Sena G, Onado C, Cappella P, Montalenti F, Ubezio P
Biophysics Unit, Department of Oncology, Istituto di Ricerche Farmacologiche "Mario Negri", Milan, Italy.
Cytometry. 1999 Oct 1;37(2):113-24.
Paclitaxel (Taxol) is known to act mainly in mitosis, interfering with microtubule dynamics, but effects on the other cells cycle phases have been reported also. However, a comparative picture of perturbation and killing in the G(1), S and G(2)M phases after drug treatment is lacking. The approach developed by our group tackles the problem of the complexity of cell cycle effects with the aid of a computer program simulating cell cycle progression and new quantities measuring cell-cycle arrest and death.
The program generates data that were compared with those given by absolute cell counts and by different flow cytometry techniques, enabling us to follow the fate of G(1) and G(2)M blocked cells either re-entering the cycle or dying, distinguishing cytostatic and cytotoxic effects. Apoptosis was analyzed in order to refine the description of cytotoxic effects.
We estimated the number of blocked and dead cells after short-term Taxol treatments in a range of concentrations and post-drug incubation times. G(2)M block was immediately active at low concentrations but was reversible, becoming irreversible only at the highest concentrations. G(1)block became active later, allowing cell cycle progression of cells initially in G(1), but was still active 48 h post-treatment, at intermediate concentrations. S-phase delay was detected after 24 h. The death rate was much higher within G(1)than G(2)M blocked cells.
Our analysis unraveled the complexity of cell cycle effects of the drug, and revealed the activity of G(1) checkpoint, hidden by a prompter but less cytotoxic G(2)M block.
已知紫杉醇(泰素)主要作用于有丝分裂,干扰微管动力学,但也有报道称其对细胞周期的其他阶段有影响。然而,目前缺乏药物处理后G1、S和G2M期扰动和杀伤作用的比较情况。我们团队开发的方法借助一个模拟细胞周期进程的计算机程序以及测量细胞周期停滞和死亡的新指标,解决了细胞周期效应复杂性的问题。
该程序生成的数据与通过绝对细胞计数和不同流式细胞术技术得到的数据进行比较,使我们能够追踪G1期和G2M期阻滞细胞重新进入周期或死亡的命运,区分细胞抑制和细胞毒性作用。分析凋亡情况以完善对细胞毒性作用的描述。
我们估计了在一系列浓度和药物处理后孵育时间下短期紫杉醇处理后阻滞和死亡细胞的数量。低浓度时G2M期阻滞立即起效,但具有可逆性,仅在最高浓度时才变为不可逆。G1期阻滞起效较晚,使最初处于G1期的细胞能够进行细胞周期进程,但在中等浓度下处理后48小时仍有活性。24小时后检测到S期延迟。G1期阻滞细胞的死亡率远高于G2M期阻滞细胞。
我们的分析揭示了该药物细胞周期效应的复杂性,并揭示了G1期检查点的活性,它被更快出现但细胞毒性较小的G2M期阻滞所掩盖。