用于双重荧光生物成像和光热疗法的近红外-II 发射型供体-受体-供体荧光团

IF 5.7 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Nicholas E. Sparks, Cameron Smith, Terrence Stahl, Dhanush L. Amarasekara, Christine Hamadani, Ethan Lambert, Sheng Wei Tang, Anuja Kulkarni, Blaine M. Derbigny, Gaya S Dasanayake, George Taylor, Maryam Ghazala, Nathan I. Hammer, Alexander Y. Sokolov, Nicholas C. Fitzkee, Eden E. L. Tanner and Davita L. Watkins
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引用次数: 0

摘要

使用近红外 II(NIR-II)发射型有机荧光团进行荧光生物成像已被证明是一种可行的无创诊断技术。然而,我们仍然需要开发具有更高的稳定性和赋予刺激响应性功能的荧光团。通过策略性设计,我们可以合成不仅具有近红外-II 光学特征,而且具有 pH 敏感性和在照射时产生热量的荧光团。在这项工作中,我们采用供体-受体-供体(D-A-D)设计合成了一系列 NIR-II 荧光团。在这里,我们使用噻吩噻二唑(TTD)作为受体,3-己基噻吩(HexT)作为π-间隔物,并改变了烷基胺供体单元:N,N-二甲基苯胺(DMA)、苯基哌啶(Pip)和苯基吗啉(Morp)。光谱分析显示,所有这三种衍生物都在近红外-II 区发光,λemimax 波长范围为 1030 至 1075 nm。在照射时,荧光团通过非辐射过程产生明显的热量。产生热量的能力表明,这些荧光团可以作为治疗剂(治疗和诊断相结合),同时进行可视化和治疗。此外,在酸性条件下,由于烷基胺供体单元的质子化作用,吸光特性发生了变化,从而支持了生物传感能力。荧光团在人类乳腺细胞系和小鼠红细胞中的毒性也很小。总之,初步研究结果表明,NIR-II 材料可用于多种生物医学应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

NIR-II emissive donor–acceptor–donor fluorophores for dual fluorescence bioimaging and photothermal therapy applications†‡

NIR-II emissive donor–acceptor–donor fluorophores for dual fluorescence bioimaging and photothermal therapy applications†‡

NIR-II emissive donor–acceptor–donor fluorophores for dual fluorescence bioimaging and photothermal therapy applications†‡

Fluorescence bioimaging with near-infrared II (NIR-II) emissive organic fluorophores has proven to be a viable noninvasive diagnostic technique. However, there is still the need for the development of fluorophores that possess increased stability as well as functionalities that impart stimuli responsiveness. Through strategic design, we can synthesize fluorophores that possess not only NIR-II optical profiles but also pH-sensitivity and the ability to generate heat upon irradiation. In this work, we employ a donor–acceptor–donor (D–A–D) design to synthesize a series of NIR-II fluorophores. Here we use thienothiadiazole (TTD) as the acceptor, 3-hexylthiophene (HexT) as the π-spacer and vary the alkyl amine donor units: N,N-dimethylaniline (DMA), phenylpiperidine (Pip), and phenylmorpholine (Morp). Spectroscopic analysis shows that all three derivatives exhibit emission in the NIR-II region with λemimax ranging from 1030 to 1075 nm. Upon irradiation, the fluorophores exhibited noticeable heat generation through non-radiative processes. The ability to generate heat indicates that these fluorophores will act as theranostic (combination therapeutic and diagnostic) agents in which simultaneous visualization and treatment can be performed. Additionally, biosensing capabilities were supported by changes in the absorbance properties while under acidic conditions as a result of protonation of the alkyl amine donor units. The fluorophores also show minimal toxicity in a human mammary cell line and with murine red blood cells. Overall, initial results indicate viable NIR-II materials for multiple biomedical applications.

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来源期刊
Journal of Materials Chemistry C
Journal of Materials Chemistry C MATERIALS SCIENCE, MULTIDISCIPLINARY-PHYSICS, APPLIED
CiteScore
10.80
自引率
6.20%
发文量
1468
期刊介绍: The Journal of Materials Chemistry is divided into three distinct sections, A, B, and C, each catering to specific applications of the materials under study: Journal of Materials Chemistry A focuses primarily on materials intended for applications in energy and sustainability. Journal of Materials Chemistry B specializes in materials designed for applications in biology and medicine. Journal of Materials Chemistry C is dedicated to materials suitable for applications in optical, magnetic, and electronic devices. Example topic areas within the scope of Journal of Materials Chemistry C are listed below. This list is neither exhaustive nor exclusive. Bioelectronics Conductors Detectors Dielectrics Displays Ferroelectrics Lasers LEDs Lighting Liquid crystals Memory Metamaterials Multiferroics Photonics Photovoltaics Semiconductors Sensors Single molecule conductors Spintronics Superconductors Thermoelectrics Topological insulators Transistors
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