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Surface decoration by Spirulina polysaccharide enhances the cellular uptake and anticancer efficacy of selenium nanoparticles

机译:螺旋藻多糖的表面修饰增强了硒纳米颗粒的细胞摄取和抗癌功​​效

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摘要

A simple and solution-phase method for functionalization of selenium nanoparticles (SeNPs) with Spirulina polysaccharides (SPS) has been developed in the present study. The cellular uptake and anticancer activity of SPS-SeNPs were also evaluated. Monodisperse and homogeneous spherical SPS-SeNPs with diameters ranging from 20 nm to 50 nm were achieved under optimized conditions, which were stable in the solution phase for at least 3 months. SPS surface decoration significantly enhanced the cellular uptake and cytotoxicity of SeNPs toward several human cancer cell lines. A375 human melanoma cells were found extremely susceptible to SPS-SeNPs with half maximal (50%) inhibitory concentration value of 7.94 μM. Investigation of the underlying mechanisms revealed that SPS-SeNPs inhibited cancer cell growth through induction of apoptosis, as evidenced by an increase in sub-G1 cell population, deoxyribonucleic acid fragmentation, chromatin condensation, and phosphatidylserine translocation. Results suggest that the strategy to use SPS as a surface decorator could be an effective way to enhance the cellular uptake and anticancer efficacy of nanomaterials. SPS-SeNPs may be a potential candidate for further evaluation as a chemopreventive and chemotherapeutic agent against human cancers.
机译:在本研究中开发了一种简单的溶液阶段方法,用于利用螺旋藻多糖(SPS)官能化硒纳米颗粒(SeNPs)。还评估了SPS-SeNPs的细胞摄取和抗癌活性。在优化条件下获得了直径为20 nm至50 nm的单分散和均质球形SPS-SeNPs,它们在溶液相中稳定至少3个月。 SPS表面修饰显着增强了SeNPs对几种人类癌细胞系的细胞摄取和细胞毒性。发现A375人黑素瘤细胞对SPS-SeNPs极为敏感,最大抑制浓度值的一半(7.9%)为7.94μM。对潜在机制的研究表明,SPS-SeNPs通过诱导凋亡来抑制癌细胞的生长,这可以通过亚G1细胞群的增加,脱氧核糖核酸片段化,染色质浓缩和磷脂酰丝氨酸移位来证明。结果表明,使用SPS作为表面修饰剂的策略可能是增强纳米材料的细胞摄取和抗癌功​​效的有效方法。 SPS-SeNPs可能作为抗人类癌症的化学预防剂和化学治疗剂进行进一步评估的潜在候选人。

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