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调变单链纳米颗粒的内部分室化作为荧光对比剂。

Tuning the Internal Compartmentation of Single-Chain Nanoparticles as Fluorescent Contrast Agents.

机构信息

Macromolecular Chemistry, Institute of Chemistry, Faculty of Natural Science II (Chemistry, Physics and Mathematics), Martin Luther University Halle-Wittenberg, von-Danckelmann-Platz 4, D-06120, Halle, Germany.

Physical Chemistry, Institute of Chemistry, Faculty of Natural Science II (Chemistry, Physics and Mathematics), Martin Luther University Halle-Wittenberg, von-Danckelmann-Platz 4, D-06120, Halle, Germany.

出版信息

Macromol Rapid Commun. 2023 Jan;44(2):e2200618. doi: 10.1002/marc.202200618. Epub 2022 Aug 27.

DOI:10.1002/marc.202200618
PMID:35973086
Abstract

Controlling the internal structures of single-chain nanoparticles (SCNPs) is an important factor for their targeted chemical design and synthesis, especially in view of nanosized compartments presenting different local environments as a main feature to control functionality. We here design SCNPs bearing near-infrared fluorescent dyes embedded in hydrophobic compartments for use as contrast agents in pump-probe photoacoustic (PA) imaging, displaying improved properties by the location of the dye in the hydrophobic particle core. Compartment formation is controlled via single-chain collapse and subsequent crosslinking of an amphiphilic polymer using external crosslinkers in reaction media of adjustable polarity. Different SCNPs with hydrodynamic diameters of 6-12 nm bearing adjustable label densities are synthesized. It is found that the specific conditions for single-chain collapse have a major impact on the formation of the desired core-shell structure, in turn adjusting the internal nanocompartments together with the formation of excitonic dye couples, which in turn increase their fluorescence lifetime and PA signal generation. SCNPs with the dye molecules accumulate at the core also show a nonlinear PA response as a function of pulse energy-a property that can be exploited as a contrast mechanism in molecular PA tomography.

摘要

控制单链纳米颗粒 (SCNP) 的内部结构是其靶向化学设计和合成的一个重要因素,特别是考虑到纳米级隔室呈现出不同的局部环境,这是控制功能的一个主要特征。在这里,我们设计了带有近红外荧光染料的 SCNP,这些染料嵌入疏水性隔室中,用作泵浦探针光声 (PA) 成像的对比剂,通过将染料定位在疏水性颗粒核心中,显示出改进的性能。通过使用外部交联剂在可调节极性的反应介质中使两亲聚合物发生单链塌陷和随后的交联来控制隔室的形成。合成了具有 6-12nm 水动力直径的不同 SCNP,其标记密度可调。结果发现,单链塌陷的特定条件对所需核壳结构的形成有重大影响,进而调整内部纳米隔室以及激子染料对的形成,这反过来又增加了它们的荧光寿命和 PA 信号产生。染料分子聚集在核心的 SCNP 也表现出作为脉冲能量函数的非线性 PA 响应——这一特性可作为分子 PA 层析成像中的对比机制加以利用。

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