Albumin coated liposomes: a novel platform for macrophage specific drug delivery

Clément Vuarchey, Sushil Kumar, R. Schwendener
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引用次数: 14

Abstract

Here we report a new and efficient approach of macrophage specific drug delivery by coating liposomes with albumin. Activated albumin was reacted with liposomes containing polyethylene glycol (PEG) as hydrophilic spacers to create a flexible layer of covalently bound albumin molecules on the liposome surface. Albumin coated liposomes were taken up faster and more efficiently than uncoated liposomes by murine macrophages. Liposome uptake was significantly higher in macropha ges as compared to other cell types tested (endothelial cells, fibroblasts, tumor cells), suggesting specificity for macrophages. In vivo, splenic macrophages phagocytosed BSA coated liposomes (BSA-L) at faster rates compared to conventional liposomes (L) and PEG liposomes (PEG-L). To prove the effectiveness of this new macrophage specific drug carrier, the bisphosphonates clodronate and zoledronate were encapsulated in BSA-L and compared with conventional liposomes. In vitro, treatment of macrophages with clodronate or zoledronate in BSA-L led to cytotoxic activity within a very short time and to up to 50-fold reduced IC50 concentrations. In vivo, clodronate encapsulated in BSA-L depleted splenic macrophages at a 5-fold lower concentration as conventional clodronate-liposomes. Our results highlight the pharmaceutical benefits of albumin-coated liposomes for macrophage specific drug delivery.
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白蛋白包被脂质体:巨噬细胞特异性药物递送的新平台
在这里,我们报告了一种新的和有效的巨噬细胞特异性药物递送方法,即用白蛋白包裹脂质体。活化的白蛋白与含有聚乙二醇(PEG)作为亲水性间隔剂的脂质体反应,在脂质体表面形成共价结合白蛋白分子的柔性层。巨噬细胞对白蛋白包被脂质体的吸收比未包被脂质体更快、更有效。与其他类型的细胞(内皮细胞、成纤维细胞、肿瘤细胞)相比,巨噬细胞的脂质体摄取明显更高,这表明巨噬细胞具有特异性。在体内,与常规脂质体(L)和PEG脂质体(PEG-L)相比,脾巨噬细胞吞噬BSA包被脂质体(BSA-L)的速度更快。为了证明这种新的巨噬细胞特异性药物载体的有效性,我们将氯膦酸盐和唑来膦酸盐包埋在BSA-L中,并与常规脂质体进行比较。在体外,用氯膦酸盐或唑来膦酸盐在BSA-L中处理巨噬细胞会在很短的时间内产生细胞毒活性,并使IC50浓度降低多达50倍。在体内,氯膦酸盐被包裹在BSA-L耗竭的脾巨噬细胞中,其浓度比传统的氯膦酸脂质体低5倍。我们的研究结果强调了白蛋白包被脂质体用于巨噬细胞特异性药物递送的药物益处。
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