首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Poly(ethylene glycol)-Modified PAMAM-Fe_3O_4-Doxorubicin Triads with the Potential for Improved Therapeutic Efficacy: Generation- Dependent Increased Drug Loading and Retention at Neutral pH and Increased Release at Acidic pH
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Poly(ethylene glycol)-Modified PAMAM-Fe_3O_4-Doxorubicin Triads with the Potential for Improved Therapeutic Efficacy: Generation- Dependent Increased Drug Loading and Retention at Neutral pH and Increased Release at Acidic pH

机译:聚乙二醇修饰的PAMAM-Fe_3O_4-阿霉素三联体具有改善治疗功效的潜力:在中性pH值下依赖于产生的药物载量和保留时间增加,在酸性pH值下释放量增加

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摘要

Polyamidoamine (PAMAM) dendrimer-coated magnetic nanoparticles are a promising drug-delivery system that can enhance the therapeutic effects of chemotherapy drugs, such as doxorubicin (DOX), with minimized side effects. This work explores the optimization of the potential therapeutic efficiency of PAMAM-Fe_3O_4- DOX triads. Different generations (G_3, G_5, and G_6) of PAMAMs were synthesized and modified with poly(ethylene glycol) (PEG) and then used to encapsulate glutamic acidmodified Fe_3O_4 nanoparticles. The Fe_3O_4-dendrimer carriers (Fe_3O_4-DG_x where x = the generation 3, 5, or 6 of dendrimers) were electrostatically conjugated with drug DOX. The loading and releasing efficiencies of DOX increased with the PAMAM generation from 3 to 6. The loading efficiencies of DOX molecules were 87, 93, and 96% for generations 3, 5, and 6, respectively. At pH 5, the DOX release efficiencies within 24 h were approximately 60, 68, and 80% for generations 3, 5, and 6, respectively. At pH 7.4, the DOX releasing efficiency was as low as ~15%. Compared to the negative control, the PAMAM-Fe_3O_4-DOX triads showed only mild toxicity against human cervical adenocarcinoma cell line HeLa at pH 7.4, which indicated that DOX can be fairly benignly carried and sparingly released until PAMAM-Fe_3O_4-DOX is taken up into the cell.
机译:聚酰胺基胺(PAMAM)树枝状聚合物包覆的磁性纳米粒子是一种有前途的药物递送系统,可以增强化学药物(如阿霉素(DOX))的治疗效果,并且副作用最小。这项工作探索了PAMAM-Fe_3O_4- DOX三联征的潜在治疗效率的优化。合成了不同世代(G_3,G_5和G_6)的PAMAM,并用聚乙二醇(PEG)进行了修饰,然后用于封装谷氨酸修饰的Fe_3O_4纳米粒子。 Fe_3O_4-树状聚合物载体(Fe_3O_4-DG_x,其中x =树状聚合物的第3、5或6代)与药物DOX静电偶联。随着PAMAM一代从3到6,DOX的负载和释放效率增加。对于第三,第五和第六代,DOX分子的负载效率分别为87%,93%和96%。在pH 5时,第3、5和6代在24小时内的DOX释放效率分别约为60%,68%和80%。在pH 7.4时,DOX释放效率低至〜15%。与阴性对照相比,PAMAM-Fe_3O_4-DOX三联体在pH 7.4时仅对人宫颈腺癌细胞HeLa具有轻度毒性,这表明DOX可以被很好地携带和少量释放,直到PAMAM-Fe_3O_4-DOX被吸收细胞。

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