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Lipophilic ester and amide derivatives of rosmarinic acid protect cells against H2O2-induced DNA damage and apoptosis: The potential role of intracellular accumulation and labile iron chelation

机译:迷迭香酸的亲脂性酯和酰胺衍生物可保护细胞免受H2O2诱导的DNA损伤和细胞凋亡:细胞内积累和不稳定的铁螯合的潜在作用

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摘要

Phenolic acids represent abundant components contained in human diet. However, the negative charge in their carboxylic group limits their capacity to diffuse through biological membranes, thus hindering their access to cell interior. In order to promote the diffusion of rosmarinic acid through biological membranes, we synthesized several lipophilic ester- and amide-derivatives of this compound and evaluated their capacity to prevent H2O2-induced DNA damage and apoptosis in cultured human cells. Esterification of the carboxylic moiety with lipophilic groups strongly enhanced the capacity of rosmarinic acid to protect cells. On the other hand, the amide-derivatives were somewhat less effective but exerted less cytotoxicity at high concentrations. Cell uptake experiments, using ultra-high performance liquid chromatography coupled with tandem mass spectrometry (UHPLC-MS/MS), illustrated different levels of intracellular accumulation among the ester- and amide-derivatives, with the first being more effectively accumulated, probably due to their extensive hydrolysis inside the cells. In conclusion, these results highlight the hitherto unrecognized fundamental importance of derivatization of diet-derived phenolic acids to unveil their biological potential.
机译:酚酸代表人类饮食中所​​含的丰富成分。然而,其羧基中的负电荷限制了它们扩散通过生物膜的能力,从而阻碍了它们进入细胞内部。为了促进迷迭香酸通过生物膜的扩散,我们合成了该化合物的几种亲脂性酯和酰胺衍生物,并评估了它们在培养的人细胞中防止H2O2诱导的DNA损伤和细胞凋亡的能力。用亲脂性基团对羧基部分的酯化作用大大增强了迷迭香酸保护细胞的能力。另一方面,酰胺衍生物在高浓度下效果较差,但细胞毒性较小。使用超高效液相色谱和串联质谱(UHPLC-MS / MS)进行的细胞吸收实验表明,酯和酰胺衍生物之间的细胞内积累水平不同,第一个被更有效地积累,可能是由于它们在细胞内大量水解。总之,这些结果突出了饮食来源的酚酸衍生化以揭示其生物学潜力的迄今尚未被认识的基本重要性。

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