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Dive into the research topics where Melody Di Bona is active.

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Featured researches published by Melody Di Bona.


Nature Communications | 2017

Measurement of nanoscale three-dimensional diffusion in the interior of living cells by STED-FCS

Luca Lanzano; Lorenzo Scipioni; Melody Di Bona; Paolo Bianchini; Ranieri Bizzarri; Francesco Cardarelli; Alberto Diaspro; Giuseppe Vicidomini

The observation of molecular diffusion at different spatial scales, and in particular below the optical diffraction limit (<200 nm), can reveal details of the subcellular topology and its functional organization. Stimulated-emission depletion microscopy (STED) has been previously combined with fluorescence correlation spectroscopy (FCS) to investigate nanoscale diffusion (STED-FCS). However, stimulated-emission depletion fluorescence correlation spectroscopy has only been used successfully to reveal functional organization in two-dimensional space, such as the plasma membrane, while, an efficient implementation for measurements in three-dimensional space, such as the cellular interior, is still lacking. Here we integrate the STED-FCS method with two analytical approaches, the recent separation of photons by lifetime tuning and the fluorescence lifetime correlation spectroscopy, to simultaneously probe diffusion in three dimensions at different sub-diffraction scales. We demonstrate that this method efficiently provides measurement of the diffusion of EGFP at spatial scales tunable from the diffraction size down to ∼80 nm in the cytoplasm of living cells.The measurement of molecular diffusion at sub-diffraction scales has been achieved in 2D space using STED-FCS, but an implementation for 3D diffusion is lacking. Here the authors present an analytical approach to probe diffusion in 3D space using STED-FCS and measure the diffusion of EGFP at different spatial scales.


Communications Biology | 2018

Local raster image correlation spectroscopy generates high-resolution intracellular diffusion maps

Lorenzo Scipioni; Melody Di Bona; Giuseppe Vicidomini; Alberto Diaspro; Luca Lanzano

Raster image correlation spectroscopy (RICS) is a powerful method for measuring molecular diffusion in live cells directly from images acquired on a laser scanning microscope. However, RICS only provides single average diffusion coefficients from regions with a lateral size on the order of few micrometers, which means that its spatial resolution is mainly limited to the cellular level. Here we introduce the local RICS (L-RICS), an easy-to-use tool that generates high resolution maps of diffusion coefficients from images acquired on a laser scanning microscope. As an application we show diffusion maps of a green fluorescent protein (GFP) within the nucleus and within the nucleolus of live cells at an effective spatial resolution of 500 nm. We find not only that diffusion in the nucleolus is slowed down compared to diffusion in the nucleoplasm, but also that diffusion in the nucleolus is highly heterogeneous.Lorenzo Scipioni et al. present Local Raster Image Correlation Spectroscopy (L-RICS), a method for generating sub-micrometer diffusion maps. They apply L-RICS to GFP in live cells and find that diffusion coefficients differ between the nucleus and nucleolus and are highly heterogeneous within compartments.


Biophysical Journal | 2016

Application of the SPLIT-FLCS Method to the Detection of Nanoscale Diffusion in 3D in Live Cells

Luca Lanzano; Lorenzo Scipioni; Melody Di Bona; Paolo Bianchini; Ranieri Bizzarri; Francesco Cardarelli; Giuseppe Vicidomini; Alberto Diaspro


Microscopy and Microanalysis | 2018

LIQUITOPY®: A Liquid Tunable Microscope to Study Chromatin Organization in the Cell Nucleus

Alberto Diaspro; Nicholas Anthony; Paolo Bianchini; Isotta Cainero; Melody Di Bona; Luca Lanzano; Aymeric Le Gratiet; Riccardo Marongiu; Michele Oneto; Simone Pelicci; Luca Pesce


Biophysical Journal | 2018

Probing Chromatin Organization by Sorting of Short Sequence Fluorescence Correlation Spectroscopy

Melody Di Bona; Simone Pelicci; Giuseppe Vicidomini; Eugenia Cammarota; Davide Mazza; Alberto Diaspro; Luca Lanzano


Biophysical Journal | 2018

FLIM-FRET of Chromatin in Live Cells using Two DNA-Binding Dyes

Simone Pelicci; Michele Oneto; Melody Di Bona; Alberto Diaspro; Luca Lanzano


Biophysical Journal | 2018

SPLIT-STED Imaging of Nuclear Structures

Luca Lanzano; Maria J. Sarmento; Lorenzo Scipioni; Michele Oneto; Simone Pelicci; Melody Di Bona; Luca Pesce; Mario Faretta; Laura Furia; Gaetano Ivan Dellino; P. G. Pelicci; Paolo Bianchini; Alberto Diaspro


Biophysical Journal | 2018

A Liquid Tunable Microscope as a New Paradigm in Optical Microscopy to Paint 4D Chromatin Organisation in the Cell Nucleus

Alberto Diaspro; Isotta Cainero; Luca Lanzano; Paolo Bianchini; Giuseppe Vicidomini; Francesca Cella Zanacchi; Luca Pesce; Simone Pelicci; Michele Oneto; Melody Di Bona; Mario Faretta; Paola Barboro; Aymeric Le Gratiet


Biophysical Journal | 2017

Heterogeneity of the Nuclear Environment Investigated by Superresolution Microscopy and Fluorescence Correlation Spectroscopy

Luca Lanzano; Melody Di Bona; Lorenzo Scipioni; Maria J. Sarmento; Enrico Gratton; Giuseppe Vicidomini; Alberto Diaspro


Biophysical Journal | 2017

Spatial Organization of Nuclear Structures by Dual Colour Super-Resolution Microscopy

Maria J. Sarmento; Lorenzo Scipioni; Melody Di Bona; Mario Faretta; Laura Furia; Gaetano Ivan Dellino; Pier G. Pelicci; Paolo Bianchini; Alberto Diaspro; Luca Lanzano

Collaboration


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Alberto Diaspro

Istituto Italiano di Tecnologia

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Luca Lanzano

Istituto Italiano di Tecnologia

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Lorenzo Scipioni

Istituto Italiano di Tecnologia

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Giuseppe Vicidomini

Istituto Italiano di Tecnologia

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Paolo Bianchini

Istituto Italiano di Tecnologia

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Simone Pelicci

Istituto Italiano di Tecnologia

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Maria J. Sarmento

Istituto Italiano di Tecnologia

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Michele Oneto

Istituto Italiano di Tecnologia

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Luca Pesce

Istituto Italiano di Tecnologia

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Mario Faretta

European Institute of Oncology

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