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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.Pageof 5