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来自Benth. & Hook.f. ex Miers(夹竹桃科)的生物碱通过半胱天冬酶途径诱导人胃癌细胞凋亡。

Alkaloid from Benth. & Hook.f. ex Miers (Apocynaceae) Induce Apoptosis by Caspase Pathway in Human Gastric Cancer Cells.

作者信息

Carmo Bastos Mirian Letícia, Silva-Silva João Victor, Neves Cruz Jorddy, Palheta da Silva Amanda Roberta, Bentaberry-Rosa Alexandre Augusto, da Costa Ramos Gisele, de Sousa Siqueira José Edson, Coelho-Ferreira Márlia Regina, Percário Sandro, Santana Barbosa Marinho Patrícia, Marinho Andrey Moacir do Rosario, de Oliveira Bahia Marcelo, Dolabela Maria Fâni

机构信息

Post-Graduate Program in Biodiversity and Biotechnology, Federal University of Pará, Belém 66075-110, PA, Brazil.

Post-Graduate Program in Pharmaceutical Sciences, Federal University of Pará, Belém 66075-110, PA, Brazil.

出版信息

Pharmaceuticals (Basel). 2023 May 18;16(5):765. doi: 10.3390/ph16050765.

Abstract

Gastric cancer is among the major causes of death from neoplasia leading causes of death worldwide, with high incidence rates and problems related to its treatment. Here, we outline how exerts antitumor activity on the ACP02 cell line (human gastric adenocarcinoma) and the mechanism of cell death. The ethanol extract and fractions, neutral fraction and alkaloid fraction, were characterized by thin-layer chromatography and HPLC-DAD, yielding an alkaloid (geissoschizoline N4-methylchlorine) identified by NMR. The cytotoxicity activity of the samples (ethanol extract, neutral fraction, alkaloid fraction, and geissoschizoline N4-methylchlorine) in HepG2 and VERO cells was determined by MTT. The ACP02 cell line was used to assess the anticancer potential. Cell death was quantified with the fluorescent dyes Hoechst 33342, propidium iodide, and fluorescein diacetate. The geissoschizoline N4-methylchlorine was evaluated in silico against caspase 3 and 8. In the antitumor evaluation, there was observed a more significant inhibitory effect of the alkaloid fraction (IC50 18.29 µg/mL) and the geissoschizoline N4-methylchlorine (IC 12.06 µg/mL). However, geissoschizoline N4-methylchlorine showed lower cytotoxicity in the VERO (CC 476.0 µg/mL) and HepG2 (CC 503.5 µg/mL) cell lines, with high selectivity against ACP02 cells (SI 39.47 and 41.75, respectively). The alkaloid fraction showed more significant apoptosis and necrosis in 24 h and 48 h, with increased necrosis in higher concentrations and increased exposure time. For the alkaloid, apoptosis and necrosis were concentration- and time-dependent, with a lower necrosis rate. Molecular modeling studies demonstrated that geissoschizoline N4-methylchlorine could occupy the active site of caspases 3 and 8 energetically favorably. The results showed that fractionation contributed to the activity with pronounced selectivity for ACP02 cells, and geissoschizoline N4-methylchlor is a promising candidate for caspase inhibitors of apoptosis in gastric cancer. Thus, this study provides a scientific basis for the biological functions of , as well as demonstrates the potential of the geissoschizoline N4-methylchlorine in the treatment of gastric cancer.

摘要

胃癌是全球肿瘤相关主要死因之一,发病率高且治疗存在问题。在此,我们概述了[提取物名称未给出]对ACP02细胞系(人胃腺癌)的抗肿瘤活性及细胞死亡机制。乙醇提取物及其馏分、中性馏分和生物碱馏分通过薄层色谱和HPLC - DAD进行表征,经NMR鉴定得到一种生物碱(geissoschizoline N4 - 甲基氯)。通过MTT法测定样品(乙醇提取物、中性馏分、生物碱馏分和geissoschizoline N4 - 甲基氯)在HepG2和VERO细胞中的细胞毒性活性。使用ACP02细胞系评估抗癌潜力。用荧光染料Hoechst 33342、碘化丙啶和荧光素二乙酸对细胞死亡进行定量。对geissoschizoline N4 - 甲基氯进行了针对半胱天冬酶3和8的计算机模拟评估。在抗肿瘤评估中,观察到生物碱馏分(IC50 18.29 µg/mL)和geissoschizoline N4 - 甲基氯(IC 12.06 µg/mL)具有更显著的抑制作用。然而,geissoschizoline N4 - 甲基氯在VERO(CC 476.0 µg/mL)和HepG2(CC 503.5 µg/mL)细胞系中显示出较低的细胞毒性,对ACP02细胞具有高选择性(SI分别为39.47和41.75)。生物碱馏分在24小时和48小时显示出更显著的凋亡和坏死,在较高浓度和更长暴露时间下坏死增加。对于生物碱,凋亡和坏死呈浓度和时间依赖性,坏死率较低。分子模拟研究表明,geissoschizoline N4 - 甲基氯能够以能量有利的方式占据半胱天冬酶3和8的活性位点。结果表明,分级分离有助于提高对ACP02细胞的活性和选择性,geissoschizoline N4 - 甲基氯是胃癌凋亡半胱天冬酶抑制剂的有希望的候选物。因此,本研究为[提取物名称未给出]的生物学功能提供了科学依据,同时证明了geissoschizoline N4 - 甲基氯在胃癌治疗中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ea2/10222982/6808be36c597/pharmaceuticals-16-00765-g001.jpg

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