Enhanced rifampicin delivery to alveolar macrophages by solid lipid nanoparticles

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作者
Junlan Chuan
Yanzhen Li
Likai Yang
Xun Sun
Qiang Zhang
Tao Gong
Zhirong Zhang
机构
[1] West China School of Pharmacy,Key Laboratory of Drug Targeting and Drug Delivery System, Ministry of Education
[2] Sichuan University,State Key Laboratory of Drug Delivery Technology and Pharmacokinetics
[3] Tianjin Institute of Pharmaceutical Research,State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences
[4] Peking University,undefined
[5] Sichuan Academy of Medical Sciences & Sichuan Provincial People’s Hospital,undefined
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Rifampicin; Solid lipid nanoparticles; Alveolar macrophages; Alveolar epithelial type II cells;
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摘要
The present study aimed at developing a drug delivery system targeting the densest site of tuberculosis infection, the alveolar macrophages (AMs). Rifampicin (RFP)-loaded solid lipid nanoparticles (RFP-SLNs) with an average size of 829.6 ± 16.1 nm were prepared by a modified lipid film hydration method. The cytotoxicity of RFP-SLNs to AMs and alveolar epithelial type II cells (AECs) was examined using MTT assays. The viability of AMs and AECs was above 80 % after treatment with RFP-SLNs, which showed low toxicity to both AMs and AECs. Confocal Laser Scanning Microscopy was employed to observe the interaction between RFP-SLNs and both AMs and AECs. After incubating the cells with RFP-SLNs for 2 h, the fluorescent intensity in AMs was more and remained longer (from 0.5 to 12 h) when compared with that in AECs (from 0.5 to 8 h). In vitro uptake characteristics of RFP-SLNs in AMs and AECs were also investigated by detection of intracellular RFP by High performance liquid chromatography. Results showed that RFP-SLNs delivered markedly higher RFP into AMs (691.7 ng/mg in cultured AMs, 662.6 ng/mg in primary AMs) than that into AECs (319.2 ng/mg in cultured AECs, 287.2 ng/mg in primary AECs). Subsequently, in vivo delivery efficiency and the selectivity of RFP-SLNs were further verified in Sprague–Dawley rats. Under pulmonary administration of RFP-SLNs, the amount of RFP in AMs was significantly higher than that in AECs at each time point. Our results demonstrated that solid lipid nanoparticles are a promising strategy for the delivery of rifampicin to alveolar macrophages selectively.
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