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优化羟丙基甲基纤维素和糊精在难溶性药物冻干纳米混悬剂开发中的应用。

Optimization of Hydroxypropyl Methylcellulose and Dextrin in Development of Dried Nanosuspension for Poorly Water-Soluble Drug.

机构信息

Department of Pharmaceutical Engineering, Inje University, Gimhae 50834, Republic of Korea.

Samyang Biopharmaceuticals Corporation, Seongnam 13488, Republic of Korea.

出版信息

J Nanosci Nanotechnol. 2020 Sep 1;20(9):5813-5818. doi: 10.1166/jnn.2020.17659.

Abstract

The purpose of this study is to identify the effects of a stabilizer and matrix former in the development of a celecoxib dried nanosuspension (DNS) for high dissolution rate and drug loading. Tween 80 and Hydroxypropyl Methylcellulose (HPMC) were used as stabilizers in the bead-milling process and dextrin was used as the matrix former in the spray-drying. Various nanosuspensions (NS) were prepared by varying the ratio of HPMC and dextrin, and the physicochemical properties of each formulation were evaluated for particle size, morphology, drug loading, crystallinity, redispersibility, physical stability and dissolution rate. HPMC efficiently stabilized the NS system and reduced the particle size of NS. The mean particle size of the NS with 0.5% HPMC (w/v) was the smallest (248 nm) of all formulations. Dextrin has been shown to inhibit the increase of particle size efficiently, which is known to occur frequently when NS is being solidified. As the dextrin increased in DNS, the dissolution rates of reconstituted NS were significantly improved. However, it was confirmed that more than the necessary amount of dextrin in DNS reduced the dissolution and drug loading. The dissolution of celecoxib in DNS prepared at the ratio (drug:dextrin, 1:2.5) was almost the highest. The dissolution of optimal formulation was 95.8% at 120 min, which was 2.0-fold higher than that of NS dried without dextrin. In conclusion, these results suggest that the formulation based on Tween 80, HPMC and dextrin may be an effective option for DNS to enhance its dissolution and in vivo oral absorption.

摘要

本研究旨在确定稳定剂和基质形成剂在开发具有高溶解速率和载药量的塞来昔布干纳米混悬剂(DNS)中的作用。Tween 80 和羟丙基甲基纤维素(HPMC)用作珠磨过程中的稳定剂,糊精用作喷雾干燥中的基质形成剂。通过改变 HPMC 和糊精的比例制备了各种纳米混悬剂(NS),并评估了每种制剂的粒径、形态、载药量、结晶度、再分散性、物理稳定性和溶解速率等理化性质。HPMC 有效地稳定了 NS 体系并减小了 NS 的粒径。所有制剂中,含有 0.5%HPMC(w/v)的 NS 的平均粒径最小(248nm)。糊精已被证明能有效地抑制 NS 固化时经常发生的粒径增大。随着 DNS 中糊精的增加,再分散 NS 的溶解速率显著提高。然而,已证实 DNS 中糊精的量超过必要量会降低溶解速率和载药量。在 DNS 中,塞来昔布的溶解几乎达到最高。最佳制剂在 120 分钟时的溶解率为 95.8%,是未添加糊精的 NS 的 2.0 倍。总之,这些结果表明,基于 Tween 80、HPMC 和糊精的配方可能是增强 DNS 溶解和体内口服吸收的有效选择。

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