体(EGFR)/转化生长因子α(TGFα)受体/配体对的抗受体阻断抗体。TGFα在四环素抑制启动子的控制下表达,与在B82小鼠成纤维细胞中组成型表达的人EGFR一起。这种表达系统使我们能够通过调节四环素浓度在大约300倍的范围内改变TGFα的合成速率。然后测量细胞外大量培养基中TGFα的积累量与细胞密度、TGFα合成速率和抗EGFR阻断抗体浓度的函数关系。与模型预测一致,发现以每个细胞为基础,培养基中配体的量随着细胞密度的增加而减少,但在较高配体合成速率下对细胞密度的依赖性降低。同样与模型预测一致,较高的配体合成速率也降低了抗受体阻断抗体的作用。我们的研究表明,我们可以从理论模型的基础上成功地分析和理解自分泌配体的分泌行为。

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