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Updated: Jan 18, 2026

A Rapid and Specific Microplate Assay for the Determination of Intra- and Extracellular Ascorbate in Cultured Cells
Published on: April 11, 2014
A Luminescence Resonance Energy Transfer (LRET)-Based Nanoprobe for Ascorbic Acid Detection in Living Cells and Real
Siyu Pan1, Yonggen Hong1, Yuehan Jian1
1Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, Hubei Key Laboratory of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan, 430079, China.
Abstract:
Ascorbic acid (AA) is a ubiquitous and essential, water-soluble electron donor in living organisms which must be obtained from the diet. AA deficiency is closely associated with the pathogenesis and/or progression of various diseases, including diabetes and neurodegenerative disorders affecting hippocampal neurogenesis and cognitive function. Thus, it is beneficial to monitor AA in living cells and real samples. However, few probes have been developed for AA monitoring in both living cells and real samples. Here, we developed an LRET-based nanoprobe for AA detection, leveraging the near-infrared (NIR) excitation properties and spectral tunability of up-conversion nanoparticles (UCNPs). Upon exposure to AA, the MnO2 layer undergoes gradual decomposition, leading to a significant decrease in absorption. The detection limit was determined to be 0.097 µg/mL. As the MnO2 layer decomposes, the quenching effect on UCNPs is inhibited, leading to a 5.2-fold enhancement in up-conversion emission. The detection limit for this luminescence-based approach was determined to be 2.48 µg/mL. Moreover, UCNP@MnO2 exhibits low cytotoxicity and efficiently enters cells, making it suitable for application in both living cells and real samples. This research demonstrates the dual-sensing capabilities of UCNP@MnO2 to AA, and validates its application in both living cells and real samples.
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