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使用海藻酸盐-卡拉胶组合的槲皮素肺球的物理特性:聚合物浓度的影响。

Physical characteristics of quercetin pulmospheres using combination of alginate-carrageenan: Effect of polymer concentration.

作者信息

Hariyadi Dewi Melani, Fawwaz Lubby Razan, Fattah Abdul, Purwanti Tutiek, Erawati Tristiana

机构信息

Department of Pharmaceutical Sciences, Faculty of Pharmacy, Universitas Airlangga, Campus C Mulyorejo, Surabaya, Indonesia.

Pharmaceutics and Delivery Systems for Drugs, Cosmetics and Nanomedicine (Pharm-DCN) Research Group, Faculty of Pharmacy, Universitas Airlangga, Campus C Mulyorejo, Surabaya, Indonesia.

出版信息

J Adv Pharm Technol Res. 2024 Jul-Sep;15(3):220-224. doi: 10.4103/JAPTR.JAPTR_34_24. Epub 2024 Jul 22.

Abstract

Indonesia is the second country with the highest number of tuberculosis (TB) cases in the world and the first in Southeast Asia, according to WHO Global Report 2020. Quercetin has been tried as an alternative therapy and was found effective. This study aims to optimize quercetin pulmospheres using combination polymers and study its characteristics as an inhalation delivery system. Combination polymers provide the advantages of safe, mucoadhesive, and compact pulmospheres. Pulmospheres were made as formula F1, F2, and F3 (polymer ratios of 1:1, 1:2, and 1:3), respectively. Pulmospheres were made with quercetin 0.2%, alginate-carrageenan (total concentration of 1.8%), and CaCl 0.5 M. Characterization of particle size, morphology, moisture content (MC), yield, drug loading, and entrapment efficiency (EE) were conducted. The yield range was from 83.89 to 86.30% ± 4.59%. MC range was from 4.23 to 5.12% ± 0.05%. Particle size was <3 µm (between 2.19 and 2.76 ± 0.149 µm), spherical shape and smooth surface. EE range was 60.69% ± 4.45% to 77.86% ± 1.74% and the drug loading range was 1.66-2.09% ± 0.15%. F2 formula with a polymer ratio of 1:2 was the best quercetin pulmospheres. Potential pulmospheres will then be recommended for release and study.

摘要

根据《2020年世界卫生组织全球报告》,印度尼西亚是世界上结核病病例数第二多的国家,也是东南亚地区结核病病例数最多的国家。槲皮素已被尝试作为一种替代疗法,并被发现有效。本研究旨在使用复合聚合物优化槲皮素肺球,并研究其作为吸入给药系统的特性。复合聚合物具有安全、粘膜粘附性和致密肺球的优点。分别制备了配方F1、F2和F3(聚合物比例为1:1、1:2和1:3)的肺球。肺球由0.2%的槲皮素、藻酸盐-卡拉胶(总浓度为1.8%)和0.5M的氯化钙制成。对粒径、形态、水分含量(MC)、产率、载药量和包封率(EE)进行了表征。产率范围为83.89%至86.30%±4.59%。MC范围为4.23%至5.12%±0.05%。粒径<3µm(在2.19至2.76±0.149µm之间),呈球形且表面光滑。EE范围为60.69%±4.45%至77.86%±1.74%,载药量范围为1.66-2.09%±0.15%。聚合物比例为1:2的F2配方是最佳的槲皮素肺球。然后将推荐有潜力的肺球进行释放和研究。

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