4.8 Article

Highly Selective Two-Photon Fluorescent Probe for Ratiometric Sensing and Imaging Cysteine in Mitochondria

期刊

ANALYTICAL CHEMISTRY
卷 88, 期 3, 页码 1908-1914

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.analchem.5b04329

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资金

  1. National Natural Science Foundation of China [21475080, 21575084, 21305036]
  2. Hundred Talent Program of Shanxi Province
  3. Shanxi Province Scholarship Council of China
  4. Natural Science Foundation of Chongqing Municipal Education Commission [KJ1401210]
  5. General Research Fund [HKBU 203212]
  6. Hong Kong Research Grant Council
  7. FRG [FRG2/13-14/059]
  8. Hong Kong Scholars Program
  9. Institute of Molecular Functional Materials - University Grants Committee, Areas of Excellence Scheme [AoE/P-03/08]

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A novel ratiometric mitochondrial cysteine (Cys)-selective twophoton fluorescence probe has been developed on the basis of a merocyanine as the fluorophore and an acrylate moiety as the biothiol reaction site. The biocompatible and photostable acrylate-functionalized merocyanine probe shows not only a mitochondriatargeting property but also highly selective detection and monitoring of Cys over other biothiols such as homocysteine (Hcy) and glutathione (GSH) and hydrogen sulfide (H2S) in live cells. In addition, this probe exhibits ratiometric fluorescence emission characteristics (F-518/F-452), which are linearly proportional to Cys concentrations in the range of 0.5-40 mu M. More importantly, the probe and its released fluorophore, merocyanine, exhibit strong two-photon excited fluorescence (TPEF) with two-photon action cross-section (Phi sigma(max)) of 65.2 GM at 740 nm and 72.6 GM at 760 nm in aqueous medium, respectively, which is highly desirable for high contrast and brightness ratiometric two-photon fluorescence imaging of the living samples. The probe has been successfully applied to ratiometrically image and detect mitochondrial Cys in live cells and intact tissues down to a depth of 150 mu m by two-photon fluorescence microscopy. Thus, this ratiometric two-photon fluorescent probe is practically useful for an investigation of Cys in living biological systems.

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