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通过柔性纳米脂质体配方提高姜黄素的稳定性和释放率

Improvement in Curcumin's Stability and Release by Formulation in Flexible Nano-Liposomes.

作者信息

Chen Hua-Wei, Chen Su-Der, Wu Hung-Ta, Cheng Chun-Hung, Chiou Chyow-San, Chen Wei-Ting

机构信息

Department of Chemical and Materials Engineering, National Ilan University, Yilan 260, Taiwan.

Department of Food Science, National Ilan University, Yilan 260, Taiwan.

出版信息

Nanomaterials (Basel). 2024 Nov 17;14(22):1836. doi: 10.3390/nano14221836.

Abstract

Curcumin is utilized extensively as Chinese medicine in Asia due to its antioxidant, antimicrobial, and inflammatory activities. However, its use has the challenges of low oral bioavailability and high heat sensitivity. The aim of this research was to produce flexible nano-liposomes containing curcumin using an innovative approach of ethanol injection and Tween 80 to enhance the stability and preservation of curcumin. The mean particle size, encapsulation efficiency, thermal degradation, storage stability, and curcumin release in flexible nano-liposomes were also investigated. We found that the mean particle size of curcumin-loaded flexible nano-liposome decreased from 278 nm to 27.6 nm. At the same time, the Tween 80 concentration increased from 0 to 0.15 wt%, which corresponded with the results of transmission electron microscopy (TEM) morphology analyses, and particle size decreased with an enhancement in Tween 80 concentration. Further, pure curcumin was quickly released within one hour at 37 °C, and first-order kinetics matched with its release curve. However, curcumin encapsulated in flexible nano-liposomes showed a slow release of 71.24% within 12 h, and a slower release pattern matched with the Higuchi model over 24 h, ultimately reaching 84.63% release. Hence, flexible nano-liposomes of curcumin made by a combination of ethanol injection and Tween 80 addition prevented the thermal degradation of curcumin, and enhanced its storage stability and preservation for future drug delivery applications.

摘要

姜黄素因其抗氧化、抗菌和抗炎活性在亚洲被广泛用作中药。然而,其应用面临口服生物利用度低和热敏感性高的挑战。本研究的目的是采用乙醇注射和吐温80的创新方法制备含姜黄素的柔性纳米脂质体,以提高姜黄素的稳定性和保存性。还研究了柔性纳米脂质体中姜黄素的平均粒径、包封率、热降解、储存稳定性和释放情况。我们发现,载姜黄素柔性纳米脂质体的平均粒径从278 nm降至27.6 nm。同时,吐温80浓度从0增加到0.15 wt%,这与透射电子显微镜(TEM)形态分析结果一致,且粒径随吐温80浓度增加而减小。此外,纯姜黄素在37℃下1小时内迅速释放,其释放曲线符合一级动力学。然而,包裹在柔性纳米脂质体中的姜黄素在12小时内缓慢释放71.24%,在24小时内释放模式更慢,符合Higuchi模型,最终释放率达到84.63%。因此,通过乙醇注射和添加吐温80制备的姜黄素柔性纳米脂质体可防止姜黄素热降解,提高其储存稳定性,为未来药物递送应用提供保障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a09f/11597254/9f473044b8de/nanomaterials-14-01836-g001.jpg

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