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Curcumin-Loaded Mesoporous Silica Nanoparticles Markedly Enhanced Cytotoxicity in Hepatocellular Carcinoma Cells

机译:姜黄素负载的介孔二氧化硅纳米粒子明显增强肝癌细胞中的细胞毒性。

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摘要

Curcumin, a natural polyphenol extracted from a perennial herb Curcuma longa has been verified for many physiological activities such as anti-oxidant, anti-inflammatory, and anti-tumor properties. The direct use of curcumin cytotoxicity studies are limited due to its unstable chemical structure, low bioavailability, easy oxidation, and degradation by ultraviolet (UV) light etc. Trying to overcome this problem, silica-encapsulated curcumin nanoparticles (SCNP) and chitosan with silica co-encapsulated curcumin nanoparticles (CSCNP) were prepared by silicification and biosilicification methods, respectively, and encapsulated curcumin within it. We investigated the antitumor properties of SCNP and CSCNP on different tumor cell lines. Scanning electron microscopy (SEM) analysis revealed that both SCNP and CSCNP were almost spherical in shape and the average particle size of CSCNP was 75.0 ± 14.62 nm, and SCNP was 61.7 ± 23.04 nm. The results show that CSCNP has more anti-oxidant activity as compared to curcumin and SCNP. The higher cytotoxicity towards different cancerous cell lines was also observed in CSCNP treated tumor cells. It was noted that the SCNP and CSCNP has a high percentage of IC50 values in Hep G2 cells. The encapsulation of curcumin improved instability, antioxidant activity, and antitumor activity. Our results demonstrated that nanoencapsulation of curcumin with silica and chitosan not only increase curcumin stability but also enhance its cytotoxic activity on hepatocellular carcinoma cells. On the basis of these primary studies, the curcumin-loaded nanoparticles appear to be promising as an innovative therapeutic material for the treatment of tumors.
机译:姜黄素是一种从多年生草本姜黄提取的天然多酚,已被证实具有许多生理活性,例如抗氧化,抗炎和抗肿瘤特性。由于姜黄素的化学结构不稳定,生物利用度低,易氧化以及被紫外线(UV)降解等原因,其直接使用姜黄素的细胞毒性研究受到限制。为克服此问题,二氧化硅封装的姜黄素纳米颗粒(SCNP)和壳聚糖与二氧化硅分别通过硅化和生物硅化方法制备了共包裹的姜黄素纳米颗粒(CSCNP),并将其包裹在其中。我们研究了SCNP和CSCNP在不同肿瘤细胞系上的抗肿瘤特性。扫描电子显微镜(SEM)分析显示SCNP和CSCNP都几乎为球形,并且CSCNP的平均粒径为75.0±14.62nm,SCNP为61.7±23.04nm。结果表明,与姜黄素和SCNP相比,CSCNP具有更高的抗氧化活性。在CSCNP治疗的肿瘤细胞中也观察到对不同癌细胞系的更高的细胞毒性。注意到SCNP和CSCNP在Hep G2细胞中具有较高百分比的IC50值。姜黄素的封装改善了不稳定性,抗氧化活性和抗肿瘤活性。我们的研究结果表明,用二氧化硅和壳聚糖对姜黄素进行纳米包封不仅可以提高姜黄素的稳定性,还可以增强其对肝癌细胞的细胞毒活性。在这些基础研究的基础上,负载姜黄素的纳米颗粒有望作为治疗肿瘤的创新治疗材料。

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