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并且柠檬醛通过调节药物代谢、毒性和多药转运蛋白来克服癌细胞中的多柔比星耐药性。

and Citral Overcome Doxorubicin Resistance in Cancer Cells via Modulating the Drug's Metabolism, Toxicity, and Multidrug Transporters.

机构信息

Department of Biochemistry, Faculty of Medicine, Umm Al-Qura University, Al-Abdeyah, Makkah 24381, Saudi Arabia.

Biochemistry and Molecular Biology Department, Faculty of Pharmacy, Al-Azhar University, Assuit 71524, Egypt.

出版信息

Molecules. 2023 Apr 12;28(8):3415. doi: 10.3390/molecules28083415.

Abstract

Multidrug resistance (MDR) is the major complex mechanism that causes the failure of chemotherapy, especially with drugs of natural origin such as doxorubicin (DOX). Intracellular drug accumulation and detoxification are also involved in cancer resistance by reducing the susceptibility of cancer cells to death. This research aims to identify the volatile composition of (lemon grass; LG) essential oil and compare the ability of LG and its major compound, citral, to modulate MDR in resistant cell lines. The composition of LG essential oil was identified using gas chromatography mass spectrometry (GC-MS). In addition, a comparison of the modulatory effects of LG and citral, performed on breast (MCF-7/ADR), hepatic (HepG-2/ADR), and ovarian (SKOV-3/ADR) MDR cell lines, were compared to their parent sensitive cells using the MTT assay, ABC transporter function assays, and RT-PCR. Oxygenated monoterpenes (53.69%), sesquiterpene hydrocarbons (19.19%), and oxygenated sesquiterpenes (13.79%) made up the yield of LG essential oil. α-citral (18.50%), β-citral (10.15%), geranyl acetate (9.65%), ylangene (5.70), δ-elemene (5.38%), and eugenol (4.77) represent the major constituents of LG oil. LG and citral (20 μg/mL) synergistically increased DOX cytotoxicity and lowered DOX dosage by >3-fold and >1.5-fold, respectively. These combinations showed synergism in the isobologram and CI < 1. DOX accumulation or reversal experiment confirmed that LG and citral modulated the efflux pump function. Both substances significantly increased DOX accumulation in resistant cells compared to untreated cells and verapamil (the positive control). RT-PCR confirmed that LG and citral targeted metabolic molecules in resistant cells and significantly downregulated PXR, CYP3A4, GST, MDR1, MRP1, and PCRP genes. Our results suggest a novel dietary and therapeutic strategy combining LG and citral with DOX to overcome multidrug resistance in cancer cells. However, these results should be confirmed by additional animal experiments before being used in human clinical trials.

摘要

多药耐药性(MDR)是导致化疗失败的主要复杂机制,尤其是天然来源的药物,如阿霉素(DOX)。细胞内药物积累和解毒也参与了癌症耐药性,通过降低癌细胞对死亡的敏感性来减少癌症的易感性。本研究旨在鉴定(柠檬草;LG)精油的挥发性成分,并比较 LG 和其主要化合物柠檬醛调节耐药细胞系中 MDR 的能力。使用气相色谱-质谱联用(GC-MS)鉴定 LG 精油的组成。此外,通过 MTT 测定、ABC 转运体功能测定和 RT-PCR,比较 LG 和柠檬醛对乳腺癌(MCF-7/ADR)、肝(HepG-2/ADR)和卵巢(SKOV-3/ADR)耐药细胞系及其亲本敏感细胞的调节作用。LG 精油的产量由含氧单萜(53.69%)、倍半萜烃(19.19%)和含氧倍半萜(13.79%)组成。α-柠檬醛(18.50%)、β-柠檬醛(10.15%)、乙酸香叶酯(9.65%)、芳樟醇(5.70%)、δ-榄香烯(5.38%)和丁香酚(4.77%)是 LG 油的主要成分。LG 和柠檬醛(20 μg/mL)协同增加 DOX 的细胞毒性,并分别将 DOX 剂量降低 3 倍和 1.5 倍以上。这些组合在等对数图中表现出协同作用,CI<1。DOX 积累或逆转实验证实 LG 和柠檬醛调节了外排泵的功能。与未经处理的细胞相比,这两种物质都显著增加了耐药细胞中 DOX 的积累,并且超过了维拉帕米(阳性对照)。RT-PCR 证实 LG 和柠檬醛针对耐药细胞中的代谢分子,并显著下调 PXR、CYP3A4、GST、MDR1、MRP1 和 PCRP 基因。我们的结果表明,将 LG 和柠檬醛与 DOX 结合使用是一种治疗癌症细胞多药耐药性的新的饮食和治疗策略。然而,在将这些结果应用于人类临床试验之前,还需要通过额外的动物实验来验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8324/10143904/858bdbd1a6e6/molecules-28-03415-g001.jpg

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