首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Green synthesis of chicory (Cichorium intybus L.) Chitosan nanoparticles and evaluation of their anti-fungal, anti-hemolytic, and anti-cancer activities
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Green synthesis of chicory (Cichorium intybus L.) Chitosan nanoparticles and evaluation of their anti-fungal, anti-hemolytic, and anti-cancer activities

机译:菊苣(Cichorium intybus L.)的绿色合成壳聚糖纳米颗粒及其抗真菌、抗溶血和抗癌活性的评价

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摘要

Chicory (Cichorium intybus L.) is widely consumed as a food plant in many regions of the world and has been involved in traditional medicine due to its unique contents of phytochemicals. We aimed to investigate the anti-fungal, anti-hemolytic, and anti-cancer activities of chicory roots and leaves ethanolic extracts, and their Chitosan nanoparticles (Chit NPs) formulations. The ethanolic extract of chicory roots and leaves were microencapsulated into Chit NPs. The anti-hemolytic, anti-fungal, and anti-cancer activity of chicory extracts and their Chit-NPs were investigated, along with an in vitro toxicological study. Chicory extracts encapsulation into Chit NPs increased their anti-fungal activity against two fungal pathogens, Candida albicans and Aspergillus flavus. Chicory extracts and their Chit NPs appeared strong anti-hemolytic activity in hypotonic media. Due to microencapsulation of roots and leaves extracts into Chit NPs, the IC50 was decreased 2.49 and 2.6-folds in HepG2 and MCF-7 cell lines, and 6.31 and 5.50-folds in HepG2 and MCF-7 cell lines, respectively. The in vitro toxicological study revealed that the IC50 of chicory roots (56.84 +/- 6.4 mu g/ml) and leaves (45.51 +/- 4.2 mu g/ml) decreased 8.45 and 6.77-folds in the normal human fibroblasts (WI38) cell line, compared to Doxorubicin (6.72 +/- 0.5 mu g/ml). Microencapsulation of extracts into Chit NPs increased their toxicity 2.43-folds for Chit-Roots NPs (IC50 = 23.35 +/- 2.3 mu g/ml) and 1.22-fold for Chit-Leaves NPs (IC50 = 37.29 +/- 2.9 mu g/ml). Chicory-Chit NPs possess promising anti-cancer and anti-hemolytic activities. It is worth for further testing their efficacy and toxicity in pre-clinical animal models as well as clinical trials.
机译:菊苣(Cichorium intybus L.)在世界许多地区被广泛用作食用植物,并因其独特的植物化学物质含量而参与传统医学。本研究旨在研究菊苣根叶乙醇提取物及其壳聚糖纳米颗粒(Chit NPs)制剂的抗真菌、抗溶血和抗癌活性。将菊苣根和叶的乙醇提取物微胶囊化到Chit NPs中。研究了菊苣提取物及其Chit-NPs的抗溶血、抗真菌和抗癌活性,并进行了体外毒理学研究。菊苣提取物包封在Chit NPs中增加了其对两种真菌病原体(白色念珠菌和黄曲霉)的抗真菌活性。菊苣提取物及其Chit NPs在低渗介质中表现出较强的抗溶血活性。由于根和叶提取物微胶囊化到 Chit NPs 中,HepG2 和 MCF-7 细胞系的 IC50 分别降低了 2.49 倍和 2.6 倍,HepG2 和 MCF-7 细胞系的 IC50 分别降低了 6.31 倍和 5.50 倍。体外毒理学研究表明,菊苣根(56.84 +/- 6.4 μ g/ml)和叶片(45.51 +/- 4.2 μ g/ml)的IC50在正常人成纤维细胞(WI38)细胞系中分别降低了8.45倍和6.77倍,与阿霉素(6.72 +/- 0.5 μ g/ml)相比。将提取物微胶囊化到 Chit NPs 中,其对 Chit-Roots NPs 的毒性增加了 2.43 倍 (IC50 = 23.35 +/- 2.3 μ g/ml) 和 1.Chit-Leaves NPs 的 22 倍 (IC50 = 37.29 +/- 2.9 μ g/ml)。菊苣NPs具有很有前途的抗癌和抗溶血活性。值得在临床前动物模型和临床试验中进一步测试它们的疗效和毒性。

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