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载药弹性纳米囊泡经皮给药递送:通过抑制 p38 MAPK 信号通路减轻弗伐他汀钠治疗大鼠弗氏完全佐剂诱导的类风湿关节炎。

Transdermal delivery of fluvastatin sodium tailored spanlastic nanovesicles: mitigated Freund's adjuvant-induced rheumatoid arthritis in rats through suppressing p38 MAPK signaling pathway.

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Beni-Suef University, Beni-Suef, Egypt.

Department of Pharmaceutics and Clinical Pharmacy, Faculty of Pharmacy, Nahda University, Beni-Suef, Egypt.

出版信息

Drug Deliv. 2019 Dec;26(1):1140-1154. doi: 10.1080/10717544.2019.1686087.

Abstract

The current study aimed to encapsulate fluvastatin sodium (FVS), a member of the statins family possessing pleiotropic effects in rheumatoid arthritis (RA), into spanlastic nanovesicles (SNVs) for transdermal delivery. This novel delivery could surmount FVS associated oral encumbrances such as apparent first-pass effect, poor bioavailability and short elimination half-life, hence, accomplishing platform for management of RA. To consummate this objective, FVS-loaded SNVs were elaborated by thin film hydration method, utilizing either Span 60 or Span 80, together with Tween 80 or Brij 35 as an edge activator according to full factorial design (2). Applying Design-Expert software, the influence of formulation variables on SNVs physicochemical properties and the optimized formulation selection were explored. Additionally, the pharmacokinetic studies were scrutinized in rats. Furthermore, in Freund's adjuvant-induced arthritis, rheumatoid markers, TNF-α, IL-10, p38 MAPK, and antioxidant parameters were measured. The optimum SNVs were nano-scaled spherical vesicles (201.54 ± 9.16 nm), having reasonable entrapment efficiency (71.28 ± 2.05%), appropriate release over 8 h (89.45 ± 3.64%) and adequate permeation characteristics across the skin (402.55 ± 27.48 µg/cm). The pharmacokinetic study disclosed ameliorated bioavailability of the optimum SNVs gel by 2.79- and 4.59-fold as compared to the oral solution as well as the traditional gel, respectively. Moreover, it elicited a significant suppression of p38 MAPK expression and also significant improvement of all other measured biomarkers. Concisely, the foregoing findings proposed that SNVs can be auspicious for augmenting FVS transdermal delivery for management of RA.

摘要

本研究旨在将氟伐他汀钠(FVS)封装到具有类风湿关节炎(RA)多效作用的他汀类家族成员中,制成SPAN 弹性纳米囊(SNV)用于经皮给药。这种新的给药方式可以克服 FVS 相关的口服障碍,如明显的首过效应、生物利用度差和半衰期短,从而为 RA 的治疗提供平台。为了实现这一目标,采用薄膜水化法制备了载 FVS 的 SNV,使用 Span 60 或 Span 80 与 Tween 80 或 Brij 35 作为边缘活性剂,根据完全因子设计(2)进行。应用 Design-Expert 软件,探讨了制剂变量对 SNV 理化性质的影响及优化制剂的选择。此外,还在大鼠中进行了药代动力学研究。此外,在弗氏完全佐剂诱导的关节炎中,测量了类风湿标志物、TNF-α、IL-10、p38 MAPK 和抗氧化参数。优化的 SNV 为纳米级球形囊泡(201.54±9.16nm),具有合理的包封效率(71.28±2.05%),8 小时内适当释放(89.45±3.64%),皮肤渗透特性良好(402.55±27.48µg/cm)。药代动力学研究表明,与口服溶液和传统凝胶相比,优化 SNV 凝胶的生物利用度分别提高了 2.79 倍和 4.59 倍。此外,它还显著抑制了 p38 MAPK 的表达,并显著改善了所有其他测量的生物标志物。总之,上述结果表明,SNV 可以提高 FVS 的经皮传递,用于 RA 的治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80a3/6882467/e79b5fe461c3/IDRD_A_1686087_F0001_C.jpg

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