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首页> 外文期刊>Molecules >Nanostructured Lipid Systems as a Strategy to Improve the in Vitro Cytotoxicity of Ruthenium(II) Compounds
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Nanostructured Lipid Systems as a Strategy to Improve the in Vitro Cytotoxicity of Ruthenium(II) Compounds

机译:纳米脂质系统作为改善钌(II)化合物体外细胞毒性的策略

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摘要

: Tuberculosis is an ancient disease that is still present as a global public health problem. Our group has been investigating new molecules with anti-TB activity. In this context, inorganic chemistry has been a quite promising source of such molecules, with excellent results seen with ruthenium compounds. Nanostructured lipid systems may potentiate the action of drugs by reducing the required dosage and side effects and improving the antimicrobial effects. The aim of this study was to develop a nanostructured lipid system and then characterize and apply these encapsulated compounds (SCARs 1, 2 and 4) with the goal of improving their activity by decreasing the Minimum Inhibitory Concentration (MIC90) and reducing the cytotoxicity (IC50). The nanostructured system was composed of 10% phase oil (cholesterol), 10% surfactant (soy oleate, soy phosphatidylcholine and Eumulgin®) and 80% aqueous phase (phosphate buffer pH = 7.4). Good activity against Mycobacterium tuberculosis was maintained after the incorporation of the compounds into the nanostructured lipid system, while the cytotoxicity decreased dramatically, in some cases up to 20 times less toxic than the unencapsulated drug.
机译::结核病是一种古老的疾病,目前仍然是全球公共卫生问题。我们小组一直在研究具有抗结核活性的新分子。在这种情况下,无机化学已成为此类分子的非常有前途的来源,钌化合物具有优异的结果。纳米结构的脂质系统可通过减少所需的剂量和副作用并改善抗菌作用来增强药物的作用。这项研究的目的是开发一种纳米结构的脂质系统,然后表征和应用这些包封的化合物(SCAR 1、2和4),以通过降低最小抑制浓度(MIC 90 )并降低细胞毒性(IC 50 )。纳米结构系统由10%相油(胆固醇),10%表面活性剂(大豆油酸酯,大豆磷脂酰胆碱和Eumulgin ®)和80%水相(磷酸盐缓冲液pH = 7.4)组成。将化合物掺入纳米结构脂质系统后,仍保持了针对结核分枝杆菌的良好活性,而细胞毒性急剧下降,在某些情况下,其毒性比未包封的药物低多达20倍。

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