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Tumor cell imaging using the intrinsic emission from PAMAM dendrimer: a case study with HeLa cells

机译:使用PAMAM树状大分子的内在发射进行肿瘤细胞成像:HeLa细胞的案例研究

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摘要

HeLa 229 cells were treated with methotrexate (MTX) and doxorubicin (DOX), utilizing fourth generation (G4), amine terminated poly(amidoamine) {PAMAM} dendrimer as the drug carrier. In vitro kinetic studies of the release of both MTX and DOX in presence and absence of G4, amine terminated PAMAM dendrimers suggest that controlled drug release can be achieved in presence of the dendrimers. The cytotoxicity studies indicated improved cell death by dendrimer-drug combination, compared to the control experiments with dendrimer or drug alone at identical experimental conditions. Furthermore, HeLa 229 cells were imaged for the first time utilizing the intrinsic emission from the PAMAM dendrimers and drugs, without incorporating any conventional fluorophores. Experimental results collectively suggest that the decreased rate of drug efflux in presence of relatively large sized PAMAM dendrimers generates high local concentration of the dendrimer-drug combination inside the cell, which renders an easy way to image cell lines utilizing the intrinsic emission properties of PAMAM dendrimer and encapsulated drug molecule.
机译:HeLa 229细胞用甲氨蝶呤(MTX)和阿霉素(DOX)处理,利用第四代(G4),胺封端的聚(酰胺基胺){PAMA​​M}树状大分子作为药物载体。在存在和不存在G4的情况下,MTX和DOX释放的体外动力学研究表明,胺封端的PAMAM树状聚合物可以在树状聚合物存在的情况下实现药物的受控释放。与在相同实验条件下仅使用树状聚合物或药物的对照实验相比,细胞毒性研究表明通过树状聚合物-药物组合改善的细胞死亡。此外,首次使用PAMAM树状大分子和药物的内在发射对HeLa 229细胞进行了成像,而没有引入任何常规的荧光团。实验结果共同表明,在存在相对较大尺寸的PAMAM树状聚合物的情况下,药物外排速率降低会在细胞内部产生较高的树状聚合物-药物组合局部浓度,这使得利用PAMAM树状聚合物的固有发射特性对细胞系进行成像的简便方法和封装的药物分子。

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