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双氯芬酸前药自组装成纳米胶束以增强抗炎活性。

Self-assembly of diclofenac prodrug into nanomicelles for enhancing the anti-inflammatory activity.

作者信息

Assali Mohyeddin, Shawahna Ramzi, Alhawareen Raeda, Najajreh Haifa, Rabaya Oraib, Faroun Maryam, Zyoud Ahed, Hilal Hikmat

机构信息

Department of Pharmacy, Faculty of Medicine and Health Sciences, An-Najah National University P.O. Box 7 Nablus Palestine

Department of Physiology, Pharmacology, and Toxicology, Faculty of Medicine and Health Sciences, An-Najah National University P.O. Box 7 Nablus Palestine.

出版信息

RSC Adv. 2021 Jun 24;11(36):22433-22438. doi: 10.1039/d1ra03804d. eCollection 2021 Jun 21.

Abstract

Non-steroidal anti-inflammatory drugs (NSAIDs) are widely prescribed for the treatment of various types of inflammatory conditions. Diclofenac is a very common NSAID that is utilized to relieve pain and reduce fever and, most importantly, inflammation. However, it suffers from low water solubility and a low dissolution profile. Therefore, we aim to develop a new drug delivery system based on the synthesis of amphiphilic structures that are capable of self assembling into nano-micelles which will be a water-soluble delivery system for the diclofenac. The amphiphilic structure consists of a hydrophilic moiety of triethylene glycol (TEG), polyethylene glycol PEG 400, or PEG 600 linked with the hydrophobic drug diclofenac through an ester linkage. The diclofenac derivatives were successfully synthesized as confirmed by nuclear magnetic resonance. Moreover, the formation of the micellar structure of the synthesized amphiphilic derivatives was confirmed by atomic force microscopy obtaining a spherical shape of the micelles with average diameters of 200 nm for Dic-PEG400-Dic, and 110 nm for Dic-PEG600-Dic. The critical micelle concentration has been determined as 2.7 × 10 mg mL for Dic-PEG400-Dic, and 1 × 10 mg mL for Dic-PEG600-Dic. The diclofenac release profile by esterase enzyme was conducted and showed almost complete conversion to free diclofenac within 35 h in the case of Dic-PEG400-Dic micelles and more than 85% of Dic-PEG600-Dic micelles. Then the anti-inflammatory activity was determined by testing the TNF-α production in LPS-stimulated Balb/c mice. Diclofenac micelles significantly suppressed TNF-α production after a 5 mg kg dose was given. The developed micelles showed TNF-α inhibition up to 87.4% and 84% after 48 hours of treatment in the case of Dic-PEG400-Dic and Dic-PEG600-Dic micelles respectively in comparison to 42.3% in the case of diclofenac alone. Dic-PEG400-Dic micelles showed the most potent anti-inflammatory activity with improved TNF-α suppression through time progress. Therefore, the developed nano-micelles provide a facile synthetic approach to enhance diclofenac water solubility, improve the anti-inflammatory effect and achieve a sustained release profile to get better patient compliance.

摘要

非甾体抗炎药(NSAIDs)被广泛用于治疗各种炎症性疾病。双氯芬酸是一种非常常见的NSAIDs,用于缓解疼痛、降低发热,最重要的是减轻炎症。然而,它的水溶性低且溶出度不佳。因此,我们旨在开发一种基于两亲性结构合成的新型药物递送系统,该结构能够自组装成纳米胶束,作为双氯芬酸的水溶性递送系统。两亲性结构由三甘醇(TEG)、聚乙二醇PEG 400或PEG 600的亲水部分通过酯键与疏水药物双氯芬酸相连组成。经核磁共振证实,双氯芬酸衍生物已成功合成。此外,通过原子力显微镜证实了合成的两亲性衍生物形成了胶束结构,Dic-PEG400-Dic胶束的平均直径为200 nm,Dic-PEG600-Dic胶束的平均直径为110 nm。已确定Dic-PEG400-Dic的临界胶束浓度为2.7×10 mg/mL,Dic-PEG600-Dic的临界胶束浓度为1×10 mg/mL。通过酯酶进行了双氯芬酸的释放曲线研究,结果显示,对于Dic-PEG400-Dic胶束,在35小时内几乎完全转化为游离双氯芬酸,对于Dic-PEG600-Dic胶束,转化率超过85%。然后通过检测脂多糖刺激的Balb/c小鼠中TNF-α的产生来测定抗炎活性。给予5 mg/kg剂量后,双氯芬酸胶束显著抑制了TNF-α的产生。与单独使用双氯芬酸时的42.3%相比,在治疗48小时后,Dic-PEG400-Dic和Dic-PEG600-Dic胶束分别显示出高达87.4%和84%的TNF-α抑制率。随着时间的推移,Dic-PEG400-Dic胶束显示出最有效的抗炎活性,对TNF-α的抑制作用有所改善。因此,所开发的纳米胶束提供了一种简便的合成方法,可提高双氯芬酸的水溶性,改善抗炎效果并实现缓释曲线,以获得更好的患者依从性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3440/9034210/dc0ec618278e/d1ra03804d-s1.jpg

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