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通过无定形二元固体分散体增强荆芥宁的生物制药属性。

Enhancing Biopharmaceutical Attributes of Khellin by Amorphous Binary Solid Dispersions.

机构信息

Shobhaben Pratapbhai Patel School of Pharmacy & Technology Management, SVKM's NMIMS, V.L. Mehta Road, Vile Parle (W), Mumbai, 400056, India.

出版信息

AAPS PharmSciTech. 2021 Oct 27;22(8):260. doi: 10.1208/s12249-021-02126-3.

Abstract

Khellin, a furanochromone isolated from fruits and seeds of Ammi visnaga, is traditionally used in many eastern Mediterranean countries. The plant decoction and the crystalline substance khellin have many pharmacological activities. For instance, it acts as a bronchodilator and also relieves renal colic and urethral stones, etc. However, the low water solubility (~ 120 µg/mL) and low bioavailability limit its therapeutic application. Thus, the present research explores the development of its binary and ternary solid dispersion formulations to improve its solubility and dissolution behavior. A 24-well plate miniaturized protocol was established to identify the optimal hydrophilic polymer to prepare its solid dispersions. PEG-4000 was recognized as the favorable hydrophilic carrier in preparation of solid dispersion, SSB17. The formulation displayed ~ five-fold enhancement in the aqueous solubility of khellin. The binary solid dispersion SSB17 was manufactured at a gram scale and evaluated using H-NMR, C-NMR, FT-IR, p-XRD, SEM, DSC, in vitro dissolution, and predicted pharmacokinetics. The quantitative dissolution data of SSB17 demonstrated ~ 2-3-fold improvement in AUC at physiological pH conditions. These conclusions highlight the basis for further preclinical studies on solid dispersions of khellin with improved biopharmaceutical properties.

摘要

从 Ammi visnaga 的果实和种子中分离得到的呋喃并色酮 Khellin,在许多东地中海国家被传统使用。该植物的煎剂和结晶物质 Khellin 具有多种药理学活性。例如,它具有支气管扩张作用,还能缓解肾绞痛和尿道结石等。然而,低水溶性(~120µg/mL)和低生物利用度限制了其治疗应用。因此,目前的研究探索了开发其二元和三元固体分散体制剂以提高其溶解度和溶解行为。建立了 24 孔板微型化方案来确定最佳的亲水聚合物来制备其固体分散体。PEG-4000 被认为是制备固体分散体 SSB17 的有利亲水载体。该配方使 Khellin 的水溶解度提高了约五倍。在克级规模上制造了二元固体分散体 SSB17,并使用 H-NMR、C-NMR、FT-IR、p-XRD、SEM、DSC、体外溶解和预测药代动力学进行了评估。SSB17 的定量溶解数据表明,在生理 pH 条件下 AUC 提高了 2-3 倍。这些结论为进一步研究具有改善的生物药剂学特性的 Khellin 固体分散体的临床前研究奠定了基础。

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