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Synthesis, Characterization, and Evaluation of a Novel Amphiphilic Polymer RGD-PEG-Chol for Target Drug Delivery System

机译:新型两亲聚合物RGD-PEG-CHOL用于靶药递送系统的合成,表征和评价

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An amphiphilic polymer RGD-PEG-Chol which can be produced in large scale at a very low cost has been synthesized successfully. The synthesized intermediates and final products were characterized and confirmed by1H nuclear magnetic resonance spectrum (1H NMR) and Fourier transform infrared spectrum (FT-IR). The paclitaxel- (PTX-) loaded liposomes based on RGD-PEG-Chol were then prepared by film formation method. The liposomes had a size within 100 nm and significantly enhanced the cytotoxicity of paclitaxel to B16F10 cell as demonstrated by MTT test (IC50= 0.079 μg/mL of RGD-modified PTX-loaded liposomes compared to 9.57 μg/mL of free PTX). Flow cytometry analysis revealed that the cellular uptake of coumarin encapsulated in the RGD-PEG-Chol modified liposome was increased for HUVEC cells. This work provides a reasonable, facile, and economic approach to prepare peptide-modified liposome materials with controllable performances and the obtained linear RGD-modified PTX-loaded liposomes might be attractive as a drug delivery system.
机译:可以成功地合成可以以非常低的成本在大规模生产的两亲性聚合物RGD-PEG-CHOL。合成的中间体和最终产物的特征和最终产物具有1H核磁共振频谱(1H NMR)和傅里叶变换红外光谱(FT-IR)。然后通过膜形成方法制备基于RGD-PEG-CHOL的紫杉醇(PTX-)脂质体。脂质体在100nm以内的尺寸并显着增强了紫杉醇至B16F10细胞的细胞毒性,如MTT试验所证明的(IC50 =0.079μg/ ml加载的RGD改性的PTX加载的脂质体,相比为9.57μg/ ml的游离PTX)。流式细胞术分析表明,对于Huvec细胞,增加了在RGD-PEG改性脂质体中包封的香豆素的细胞吸收。这项工作提供了合理的,容易和经济的方法来制备具有可控性能的肽改性的脂质体材料,并且所获得的线性RGD改性的PTX加载的脂质体可能是吸毒的药物递送系统的吸引力。

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