Aptamer-based colorimetric determination of early-stage apoptotic cells via the release of cytochrome c from mitochondria and by exploiting silver/platinum alloy nanoclusters as a peroxidase mimic.
Yasaman-Sadat BorgheiSaman HosseinkhaniPublished in: Mikrochimica acta (2019)
An enzyme-free aptameric nanosensor is presented for apoptosis assay. The method exploits the peroxidase-mimicking property of silver/platinum alloy nanoclusters (Ag/Pt NCs) and uses a Cyt c binding ssDNA aptamer. An extra-strand polycytosine (C14) aptamer was designed as a template for synthesis of the Ag/Pt NCs. If cell lysate or purified Cyt c is placed in a polystyrene microplate, Cyt c will bind to the surface of the wells of a microtiterplate. On addition of Apt@Ag/PtNCs, it will associate with Cyt c and then catalytically oxidize colorless tetramethylbenzidine (TMB) in the presence of H2O2 to give a blue colored oxidation product (TMBox) due to the peroxidase-mimicking property of the Ag/Pt NCs. Under optimal conditions, the absorbance of TMB at 660 nm is linearly enhanced as the concentration of Cyt c increases from 50.0 fM to 500 nM, and the detection limit is ~10 pM. The assay is simple, sensitive and cost effective in that it is enzyme-free, antibody-free and label-free. Graphical abstractSchematic diagram of the apoptosis assay on the basis of microplate well-coated mitochondrial cytochrome c releasing by using Aptamer@Ag/Pt NCs.
Keyphrases
- label free
- quantum dots
- cell cycle arrest
- gold nanoparticles
- sensitive detection
- cell death
- hydrogen peroxide
- visible light
- oxidative stress
- early stage
- highly efficient
- high throughput
- endoplasmic reticulum stress
- induced apoptosis
- single cell
- photodynamic therapy
- air pollution
- stem cells
- pi k akt
- particulate matter
- heavy metals
- cell proliferation
- nitric oxide
- binding protein
- radiation therapy
- fluorescent probe
- anti inflammatory
- bone marrow
- mass spectrometry
- sentinel lymph node
- single molecule
- rectal cancer
- liquid chromatography