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Versatile Synthesis and Fluorescent Labeling of ZIF-90 Nanoparticles for Biomedical Applications

机译:用于生物医学应用的ZIF-90纳米粒子的多功能合成和荧光标记

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We describe a versatile method for the synthesis and fluorescent labeling of ZIF-90 nanoparticles (NPs). Gram-scale quantities of NPs can be produced under mild conditions, circumventing the need for high temperatures and extended reaction periods required by existing procedures. Monitoring the reaction in situ using UV-vis spectroscopy reveals that ZIF-90 NP nucleation in solution starts within seconds. In addition to reporting a method to reproducibly form sub-100 nm ZIF-90 particles, we show that particles of various sizes can be produced, ranging from 30 to 1000 nm, by altering amine chemistry or reaction temperature. The presence of linker aldehyde groups on the NP surface allows for postsynthetic labeling with amine-functionalized fluorescent dyes, providing utility for imaging within biological systems. In vitro cell studies show that ZIF-90 NPs have a high rate of cellular internalization; provide finite degradation periods of the order of several weeks, and are biocompatible with six different cell lines (>90% viable when incubated with NPs for up to 7 days). These features highlight the potential for use of ZIF-90 nanostructures in bioimaging and targeted drug delivery applications.
机译:我们描述了ZIF-90纳米粒子(NPs)的合成和荧光标记的通用方法。可以在温和的条件下生产出克级的NP,从而避免了对高温和现有程序所需的延长反应时间的需求。使用紫外-可见光谱监测原位反应表明,溶液中的ZIF-90 NP成核在几秒钟内开始。除了报告可再现地形成100 nm以下的ZIF-90颗粒的方法外,我们还表明,通过改变胺的化学性质或反应温度,可以生产30至1000 nm范围内的各种尺寸的颗粒。 NP表面上存在连接基醛基,可以用胺官能化的荧光染料进行后合成标记,从而为生物系统内的成像提供了实用性。体外细胞研究表明,ZIF-90 NP具有很高的细胞内在化率。可提供数周左右的有限降解时间,并且与六种不同的细胞系具有生物相容性(与NP孵育长达7天时,> 90%的活力)。这些特征凸显了ZIF-90纳米结构在生物成像和靶向药物递送应用中的潜在应用。

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