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载有胆汁盐的纳米结构脂质载体的制剂设计、特性分析,及其口服递送绞股蓝皂苷的体内外评价。

Formulation design, characterization, and in vitro and in vivo evaluation of nanostructured lipid carriers containing a bile salt for oral delivery of gypenosides.

机构信息

Department of Pharmacy, Shanghai 9th People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China,

出版信息

Int J Nanomedicine. 2019 Apr 1;14:2267-2280. doi: 10.2147/IJN.S194934. eCollection 2019.

Abstract

BACKGROUND

Gypenosides (GPS) have been used as traditional medicine for centuries with various pharmacological effects. However, its therapeutic effects were restricted owing to the poor lipid and water solubility and low absorption. This study aimed to develop nanostructured lipid carriers (NLCs) containing a bile salt formulation (sodium glycocholate, SGC) for GPS, and to evaluate the potential of the GPS-SGC-NLCs as an oral delivery system.

METHODS

The preparation of GPS-SGC-NLCs was investigated using a single-factor test and a central composite design of response surface methodology. In vitro release and pharmacokinetics studies were used to evaluate the dissolution and bioavailability of GPS. Furthermore, In vivo imaging and in situ intestinal perfusion studies were performed to investigate the absorption of the preparations in the gastrointestinal tract.

RESULTS

The optimised formulation yielded nanoparticles with an approximate diameter of 146.7 nm, polydispersity of 0.137, zeta potential of -56.0 mV, entrapment efficiency of 74.22% and drug loading of 4.89%. An in vitro dissolution analysis revealed the sustained release of contents from GPS-SGC-NLCs over 48 h with 56.4% of the drug released. A pharmacokinetic analysis revealed an 8.5-fold increase of bioavailability of the GPS-SGC-NLCs compared with GPS powder. In vivo imaging and in situ intestinal perfusion studies showed that SGC-NLCs could significantly increase the absorption of GPS in intestinal tract. In vitro cytotoxicity evaluated using Caco-2 cells demonstrated that GPS-SGC-NLCs decrease the cytotoxicity of the drug.

CONCLUSION

The SGC-NLC formulation can significantly improve the absorption of GPS, which provides an effective approach for enhancing the oral absorption of drugs.

摘要

背景

绞股蓝苷(GPS)作为传统药物已有数百年的历史,具有多种药理作用。然而,由于其脂溶性和水溶性差,吸收度低,其治疗效果受到限制。本研究旨在开发含有胆汁盐制剂(甘氨胆酸钠,SGC)的纳米结构脂质载体(NLCs)用于 GPS,并评估 GPS-SGC-NLCs 作为口服给药系统的潜力。

方法

采用单因素试验和响应面法的中心复合设计研究 GPS-SGC-NLCs 的制备。通过体外释放和药代动力学研究评估 GPS 的溶解和生物利用度。此外,进行体内成像和原位肠灌注研究以研究制剂在胃肠道中的吸收情况。

结果

优化的配方得到了大约 146.7nm 直径、0.137 多分散性、-56.0mV 的 Zeta 电位、74.22%的包封效率和 4.89%的载药量的纳米粒子。体外溶出分析显示,GPS-SGC-NLCs 在 48 小时内可持续释放内容物,56.4%的药物释放。药代动力学分析显示,与 GPS 粉末相比,GPS-SGC-NLCs 的生物利用度提高了 8.5 倍。体内成像和原位肠灌注研究表明,SGC-NLCs 可显著增加 GPS 在肠道中的吸收。使用 Caco-2 细胞进行的体外细胞毒性评估表明,GPS-SGC-NLCs 降低了药物的细胞毒性。

结论

SGC-NLC 制剂可显著提高 GPS 的吸收度,为增强药物的口服吸收提供了有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c04/6448534/2b546a904e04/ijn-14-2267Fig1.jpg

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