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一项关于用与2-脱氧葡萄糖/阿霉素共轭的放射性标记介孔羟基磷灰石纳米颗粒进行乳腺癌细胞药物递送追踪的研究。

A study on drug delivery tracing with radiolabeled mesoporous hydroxyapatite nanoparticles conjugated with 2DG/DOX for breast tumor cells.

作者信息

Shamsi Mahdiyeh, Majidi Zolbanin Jafar, Mahmoudian Babak, Zolbanin Naime Majidi, Maleki Leili Aghebati, Jafarabadi Mohammad Asghari, Islamian Jalil Pirayesh

出版信息

Nucl Med Rev Cent East Eur. 2018;21(1):32-36. doi: 10.5603/NMR.a2018.0008. Epub 2018 Jan 10.

Abstract

BACKGROUND

Mesoporous nanoparticles have a great potential in targeted therapy approaches due to their ideal properties for encapsulation of various drugs, proteins and also biologically active molecules.

MATERIAL AND METHODS

We used mesoporous hydroxyapatite (HA) nanoparticles as a drug carrier and developed radiolabeled mesoporous HA containing of 2-deoxy-D-glucose (2DG) and Doxorubicin (DOX) with technetium-99m (99mTc) for imaging in in vitro and in vivo studies.

RESULTS

2DG and DOX in presence of mesoporous HA nanoparticles more reduced the fraction of viable cells in the MDA-MB-231, MCF-7 human and MC4-L2 Balb/c mice breast cancer cells. The radiochemical purity of the nano-2DG-DOX complex with 99mTc was calculated to 96.8%. The results of cellular uptake showed a 44.77% increase in uptake of the [99mTc]-nano-2DG-DOX compared to the complex without nanoparticles (p < 0.001).

CONCLUSION

Radioisotopic imaging demonstrated a high biochemical stability for [99mTc]-nano-2DG-DOX complex. The results demonstrated that [99mTc]-nano-2DG-DOX, may be used as an attractive candidate in cancer imaging and treatment managing.

摘要

背景

介孔纳米粒子因其在封装各种药物、蛋白质以及生物活性分子方面的理想特性,在靶向治疗方法中具有巨大潜力。

材料与方法

我们使用介孔羟基磷灰石(HA)纳米粒子作为药物载体,并开发了用锝-99m(99mTc)标记的含有2-脱氧-D-葡萄糖(2DG)和多柔比星(DOX)的介孔HA,用于体外和体内研究的成像。

结果

在介孔HA纳米粒子存在的情况下,2DG和DOX能更多地降低MDA-MB-231、MCF-7人乳腺癌细胞以及MC4-L2 Balb/c小鼠乳腺癌细胞中的活细胞比例。用99mTc标记的纳米-2DG-DOX复合物的放射化学纯度经计算为96.8%。细胞摄取结果显示,与不含纳米粒子的复合物相比,[99mTc]-纳米-2DG-DOX的摄取增加了44.77%(p < 0.001)。

结论

放射性同位素成像显示[99mTc]-纳米-2DG-DOX复合物具有高生化稳定性。结果表明,[99mTc]-纳米-2DG-DOX可能是癌症成像和治疗管理中一个有吸引力的候选物。

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