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首页> 外文期刊>Analytical chemistry >Design of NIR Chromenylium-Cyanine Fluorophore Library for 'Switch-ON' and Ratiometric Detection of Bio-Active Species In Vivo
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Design of NIR Chromenylium-Cyanine Fluorophore Library for 'Switch-ON' and Ratiometric Detection of Bio-Active Species In Vivo

机译:用于“接通”和体内生物活性物种比例检测的近红外镀铬-花青荧光团库的设计

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The real-time monitoring of key biospecies in the living systems has received thrusting attention during the past decades. Specifically, fluorescent detection based on near-infrared (NIR) fluorescent probes is highly favorable for live cells, live tissues, and even animal imaging, owing to the substantial merits of the NIR window, such as minimal phototoxicity, deep penetration into tissues, and low autofluorescence background. Nevertheless, developing potent NIR fluorescent probes still poses serious challenges to the chemists because traditional NIR fluorophores are less tunable than visible-wavelength fluorophores. To address this issue, here we report a set of novel NIR hybrid fluorophores, namely, the hybrid chromenylium-cyanine fluorophore (CC-Fluor), in which both the fluorescence intensity and the emission wavelength can be easily adjusted by the conformational changes and substitution groups. Compared to known NIR fluorophores, the new CC-Fluors are substantially advantageous for NIR probe development: (1) CC-Fluors display tunable and moderate Stokes shifts and quantum yields; (2) the fluorophores are stable at physiological conditions after long-term incubation; (3) the absorption maxima of CC-Fluors coincide with the common laser spectral lines in mainstream in vivo imaging systems; (4) most importantly, CC-Fluors can be easily modified to prepare NIR probes targeting various biospecies. To fully demonstrate the practical utility of CC-Fluors, we report two innovative NIR probes, a ratiometric pH probe and a turn-on Hg2+ probe, both are successfully employed in live animal imaging. Hence, the detailed studies allow us to confirm that CC-Fluors can work as an excellent platform for developing NIR probes for the detection of species in living systems.
机译:在过去的几十年中,对生命系统中关键生物物种的实时监控受到了极大的关注。具体而言,由于近红外窗口的实质性优点,例如光毒性最小,对组织的深层渗透以及对近红外光的探测,基于近红外(NIR)荧光探针的荧光检测非常适合活细胞,活组织甚至动物成像。低自发荧光背景。尽管如此,开发有效的NIR荧光探针仍然对化学家构成严峻挑战,因为传统的NIR荧光团比可见波长的荧光团更不可调。为了解决这个问题,在这里我们报告了一组新型的近红外混合荧光团,即混合铬腈-花青荧光团(CC-Fluor),其中荧光强度和发射波长都可以通过构象变化和取代而容易地调节。组。与已知的NIR荧光团相比,新型CC-Fluor在NIR探针开发方面具有显着优势:(1)CC-Fluor显示出可调的和适中的斯托克斯位移以及量子产率; (2)经过长期孵育后,荧光团在生理条件下稳定; (3)CC-Fluors的吸收最大值与主流体内成像系统中常见的激光光谱线一致; (4)最重要的是,CC-Fluors可以轻松修改以制备针对各种生物物种的NIR探针。为了充分展示CC-Fluor的实用性,我们报告了两种创新的NIR探针,即比例pH探针和开启式Hg2 +探针,它们均已成功用于活体动物成像。因此,详细的研究使我们可以确认CC-Fluors可以作为开发用于检测生物系统中物种的NIR探针的出色平台。

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