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首页> 外文期刊>Nanoscale >A ratiometric fluorescent nanoprobe based on naphthalimide derivative-functionalized carbon dots for imaging lysosomal formaldehyde in HeLa cells
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A ratiometric fluorescent nanoprobe based on naphthalimide derivative-functionalized carbon dots for imaging lysosomal formaldehyde in HeLa cells

机译:一个比率荧光nanoprobe基于naphthalimide derivative-functionalized碳在海拉点成像溶酶体甲醛细胞

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摘要

Endogenous formaldehyde (FA) exists in many living cells and in inhomogeneous distribution in organelles. In particular, lysosomes play significant roles in FA generation and the biofunction of living cells. Herein, we developed a new ratiometric fluorescent nanoprobe, based on naphthalimide derivative (ND)-functionalized carbon dots (CDs), for monitoring endogenous FA in lysosomes. The fluorescence intensity (F-535) of green-emitting ND at 535 nm serves as the response signal and the fluorescence intensity (F-414) of blue-emitting CDs at 414 nm acts as the reference signal. The fluorescence intensity ratio (F-535/F-414) of the CD-ND probe is linearly correlated with FA concentration within the range of 1-40 M in aqueous solution, and the detection limit (3 sigma/slope) is estimated to be 0.34 M. As for practical application, this nanoprobe is utilized for the ratiometric fluorescence imaging of FA in live cells. Remarkably, this nanoprobe can specifically target and stain the lysosomes and detect exogenous and endogenous FA in HeLa cells. The new FA probe shows a superior lysosomal targeting ability with a Pearson's coefficient of 0.93, which is attributed to the macromolecular size and basic amine group functionalized surface of CD-ND.
机译:内源性甲醛(FA)存在于许多生活细胞和非均匀分布细胞器。在足总代和重要的角色biofunction活细胞。一个新的比率荧光nanoprobe基于naphthalimide导数(ND)功能化碳点(CDs),用于监视内生足总在溶酶体。green-emitting ND 535海里的响应信号和荧光强度(f - 414)在414 nm充当blue-emitting cd参考信号。比(f - 535 / f - 414) CD-ND探测器与足总浓度在线性相关在水溶液中,第1 - 40的米,检出限(3σ/坡)估计是0.34 m .对于实际应用来说,这一点nanoprobe利用比率计活细胞荧光成像的。值得注意的是,这个nanoprobe能具体地目标和染色检测和溶酶体在海拉细胞外源性和内源性足总。新英足总调查显示了优越的溶酶体的目标能力与皮尔森系数0.93,这是归因于大分子的大小和基本胺功能化的表面CD-ND。

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