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首页> 外文期刊>Cancer chemotherapy and pharmacology. >Further mechanistic unravelling of the influence of the cell cycle effects on the radiosensitising mechanism of vinflunine, in vitro.
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Further mechanistic unravelling of the influence of the cell cycle effects on the radiosensitising mechanism of vinflunine, in vitro.

机译:在体外进一步研究细胞周期效应对长春氟宁的放射增敏机理的影响的进一步机理。

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摘要

PURPOSE: Vinflunine is an innovative microtubule inhibitor belonging to the vinca alkaloid class that possesses radiosensitising properties, which could lead to promising activity in chemoradiation studies in the clinic. METHOD: In the current study, different incubation times with vinflunine, immediately before radiation and different time intervals between vinflunine treatment and radiation were investigated, in vitro, using four different human tumour cell lines differing in cell type and p53 status. Results were correlated with the cell cycle distribution at the moment of radiation, in order to elucidate the role of cell cycle perturbations caused by vinflunine on its radiosensitising effect. RESULTS: Radiosensitisation was observed in all cell lines, and maximal radiosensitisation was both cell line- and schedule-dependent. The cell cycle distributions were cell line-dependent also, and when correlated with the observed radiosensitising effects could explain many (but not all) of the radiosensitising properties of vinflunine. CONCLUSION: The cell cycle perturbations caused by vinflunine may definitely have an impact on its radiosensitising potential, but other factors must play a role because of some unaccountable differences between cell cycle distribution and the radiosensitising potential.
机译:目的:长春氟宁是一种创新的微管抑制剂,属于长春花生物碱类,具有放射致敏特性,可在临床化学放射研究中带来有希望的活性。方法:在目前的研究中,使用四种不同细胞类型和p53状态的不同人类肿瘤细胞系,在体外研究了在放疗前不久与长春氟宁的不同孵育时间以及长春氟宁治疗与放疗之间的不同时间间隔。结果与辐射时的细胞周期分布相关,以阐明长春氟宁引起的细胞周期扰动对其放射增敏作用的作用。结果:在所有细胞系中均观察到放射增敏作用,最大的放射增敏作用既依赖于细胞系也依赖于时间表。细胞周期分布也取决于细胞系,当与观察到的放射增敏作用相关时,可以解释长春氟宁的许多(但不是全部)放射增敏特性。结论:长春氟宁引起的细胞周期扰动肯定会对其放射增敏潜力产生影响,但由于细胞周期分布与放射增敏潜力之间存在一些无法解释的差异,因此其他因素也必须发挥作用。

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