Is receptor mediated active macrophage targeting of amphotericin B nanoformulations a promising approach?

Saugandha Das, Pooja Todke, Manisha Madkaikar and Padma Devarajan
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Abstract

We present an AmB-LIPOMER anchored with Acemannan (ACEM), a mannose ligand for active macrophage targeting, via mannose receptor mediated endocytosis (RME). The AmB-LIPOMER prepared by modified nanoprecipitation was anchored with ACEM by simple incubation. FITC was added to obtain fluorescent LIPOMERs. The LIPOMERs revealed a spherical morphology, an average size of 400–450 nm and a PDI < 0.3. Reduction in the zeta potential and FTIR confirmed ACEM anchoring. Flow cytometry demonstrated a >13-fold enhancement of the FITC-ACEM LIPOMER in vitro in RAW 264.7 macrophage cells, compared to the FITC-LIPOMER, ascribed to mannose receptor mediated endocytosis. This was confirmed by the decreased uptake of the FITC-ACEM LIPOMER in the mannose receptor blocking study. Nevertheless, we were surprised by an ∼2-fold decrease in the in vitro antileishmanial efficacy despite the augmented uptake of the ACEM LIPOMER. This poor efficacy was explained by the extensive localization of the FITC-ACEM LIPOMER in the lysosomal compartment, established by confocal microscopy, wherein AmB underwent rapid degradation. On the other hand phagocytic uptake and lipid mediated prolonged localization in the less harsh phagosome enabling lower degradation could have facilitated higher efficacy of the AmB-LIPOMER. The pharmacokinetic and biodistribution studies in rats revealed rapid and high reticuloendothelial system uptake. While the AmB-LIPOMER group exhibited no mortality, the mortality of 5 out of 6 animals in the AmB-ACEM LIPOMER group, within 15–30 minutes caused by lung necrosis was disturbing. While we propose an explanation for the toxicity, our study questions the rationale and safety of active targeting AmB using receptor mediated endocytosis.

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受体介导的两性霉素 B 纳米制剂的巨噬细胞靶向活性是一种有前途的方法吗?
我们展示了一种通过甘露糖受体介导的内吞作用(RME)锚定了甘露糖配体 Acemannan(ACEM)的 AmB-LIPOMER。改良纳米沉淀法制备的 AmB-LIPOMER 通过简单的孵育与 ACEM 固定。加入 FITC 可获得荧光 LIPOMER。这些 LIPOMER 呈球形,平均尺寸为 400-450 nm,PDI 为 0.3。zeta电位的降低和傅立叶变换红外光谱证实了ACEM锚定。流式细胞仪显示,与 FITC-LIPOMER 相比,FITC-ACEM LIPOMER 在体外 RAW 264.7 巨噬细胞中的作用增强了 13 倍,这归因于甘露糖受体介导的内吞作用。在甘露糖受体阻断研究中,FITC-ACEM LIPOMER 的吸收减少也证实了这一点。然而,令我们惊讶的是,尽管 ACEM LIPOMER 的摄取量增加了,但体外抗利什曼病菌的效力却下降了 2 倍。通过共聚焦显微镜观察,我们发现 FITC-ACEM LIPOMER 广泛定位于溶酶体区,AmB 在溶酶体区迅速降解,从而解释了这种低效的原因。另一方面,吞噬细胞的摄取和脂质介导的在不太苛刻的吞噬体中的长期定位使降解程度降低,这可能有助于提高 AmB-LIPOMER 的药效。在大鼠体内进行的药代动力学和生物分布研究显示,网状内皮系统的摄取速度快、摄取量高。AmB-LIPOMER组大鼠没有死亡,而AmB-ACEM LIPOMER组6只大鼠中有5只在15-30分钟内因肺部坏死而死亡,令人不安。虽然我们对毒性提出了解释,但我们的研究对利用受体介导的内吞作用主动靶向 AmB 的合理性和安全性提出了质疑。
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