Artículo
Enhanced photon collection enables four dimensional fluorescence nanoscopy of living systems
Masullo, Luciano Andrés
; Bodén, Andreas; Pennacchietti, Francesca; Coceano, Giovanna; Ratz, Michael; Testa, Ilaria
Fecha de publicación:
12/2018
Editorial:
Nature Publishing Group
Revista:
Nature Communications
ISSN:
2041-1723
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The theoretically unlimited spatial resolution of fluorescence nanoscopy often comes at the expense of time, contrast and increased dose of energy for recording. Here, we developed MoNaLISA, for Molecular Nanoscale Live Imaging with Sectioning Ability, a nanoscope capable of imaging structures at a scale of 45–65 nm within the entire cell volume at low light intensities (W-kW cm−2). Our approach, based on reversibly switchable fluorescent proteins, features three distinctly modulated illumination patterns crafted and combined to gain fluorescence ON–OFF switching cycles and image contrast. By maximizing the detected photon flux, MoNaLISA enables prolonged (40–50 frames) and large (50 × 50 µm2) recordings at 0.3–1.3 Hz with enhanced optical sectioning ability. We demonstrate the general use of our approach by 4D imaging of organelles and fine structures in epithelial human cells, colonies of mouse embryonic stem cells, brain cells, and organotypic tissues.
Palabras clave:
NANOSCOPY
,
LIVING
,
CELLS
,
TIMELAPSE
Archivos asociados
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Identificadores
Colecciones
Articulos(CIBION)
Articulos de CENTRO DE INVESTIGACIONES EN BIONANOCIENCIAS "ELIZABETH JARES ERIJMAN"
Articulos de CENTRO DE INVESTIGACIONES EN BIONANOCIENCIAS "ELIZABETH JARES ERIJMAN"
Citación
Masullo, Luciano Andrés; Bodén, Andreas; Pennacchietti, Francesca; Coceano, Giovanna; Ratz, Michael; et al.; Enhanced photon collection enables four dimensional fluorescence nanoscopy of living systems; Nature Publishing Group; Nature Communications; 9; 1; 12-2018; 1-9
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