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Multifunctional quantum dot-polypeptide hybrid nanogel for targeted imaging and drug delivery

机译:多功能量子dot-polypeptide混合nanogel目标成像和药物输送

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A new type of multifunctional quantum dot (QD)-polypeptide hybrid nanogel with targeted imaging and drug delivery properties has been developed by metal-affinity driven self-assembly between artificial polypeptides and CdSe-ZnS core-shell QDs. On the surface of QDs, a tunable sandwich-like microstructure consisting of two hydrophobic layers and one hydrophilic layer between them was verified by capillary electrophoresis, transmission electron microscopy, and dynamic light scattering measurements. Hydrophobic and hydrophilic drugs can be simultaneously loaded in a QD-polypeptide nanogel. In vitro drug release of drug-loaded QD-polypeptide nanogels varies strongly with temperature, pH, and competitors. A drug-loaded QD-polypeptide nanogel with an arginine-glycine-aspartic acid (RGD) motif exhibited efficient receptor-mediated endocytosis in α_vβ3 overexpressing HeLa cells but not in the control MCF-7 cells as analyzed by confocal microscopy and flow cytometry. In contrast, non-targeted QD-polypeptide nanogels revealed minimal binding and uptake in HeLa cells. Compared with the original QDs, the QD-polypeptide nanogels showed lower in vitro cytotoxicity for both HeLa cells and NIH 3T3 cells. Furthermore, the cytotoxicity of the targeted QD-polypeptide nanogel was lower for normal NIH 3T3 cells than that for HeLa cancer cells. These results demonstrate that the integration of imaging and drug delivery functions in a single QD-polypeptide nanogel has the potential for application in cancer diagnosis, imaging, and therapy.
机译:一种新型的多功能量子点(QD)多肽混合nanogel目标成像和药物传输特性由metal-affinity驱动的自组装人工多肽和CdSe-ZnS之间核壳量子点。一张很微观结构组成的两个疏水性层和一层亲水他们之间由毛细管验证电泳,透射电子显微镜和动态光散射测量。可以同时加载QD-polypeptidenanogel。QD-polypeptide纳米凝胶变化强烈温度、pH值和竞争对手。QD-polypeptide nanogel与一个arginine-glycine-aspartic酸(RGD)主题表现出高效的受体介导内吞作用在α_vβ3 overexpressing海拉细胞但不是的分析了共焦控制MCF-7细胞显微镜和流式细胞术。一道QD-polypeptide纳米凝胶显示最小的绑定和海拉细胞吸收。量子点与原来相比,QD-polypeptide纳米凝胶体外显示低海拉细胞和NIH 3 t3细胞毒性细胞。针对QD-polypeptide nanogel较低比海拉正常NIH 3 t3细胞癌症细胞。集成成像和药物输送函数在单个QD-polypeptide nanogel潜在的应用在癌症诊断、成像和治疗。

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