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以甘草甜素为渗透促进剂制备用于皮肤黑色素瘤的5-氟尿嘧啶纳米乳凝胶

Development of nanoemulgel of 5-Fluorouracil for skin melanoma using glycyrrhizin as a penetration enhancer.

作者信息

Gupta Nimish, Gupta G D, Razdan Karan, Albekairi Norah A, Alshammari Abdulrahman, Singh Dilpreet

机构信息

Department of Pharmaceutics, ISF College of Pharmacy, GT Road, Moga 142001, Punjab, India.

University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, India.

出版信息

Saudi Pharm J. 2024 Apr;32(4):101999. doi: 10.1016/j.jsps.2024.101999. Epub 2024 Feb 24.

Abstract

The purpose of this study was to enhance the topical delivery of 5-Fluorouracil (5-FU), a cancer treatment, by developing a nanoemulgel formulation. Glycyrrhizin (GLY), a natural penetration enhancer has been investigated to exhibit synergistic effects with 5-FU in inhibiting melanoma cell proliferation and inducing apoptosis, Hence, GLY, along with suitable lipids was utilized to create an optimized nanoemulsion (NE) based gel. Solubility studies and ternary phase diagram revealed isopropyl myristate (IPM), Span 80, Tween 80 as S and Transcutol P as co-surfactant. IPM demonstrates excellent solubilizing properties facilitates higher drug loading, ensuring efficient delivery to the target site.,The optimized formulation consisting of 40 % IPM, 30 % of mixture of Tween80: Span80 (S) and 15 % Transcutol P provides with a nanometric size of 64.1 ± 5.13 nm and drug loading of 97.3 ± 5.83 %. The optimized formulation observed with no creaming and breakeing of NE and found thermodynamically stable during different stress conditions (temperatures of 4.0 °C and 45.0 °C) and physical thawing (-21.0 ± 0.50 °C to 20.0 ± 0.50 °C). The NE was then transformed into a nanoemulgel (NEG) using 1.5 % w/w Carbopol base and 0.1 % glycyrrhizin. The permeability studies showed significant enhancements in drug permeability with the GLY-based 5-FU-NEG formulation compared to pure 5-FU gel in excised pig skin upto1440 min in PBS 7.4 as receptor media. The IC values for Plain 5-FU gel, 5-FU-NEG, and GLY-based 5-FU-NEG were found to be 20 µg/mL, 1.1 µg/mL, and 0.1 µg/mL, respectively in B16F10 cell lines. The percentage intracellular uptake of GLY-5-FU-NEG and 5-FU-NEG was found to be 44.3 % and 53.6 %, respectively. GLY-based 5-FU-NEG formulation showed alterations in cell cycle distribution, in compared to 5-FU-NE gel. The overall findings suggest that the GLY-based 5-FU-NEG holds promise for improving anti-melanoma activity.

摘要

本研究的目的是通过开发一种纳米乳凝胶制剂来增强癌症治疗药物5-氟尿嘧啶(5-FU)的局部递送。已对天然渗透促进剂甘草酸(GLY)进行了研究,发现其与5-FU在抑制黑色素瘤细胞增殖和诱导凋亡方面具有协同作用。因此,将GLY与合适的脂质一起用于制备一种基于纳米乳液(NE)的优化凝胶。溶解度研究和三元相图表明,肉豆蔻酸异丙酯(IPM)、司盘80、吐温80作为表面活性剂(S),二甲基亚砜作为助表面活性剂。IPM具有优异的增溶性能,有助于提高药物载量,确保有效递送至靶部位。由40% IPM、30%吐温80:司盘80混合物(S)和15%二甲基亚砜组成的优化制剂,纳米尺寸为64.1±5.13nm,药物载量为97.3±5.83%。优化后的制剂未观察到纳米乳液的乳析和破裂现象,并且在不同的应激条件下(4.0℃和45.0℃)以及物理解冻(-21.0±0.50℃至20.0±0.50℃)过程中均表现出热力学稳定性。然后,使用1.5% w/w卡波姆基质和0.1%甘草酸将纳米乳液转化为纳米乳凝胶(NEG)。渗透性研究表明,在PBS 7.4作为受体介质的切除猪皮肤中,与纯5-FU凝胶相比,基于GLY的5-FU-NEG制剂在长达1440分钟的时间内药物渗透性有显著提高。在B16F10细胞系中,普通5-FU凝胶、5-FU-NEG和基于GLY的5-FU-NEG的IC值分别为20μg/mL、1.1μg/mL和0.1μg/mL。发现GLY-5-FU-NEG和5-FU-NEG的细胞内摄取百分比分别为44.3%和53.6%。与5-FU-NE凝胶相比,基于GLY的5-FU-NEG制剂显示细胞周期分布发生了改变。总体研究结果表明,基于GLY的5-FU-NEG有望提高抗黑色素瘤活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38b9/10918269/00332db839f0/gr1.jpg

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