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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Metal contaminants promote degradation of lipid/DNA complexes during lyophilization
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Metal contaminants promote degradation of lipid/DNA complexes during lyophilization

机译:金属污染物促进冻干过程中脂质/ DNA复合物的降解

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摘要

Oxidation reactions represent an important degradation pathway of nucleic acid-based pharmaceuticals. To evaluate the role of metal contamination and chelating agents in the formation of reactive oxygen species (ROS) during lyophilization, ROS generation and the stability of lipid/DNA complexes were investigated. Trehalose-containing forrmilations were lyophilized with different levels of transition metals. ROS generation was examined by adding proxyl fluorescarnine to the formulations prior to freeze-drying. Results show that ROS were generated during lyophilization, and both supereoil content and transfection rates decreased as the levels of metal-induced ROS increased. The experiments incorporating chelators demonstrated that some of these agents (e.g., DTPA, desferal) clearly suppress ROS generation, while others (e.g., EDTA) enhance ROS. Surprisingly, there was not a strong correlation of ROS generated in the presence of chelators with the maintenance of supercoil content. In this study, we demonstrated the adverse effects of the presence of metals (especially Fe2+) in nonviral vector formulations. While some chelators attenuate ROS generation and preserve DNA integrity, the effects of these additives on vector stability during lyophilization are difficult to predict. Further study is needed to develop potent fon-nulation strategies that inhibit ROS generation and DNA degradation during lyophilization and storage. (c) 2006 Elsevier B.V All rights reserved.
机译:氧化反应代表了基于核酸的药物的重要降解途径。为了评估冻干过程中金属污染和螯合剂在活性氧(ROS)形成中的作用,研究了ROS的产生和脂质/ DNA复合物的稳定性。用不同含量的过渡金属冻干含海藻糖的强化剂。在冷冻干燥之前,通过向制剂中加入代用品的氟肉碱来检查ROS的产生。结果表明,冻干过程中产生了ROS,并且随着金属诱导的ROS含量的增加,超油含量和转染率均降低。掺入螯合剂的实验表明,这些试剂中的某些(例如DTPA,延缓剂)可以明显抑制ROS的产生,而其他试剂(例如EDTA)则可以增强ROS。令人惊讶的是,在螯合剂存在下所产生的ROS与超螺旋含量的维持之间没有强烈的相关性。在这项研究中,我们证明了在非病毒载体制剂中金属(尤其是Fe2 +)的存在所带来的不利影响。尽管一些螯合剂减弱了ROS的产生并保留了DNA的完整性,但很难预测这些添加剂对冻干过程中载体稳定性的影响。需要进一步的研究来开发有效的冻干和贮藏过程中抑制ROS产生和DNA降解的制剂策略。 (c)2006 Elsevier B.V保留所有权利。

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