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Highly lipophilic fluorescent dyes in nano-emulsions: towards bright non-leaking nano-droplets

机译:纳米乳液中的高荧光亲脂性染料:朝向明亮的非泄漏纳米液滴

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摘要

Dye-loaded lipid nano-droplets present an attractive alternative to inorganic nanoparticles, as they are composed of non-toxic biodegradable materials and are easy to prepare. However, to achieve high fluorescence brightness, the nano-droplets have to be heavily loaded with the dyes avoiding fluorescence self-quenching and release (leakage) of the encapsulated dyes from the nano-droplets in biological media. In the present work, we have designed highly lipophilic fluorescent derivatives of 3-alkoxyflavone (F888) and Nile Red (NR668) that can be encapsulated in the lipophilic core of stable nano-emulsion droplets at exceptionally high concentrations in the oil core, i.e. up to 170 mM and 17 mM, respectively, corresponding to ∼830 and 80 dyes per 40 nm droplet. Despite this high loading, these dyes keep high fluorescence quantum yields and thus, provide high nano-droplet brightness, probably due to their bulky structure preventing self-quenching. Moreover, simultaneous encapsulation of both dyes at high concentrations in single nano-droplets allows the observation of FRET. FRET and fluorescence correlation spectroscopy (FCS) studies showed that NR668 release in the serum-containing medium is very slow, while the reference hydrophobic dye Nile Red leaks immediately. This drastic difference in the leakage profile between NR668 and Nile Red was confirmed by in vitro cellular studies as well as by in vivo angiography imaging on zebrafish models, where the NR668-loaded nano-droplets remained in the blood, while the parent Nile Red leaked rapidly from the droplets distributing all over the animal body. This study suggests new molecular design strategies for obtaining bright nano-droplets without dye leakage and their use as efficient and stable optical contrast agents in vitro and in vivo.
机译:载有染料的脂质纳米滴是无机纳米颗粒的一种有吸引力的替代物,因为它们由无毒的可生物降解材料组成,并且易于制备。然而,为了获得高的荧光亮度,纳米滴必须被大量负载的染料,以避免荧光自猝灭以及被包封的染料从纳米滴在生物介质中的释放(泄漏)。在目前的工作中,我们设计了3-烷氧基黄酮(F888)和尼罗红(NR668)的高度亲脂性荧光衍生物,它们可以以极高的浓度封装在稳定的纳米乳液液滴的亲脂性核中,即在油核中的浓度很高。分别为170 mM和17 mM,分别对应于每40 nm小滴约830和80种染料。尽管具有如此高的负载量,但这些染料仍保持较高的荧光量子产率,因此可能提供高的纳米液滴亮度,这可能是由于其庞大的结构阻止了自猝灭。此外,将两种染料以高浓度同时包封在单个纳米液滴中可以观察到FRET。 FRET和荧光相关光谱(FCS)研究表明,含血清的培养基中NR668的释放非常缓慢,而参考疏水性染料尼罗红立即泄漏。通过体外细胞研究以及斑马鱼模型上的体内血管造影成像证实了NR668与尼罗河红之间的这种显着差异,其中充满NR668的纳米液滴保留在血液中,而母体尼罗河红则在泄漏液滴迅速分布在整个动物体内。这项研究提出了新的分子设计策略,可用于获得明亮的纳米液滴而不造成染料泄漏,并将其用作体外和体内有效,稳定的光学对比剂。

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