首页> 外文期刊>Frontiers in Marine Science >Antiproliferative Role of Secondary Metabolites From Aspergillus unguis AG 1.1 (G) Isolated From Marine Macroalgae Enteromorpha sp. by Inducing Intracellular ROS Production and Mitochondrial Membrane Potential Loss Leading to Apoptosis
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Antiproliferative Role of Secondary Metabolites From Aspergillus unguis AG 1.1 (G) Isolated From Marine Macroalgae Enteromorpha sp. by Inducing Intracellular ROS Production and Mitochondrial Membrane Potential Loss Leading to Apoptosis

机译:次级代谢物从芦苇的抗增殖作用unguis ag 1.1(g)从海洋大草原肠溶肠溶肠溶肠溶肠溶肠溶液中分离。通过诱导细胞内ROS产生和线粒体膜潜在损失导致细胞凋亡

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Drug resistance to the classically used chemotherapeutic drugs is the major challenge in their treatment of cancer needing the discovery of novel anticancer drugs. In terms of finding novel therapeutics, endophytes are quite promising as they are an excellent source of novel structures, which exhibit bioactivity. The present study demonstrated a dose-dependent antiproliferative activity of mycelial-derived secondary metabolites from a macroalgae associated endophyte Aspergillus unguis AG 1.1(G). The antiproliferative activity of A. unguis mycelial extract (AUME) was observed on different human cancer cell lines. PI live/dead assay further confirmed the cytotoxic potential of the mycelial extract. Furthermore, A. unguis mycelial extract caused mitochondrial membrane aberration and generated ROS production as well indicating its potential to induce cell death by apoptosis. The metabolic profiling of the mycelial extract using GC-MS and LC-MS/MS revealed the presence of fatty acids, a benzoquinolinone derivative, imidazolidinedione derivative, diethyl phthalate and phthalate acid ester, a difuraxanthone, two prenylxanthone analogues and a phthalide derivative and some unknown metabolites. Presence of 4-(4-Hydroxy-3,5-dimethoxy-phenyl)-3,4-dihydro-1H-benzo[h]quinolin-2-one, 1-hydroxy-3,5-dimethoxy-2-prenylxanthone, 1,6-dihydroxy-3-methoxy-2-prenylxanthone and 3-butylidene-7-hydroxyphthalide in AUME could be correlated to the notable cytotoxicity exhibited by the endophyte. The additional presence of many unidentified compounds heightened the prospects of finding some novel bioactive metabolites. Our results indicated that secondary metabolites produced by A. unguis AG 1.1 (G) have therapeutic potential as anticancer agents.
机译:对典型使用的化学治疗药物的耐药性是他们治疗癌症的主要挑战,需要发现新的抗癌药物。在寻找新的治疗剂方面,Endophytes非常有前途,因为它们是具有生物活性的新型结构的优秀来源。本研究证明了来自菌丝衍生的二次代谢物的剂量依赖性抗增殖活性,来自大型菌丝相关的内胚菌曲霉14.1(g)。在不同的人类癌细胞系上观察到unguis菌丝菌素(烟)的抗溶剂活性。 PI Live / Dead测定进一步证实了菌丝提取物的细胞毒性潜力。此外,A. unguis菌丝菌菌提取物引起线粒体膜像差并产生ROS产生,表明其诱导细胞凋亡诱导细胞死亡的可能性。使用GC-MS和LC-MS / MS的菌丝提取物的代谢分析显示脂肪酸,苯醌喹啉酮衍生物,咪唑啉酮衍生物,邻苯二甲酸二乙酯和邻苯二甲酸酸酯,脱硫酮,两种戊烷藻藻酮类似物和邻苯二甲烷衍生物和一些代谢物未知。 4-(4-羟基-3,5-二甲氧基 - 苯基)-3,4-二氢-1H-苯并[H]喹啉-2-一,1-羟基-3,5-二甲氧基-2-戊酰氨基, 1,6-二羟基-3-甲氧基-2-戊烷和3-丁基-7-羟基苯二甲苯二甲苯二甲苯二甲酞酮与内心细胞表现出的显着细胞毒性相关。许多未识别的化合物的额外存在提升了发现一些新型生物活性代谢物的前景。我们的研究结果表明,A. Unguis Ag 1.1(g)产生的次级代谢物具有治疗潜力作为抗癌剂。

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