Department of Chemistry, Organic Chemistry Section, Jadavpur University, Kolkata 700032, India.
ACS Sens. 2021 Jun 25;6(6):2141-2146. doi: 10.1021/acssensors.1c00961. Epub 2021 Jun 14.
Here, we have designed and synthesized acidic pH-activatable visible to NIR switchable ratiometric pH-sensitive fluorescent dye. The design consists of a cell-permeable organic probe containing a lysosome targeting morpholine functionality and an acidic pH-activatable oxazolidine moiety. The visible closed oxazolidine form (λ 418 nm) can be switched to the highly conjugated NIR Cy-7 form (λ 780 nm) through ring opening of the oxazolidine moiety at acidic pH. This switching of the ratiometric fluorescent probe is highly reversible and can be controlled by pH. NMR, UV/vis, and fluorescence spectroscopies allowed monitoring of pH switching behavior of the probe. This bioresponsive acidic organelle activatable fluorophore showed reversible pH-switchable ratiometric optical properties, high photostability, huge bathochromic emission shift of 320 nm from basic to acidic pH, off-to-on narrow NIR absorption and emission bands with enhanced molar extinction coefficient at lysosomal pH, good quantum yield, low cytotoxicity, and targeted imaging ability of live cell lysosomes with ideal p. The report demonstrated ratiometric imaging with improved specificity of the acidic lysosome while minimizing signals at the NIR region from nontargeted neutral or basic organelles in human carcinoma HeLa and A549 as well as rat healthy H9c2(2-1) live cells, which is monitored by confocal laser scanning microscopy.
在这里,我们设计并合成了酸性 pH 值激活的可见至近红外切换比率型 pH 敏感荧光染料。该设计由一个细胞通透性有机探针组成,其中包含一个溶酶体靶向吗啉功能和一个酸性 pH 值激活的恶唑烷部分。可见的封闭恶唑烷形式(λ 418nm)可以通过酸性 pH 值下恶唑烷部分的开环转化为高度共轭的近红外 Cy-7 形式(λ 780nm)。这种比率型荧光探针的切换是高度可逆的,可以通过 pH 值来控制。NMR、UV/vis 和荧光光谱允许监测探针的 pH 切换行为。这种生物响应性酸性细胞器激活荧光团显示出可逆的 pH 开关比率型光学性质、高光稳定性、从碱性到酸性 pH 值时的 320nm 巨大红移、在溶酶体 pH 值时具有增强的摩尔消光系数的近红外吸收和发射带、良好的量子产率、低细胞毒性和对活细胞溶酶体的靶向成像能力,理想的 p 值。报告证明了在近红外区域最小化来自非靶向中性或碱性细胞器的信号的同时,进行酸性溶酶体的比率成像,具有更高的特异性,这在人癌细胞 HeLa 和 A549 以及大鼠健康 H9c2(2-1)活细胞中通过共焦激光扫描显微镜进行了监测。