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姜黄素负载的聚乙二醇化纳米乳剂设计用于保持抗氧化作用和提高生物利用度:一项在大鼠中的初步研究。

Curcumin Loaded PEGylated Nanoemulsions Designed for Maintained Antioxidant Effects and Improved Bioavailability: A Pilot Study on Rats.

机构信息

Department of Pharmaceutical Technology and Cosmetology, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11221 Belgrade, Serbia.

DCP Hemigal, Tekstilna 97, 16000 Leskovac, Serbia.

出版信息

Int J Mol Sci. 2021 Jul 27;22(15):7991. doi: 10.3390/ijms22157991.

Abstract

The current study describes the experimental design guided development of PEGylated nanoemulsions as parenteral delivery systems for curcumin, a powerful antioxidant, as well as the evaluation of their physicochemical characteristics and antioxidant activity during the two years of storage. Experimental design setup helped development of nanoemulsion templates with critical quality attributes in line with parenteral application route. Curcumin-loaded nanoemulsions showed mean droplet size about 105 nm, polydispersity index <0.15, zeta potential of -40 mV, and acceptable osmolality of about 550 mOsm/kg. After two years of storage at room temperature, all formulations remained stable. Moreover, antioxidant activity remained intact, as demonstrated by DPPH (IC50 values 0.078-0.075 mg/mL after two years) and FRAPS assays. In vitro release testing proved that PEGylated phospholipids slowed down the curcumin release from nanoemulsions. The nanoemulsion carrier has been proven safe by the MTT test conducted with MRC-5 cell line, and effective on LS cell line. Results from the pharmacokinetic pilot study implied the PEGylated nanoemulsions improved plasma residence of curcumin 20 min after intravenous administration, compared to the non-PEGylated nanoemulsion (two-fold higher) or curcumin solution (three-fold higher). Overall, conclusion suggests that developed PEGylated nanoemulsions present an acceptable delivery system for parenteral administration of curcumin, being effective in preserving its stability and antioxidant capacity at the level highly comparable to the initial findings.

摘要

本研究描述了基于实验设计的 PEG 化纳米乳作为姜黄素的一种新型给药系统的开发过程,同时还评估了其在两年贮存期内的理化特性和抗氧化活性。实验设计方案有助于开发符合注射途径的关键质量属性的纳米乳模板。载姜黄素纳米乳的平均粒径约为 105nm,多分散指数<0.15,Zeta 电位为-40mV,渗透压约为 550mOsm/kg。在室温下贮存两年后,所有制剂均保持稳定。此外,通过 DPPH(两年后 IC50 值为 0.078-0.075mg/mL)和 FRAPS 测定法证明抗氧化活性仍然完整。体外释放试验表明,PEG 化磷脂可减缓纳米乳中姜黄素的释放。MTT 试验表明,载药纳米乳载体对 MRC-5 细胞系是安全的,对 LS 细胞系是有效的。药代动力学初步研究结果表明,与非 PEG 化纳米乳(提高 2 倍)或姜黄素溶液(提高 3 倍)相比,静脉注射后 20 分钟,PEG 化纳米乳可提高姜黄素的血浆半衰期。总体而言,研究结果表明,开发的 PEG 化纳米乳为姜黄素的注射给药提供了一种可接受的给药系统,在保持其稳定性和抗氧化能力方面的效果与初始发现高度可比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3369/8347926/f262091e61ec/ijms-22-07991-g001.jpg

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