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Solamargine, a bioactive steroidal alkaloid isolated from Solanum aculeastrum induces non-selective cytotoxicity and P-glycoprotein inhibition

机译:Solamargine是一种从茄果茄中分离出来的具有生物活性的甾体生物碱,可诱导非选择性细胞毒性和P-糖蛋白抑制作用

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Solanum aculeastrum fruits are used by some cancer sufferers as a form of alternative treatment. Scientific literature is scarce concerning its anticancer activity, and thus the aim of the study was to assess the in vitro anticancer and P-glycoprotein inhibitory potential of extracts of S. aculeastrum fruits. Furthermore, assessment of the combinational effect with doxorubicin was also done. The crude extract was prepared by ultrasonic maceration. Liquid-liquid extraction yielded one aqueous and two organic fractions. Bioactive constituents were isolated from the aqueous fraction by means of column chromatography, solid phase extraction and preparative thin-layer chromatography. Confirmation of bioactive constituent identity was done by nuclear magnetic resonance and ultra-performance liquid chromatography mass spectrometry. The crude extract and fractions were assessed for cytotoxicity and P-glycoprotein inhibition in both cancerous and non-cancerous cell lines using the sulforhodamine B and rhodamine-123 assays, respectively. Both the crude extract and aqueous fraction was cytotoxic to all cell lines, with the SH-SY5Y neuroblastoma cell line being most susceptible to exposure (IC50?=?10.72?μg/mL [crude], 17.21?μg/mL [aqueous]). Dose-dependent P-glycoprotein inhibition was observed for the crude extract (5.9 to 18.9-fold at 100?μg/mL) and aqueous fraction (2.9 to 21.2 at 100?μg/mL). The steroidal alkaloids solamargine and solanine were identified. While solanine was not bioactive, solamargine displayed an IC50 of 15.62?μg/mL, and 9.1-fold P-glycoprotein inhibition at 100?μg/mL against the SH-SY5Y cell line. Additive effects were noted for combinations of doxorubicin against the SH-SY5Y cell line. The crude extract and aqueous fraction displayed potent non-selective cytotoxicity and noteworthy P-glycoprotein inhibition. These effects were attributed to solamargine. P-glycoprotein inhibitory activity was only present at concentrations higher than those inducing cytotoxicity, and thus does not appear to be the likely mechanism for the enhancement of doxorubicin’s cytotoxicity. Preliminary results suggest that non-selective cytotoxicity may hinder drug development, however, further assessment of the mode of cell death is necessary to determine the route forward.
机译:茄属水果被某些癌症患者用作替代治疗的一种形式。关于其抗癌活性的科学文献稀少,因此,该研究的目的是评估尖头葡萄球菌果实提取物的体外抗癌和P-糖蛋白抑制潜力。此外,还评估了与阿霉素的联合作用。通过超声浸渍制备粗提取物。液-液萃取得到一种含水部分和两种有机部分。通过柱色谱,固相萃取和制备型薄层色谱法从含水部分中分离出生物活性成分。通过核磁共振和超高效液相色谱质谱法确认生物活性成分的身份。分别使用磺基若丹明B和罗丹明123分析法评估了粗提物和馏分在癌细胞和非癌细胞系中的细胞毒性和P-糖蛋白抑制作用。粗提物和水部分均对所有细胞系均具有细胞毒性,其中SH-SY5Y神经母细胞瘤细胞系最容易暴露(IC50≤10.72μg/ mL,17.21μg/ mL)。 。对于粗提取物(100?μg/ mL,为5.9至18.9倍)和水相(100?μg/ mL,为2.9至21.2),观察到剂量依赖性P-糖蛋白抑制作用。确定了甾体生物碱Solamargine和Solanine。尽管茄碱没有生物活性,但茄胺精对SH-SY5Y细胞系的IC50为15.62?μg/ mL,在100?μg/ mL时P-糖蛋白抑制率为9.1倍。注意到阿霉素对SH-SY5Y细胞系的组合具有加性作用。粗提物和水部分显示出强力的非选择性细胞毒性和值得注意的P-糖蛋白抑制作用。这些作用归因于多聚精氨酸。 P-糖蛋白抑制活性仅以高于诱导细胞毒性的浓度存在,因此似乎不是增强阿霉素细胞毒性的可能机制。初步结果表明,非选择性细胞毒性可能会阻碍药物的开发,但是,必须进一步评估细胞死亡的模式才能确定前进的方向。

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