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对未喂食培养条件下生长的Lewis肺癌细胞的生长动力学和增殖异质性分析。

Analysis of growth kinetics and proliferative heterogeneity of Lewis lung carcinoma cells growing as unfed culture.

作者信息

Pyaskovskaya O N, Kolesnik D L, Kolobov A V, Vovyanko S I, Solyanik G I

机构信息

R.E. Kavetsky Institute of Experimental pathology, Oncology and Radiobiology of National Academy of Sciences of Ukraine, Kiev, Ukraine.

出版信息

Exp Oncol. 2008 Dec;30(4):269-75.

Abstract

AIM

To analyze the growth kinetics and proliferative heterogeneity of Lewis lung carcinoma (LLC) cells during their growth in monolayer for 5 days without replacement of culture medium (unfed culture).

METHODS

Cell biology methods, sandwich enzyme-linked immunosorbent assay for vascular endothelial growth factor (VEGF) detection (ELISA), enzymatic glucose-oxidase method for glucose measurements, mathematical modeling.

RESULTS

Created mathematical model showed good fit to experimental data; that allowed to determine kinetic (model) parameters of LLC cells and predict the changes in number of proliferating and quiescent cells (proliferative heterogeneity) during their growth. It was shown that growth kinetics of viable LLC cells possesses non-monotonous character - during first three days of growth the number of cells raised exponentially, with following decrease after the maximal level was achieved. At the same time the decrease of number of viable cells/increase of number of dead cells has been observed upon complete depletion of culture medium by glucose content. Glucose dependence of cell transition rate from proliferation to resting state predicted by mathematical model possessed a pronounced two-phase character. At a wide range of relatively high glucose concentrations (> 1.0 mg/ml) the transition rate was close to zero. At concentrations lower than 0.7 mg/ml, the rate of transition swiftly increased resulting in sharp change in cellular composition. At an interval from 70 to 90 h, practically all proliferating cells transited to a resting state. The rate of quiescent cell death was relatively low, and this was in part caused by too low level of glucose consumption compared to proliferating cells. It was shown that during LLC cells growth VEGF production rate decreased monotonously in spite of the fact that the level of VEGF in incubation medium increased monotonously. Observed monotonous decrease of VEGF production rate could not be explained by VEGF degradation in incubation medium (our results displayed the stability of VEGF molecule during investigations).

CONCLUSIONS

Weak dependence of cell transition rate from proliferating to resting state from glucose level (> 0.7 mg/ml) and low rate of cell death provided slow decrease of the pool of quiescent cells in the population, thus significantly increasing their chance to survive upon nutritional deficiency.

摘要

目的

分析Lewis肺癌(LLC)细胞在单层培养5天且不更换培养基(无营养培养)过程中的生长动力学和增殖异质性。

方法

细胞生物学方法、用于检测血管内皮生长因子(VEGF)的夹心酶联免疫吸附测定法(ELISA)、用于测量葡萄糖的酶促葡萄糖氧化酶法、数学建模。

结果

建立的数学模型与实验数据拟合良好;这使得能够确定LLC细胞的动力学(模型)参数,并预测其生长过程中增殖细胞和静止细胞数量的变化(增殖异质性)。结果表明,存活的LLC细胞的生长动力学具有非单调特征——在生长的前三天,细胞数量呈指数增长,在达到最大值后随后下降。同时,当培养基中的葡萄糖完全耗尽时,观察到存活细胞数量减少/死亡细胞数量增加。数学模型预测的细胞从增殖状态转变为静止状态的速率对葡萄糖的依赖性具有明显的两相特征。在相对较高的葡萄糖浓度范围(>1.0 mg/ml)内,转变速率接近零。在浓度低于0.7 mg/ml时,转变速率迅速增加,导致细胞组成发生急剧变化。在70至90小时期间,几乎所有增殖细胞都转变为静止状态。静止细胞的死亡率相对较低,部分原因是与增殖细胞相比,葡萄糖消耗水平过低。结果表明,在LLC细胞生长过程中,尽管孵育培养基中VEGF的水平单调增加,但VEGF的产生速率却单调下降。观察到的VEGF产生速率的单调下降不能用孵育培养基中VEGF的降解来解释(我们的结果显示了VEGF分子在研究过程中的稳定性)。

结论

细胞从增殖状态转变为静止状态的速率对葡萄糖水平(>0.7 mg/ml)的弱依赖性以及低细胞死亡率使得群体中静止细胞池的减少缓慢,从而显著增加了它们在营养缺乏时存活的机会。

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