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尼罗替辛对宫颈癌细胞的全面凋亡评估:一种来自(Wall.)Parker的四环三萜类化合物。

A comprehensive apoptotic assessment of niloticin in cervical cancer cells: a tirucallane-type triterpenoid from (Wall.) Parker.

作者信息

Joseph Anuja Gracy, Biji Mohanan, Murali Vishnu Priya, Sherin Daisy R, Valsan Alisha, Sukumaran Vimalkumar P, Radhakrishnan Kokkuvayil Vasu, Maiti Kaustabh Kumar

机构信息

CSIR-National Institute for Interdisciplinary Science and Technology (CSIR-NIIST), Chemical Sciences and Technology Division (CSTD), Organic Chemistry Section Industrial Estate Thiruvananthapuram 695019 India

Academy of Scientific and Innovative Research (AcSIR) Ghaziabad 201002 India.

出版信息

RSC Med Chem. 2024 Aug 8;15(10):3444-59. doi: 10.1039/d4md00318g.

Abstract

Pharmacologically active small organic molecules derived from natural resources are prominent drug candidates due to their inherent structural diversity. Herein, we explored one such bioactive molecule, niloticin, which is a tirucallane-type triterpenoid isolated from the stem barks of (Wall.) Parker. After initial screening with other isolated compounds from the same plant, niloticin demonstrated selective cytotoxicity against cervical cancer cells (HeLa) with an IC value of 11.64 μM. Whereas the compound exhibited minimal cytotoxicity in normal epithelial cell line MCF-10A, with an IC value of 83.31 μM. Subsequently, molecular docking studies of niloticin based on key apoptotic proteins such as p53, Fas, FasL, and TNF β revealed striking binding affinity, reflecting docking scores of -7.2, -7.1, -6.8, and -7.2. Thus, the binding stability was evaluated through molecular dynamic simulation. In a downstream process, the apoptotic capability of niloticin was effectively validated through fluorimetric assays, encompassing nuclear fragmentation. Additionally, an insightful approach involving surface-enhanced Raman spectroscopy (SERS) re-establishes the occurrence of DNA cleavage during cellular apoptosis. Furthermore, niloticin was observed to induce apoptosis through both intrinsic and extrinsic pathways. This was evidenced by the upregulation of upstream regulatory molecules such as CD40 and TNF, which facilitate the activation of caspase 8. Concurrently, niloticin-induced p53 activation augmented the expression of proapoptotic proteins Bax and Bcl-2 and downregulation of IAPs, leading to the release of cytochrome C and subsequent activation of caspase 9. Therefore, the reflection of mitochondrial-mediated apoptosis is in good agreement with molecular docking studies. Furthermore, the anti-metastatic potential was evidenced by wound area closure and Ki67 expression patterns. This pivotal assessment confirms the possibility of niloticin being a potent anti-cancer drug candidate, and to the best of our knowledge, this is the first comprehensive anticancer assessment of niloticin in HeLa cells.

摘要

源自自然资源的具有药理活性的有机小分子,因其固有的结构多样性而成为引人注目的候选药物。在此,我们探索了一种这样的生物活性分子——尼罗替辛,它是从(Wall.)帕克的茎皮中分离出的一种羽扇豆烷型三萜。在用从同一植物中分离出的其他化合物进行初步筛选后,尼罗替辛对宫颈癌细胞(HeLa)表现出选择性细胞毒性,IC值为11.64 μM。而该化合物在正常上皮细胞系MCF-10A中表现出最小的细胞毒性,IC值为83.31 μM。随后,基于关键凋亡蛋白如p53、Fas、FasL和TNF β对尼罗替辛进行的分子对接研究显示出显著的结合亲和力,对接分数分别为-7.2、-7.1、-6.8和-7.2。因此,通过分子动力学模拟评估了结合稳定性。在下游过程中,通过荧光测定法有效验证了尼罗替辛的凋亡能力,包括核碎裂。此外,一种涉及表面增强拉曼光谱(SERS)的有洞察力的方法重新证实了细胞凋亡过程中DNA裂解的发生。此外,观察到尼罗替辛通过内在和外在途径诱导凋亡。这通过上游调节分子如CD40和TNF的上调得到证明,这些分子促进了半胱天冬酶8的激活。同时,尼罗替辛诱导的p53激活增加了促凋亡蛋白Bax和Bcl-2的表达,并下调了凋亡抑制蛋白,导致细胞色素C的释放和随后半胱天冬酶9的激活。因此,线粒体介导的凋亡反映与分子对接研究结果高度一致。此外,伤口面积闭合和Ki67表达模式证明了其抗转移潜力。这一关键评估证实了尼罗替辛成为一种有效抗癌候选药物的可能性,据我们所知,这是对尼罗替辛在HeLa细胞中进行的首次全面抗癌评估。

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