α-Mangostin-phytosomes as a plausible nano-vesicular approach for enhancing cytotoxic activity on SKOV-3 ovarian cancer cells

IF 3.4 Q2 PHARMACOLOGY & PHARMACY
Abdulmohsin J. Alamoudi, Shaimaa M. Badr-Eldin, Osama A. A. Ahmed, Serag Eldin I. Elbehairi, Mohammad Y. Alfaifi, Hani Z. Asfour, Gamal A. Mohamed, Sabrin R. M. Ibrahim, Ashraf B. Abdel-Naim, Hossam M. Abdallah
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引用次数: 0

Abstract

Background

α-Mangostin is a major xanthone in Garcinia mangostana L. (Clusiaceae) pericarps. It has promising anti-proliferative potential in different cancer cells; however, it has poor oral bioavailability. Phytosomes are used as a novel nano-based drug delivery system. The aim of this research was to enhance the anti-proliferative potency of α-mangostin by formulating it as α-mangostin-phytosome (α-M-PTMs) and assessing its impact on SKOV-3 ovarian cancer cells in comparison to pure α-mangostin.

Results

The size and entrapment efficiency of the proposed formulation were optimized using Box–Behnken statistics. The optimized formula was characterized using transmission electron microscope. The binding of α-mangostin to phospholipids was confirmed using Fourier-transform infrared (FTIR) spectroscopy. The optimized α-mangostin-phytosomes formula exhibited enhanced anti-proliferative activity with reference to raw α-mangostin. This was further substantiated by assessing the cell cycle phases that indicated an accumulation of SKOV-3 cells in the sub-G1 phase. Annexin-V staining revealed enhanced apoptotic activity in α-mangostin-phytosome-treated cells. This was associated with upregulation of CASP3 (Caspase-3), BAX (BCL2 Associated X, Apoptosis Regulator) and TP53 as well as down-regulation of BCL2 mRNA (B-Cell Leukemia/Lymphoma 2). Moreover, our data indicated enhanced ROS (Reactive oxygen species) production, cytochrome-C release, and disturbed MMP (mitochondrial membrane potential).

Conclusion

Encapsulation of α-mangostin in a phytosome nano-formula enhances its anti-proliferative effects in SKOV-3 cells via, at least in part, inducing mitochondrial apoptotic cell death.

α-曼戈司汀-植物小体是增强 SKOV-3 卵巢癌细胞细胞毒性的一种可行的纳米囊泡方法
背景α-芒果苷是芒果科植物藤黄属(Garcinia mangostana L.)被子植物中的一种主要氧杂蒽酮。它对不同癌细胞具有抗增殖潜力,但口服生物利用度较低。植物体被用作一种新型的纳米给药系统。本研究的目的是通过将α-曼戈斯汀配制成α-曼戈斯汀-植物囊体(α-M-PTMs)来增强α-曼戈斯汀的抗增殖效力,并与纯α-曼戈斯汀相比评估其对SKOV-3卵巢癌细胞的影响。利用透射电子显微镜对优化配方进行了表征。傅立叶变换红外光谱(FTIR)证实了α-曼戈斯汀与磷脂的结合。与原始α-曼戈斯汀相比,优化后的α-曼戈斯汀-磷脂体配方表现出更强的抗增殖活性。通过评估细胞周期阶段,SKOV-3 细胞聚集在亚 G1 期,进一步证实了这一点。Annexin-V染色显示,α-mangostin-phytosome处理的细胞凋亡活性增强。这与 CASP3(Caspase-3)、BAX(BCL2 相关 X,凋亡调节器)和 TP53 的上调以及 BCL2 mRNA(B 细胞白血病/淋巴瘤 2)的下调有关。此外,我们的数据还表明,ROS(活性氧)的产生、细胞色素-C 的释放以及线粒体膜电位(MMP)的紊乱均有所增强。
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来源期刊
自引率
0.00%
发文量
44
审稿时长
23 weeks
期刊介绍: Future Journal of Pharmaceutical Sciences (FJPS) is the official journal of the Future University in Egypt. It is a peer-reviewed, open access journal which publishes original research articles, review articles and case studies on all aspects of pharmaceutical sciences and technologies, pharmacy practice and related clinical aspects, and pharmacy education. The journal publishes articles covering developments in drug absorption and metabolism, pharmacokinetics and dynamics, drug delivery systems, drug targeting and nano-technology. It also covers development of new systems, methods and techniques in pharmacy education and practice. The scope of the journal also extends to cover advancements in toxicology, cell and molecular biology, biomedical research, clinical and pharmaceutical microbiology, pharmaceutical biotechnology, medicinal chemistry, phytochemistry and nutraceuticals.
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