4.7 Article

Quadruply-labeled serum albumin as a biodegradable nanosensor for simultaneous fluorescence imaging of intracellular pH values, oxygen and temperature

Journal

MICROCHIMICA ACTA
Volume 186, Issue 8, Pages -

Publisher

SPRINGER WIEN
DOI: 10.1007/s00604-019-3674-4

Keywords

Simultaneous imaging; Multiple sensing; Triple sensing; Nanosensors; Luminescence; Intracellular sensing; Serum albumin; Ratiometric pH sensing; Lifetime imaging; Oxygen sensing

Funding

  1. National Natural Science Foundation of China [21775029]
  2. National Key R&D Program of China [2017YFC0906800]
  3. Recruitment Program of Global Experts (1000 Talent program) in China
  4. Program for Professor of Special Appointment (Eastern Scholar) at Shanghai Institutions of Higher Learning [TP2014004]

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The construction of multiple fluorescent nanosensors for intracellular studies is a challenging task because spectral overlap of indicator probes can lead to cross-talk and mutual interference. This work describes biodegradable nanosensors that can simultaneously measure three intracellular parameters (temperature, pH and oxygen concentration). Bovine serum albumin (BSA) is selected as the scaffold to construct the triple nanosensor by covalent immobilization four fluorophores on BSA. The following luminophores were used: (a) fluorescein as a probe for pH values, (b) a platinum(II) porphyrin complex for oxygen; (c) a europium(III) clathrate complex for temperature, and (d) a rhodamine B as a reference dye. The nanoparticles have a size of 20nm and show excellent biocompatibility and good brightness. The nanosensors were used for ratiometric imaging of intracellular pH values, oxygen and temperature in HeLa cells. The triple nanosensor responds reversibly and this can be used for real-time tracing of these key parameters. Owing to their biodegradable feature, the use of this kind of triple nanosensor reduce the stress on cellular activities because less nanosensors can be used to gather the total information.

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