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Edoardo Sozzi
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Single-cell transcriptomics captures features of human midbrain development and dopamine neuron diversity in brain organoids
A Fiorenzano, E Sozzi, M Birtele, J Kajtez, J Giacomoni, F Nilsson, ...
Nature communications 12 (1), 7302, 2021
932021
A cis-acting structural variation at the ZNF558 locus controls a gene regulatory network in human brain development
PA Johansson, PL Brattås, CH Douse, PH Hsieh, A Adami, J Pontis, ...
Cell stem cell 29 (1), 52-69. e8, 2022
452022
In vitro modeling of the human dopaminergic system using spatially arranged ventral midbrain–striatum–cortex assembloids
D Reumann, C Krauditsch, M Novatchkova, E Sozzi, SN Wong, ...
Nature Methods 20 (12), 2034-2047, 2023
302023
Single-cell transcriptional and functional analysis of dopaminergic neurons in organoid-like cultures derived from human fetal midbrain
M Birtele, P Storm, Y Sharma, J Kajtez, JN Wahlestedt, E Sozzi, F Nilsson, ...
Development 149 (23), dev200504, 2022
222022
Generation of human ventral midbrain organoids derived from pluripotent stem cells
E Sozzi, F Nilsson, J Kajtez, M Parmar, A Fiorenzano
Current protocols 2 (9), e555, 2022
222022
Dopamine neuron diversity: Recent advances and current challenges in human stem cell models and single cell sequencing
A Fiorenzano, E Sozzi, M Parmar, P Storm
Cells 10 (6), 1366, 2021
172021
Silk scaffolding drives self-assembly of functional and mature human brain organoids
E Sozzi, J Kajtez, A Bruzelius, MF Wesseler, F Nilsson, M Birtele, ...
Frontiers in cell and developmental biology 10, 1023279, 2022
152022
Single-cell profiling of coding and noncoding genes in human dopamine neuron differentiation
F Nilsson, P Storm, E Sozzi, D Hidalgo Gil, M Birtele, Y Sharma, M Parmar, ...
Cells 10 (1), 137, 2021
152021
Single-cell transcriptomics captures features of human midbrain development and dopamine neuron diversity in brain organoids (vol 12, 7302, 2021)
A Fiorenzano, E Sozzi, M Birtele, J Kajtez, J Giacomoni, F Nilsson, ...
NATURE COMMUNICATIONS 13 (1), 2022
52022
Single cell transcriptional and functional analysis of human dopamine neurons in 3D fetal ventral midbrain organoid like cultures
M Birtele, Y Sharma, P Storm, J Kajtez, JN Wahlestedt, E Sozzi, F Nilsson, ...
BioRxiv, 2020.10. 01.322495, 2020
42020
Author Correction: Single-cell transcriptomics captures features of human midbrain development and dopamine neuron diversity in brain organoids
A Fiorenzano, E Sozzi, M Birtele, J Kajtez, J Giacomoni, F Nilsson, ...
Nature Communications 13, 2022
32022
Modular 3D printed platform for fluidically connected human brain organoid culture
B Rezaei, J Giacomoni, F Nilsson, E Sozzi, A Fiorenzano, M Parmar, ...
Biofabrication 16 (1), 015014, 2023
22023
TARGET-seq: Linking single-cell transcriptomics of human dopaminergic neurons with their target specificity
A Fiorenzano, P Storm, E Sozzi, A Bruzelius, S Corsi, J Kajtez, ...
Proceedings of the National Academy of Sciences 121 (47), e2410331121, 2024
12024
Dissecting Dopaminergic Neuron Specification at Single Cell Resolution-Insights from 3D brain organoids and xenograft models
E Sozzi
2025
Correction: Generation of Human Ventral Midbrain Organoids Derived from Pluripotent Stem Cells
E Sozzi, F Nilsson, J Kajtez, M Parmar, A Fiorenzano
Current Protocols 4 (10), e70042, 2024
2024
Non-cell-autonomous control of gastruloid development by the lncRNA T-UCstem1 through DKK1-dependent modulation of WNT signalling
A Coppola, F Amoroso, F Saracino, G Andolfi, E Sozzi, P Salerno, ...
bioRxiv, 2024.09. 18.613704, 2024
2024
3D human brain organoids: a model to study neural stem cell differentiation
E SOZZI
2020
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