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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Synchrotron FTIR analysis of drug treated ovarian A2780 cells: An ability to differentiate cell response to different drugs?
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Synchrotron FTIR analysis of drug treated ovarian A2780 cells: An ability to differentiate cell response to different drugs?

机译:药物处理的卵巢A2780细胞的同步加速器FTIR分析:区分细胞对不同药物反应的能力?

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Recently a new di-gold(i) organometallic complex [1,3-(Ph 3PAu)2-C6H4] (KF0101) has been synthesised and found to exhibit cytotoxic activity in vitro. Subsequently it has been demonstrated that KF0101 shows little or no cross-resistance against a number of the cisplatin resistant ovarian cancer cell lines in vitro suggesting a different mode of action for the drug. In this study, syncrotron radiation infrared microspectroscopy (SR-IRMS) has been used on drug treated single A2780 cells in order to determine if this different mode of action can be identified spectroscopically. The aim of the study was to establish: (i) if single cell SR-IRMS could be used to give insight into the cellular response on treatment with different cytotoxic agents relative to non-treated cells (control) and (ii) that if the cytotoxic drugs elicit a different biochemical response these responses could be distinguished from each other. The most striking features obtained after Principal Componants Analysis (PCA) of Resonant Mie Scattering (RMieS) corrected single cell spectra of drug treated ovarian A2780 cells are: (i) The spectra obtained for the control are quite heterogeneous and several hundred spectra are required to adequately define the nature of the control; (ii) after drug treatment at the IC50 level for 24 h with cisplatin, KF0101, methotrexate, paclitaxel or 5-fluorouracil the cell spectra, as represented on a PCA scores plot, generally concentrate in certain well defined areas of the control, there are however a small number of spectra that fall outside of the area defined by the control; and (iii) a differentiation between cell spectra obtained on treatment with different drugs is observed which fits well with different in vitro cell culture behaviour and a flow cytometry cell cycle analysis of the contol and drug treated cells. Inspection of the loading plots shows that PC1 is essentially the same for all plots and reflects changes in cell biochemistry related to the cell cycle. PC2, however, on comparison of the control versus cisplatin or cisplatin versus KF0101 is indicative of differences induced by drug treatment and has been termed as cell cycle-plus behaviour. These data are shown to be consistent with that obtained using bench-top IRMS by averaging a number of single cell spectra and carrying out a PCA, but SR-IRMS offers more insight into how the drug is affecting the cell population. More importantly, this approach enables the influence of the cell cycle on both the control and drug treated samples to be taken into consideration when evaluating the drug-cell interaction.
机译:最近,已经合成了一种新的双金(i)有机金属配合物[1,3-(Ph 3PAu)2-C6H4](KF0101),并发现其在体外具有细胞毒活性。随后,已证明KF0101在体外对许多顺铂耐药性卵巢癌细胞系显示很少或没有交叉耐药性,表明该药物的作用方式不同。在这项研究中,对药物处理过的单个A2780细胞使用了同步辐射红外光谱(SR-IRMS),以确定这种不同的作用方式是否可以通过光谱鉴定。该研究的目的是确定:(i)是否可以使用单细胞SR-IRMS来了解相对于未经处理的细胞(对照)用不同的细胞毒剂治疗后的细胞反应,以及(ii)如果细胞毒性药物引起不同的生化反应,这些反应可以彼此区分开。经药物处理的卵巢A2780细胞的共振Mie散射(RMieS)校正的主成分分析(PCA)后,获得的最显着特征是:(i)对照获得的光谱非常不均一,需要数百个光谱才能完成。充分定义控件的性质; (ii)用PCA评分图表示的顺铂,KF0101,甲氨蝶呤,紫杉醇或5-氟尿嘧啶在IC50水平下治疗24小时后,细胞谱通常集中在对照的某些明确定义的区域,但是,少数光谱落在控件定义的区域之外; (iii)观察到在用不同药物治疗时获得的细胞光谱之间的差异,该差异非常适合于不同的体外细胞培养行为以及对contol和药物处理的细胞的流式细胞术细胞周期分析。检查加载图显示PC1在所有图中基本相同,并反映了与细胞周期有关的细胞生物化学变化。然而,在对照与顺铂比较或顺铂与KF0101比较时,PC2指示药物治疗诱导的差异,并被称为细胞周期加行为。这些数据显示与使用台式IRMS通过平均多个单细胞光谱并进行PCA获得的数据一致,但是SR-IRMS提供了更多有关药物如何影响细胞群体的见解。更重要的是,这种方法可以在评估药物-细胞相互作用时考虑细胞周期对对照样品和药物处理样品的影响。

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