首页> 外文期刊>Journal of biomedical materials research, Part A >Effect of space length of mannose ligand on uptake of mannosylated liposome in RAW 264.7 cells: In vitro and in vivo studies
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Effect of space length of mannose ligand on uptake of mannosylated liposome in RAW 264.7 cells: In vitro and in vivo studies

机译:甘露糖配体空间长度对RAW 264.7细胞中甘露糖基化脂质体摄取的影响:体内和体外研究

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摘要

The most widely used method for increasing uptake on macrophage is specific targeting for mannose receptor (MR) presented on macrophages. Efficiency of the uptake for MR is influenced by the space length and flexibility of mannose ligand in liposome (LP). We prepared mannosylated liposomes (M-EGn-LP-ICG) encapsulated indocyanine green (ICG) with mannose ligand of various ethylene glycol units (EG), LP-ICG, and mannosylated liposome (M-LP-ICG) incorporated with p-aminophenyl-α-D-mannopyranoside. We studied the effect of space length of the mannose ligand in vitro and in vivo with prepared liposomes. A space length of two ethylene glycol units at least was needed for uptake by macrophages and the uptake was increased as the space length increased up to EG4. We measured near-infrared (NIR) fluorescence intensity by ICG and the fluorescence value of cellassociated N-(4-nitrobenzo-2-oxa-1,3-diazole) (NBD) in liposome after cellular uptake. M-EG4-LP-ICG showed lower NIR fluorescence intensity but higher NBD fluorescence value than M-LP-ICG. The result of pre-treatment with D(+)-mannose as an inhibitor showed significant decreasing in uptake of mannosylated LP-ICG but no difference in LP-ICG. These were explained that mannosylated LP-ICG was taken up by macrophages through the MR and M-EG4-LP-ICG showed more specific uptake than M-LP-ICG. We obtained images as time passed in the NIR range after intravenous administration using a Balb/c mouse with inflammatory model. The results showed high uptake in liver at early time and rapid degradation of mannosylated LP-ICG. M-EG4-LP-ICG was more selectively taken up by macrophages than M-LP-ICG.
机译:增加巨噬细胞摄取的最广泛使用的方法是针对巨噬细胞上呈现的甘露糖受体(MR)的特异性靶向。 MR摄取的效率受脂质体(LP)中甘露糖配体的空间长度和柔韧性影响。我们制备了甘露糖化脂质体(M-EGn-LP-ICG),将吲哚花青绿(ICG)封装成具有各种乙二醇单元(EG)的甘露糖配体(EG),LP-ICG和掺有对氨基苯酚的甘露糖化脂质体(M-LP-ICG)。 -α-D-甘露吡喃糖苷。我们研究了制备的脂质体在体内和体外对甘露糖配体空间长度的影响。巨噬细胞摄取至少需要两个乙二醇单元的空间长度,并且随着空间长度增加直至EG4,吸收量增加。我们通过ICG测量了近红外(NIR)荧光强度,并在细胞摄取后测量了脂质体中细胞相关的N-(4-硝基苯并-2-氧杂-1,3-二唑)(NBD)的荧光值。 M-EG4-LP-ICG的NIR荧光强度比M-LP-ICG的NBD荧光强度高。用D(+)-甘露糖作为抑制剂进行预处理的结果显示,甘露糖基化LP-ICG的摄取显着降低,但LP-ICG并无差异。这些被解释为甘露糖基化的LP-ICG被巨噬细胞通过MR吸收,而M-EG4-LP-ICG的摄取比M-LP-ICG更高。使用具有炎症模型的Balb / c小鼠静脉给药后,我们获得了在NIR范围内经过的时间图像。结果显示,早期肝脏中的摄取量很高,甘露糖基化的LP-ICG迅速降解。 M-EG4-LP-ICG比M-LP-ICG更能被巨噬细胞吸收。

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