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Characterization and applications of fluorescent nanodiamonds surface-coated with photo-crosslinked lipids

机译:表面涂有光交联脂质的荧光纳米金刚石的表征和应用

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Fluorescent nanodiamonds (FNDs) are emerging as a novel fluorescent probe due to their stable fluorescence showing no photobleaching, negligible toxicity, chemical inertness, and optically detected magnetic resonance property. Recently, several unique applications such as multimodal imaging, single particle tracking, long-term cell tracking have been reported. However, the use of FNDs for those applications is still limited because well-optimized surface coating methods have not been established so far. In this presentation, we report a novel surface coating method based on lipid coating and subsequent photo-initiated radical polymerization. FNDs are first coated with lipids containing diacetylene in the alkyl chain, and subsequently crosslinked by UV irradiation to enhance the stability of the FND-lipid hybrids (FND-PCL: Photo-crosslinked lipid-coated FND). The method does not require complex organic chemistry techniques, and the produced coating layer is thin (ca. 2-3 nm) but highly stable thanks to the covalent bonding. The FND-PCL, as well as the biotin-functionalized FND-PCL, can be prepared in a couple of hours without much difficulty. The FND-PCL has many favorable properties for bioapplications such as strong aggregation resistance and reduced nonspecific adsorption by biomolecules. We further demonstrated two improvements on FND-PCL: enhancement of the production yield and facile surface modification. The coating method enhances the unique fluorescence properties of FNDs and opens interesting pathways of novel bioimaging.
机译:荧光纳米金刚石(FND)由于其稳定的荧光表现出无光漂白,可忽略的毒性,化学惰性和光学检测的磁共振特性而成为一种新型的荧光探针。最近,已经报道了几种独特的应用,例如多模式成像,单粒子跟踪,长期细胞跟踪。然而,由于迄今为止尚未建立充分优化的表面涂覆方法,因此在这些应用中使用FND仍然受到限制。在此演示文稿中,我们报告基于脂质涂层和随后的光引发的自由基聚合的新型表面涂层方法。首先用在烷基链中包含乙炔的脂质包被FND,然后通过UV辐照交联以增强FND-脂质杂化物的稳定性(FND-PCL:光交联的脂质包被的FND)。该方法不需要复杂的有机化学技术,并且产生的涂层很薄(约2-3 nm),但是由于共价键的缘故而非常稳定。 FND-PCL以及生物素功能化的FND-PCL可以在几个小时内制备而没有太大困难。 FND-PCL对生物应用具有许多有利的特性,例如强的抗聚集性和减少的生物分子非特异性吸附。我们进一步展示了FND-PCL的两项改进:提高产量和易于表面改性。涂覆方法增强了FND的独特荧光特性,并开启了新型生物成像的有趣途径。

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