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氧化应激诱导多种癌细胞系中的DNA损伤和凋亡:海洋NGM91提取物的新型抗癌特性。

Oxidative stress-induced DNA damage and apoptosis in multiple cancer cell lines: novel anticancer properties of marine NGM91 extract.

作者信息

Naser Rana Hussein, Azeez Zahraa Falah, Alatawi Zinab, Albalawi Amani, Shamrani Taghreed, Shahlol Aisha M A, El-Nablaway Mohammad, Alahmadi Hanadi A, Aloraini Ghfren S, Tharwat Nagwa A, Fouda Amr, Ghareeb Ahmed

机构信息

Department of Science, College of Basic Education, University of Diyala 32001 Baqubah Iraq

College of Biotechnology, University of Al-Qadisiyah Iraq

出版信息

RSC Adv. 2025 May 22;15(22):17203-17221. doi: 10.1039/d5ra02028j. eCollection 2025 May 21.

Abstract

This study explored the metabolites and bioactive potential of the ethyl acetate extract from a marine-derived fungal strain, NGM91, isolated from Red Sea sediments. Chemical profiling through FT-IR, GC-MS, and HPLC analysis revealed a complex composition dominated by benzyl benzoate (79.99%) and rosmarinic acid (162.15 μg ml) as major constituents. The fungal extract exhibited potent free radical scavenging activity (DPPH IC = 17.26; ABTS IC = 27.91 μg ml), with high total antioxidant capacity (476.57 μg per mg AAE) and ferric reducing power (302.62 μg per mg AAE). It demonstrated selective COX inhibition (COX-1 IC: 20.66 μg ml; COX-2 IC: 36.32 μg ml). Cytotoxic screening showed significant activity against PC3 cells (IC: 70.47 μg ml), PANC-1 (IC: 90.42 μg ml), HepG2 (IC: 100.36 μg ml), and Caco-2 cells (IC: 104.69 μg ml), while exhibiting lower cytotoxicity towards normal Wi-38 fibroblasts (IC: 230.31 μg ml). In PC3 cells, the extract induced oxidative stress markers (MDA: 13.63 μmol mg; NO: 66.13 μmole per mg), modulated antioxidant enzyme activities, upregulated antioxidant genes (CAT: 1195%, SOD: 788%, GPx: 473%, GST: 251%), increased DNA damage (205.1%), activated apoptotic pathways BCL-2 downregulation and BAX/P53/Caspase-3 upregulation, and induced G1 phase arrest (72.97%). These findings demonstrate NGM91's therapeutic potential through oxidative stress-mediated DNA damage and apoptotic cell death induction in PC3 cancerous cells.

摘要

本研究探索了从红海沉积物中分离出的海洋来源真菌菌株NGM91的乙酸乙酯提取物的代谢产物及生物活性潜力。通过傅里叶变换红外光谱(FT-IR)、气相色谱-质谱联用(GC-MS)和高效液相色谱(HPLC)分析进行的化学图谱分析显示,其成分复杂,主要成分是苯甲酸苄酯(79.99%)和迷迭香酸(162.15μg/ml)。该真菌提取物表现出强大的自由基清除活性(DPPH IC₅₀ = 17.26;ABTS IC₅₀ = 27.91μg/ml),具有较高的总抗氧化能力(476.57μg每毫克抗坏血酸当量)和铁还原能力(302.62μg每毫克抗坏血酸当量)。它表现出选择性环氧化酶抑制作用(COX-1 IC₅₀:20.66μg/ml;COX-2 IC₅₀:36.32μg/ml)。细胞毒性筛选显示,该提取物对PC3细胞(IC₅₀:70.47μg/ml)、PANC-1细胞(IC₅₀:90.42μg/ml)、HepG2细胞(IC₅₀:100.36μg/ml)和Caco-2细胞(IC₅₀:104.69μg/ml)具有显著活性,而对正常的Wi-38成纤维细胞毒性较低(IC₅₀:230.31μg/ml)。在PC3细胞中,该提取物诱导氧化应激标志物(丙二醛:13.63μmol/mg;一氧化氮:66.13μmole每毫克),调节抗氧化酶活性,上调抗氧化基因(过氧化氢酶:1195%,超氧化物歧化酶:788%,谷胱甘肽过氧化物酶:473%,谷胱甘肽S-转移酶:251%),增加DNA损伤(205.1%),激活凋亡途径(下调BCL-2,上调BAX/P53/半胱天冬酶-3),并诱导G1期阻滞(72.97%)。这些发现证明了NGM91通过氧化应激介导的DNA损伤和诱导PC3癌细胞凋亡而具有治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d97d/12096281/f0ba2d576252/d5ra02028j-f1.jpg

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