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载利福平前体脂质体肺部给药的载体效应:设计质量研究

Carrier Effect in Development of Rifampin Loaded Proliposome for Pulmonary Delivery: A Quality by Design Study.

作者信息

Parhizkar Elahehnaz, Sadeghinia Delaram, Hamishehkar Hamed, Yaqoubi Shadi, Nokhodchi Ali, Alipour Shohreh

机构信息

Department of Pharmaceutics, School of Pharmacy, Shiraz University of Medical Sciences, Shiraz, Iran.

Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Adv Pharm Bull. 2022 Mar;12(2):336-345. doi: 10.34172/apb.2022.032. Epub 2021 May 18.

Abstract

Pulmonary tuberculosis (TB) is a worldwide life-threatening infection. Therecommended anti-TB regimen contains oral administration of classical first-line drugs suchas rifampin for 6-24 months which often leads to low patient compliance due to high adverseeffects; therefore, lung localized pulmonary delivery of anti-TB agents may be a suitablealternative. Proliposomes free-flowing powders are well-known carriers for lung delivery sincethey can form liposomes by hydration. Liposomes are safe and useful carriers for lung deliverydue to their phospholipid structure. Porous lactose and mannitol as proliposome carriers were prepared by spray dryingtechnique using sucrose and citric acid as templating agents. Design Expert® software wasused to develop forty formulations based on the porous and non-porous carriers, which werecharacterized with respect to their weight yield, density, and flowability. Rifampin-loadedhydrated liposomes were produced and evaluated for size, morphology, loading capacityand encapsulation efficiency. The optimized proliposomes release and aerosolizationproperties were evaluated. Solid-state analysis was confirmed by differential scanningcalorimetry (DSC). Porous lactose surface area was 80 folds higher than non-porous one, respectively.Optimized porous-based proliposome indicated the acceptable aerosolization properties,including mass median aerodynamic diameter (MMAD) of 6.21 ± 0.36 μm and fine particlefraction (FPF) of 9.17 ± 0.18% with a fast rifampin release (80%) within one hour. DSC resultsproved that there was no change in the solid-state of rifampin during the production process. Hence, it seems; rifampin loaded inhalable proliposomes may be a suitable systemfor delivering liposomal rifampin into the lungs.

摘要

肺结核是一种危及全球生命的感染性疾病。推荐的抗结核治疗方案包括口服经典一线药物,如利福平,疗程为6至24个月,但由于不良反应严重,患者依从性往往较低;因此,肺部局部递送抗结核药物可能是一种合适的替代方案。前体脂质体自由流动粉末是众所周知的肺部递送载体,因为它们可以通过水合作用形成脂质体。脂质体因其磷脂结构,是安全且有用的肺部递送载体。以蔗糖和柠檬酸为模板剂,采用喷雾干燥技术制备了多孔乳糖和甘露醇作为前体脂质体载体。使用Design Expert®软件基于多孔和无孔载体开发了40种制剂,并对其重量产率、密度和流动性进行了表征。制备了载有利福平的水合脂质体,并对其大小、形态、载药量和包封率进行了评估。评估了优化后的前体脂质体的释放和气溶胶化特性。通过差示扫描量热法(DSC)进行固态分析确认。多孔乳糖的表面积分别比无孔乳糖高80倍。优化后的基于多孔载体的前体脂质体显示出可接受的气溶胶化特性,包括质量中值空气动力学直径(MMAD)为6.21±0.36μm,细颗粒分数(FPF)为9.17±0.18%,利福平在1小时内快速释放(80%)。DSC结果证明,在生产过程中利福平的固态没有变化。因此,载有利福平的可吸入前体脂质体似乎可能是一种将脂质体利福平递送至肺部的合适系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b70/9106949/83f839221904/apb-12-336-g001.jpg

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