As apoptosis occurs via a complex signaling cascade that is tightly regulated at multiple cell points, different methods exist to evaluate the activity of the proteins involved in the intracellular apoptotic pathways and the phenotype of apoptotic neurons. Detention of the activity of the enzyme caspase-3, the key executioner caspase in programmed cell death, by laser scanning confocal fluorescence microscopy and the fluorescence resonance energy transfer technology is an alternative approach to classical standard techniques, such as Western blotting, activity assays, or histological techniques, and allows working with both fixed and living cells. This technique combined with the organotypic culture approach ex vivo represents a valid tool for the study of the mechanisms of neuronal survival /death and neuroprotection.

Real-time visualization of caspase-3 activation by fluorescence resonance energy transfer (FRET).

ALASIA, SILVIA;COCITO, CAROLINA;MERIGHI, Adalberto;LOSSI, Laura
2015-01-01

Abstract

As apoptosis occurs via a complex signaling cascade that is tightly regulated at multiple cell points, different methods exist to evaluate the activity of the proteins involved in the intracellular apoptotic pathways and the phenotype of apoptotic neurons. Detention of the activity of the enzyme caspase-3, the key executioner caspase in programmed cell death, by laser scanning confocal fluorescence microscopy and the fluorescence resonance energy transfer technology is an alternative approach to classical standard techniques, such as Western blotting, activity assays, or histological techniques, and allows working with both fixed and living cells. This technique combined with the organotypic culture approach ex vivo represents a valid tool for the study of the mechanisms of neuronal survival /death and neuroprotection.
2015
Neuronal Cell Death
Humana Press, c/o Springer Science+Business Media
Methods in molecular biology
1254
99
114
9781493921515
Apoptosis; Caspase 3; FRET; Neuroni
Alasia S;Cocito C;Merighi A;Lossi L
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/155275
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