Skamrova Galyna B, Laponogov Ivan, Buchelnikov Anatoly S, Shckorbatov Yuriy G, Prylutska Svitlana V, Ritter Uwe, Prylutskyy Yuriy I, Evstigneev Maxim P
Department of Physics, Sevastopol National Technical University, Universitetskaya Str., 33, Sevastopol, 99053, Ukraine,
Eur Biophys J. 2014 Jul;43(6-7):265-76. doi: 10.1007/s00249-014-0960-2. Epub 2014 Apr 20.
C60 fullerenes are spherical molecules composed purely of carbon atoms. They inspire a particularly strong scientific interest because of their specific physico-chemical properties and potential medical and nanotechnological applications. In this work we are focusing on studying the influence of the pristine C60 fullerene on biological activity of some aromatic drug molecules in human buccal epithelial cells. Assessment of the heterochromatin structure in the cell nucleus as well as the barrier function of the cell membrane was performed. The methods of cell microelectrophoresis and atomic force microscopy were also applied. A concentration-dependent restoration of the functional activity of the cellular nucleus after exposure to DNA-binding drugs (doxorubicin, proflavine and ethidium bromide) has been observed in human buccal epithelial cells upon addition of C60 fullerene at a concentration of ~10(-5 )M. The results were shown to follow the framework of interceptor/protector action theory, assuming that non-covalent complexation between C60 fullerene and the drugs (i.e., hetero-association) is the major process responsible for the observed biological effects. An independent confirmation of this hypothesis was obtained via investigation of the cellular response of buccal epithelium to the coadministration of the aromatic drugs and caffeine, and it is based on the well-established role of hetero-association in drug-caffeine systems. The results indicate that C60 fullerene may reverse the effects caused by the aromatic drugs, thereby pointing out the potential possibility of the use of aromatic drugs in combination with C60 fullerene for regulation of their medico-biological action.
C60富勒烯是仅由碳原子组成的球形分子。由于其特定的物理化学性质以及潜在的医学和纳米技术应用,它们引发了特别强烈的科学兴趣。在这项工作中,我们专注于研究原始C60富勒烯对人颊上皮细胞中某些芳香族药物分子生物活性的影响。对细胞核中的异染色质结构以及细胞膜的屏障功能进行了评估。还应用了细胞微电泳和原子力显微镜方法。在人颊上皮细胞中加入浓度约为10(-5)M的C60富勒烯后,观察到在暴露于DNA结合药物(阿霉素、硫酸普罗黄素和溴化乙锭)后细胞核功能活性的浓度依赖性恢复。结果表明遵循拦截器/保护剂作用理论框架,假设C60富勒烯与药物之间的非共价络合(即异质缔合)是观察到的生物学效应的主要过程。通过研究颊上皮对芳香族药物和咖啡因共同给药的细胞反应,获得了对这一假设的独立证实,这是基于异质缔合在药物-咖啡因系统中已确立的作用。结果表明,C60富勒烯可能逆转芳香族药物引起的效应,从而指出将芳香族药物与C60富勒烯联合使用以调节其医学-生物学作用的潜在可能性。
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