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位于癌细胞内的镥树枝状大分子-金纳米颗粒-叶酸-蛙皮素纳米探针的荧光、等离子体和放射治疗特性。

Fluorescent, Plasmonic, and Radiotherapeutic Properties of the Lu-Dendrimer-AuNP-Folate-Bombesin Nanoprobe Located Inside Cancer Cells.

作者信息

Mendoza-Nava Héctor, Ferro-Flores Guillermina, Ramírez Flor de María, Ocampo-García Blanca, Santos-Cuevas Clara, Azorín-Vega Erika, Jiménez-Mancilla Nallely, Luna-Gutiérrez Myrna, Isaac-Olivé Keila

机构信息

1 Departamento de Materiales Radiactivos, Instituto Nacional de Investigaciones Nucleares, Ocoyoacac, Estado de México, Mexico.

2 Facultad de Medicina, Universidad Autónoma del Estado de México, Toluca, Mexico.

出版信息

Mol Imaging. 2017 Jan 1;16:1536012117704768. doi: 10.1177/1536012117704768.

Abstract

The integration of fluorescence and plasmonic properties into one molecule is of importance in developing multifunctional imaging and therapy nanoprobes. The aim of this research was to evaluate the fluorescent properties and the plasmonic-photothermal, therapeutic, and radiotherapeutic potential of Lu-dendrimer conjugated to folate and bombesin with gold nanoparticles in the dendritic cavity (Lu-DenAuNP-folate-bombesin) when it is internalized in T47D breast cancer cells. The intense near-Infrared (NIR) fluorescence emitted at 825 nm from the conjugate inside cells corroborated the usefulness of DenAuNP-folate-bombesin for optical imaging. After laser irradiation, the presence of the nanosystem in cells caused a significant increase in the temperature of the medium (46.8°C, compared to 39.1°C without DenAuNP-folate-bombesin, P < 0.05), resulting in a significant decrease in cell viability (down to 16.51% ± 1.52%) due to the Lu-DenAuNP-folate-bombesin plasmonic properties. After treatment with Lu-DenAuNP-folate-bombesin, the T47D cell viability decreased 90% because of the radiation-absorbed dose (63.16 ± 4.20 Gy) delivered inside the cells. The Lu-DenAuNP-folate-bombesin nanoprobe internalized in cancer cells exhibited properties suitable for optical imaging, plasmonic-photothermal therapy, and targeted radiotherapy.

摘要

将荧光和等离子体特性整合到一个分子中对于开发多功能成像和治疗纳米探针具有重要意义。本研究的目的是评估树枝状腔内与叶酸和蛙皮素共轭的金纳米粒子(Lu-DenAuNP-叶酸-蛙皮素)内化于T47D乳腺癌细胞时的荧光特性以及等离子体光热、治疗和放射治疗潜力。细胞内共轭物在825nm处发射的强烈近红外(NIR)荧光证实了DenAuNP-叶酸-蛙皮素用于光学成像的有效性。激光照射后,细胞内纳米系统的存在导致培养基温度显著升高(46.8°C,而没有DenAuNP-叶酸-蛙皮素时为39.1°C,P<0.05),由于Lu-DenAuNP-叶酸-蛙皮素的等离子体特性,导致细胞活力显著下降(降至16.51%±1.52%)。用Lu-DenAuNP-叶酸-蛙皮素处理后,由于细胞内传递的辐射吸收剂量(63.16±4.20 Gy),T47D细胞活力下降了90%。内化于癌细胞中的Lu-DenAuNP-叶酸-蛙皮素纳米探针表现出适合光学成像、等离子体光热治疗和靶向放射治疗的特性。

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