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下一代纳米制剂:基于光果甘草的壳聚糖-姜黄素MgO/FeO纳米复合材料用于具有双重抗氧化作用的靶向肺癌治疗。

Next-generation nanoformulation: Glycyrrhiza glabra-based chitosan-curcumin MgO/FeO nanocomposite for targeted lung cancer therapy with dual antioxidant action.

作者信息

Elmetwalli Alaa, Abdelsayed Sara, Elsayed Ashraf, El-Hersh Mohammed S, Hassan Mervat G, Gad Lamia A, Salah Medhat Ali, Yahia Mohamed Basiouny, Shaheen Mohamed A, Ibrahim Mohamed F, Ibrahim Abdullah Mustafa, Newish Hatem Mohamed, Alhomaidi Eman, El-Far Ali H, Elattar Khaled M

机构信息

Prince Fahad bin Sultan Research Chair for Biomedical Research, University of Tabuk, Tabuk, Saudi Arabia.

Department of Botany and Microbiology, Faculty of Science, Benha University, Benha, Egypt.

出版信息

Med Oncol. 2025 Aug 7;42(9):414. doi: 10.1007/s12032-025-02977-x.

Abstract

This study aims to develop and evaluate Glycyrrhiza glabra-based magnesium oxide/iron oxide nanocomposite (NC) functionalized with chitosan and curcumin to enhance therapeutic efficacy against lung cancer and oxidative stress. This is the first report integrating G. glabra extract with chitosan and curcumin functionalization into a MgO/FeO nanocomposite for enhanced antioxidant and anticancer effects. The developed nanocomposite demonstrated strong biocompatibility and in vitro therapeutic efficacy, as evidenced by low cytotoxicity in normal cells and significant inhibitory effects against A549 lung cancer cells. In this study, bioactive phytochemical-loaded G. glabra extract was used as a green capping and reducing agent to synthesize MgO/FeO NC. The nanomaterials were also functionalized with curcumin and chitosan to promote stability, bioavailability, and site-specific pharmacological activity. The synthesis process was carried out under green conditions, in which the nanocomposite was characterized using FTIR, UV-Vis spectroscopy, EDX analysis, zeta potential analysis, HR-TEM, and XRD. The antioxidant potential was assessed through the DPPH free radical scavenging activity, whereby MgO/FeO-chitosan-curcumin NCs yielded the maximum inhibition of free radicals (IC = 0.0977 mg/mL) when compared to other nanomaterials. Antimicrobial activity was assessed against Gram-negative and Gram-positive bacteria, wherein MgO/FeO NC showed moderate activity, and chitosan and curcumin functionalization reduced this to some extent by possibly controlled release behavior or protection of active sites. Cytotoxicity against A549 human lung cancer cells showed strong inhibition by the MgO/FeO-chitosan-curcumin NC (IC = 10 µg/mL), confirmed by changes in morphology in accordance with apoptosis. In addition, in silico ADME simulation suggested favorable bioavailability and low toxicity, which is an indicator of the therapeutic potential of these NCs. To the best of our knowledge, this is the first report on G. glabra-mediated green synthesis with dual functionalization of chitosan and curcumin in a MgO/FeO nanocomposite. The formulation has synergistic antioxidant and anticancer activity with vast potential in lung cancer therapy. As a whole, the findings address the dual antioxidant and anticancer properties of G. glabra-derived MgO/FeO-chitosan-curcumin NC and their green potential as agents in the treatment of lung cancer. In vivo studies are recommended to confirm efficacy and safety.

摘要

本研究旨在开发并评估用壳聚糖和姜黄素功能化的光果甘草基氧化镁/氧化铁纳米复合材料(NC),以增强其对肺癌和氧化应激的治疗效果。这是首篇将光果甘草提取物与壳聚糖和姜黄素功能化整合到氧化镁/氧化亚铁纳米复合材料中以增强抗氧化和抗癌作用的报道。所开发的纳米复合材料表现出强大的生物相容性和体外治疗效果,正常细胞中的低细胞毒性以及对A549肺癌细胞的显著抑制作用证明了这一点。在本研究中,负载生物活性植物化学物质的光果甘草提取物被用作绿色封端剂和还原剂来合成氧化镁/氧化亚铁纳米复合材料。这些纳米材料还用姜黄素和壳聚糖进行了功能化,以提高稳定性、生物利用度和位点特异性药理活性。合成过程在绿色条件下进行,使用傅里叶变换红外光谱(FTIR)、紫外可见光谱、能量色散X射线分析(EDX)、zeta电位分析、高分辨率透射电子显微镜(HR-TEM)和X射线衍射(XRD)对纳米复合材料进行了表征。通过二苯基苦味酰基自由基(DPPH)清除活性评估抗氧化潜力,与其他纳米材料相比,氧化镁/氧化亚铁-壳聚糖-姜黄素纳米复合材料对自由基的抑制作用最大(半数抑制浓度[IC] = 0.0977毫克/毫升)。评估了对革兰氏阴性菌和革兰氏阳性菌的抗菌活性,其中氧化镁/氧化亚铁纳米复合材料表现出中等活性,壳聚糖和姜黄素功能化通过可能的控释行为或活性位点保护在一定程度上降低了这种活性。氧化镁/氧化亚铁-壳聚糖-姜黄素纳米复合材料对A549人肺癌细胞的细胞毒性表现出强烈抑制作用(IC = 10微克/毫升),细胞形态根据凋亡发生变化证实了这一点。此外,计算机辅助的药物代谢动力学(ADME)模拟表明其具有良好的生物利用度和低毒性,这是这些纳米复合材料治疗潜力的一个指标。据我们所知,这是首篇关于光果甘草介导的绿色合成,在氧化镁/氧化亚铁纳米复合材料中对壳聚糖和姜黄素进行双重功能化的报道。该制剂具有协同抗氧化和抗癌活性,在肺癌治疗中具有巨大潜力。总体而言,这些发现阐述了光果甘草衍生的氧化镁/氧化亚铁-壳聚糖-姜黄素纳米复合材料的双重抗氧化和抗癌特性以及它们作为肺癌治疗药物的绿色潜力。建议进行体内研究以确认疗效和安全性。

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