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Analysis of cytotoxicity of anticancer drugs.

机译:抗癌药物的细胞毒性分析。

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摘要

Apoptosis, induced in cancer cells by anticancer agents such as doxorubicin, dactinomycin, and the platinum drugs, is characterized by impaired respiration, decreased ATP, and activated caspases. Respiration rates of Jurkat or HL-60 cells treated with drugs are measured using a Pd (II) phosphor to monitor [O2]. Cellular ATP is determined using the luciferin-luciferase bioluminescence system, and intracellular caspase activation measured by allowing caspases to cleave Ac-DEVD-AFC to the fluorescent AFC, which is detected on HPLC. A decline in the rate of respiration was evident in Jurkat and HL-60 cells exposed to doxorubicin. The decline was abrupt, occurring after about 2 h of incubation. The inhibition was concentration-dependent and was completely blocked by the pan-caspase inhibitor benzyloxycarbonyl-Val-Ala-DL-Asp-fluoromethylketone. Respiration in resistant HL-60/MX2 cells, characterized by an altered topoisomerase II activity, was not inhibited by doxorubicin. A decline in cellular ATP was measured in Jurkat cells after 2 to 4 h of incubation with 20 muM doxorubicin, paralleling the decline in respiration rate. In the presence of dactinomycin, k decreased gradually with time. The decrease was more pronounced at higher concentrations of the drug. Cellular ATP remained constant for 5 hr in untreated cells, but decreased gradually in the presence of 20 muM dactinomycin (to one tenth the value at 5 hr for untreated cells). The drug-induced inhibition of respiration and decrease in ATP level were both blocked by the pancaspase inhibitor zVAD-fmk. Caspase activity was first noted after about 2 h of incubation with doxorubicin or dactinomycin, the production of AFC being linear with time afterwards. Caspase activation by doxorubicin was delayed in HL-60/MX2 cells, reflecting the critical role of topoisomerase-II in doxorubicin cytotoxicity. For both drugs, caspase activity increased rapidly between ∼2 and ∼6 hours, went through a maximum, and decreased after ∼8 hours ("caspase storm"). Cisplatin treatment induced noticeable caspase activity only after ∼14 h of incubation, and the fluorescent intensity of AFC became linear with time at ∼16 h. Exposure of the cells to all of the drugs studied led to impaired cellular respiration and decreased cellular ATP, concomitant with caspase activation. Thus, the mitochondria are rapidly targeted by active caspases. Comparing the ways in which respiration, ATP level, and caspase activity vary with time points up differences between the mechanisms of actions of doxorubicin, dactinomycin, and the platinum drugs. These results should also be useful in choosing the most effective drug for a particular clinical application.
机译:由抗癌剂(如阿霉素,放线菌素和铂类药物)在癌细胞中诱导的凋亡特征是呼吸功能受损,ATP降低和胱天蛋白酶激活。使用Pd(II)荧光粉监测[O2],测量药物处理后的Jurkat或HL-60细胞的呼吸速率。使用萤光素-萤光素酶生物发光系统确定细胞的ATP,并通过允许胱天蛋白酶将Ac-DEVD-AFC裂解为荧光AFC来测量细胞内caspase的活化,这在HPLC上可以检测到。在暴露于阿霉素的Jurkat和HL-60细胞中,呼吸速率明显下降。下降大约是在孵育2小时后发生的。该抑制是浓度依赖性的,并被泛半胱天冬酶抑制剂苄氧基羰基-Val-Ala-DL-Asp-氟甲基酮完全阻断。阿霉素不抑制耐药性HL-60 / MX2细胞的呼吸,其特征是拓扑异构酶II活性改变。与20μM阿霉素孵育2至4小时后,Jurkat细胞中的细胞ATP下降,这与呼吸速率下降平行。在放线菌素的存在下,k随着时间逐渐降低。药物浓度越高,下降越明显。在未处理的细胞中,细胞ATP在5小时内保持恒定,但在存在20μM放线菌素的情况下逐渐降低(至5 h时未处理细胞的值降低了十分之一)。 pancaspase抑制剂zVAD-fmk可以阻断药物对呼吸的抑制和ATP水平的降低。在与阿霉素或放线菌素孵育约2小时后,首先注意到caspase的活性,之后AFC的产量呈线性关系。在HL-60 / MX2细胞中,阿霉素的半胱天冬酶激活被延迟,这反映了拓扑异构酶II在阿霉素的细胞毒性中的关键作用。对于这两种药物,胱天蛋白酶的活性在约2至约6小时之间迅速增加,达到最大值,并在约8小时后下降(“胱天蛋白酶风暴”)。顺铂处理仅在孵育约14小时后才诱导显着的caspase活性,并且AFC的荧光强度在约16 h时随时间呈线性关系。将细胞暴露于所有研究的药物会导致细胞呼吸受损和细胞ATP降低,并伴有半胱天冬酶激活。因此,线粒体被活性胱天蛋白酶快速靶向。比较呼吸,ATP水平和胱天蛋白酶活性随时间变化的方式会增加阿霉素,放线菌素和铂类药物的作用机理之间的差异。这些结果在选择用于特定临床应用的最有效药物时也应是有用的。

著录项

  • 作者

    Tao, Zhimin.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药物化学;
  • 关键词

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