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盐酸西那卡塞纳米乳剂的制备、表征、生物利用度增强和药效学。

Cinacalcet hydrochloride-nanoemulsion: preparation, characterization, enhanced bioavailability and pharmacodynamics.

机构信息

School of Pharmacy, Nanjing Tech University, Nanjing, China.

出版信息

Eur Rev Med Pharmacol Sci. 2022 Apr;26(8):3010-3024. doi: 10.26355/eurrev_202204_28632.

Abstract

OBJECTIVE

The aim of the study was to improve the bioavailability of Cinacalcet hydrochloride (CLC) and enhance its efficacy by the nanoemulsion drug delivery system.

MATERIALS AND METHODS

First, cinacalcet hydrochloride-nanoemulsion (CLC-NE) was prepared and optimized through the pseudo ternary phase diagram and central composite design response surface methodology (CCD). The release of CLC-NE in vitro was investigated with four different dissolution media, and the bioavailability of CLC-NE in vivo was studied through beagle dogs. Finally, the pharmacodynamics of CLC-NE was evaluated by the rat model of uremia.

RESULTS

Oleic acid, op-10, and PEG-200 were selected as oil phase, emulsifier, and co-emulsifier, respectively. The optimum ratio of oleic acid, op-10, PEG-200, and water was 9.87%, 38.33%, 12.78%, and 39.02%. CLC-NE has similar dissolution rates in different pH media, and the relative bioavailability of CLC-NE was 166.5%. The uremia model showed that CLC-NE could enhance renal function and reduce the excessive phosphorus (P), serum creatinine (Scr), and urea nitrogen (Urea) of model rats, as well as the inhibited increase of fibroblast growth factor-23 (FGF23) and parathyroid hormone (PTH).

CONCLUSIONS

The solubility, bioavailability, and pharmacodynamics of CLC can be significantly improved through the nanoemulsion drug delivery system.

摘要

目的

本研究旨在通过纳米乳液药物传递系统提高盐酸西那卡塞(CLC)的生物利用度并增强其疗效。

材料与方法

首先,通过伪三元相图和中心复合设计响应面法(CCD)制备并优化盐酸西那卡塞纳米乳液(CLC-NE)。通过四种不同的溶出介质研究 CLC-NE 的体外释放,并通过比格犬研究 CLC-NE 的体内生物利用度。最后,通过尿毒症大鼠模型评价 CLC-NE 的药效学。

结果

选择油酸、OP-10 和 PEG-200 分别作为油相、乳化剂和助乳化剂。油酸、OP-10、PEG-200 和水的最佳比例为 9.87%、38.33%、12.78%和 39.02%。CLC-NE 在不同 pH 介质中的溶出速率相似,且 CLC-NE 的相对生物利用度为 166.5%。尿毒症模型表明,CLC-NE 可增强肾功能,降低模型大鼠的过量磷(P)、血清肌酐(Scr)和尿素氮(Urea),以及抑制成纤维细胞生长因子-23(FGF23)和甲状旁腺激素(PTH)的增加。

结论

通过纳米乳液药物传递系统可以显著提高 CLC 的溶解度、生物利用度和药效学。

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