首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Comparative in vitro study of photodynamic activity of hypericin and hypericinates in MCF-7 cells
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Comparative in vitro study of photodynamic activity of hypericin and hypericinates in MCF-7 cells

机译:MCF-7细胞高凝固素和固物质的光动力活性的比较体外研究

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In this work we present a comparative in vitro study of photodynamic activity between hypericin (HYP) and some hypericinates (hypericin ionic pair with lysine orN-methylglucamine) in human mammary adenocarcinoma cells (MCF-7). The toxicity and phototoxicity of hypericin and hypericinates were compared, as well as their cellular uptake and localization and mutagenic, genotoxic and clonogenic capacity. Our results demonstrate that different cationic moieties promote differences in the hypericinate solubility in a biological environment, and can influence the cellular localization and the phototoxicity of the photosensitizer. It was verified that hypericinates have better efficiency to generate singlet oxygen than HYP, and a lower aggregation in biological medium. In vitro assays have shown that HYP and the hypericinates are able to permeate the MCF-7 cell membrane and accumulated in organelles near the nucleus. The difference in location, however, was not determinant to the cell death mechanism, and a higher prevalence of apoptosis for all studied compounds occurred. The photodynamic studies indicated that hypericinates were more effective than HYP and were able to inhibit the formation of cellular colonies, suggesting a possible ability to prevent the recurrence of tumors. It also appears that all compounds have relative safety for mutagenicity and genotoxicity, which opens up a further safe route for application in in vivo studies.
机译:在这项工作中,我们在人类乳腺癌细胞中,在人乳腺癌细胞中,在人类乳腺癌细胞中呈现了高蛋白(HYP)和一些固物质(Hypericin离子对或赖氨酸的斜体)(斜晶类)的比较体外研究-7)。比较了高蛋白和固菌素的毒性和光炎,以及它们的细胞吸收和局部化,遗传毒性和克隆灭绝的能力。我们的结果表明,不同的阳离子部分在生物环境中促进了实体素溶解度的差异,并且可以影响光敏剂的细胞定位和光毒性。已经验证过素物质具有更好的效率,以产生单向氧,而生物培养基中的较低聚集。体外测定表明,HEPP和固晶酸钙能够渗透MCF-7细胞膜并积聚在细胞核附近的细胞器中。然而,位置的差异不是细胞死亡机制的决定性,并且对所有研究的化合物的凋亡率较高。光动力学研究表明,过素酸酯比百下高效,并且能够抑制细胞菌落的形成,表明防止肿瘤复发的可能能力。还似乎所有化合物都具有相对安全性的突变性和遗传毒性,这使得在体内研究中的应用进一步适用于进一步的安全途径。

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