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Gold-carbon dots for the intracellular imaging of cancer-derived exosomes

机译:用于癌症衍生外泌体的细胞内成像的金 - 碳点

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As a novel fluorescent nanomaterial, gold-carbon quantum dots (GCDs) possess high biocompatibility and can be easily synthesized by a microwave-assisted method. Owing to their small sizes and unique optical properties, GCDs can be applied to imaging of biological targets, such as cells, exosomes and other organelles. In this study, GCDs were used for fluorescence imaging of exosomes. Tumor-specific antibodies are attached to the GCDs, forming exosome specific nanoprobes. The nanoprobes can label exosomes via immuno-reactions and thus facilitate fluorescent imaging of exosomes. When incubated with live cells, exosomes labeled with the nanoprobes can be taken up by the cells. The intracellular experiments confirmed that the majority of exosomes were endocytosed by cells and transported to lysosomes. The manner by which exosomes were taken up and the intracellular distribution of exosomes are unaffected by the GCDs. The experimental results successfully demonstrated that the presented nanoprobe can be used to study the intrinsic intracellular behavior of tumor derived exosomes. We believe that the GCDs based nanoprobe holds a great promise in the study of exosome related cellular events, such as cancer metastasis.
机译:作为一种新型荧光纳米材料,金 - 碳量子点(GCD)具有高生物相容性,并且可以通过微波辅助方法容易地合成。由于它们的小尺寸和独特的光学性质,GCD可以应用于生物靶标的成像,例如细胞,外泌体和其他细胞器。在该研究中,GCD用于外来体的荧光显像。肿瘤特异性抗体附着在GCD上,形成外渗的特异性纳米体。纳米素可通过免疫反应标记外索肌,从而促进外来荧光显像。当与活细胞孵育时,可以通过细胞占据用纳米体积标记的外索体。细胞内实验证实,大多数外泌体被细胞内吞发并转运至溶酶体。曝光的方式被吸收,外泌体的细胞内分布不受GCD的影响。实验结果证明呈现的纳米骨瓣可用于研究肿瘤衍生外泌体的内在细胞内行为。我们认为,基于GCDS的Nanoprobe在外鼻细胞发生的研究中具有很大的希望,例如癌症转移。

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