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Frontiers in Cell and Developmental Biology|August 8, 2022
Human mesenchymal amniotic fluid stem cells reveal an unexpected neuronal potential differentiating into functional spinal motor neuronsGiulia Gaggi, Andrea Di Credico, Simone Guarnieri, et al.
Frontiers in Endocrinology|December 22, 2025
Endocrine-disrupting effects of environmental BPS and PFOS on human brain organoid developmentAndrea Di Credico, Giulia Gaggi, Sandra Bibbò, et al.
The Journal of Histochemistry and Cytochemistry : Official Journal of the Histochemistry Society|April 4, 2023
Betaine Treatment Prevents TNF-α-Mediated Muscle Atrophy by Restoring Total Protein Synthesis Rate and Morphology in Cultured MyotubesAndrea Di Credico, Giulia Gaggi, Pascal Izzicupo, et al.
European Journal of Cell Biology|July 27, 2025
Interference of estrogen signaling by endocrine disruptors in male and female cells: Potential implications of BPS and PFOS in human developmentGiulia Gaggi, Andrea Di Credico, Sandra Bibbò, et al.
International Journal of Environmental Research and Public Health|December 24, 2021
Bioelectrical Impedance Vector Analysis of Young Elite Team Handball PlayersAndrea Di Credico, Giulia Gaggi, Anastasios Vamvakis, et al.
Iscience|October 14, 2022
Human fetal membrane-mesenchymal stromal cells generate functional spinal motor neurons in vitroGiulia Gaggi, Andrea Di Credico, Simone Guarnieri, et al.
International Journal of Molecular Sciences|September 12, 2020
Human Mesenchymal Stromal Cells Unveil an Unexpected Differentiation Potential toward the Dopaminergic Neuronal LineageGiulia Gaggi, Andrea Di Credico, Pascal Izzicupo, et al.
Brain Sciences|June 27, 2024
Unraveling the Epigenetic Landscape: Insights into Parkinson's Disease, Amyotrophic Lateral Sclerosis, and Multiple SclerosisPierpaolo Di Martino, Valentina Marcozzi, Sandra Bibbò, et al.
Scientific Reports|December 11, 2023
Machine learning identifies phenotypic profile alterations of human dopaminergic neurons exposed to bisphenols and perfluoroalkylsAndrea Di Credico, Amélie Weiss, Massimo Corsini, et al.
Biomedicine & Pharmacotherapy = Biomedecine & Pharmacotherapie|November 4, 2024
Metoprolol disrupts inflammatory response of human cardiomyocytes via β-arrestin2 biased agonism and NF-κB signaling modulationFabrizio Ricci, Andrea Di Credico, Giulia Gaggi, et al.
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