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首页> 外文期刊>Advances in Natural Sciences: Nanoscience and Nanotechnology >The dual effect of curcumin nanoparticles encapsulated by 1-3/1-6 β-glucan from medicinal mushrooms Hericium erinaceus and Ganoderma lucidum - IOPscience
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The dual effect of curcumin nanoparticles encapsulated by 1-3/1-6 β-glucan from medicinal mushrooms Hericium erinaceus and Ganoderma lucidum - IOPscience

机译:药用蘑菇猴头灵芝和灵芝中1-3 / 1-6β-葡聚糖包裹的姜黄素纳米颗粒的双重作用-IOPscience

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摘要

Curcumin is a polyphenol from turmeric Curcuma longa L that has been proved to possess numerous biological and pharmaceutical activities, including anti-cancer properties. However, curcumin has only limited clinical applications due to the aqueous insolubility characteristic that reduces its biological availability. On the other hand, using nanoparticles as drug delivery system has potential as it increases solubility of hydrophobic substances such as curcumin. Furthermore, nanoparticles can protect and control release of drug. Therefore, the objective of this project is to prepare nanoparticles by polymeric encapsulating curcumin by 1-3/1-6 β-glucan extracted from Vietnamese mushrooms to increase drug delivery efficiency and biological effect. Method of the preparation is nano-precipitation. The produced curcumin-β-glucan-nanoparticles (NanoGluCur) takes spherical shape with 60–70 nm in diameter. As expected, water solubility of curcumin increases about 180 times, from 0.6 μg ml?1 to 0.11 mg ml?1. Loading capacity of NanoGluCur is 18.16%. In vitro cytotoxicity and anti-tumor promoting effects of NanoGluCur were also investigated. Results revealed that NanoGluCur is able to inhibit the growth of two human cancer cell lines Hep-G2 and LU-1 with IC50 values of 6.82 and 15.53 mg ml?1, respectively, while free curcumin expresses the activity with IC50 values of 7.41 and 18.82 mg ml?1. At the concentration of 40 mg ml?1, NanoGluCur showed anti-tumor promoting effects in reducing tumor size by 59.93% and tumor density by 40.52%, while the percentages caused by pristine curcumin were 41.36% and 29.14%, respectively. These results demonstrated dual effect of 1-3/1-6 β-glucan encapsulated curcumin nanoparticles: higher water solubility and better in vitro anti-cancer effects compared to free curcumin and 1-3/1-6 β-glucan, expectedly. This observation can potentially open a new approach in research and manufacture of functional foods from medicinal mushrooms.
机译:姜黄素是姜黄姜黄中的一种多酚,已被证明具有多种生物学和药学活性,包括抗癌特性。然而,由于水不溶性特征降低了其生物利用度,姜黄素仅有有限的临床应用。另一方面,使用纳米颗粒作为药物递送系统具有潜力,因为它可以增加疏水性物质(如姜黄素)的溶解度。此外,纳米粒子可以保护和控制药物的释放。因此,该项目的目的是通过用越南蘑菇中提取的1-3 / 1-6β-葡聚糖对姜黄素进行聚合物包封来制备纳米粒,以提高药物的递送效率和生物学效果。制备方法是纳米沉淀。产生的姜黄素-β-葡聚糖纳米颗粒(NanoGluCur)呈球形,直径为60-70 nm。如所期望的,姜黄素的水溶性增加了约180倍,从0.6μg/ ml增加到0.11mg / ml。 NanoGluCur的负载能力为18.16%。还研究了NanoGluCur的体外细胞毒性和抗肿瘤促进作用。结果显示,NanoGluCur能够抑制两种人类癌细胞Hep-G2和LU-1的生长,IC50值分别为6.82和15.53 mg ml?1,而游离姜黄素表达活性时IC50值为7.41和18.82。毫克毫升1。在40 mg ml?1的浓度下,NanoGluCur表现出抗肿瘤促进作用,可将肿瘤大小减少59.93%,将肿瘤密度减少40.52%,而由原始姜黄素引起的百分比分别为41.36%和29.14%。这些结果证明了1-3 / 1-6β-葡聚糖封装的姜黄素纳米颗粒的双重作用:与游离姜黄素和1-3 / 1-6β-葡聚糖相比,水溶性更高,体外抗癌效果更好。这一观察结果可能会为研究和生产药用蘑菇功能性食品开辟新的途径。

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