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量子点-叶酸偶联物作为光动力疗法治疗癌症的潜在光敏剂。

Quantum dot-folic acid conjugates as potential photosensitizers in photodynamic therapy of cancer.

机构信息

CRAN, Centre de Recherche en Automatique de Nancy, Nancy-University, CNRS, Centre Alexis Vautrin, Vandœuvre-lès-Nancy, France.

出版信息

Photochem Photobiol Sci. 2011 May;10(5):842-51. doi: 10.1039/c0pp00380h. Epub 2011 Apr 9.

Abstract

This study examined the in vitro potential of bioconjugated quantum dots (QDs) as photosensitizers for photodynamic therapy (PDT). According to our previous approaches using photosensitizers, folic acid appears to be an optimal targeting ligand for selective delivery of attached therapeutic agents to cancer tissues. We synthesized hydrophilic near infrared emitting CdTe(S)-type QDs conjugated with folic acid using different spacers. Photodynamic efficiency of QDs conjugated or not with folic acid was evaluated on KB cells, acting as a positive control due to their overexpression of FR-α, and HT-29 cells lacking FR-α, as negative control. A design of experiments was suggested as a rational solution to evaluate the impacts of each experimental factor (QD type and concentration, light fluence and excitation wavelength, time of contact before irradiation and cell phenotype). We demonstrated that, for concentrations lower than 10 nM, QDs displayed practically no cytotoxic effect without light exposure for both cell lines. Whereas QDs at 2.1 nM displayed a weak photodynamic activity, a concentration of 8 nM significantly enhanced the photodynamic efficiency characterized by a light dose-dependent response. A statistically significant difference in photodynamic efficiency between KB and HT-29 cells was evidenced in the case of folic acid-conjugated QDs. Optimal conditions led to an enhanced photocytotoxicity response, allowing us to validate the ability of QDs to generate a photodynamic effect and of folic acid-conjugated QDs for targeted PDT.

摘要

本研究考察了生物共轭量子点(QDs)作为光动力疗法(PDT)光敏剂的体外潜力。根据我们之前使用光敏剂的方法,叶酸似乎是将附着的治疗剂选择性递送至癌组织的最佳靶向配体。我们使用不同的间隔物合成了与叶酸共轭的亲水性近红外发射 CdTe(S)型 QDs。在作为过表达 FR-α 的阳性对照的 KB 细胞和缺乏 FR-α的 HT-29 细胞(阴性对照)上评估了与或不与叶酸共轭的 QDs 的光动力效率。实验设计被建议作为一种合理的解决方案,以评估每个实验因素(QD 类型和浓度、光通量和激发波长、辐照前的接触时间和细胞表型)的影响。我们证明,对于低于 10 nM 的浓度,在没有光照的情况下,QD 对两种细胞系都没有明显的细胞毒性作用。而在 2.1 nM 的 QD 显示出较弱的光动力活性时,8 nM 的浓度则显著增强了光动力效率,其特征是光剂量依赖性反应。在叶酸偶联 QD 的情况下,KB 和 HT-29 细胞之间的光动力效率存在统计学上的显著差异。最佳条件导致光细胞毒性反应增强,使我们能够验证 QD 产生光动力效应的能力和叶酸偶联 QD 用于靶向 PDT 的能力。

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