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量子点的饱和积累对特定细胞内摄取途径的抑制作用。

Suppression of a Specific Intracellular Uptake Pathway by a Saturating Accumulation of Quantum Dots.

作者信息

Damalakiene Leona, Karabanovas Vitalijus, Bagdonas Saulius, Pupelis Linas, Valius Mindaugas, Rotomskis Ricardas

出版信息

J Biomed Nanotechnol. 2015 May;11(5):841-53. doi: 10.1166/jbn.2015.2007.

Abstract

Quantum dots (QDs) play an active role in triggering biological effects and should not be viewed as ordinary carriers for biomedical applications; therefore, the aim of this study was to investigate the molecular mechanisms involved in the saturating accumulation of non-targeted, carboxylated QDs, the related specific internalization pathways and the induced changes in the endocytotic cycle in NIH3T3 cells. We determined that the saturating accumulation of QDs suppressed the internalization of subsequently introduced QDs that had an identical chemical composition. However, the reinitiation of uptake was detected in the NIH3T3 cells after 8 h of incubation in medium without QDs. A very small suppressive effect of accumulated QDs was observed on uptake via the clathrin-mediated endocytosis pathway and macropinocytosis. In contrast, uptake via the caveolin-mediated pathway was almost completely prevented. Deeper insight into the suppression mechanism was obtained by transiently transfecting NIH3T3 cells with the plasmid pEGFP-C1-Caveolin-1. In these transfected cells, the usual intracellular presence of Caveolin-1 near the plasma membrane was not observed after long-term incubation with QDs. The putative application of QDs for diagnostic visualization in combination with certain anticancer substances was also evaluated. The QDs did not affect the intracellular photosensitization pattern of the amphiphilic molecule chlorin e6 in the case of photodynamic therapy. However, the saturating accumulation of QDs increased the resistance of NIH3T3 cells to the widely used anticancer drug cisplatin.

摘要

量子点(QDs)在触发生物学效应方面发挥着积极作用,不应被视为生物医学应用中的普通载体;因此,本研究的目的是探究非靶向羧基化量子点饱和积累所涉及的分子机制、相关的特定内化途径以及NIH3T3细胞内吞循环的诱导变化。我们确定量子点的饱和积累抑制了随后引入的具有相同化学成分的量子点的内化。然而,在不含量子点的培养基中孵育8小时后,在NIH3T3细胞中检测到摄取重新开始。观察到积累的量子点对通过网格蛋白介导的内吞途径和巨胞饮作用的摄取具有非常小的抑制作用。相比之下,通过小窝蛋白介导的途径的摄取几乎被完全阻止。通过用质粒pEGFP-C1-小窝蛋白-1瞬时转染NIH3T3细胞,对抑制机制有了更深入的了解。在这些转染细胞中,与量子点长期孵育后,未观察到小窝蛋白-1在质膜附近通常的细胞内存在情况。还评估了量子点与某些抗癌物质联合用于诊断可视化的潜在应用。在光动力疗法中,量子点不影响两亲性分子氯e6的细胞内光敏化模式。然而,量子点的饱和积累增加了NIH3T3细胞对广泛使用的抗癌药物顺铂的抗性。

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