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抗真菌药物氟胞嘧啶/氟胞嘧啶共晶的再利用靶向前列腺癌的细胞凋亡和炎症信号通路的抗癌活性。

Repurposing of Antifungal Drug Flucytosine/Flucytosine Cocrystals for Anticancer Activity against Prostate Cancer Targeting Apoptosis and Inflammatory Signaling Pathways.

机构信息

Centre for X-ray Crystallography, Department of Analytical & Structural Chemistry, CSIR-Indian Institute of Chemical Technology, Hyderabad 500 007, India.

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

出版信息

Mol Pharm. 2024 May 6;21(5):2577-2589. doi: 10.1021/acs.molpharmaceut.4c00156. Epub 2024 Apr 22.

Abstract

This study aimed to repurpose the antifungal drug flucytosine (FCN) for anticancer activity together with cocrystals of nutraceutical coformers sinapic acid (SNP) and syringic acid (SYA). The cocrystal screening experiments with SNP resulted in three cocrystal hydrate forms in which two are polymorphs, namely, FCN-SNP F-I and FCN-SNP F-II, and the third one with different stoichiometry in the asymmetric unit (1:2:1 ratio of FCN:SNP:HO, FCN-SNP F-III). Cocrystallization with SYA resulted in two hydrated cocrystal polymorphs, namely, FCN-SYA F-I and FCN-SYA F-II. All the cocrystal polymorphs were obtained concomitantly during the slow evaporation method, and one of the polymorphs of each system was produced in bulk by the slurry method. The interaction energy and lattice energies of all cocrystal polymorphs were established using solid-state DFT calculations, and the outcomes correlated with the experimental results. Further, the in vitro cytotoxic activity of the cocrystals was determined against DU145 prostate cancer and the results showed that the FCN-based cocrystals (FCN-SNP F-III and FCN-SYA F-I) have excellent growth inhibitory activity at lower concentrations compared with parent FCN molecules. The prepared cocrystals induce apoptosis by generating oxidative stress and causing nuclear damage in prostate cancer cells. The Western blot analysis also depicted that the cocrystals downregulate the inflammatory markers such as NLRP3 and caspase-1 and upregulate the intrinsic apoptosis signaling pathway marker proteins, such as Bax, p53, and caspase-3. These findings suggest that the antifungal drug FCN can be repurposed for anticancer activity.

摘要

本研究旨在将抗真菌药物氟胞嘧啶(FCN)与营养类共晶形成剂芥子酸(SNP)和丁香酸(SYA)一起用于抗癌活性。与 SNP 进行的共晶筛选实验产生了三种共晶水合物形式,其中两种是多晶型物,即 FCN-SNP F-I 和 FCN-SNP F-II,第三种在不对称单元中具有不同的化学计量比(FCN:SNP:HO 的 1:2:1 比例,FCN-SNP F-III)。与 SYA 共晶化产生了两种水合共晶多晶型物,即 FCN-SYA F-I 和 FCN-SYA F-II。所有共晶多晶型物都是在缓慢蒸发方法中同时获得的,每个系统的一种多晶型物是通过浆料方法批量生产的。使用固态 DFT 计算确定了所有共晶多晶型物的相互作用能和晶格能,结果与实验结果相关。此外,还测定了共晶对 DU145 前列腺癌细胞的体外细胞毒性活性,结果表明,与母体 FCN 分子相比,基于 FCN 的共晶(FCN-SNP F-III 和 FCN-SYA F-I)在较低浓度下具有优异的生长抑制活性。所制备的共晶通过产生氧化应激和导致前列腺癌细胞核损伤来诱导细胞凋亡。Western blot 分析还表明,共晶下调 NLRP3 和 caspase-1 等炎症标志物,并上调 Bax、p53 和 caspase-3 等内在凋亡信号通路标志物蛋白。这些发现表明,抗真菌药物 FCN 可被重新用于抗癌活性。

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