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聚乙二醇化姜黄素衍生物的增强细胞毒性活性:合成、构效关系评价及生物学活性。

Enhanced Cytotoxic Activity of PEGylated Curcumin Derivatives: Synthesis, Structure-Activity Evaluation, and Biological Activity.

机构信息

Department of Chemical Technology of Drugs, Poznan University of Medical Sciences, Grunwaldzka 6 Street, 60-780 Poznan, Poland.

Department of Toxicology, Poznan University of Medical Sciences, Dojazd 30 Street, 60-631 Poznan, Poland.

出版信息

Int J Mol Sci. 2023 Jan 11;24(2):1467. doi: 10.3390/ijms24021467.

Abstract

Curcumin has been modified in various ways to broaden its application in medicine and address its limitations. In this study, we present a series of curcumin-based derivatives obtained by replacing the hydroxy groups in the feruloyl moiety with polyethylene glycol (PEG) chains and the addition of the BF moiety to the carbonyl groups. Tested compounds were screened for their cytotoxic activity toward two bladder cancer cell lines, 5637 and SCaBER, and a noncancerous cell line derived from lung fibroblasts (MRC-5). Cell viability was analyzed under normoxic and hypoxic conditions (1% oxygen). Structure-activity relationships (SARs) are discussed, and curcumin derivatives equipped within feruloyl moieties with 3-methoxy and 4-{2-[2-(2-methoxyethoxy)ethoxy]ethoxy} substituents (5) were selected for further analysis. Compound did not affect the viability of MRC-5 cells and exerted a stronger cytotoxic effect under hypoxic conditions. However, the flow cytometry studies showed that PEGylation did not improve cellular uptake. Another observation was that the lack of serum proteins limits the intracellular uptake of curcumin derivative . The preliminary mechanism of action studies indicated that compound under hypoxic conditions induced G2/M arrest in a dose-dependent manner and increased the expression of stress-related proteins such as p21/CIP1, phosphorylated HSP27, ADAMTS-1, and phosphorylated JNK. In summary, the results of the studies indicated that PEGylated curcumin is a more potent compound against bladder cancer cell lines than the parent compound, and derivative is worthy of further investigation to clarify its mechanism of anticancer action under hypoxic conditions.

摘要

姜黄素在各个方面进行了修饰,以拓宽其在医学中的应用并解决其局限性。在这项研究中,我们提出了一系列基于姜黄素的衍生物,这些衍生物通过用聚乙二醇(PEG)链取代阿魏酰部分中的羟基,并在羰基上添加 BF 部分来获得。对测试化合物进行了细胞毒性活性筛选,针对两种膀胱癌细胞系 5637 和 SCaBER,以及源自肺成纤维细胞的非癌细胞系(MRC-5)。在常氧和缺氧条件(1%氧气)下分析细胞活力。讨论了结构-活性关系(SARs),并选择了在阿魏酰部分中带有 3-甲氧基和 4-{2-[2-(2-甲氧基乙氧基)乙氧基]乙氧基}取代基的姜黄素衍生物(5)进行进一步分析。化合物 不影响 MRC-5 细胞的活力,并在缺氧条件下表现出更强的细胞毒性作用。然而,流式细胞术研究表明,PEG 化并没有改善细胞摄取。另一个观察结果是,缺乏血清蛋白限制了姜黄素衍生物的细胞内摄取。初步的作用机制研究表明,化合物 在缺氧条件下以剂量依赖性方式诱导 G2/M 期阻滞,并增加应激相关蛋白的表达,如 p21/CIP1、磷酸化 HSP27、ADAMTS-1 和磷酸化 JNK。总之,研究结果表明,与母体化合物相比,PEG 化姜黄素是一种更有效的膀胱癌细胞系化合物,衍生物 值得进一步研究,以阐明其在缺氧条件下的抗癌作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2761/9867315/ffc8da0fe30b/ijms-24-01467-g001.jpg

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