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Exploiting 4-sulphate N-acetyl galactosamine decorated gelatin nanoparticles for effective targeting to professional phagocytes in vitro and in vivo

机译:利用4-硫酸盐N-乙酰半乳糖胺修饰的明胶纳米颗粒可有效靶向体内和体外的专业吞噬细胞

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摘要

The present study was focused on the development of surface modified gelatin nanoparticles (SGNPs) using novel ligand 4-sulfated N-acetyl galactosamine (4-SO 4GalNAc) for specific targeting to macrophages. The gelatin has been modified with the potential targeting moiety 4-SO 4GalNAc, which was further used for the preparation of modified nanoparticles. The nanoparticles have been prepared by two step desolvation method. The SGNPs and unmodified gelatin nanoparticles (GNPs) were loaded with doxorubicin (DxR) and its targeting potential was compared. Developed DxR-loaded SGNPs (DxR-SGNPs) were found to have negative zeta potential (-19.8 ± 0.22 mV) whereas DxR-loaded GNPs (DxR-GNPs) have the positive zeta potential of around +12.2 ± 0.36 mV. The mean particle size of DxR-SGNPs and DxR-GNPs was found to be 283 ± 7 and 134 ± 5 nm, respectively. Flow cytometric data confirmed the enhanced uptake of DxR-SGNPs in J774A.1 and PBMC when compared with DxR-GNPs. Intracellular localization studies indicate that the fluorescence intensity of DxR-SGNPs was significantly higher when compared to DxR-GNPs. DxR-SGNPs rendered significantly higher localization of DxR in liver and spleen as compared to DxR-GNPs after i.v. administration. The study stipulates that 4-SO 4GalNAc assures for targeting resident macrophages.
机译:本研究的重点是使用新型配体4-硫酸化N-乙酰半乳糖胺(4-SO 4GalNAc)特异性靶向巨噬细胞,开发表面修饰的明胶纳米颗粒(SGNP)。明胶已经用潜在的靶向部分4-SO 4GalNAc进行了修饰,该明胶进一步用于制备修饰的纳米颗粒。通过两步去溶剂化方法制备了纳米颗粒。 SGNP和未修饰的明胶纳米颗粒(GNP)加载了阿霉素(DxR),并比较了其靶向潜力。发现已开发的DxR加载的SGNP(DxR-SGNP)具有负的Zeta电位(-19.8±0.22 mV),而DxR加载的GNP(DxR-GNP)的正zeta电位约为+12.2±0.36 mV。发现DxR-SGNP和DxR-GNP的平均粒径分别为283±7和134±5nm。流式细胞仪数据证实与DxR-GNPs相比,J774A.1和PBMC中DxR-SGNPs的吸收增加。细胞内定位研究表明,与DxR-GNPs相比,DxR-SGNPs的荧光强度明显更高。与静脉注射后的DxR-GNPs相比,DxR-SGNPs在肝脏和脾脏中的DxR定位明显更高。行政。该研究规定4-SO 4GalNAc可确保靶向驻留巨噬细胞。

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