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二丙酸倍氯米松在空间稳定磷脂纳米胶束(SSMs)中的增溶:物理化学和体外评价

Solubilization of beclomethasone dipropionate in sterically stabilized phospholipid nanomicelles (SSMs): physicochemical and in vitro evaluations.

作者信息

Sahib Mohanad Naji, Abdulameer Shaymaa Abdalwahed, Darwis Yusrida, Peh Kok Khiang, Tan Yvonne Tze Fung

机构信息

School of Pharmaceutical Sciences, Universiti Sains Malaysia, 11800 Minden, Penang, Malaysia.

出版信息

Drug Des Devel Ther. 2012;6:29-42. doi: 10.2147/dddt.s28265.

Abstract

BACKGROUND

The local treatment of lung disorders such as asthma and chronic obstructive pulmonary disease via pulmonary drug delivery offers many advantages over oral or intravenous routes of administration. This is because direct deposition of a drug at the diseased site increases local drug concentrations, which improves the pulmonary receptor occupancy and reduces the overall dose required, therefore reducing the side effects that result from high drug doses. From a clinical point of view, although jet nebulizers have been used for aerosol delivery of water-soluble compounds and micronized suspensions, their use with hydrophobic drugs has been inadequate.

AIM

To evaluate the feasibility of sterically stabilized phospholipid nanomicelles (SSMs) loaded with beclomethasone dipropionate (BDP) as a carrier for pulmonary delivery.

METHODS

1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-N-methoxy-poly(ethylene glycol 5000) polymeric micelles containing BDP (BDP-SSMs) were prepared by the coprecipitation and reconstitution method, and the physicochemical and in vitro characteristics of BDP-SSMs were investigated.

RESULTS

BDP-SSMs were successfully prepared with a content uniformity and reproducibility suitable for pulmonary administration. The maximum solubility of BDP in SSMs was approximately 1300 times its actual solubility. The particle size and zeta potential of BDP-SSMs were 19.89 ± 0.67 nm and -28.03 ± 2.05 mV, respectively. The SSMs system slowed down the release of BDP and all of the aerodynamic values of the aerosolized rehydrated BDP-SSMs were not only acceptable but indicated a significant level of deposition in the lungs.

CONCLUSION

The SSM system might be an effective way of improving the therapeutic index of nebulized, poorly soluble corticosteroids.

摘要

背景

通过肺部给药对哮喘和慢性阻塞性肺疾病等肺部疾病进行局部治疗,相较于口服或静脉给药途径具有诸多优势。这是因为药物直接沉积在患病部位可提高局部药物浓度,从而提高肺部受体占有率并减少所需的总剂量,进而减少高药物剂量导致的副作用。从临床角度来看,尽管喷射雾化器已用于水溶性化合物和气雾化悬浮液的气溶胶递送,但其在疏水性药物中的应用并不充分。

目的

评估负载二丙酸倍氯米松(BDP)的空间稳定磷脂纳米胶束(SSMs)作为肺部递送载体的可行性。

方法

采用共沉淀和重构法制备了含有BDP的1,2 - 二硬脂酰 - sn - 甘油 - 3 - 磷酸乙醇胺 - N - 甲氧基 - 聚(乙二醇5000)聚合物胶束(BDP - SSMs),并研究了BDP - SSMs的物理化学和体外特性。

结果

成功制备了含量均匀且可重现、适合肺部给药的BDP - SSMs。BDP在SSMs中的最大溶解度约为其实际溶解度的1300倍。BDP - SSMs的粒径和zeta电位分别为19.

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