首页> 外文期刊>Pharmaceutical research >Design and function of a dendrimer-based therapeutic nanodevice targeted to tumor cells through the folate receptor.
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Design and function of a dendrimer-based therapeutic nanodevice targeted to tumor cells through the folate receptor.

机译:通过叶酸受体靶向肿瘤细胞的基于树状聚合物的治疗性纳米装置的设计和功能。

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PURPOSE: We sought to develop nanoscale drug delivery material that would allow targeted intracellular delivery while having an imaging capability for tracking uptake of the material. A complex nanodevice was designed and synthesized that targets tumor cell through the folate receptor. METHODS: The device is based on an ethylenediamine core polyamidoamine dendrimer of generation 5. Folic acid, fluorescein, and methotrexate were covalently attached to the surface to provide targeting, imaging, and intracellular drug delivery capabilities. Molecular modeling determined the optimal dendrimer surface modification for the function of the device and suggested a surface modification that improved targeting. RESULTS: Three nanodevices were synthesized. Experimental targeting data in KB cells confirmed the modeling predictions of specific and highly selective binding. Targeted delivery improved the cytotoxic response of the cells to methotrexate 100-fold over free drug. CONCLUSIONS: These results demonstrate the ability to design and produce polymer-based nanodevices for the intracellular targeting of drugs, imaging agents, and other materials.
机译:目的:我们寻求开发纳米级药物传递材料,该材料可实现靶向细胞内传递,同时具有追踪该材料吸收的成像能力。设计并合成了通过叶酸受体靶向肿瘤细胞的复杂纳米器件。方法:该设备基于第五代乙二胺核心聚酰胺酰胺树状聚合物。叶酸,荧光素和甲氨蝶呤共价附于表面,以提供靶向,成像和细胞内药物递送功能。分子建模确定了该器件功能的最佳树状聚合物表面修饰,并提出了可改善靶向性的表面修饰。结果:合成了三种纳米器件。 KB细胞中的实验靶向数据证实了特异性和高度选择性结合的建模预测。靶向递送改善了细胞对甲氨蝶呤的细胞毒性反应,是游离药物的100倍。结论:这些结果证明了设计和生产用于聚合物,成像剂和其他材料的细胞内靶向的基于聚合物的纳米装置的能力。

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