Area of research
Pathology and Forensic Medicine · Orthopedics and Sports Medicine
Research interest
Research focused on Cell biology and Intervertebral disc, with related work in Decellularization, Scaffold, Transcription factor. Notable publications include 'Decellularized extracellular matrix-based scaffold and hypoxic priming: A promising combination to improve the phenotype of degenerate intervertebral disc cells', 'Wharton's jelly‐derived multifunctional hydrogels: New tools to promote intervertebral disc regeneration in vitro and ex vivo', and 'Unorthodox localization of P2X7 receptor in subcellular compartments of skeletal system cells'.
Corrigendum to “Wharton's jelly-derived nanovesicles for targeting intervertebral disc degeneration” [Experimental and Molecular Pathology 144 (2025) 105011]
Adipose-Derived Stromal Cell Conditioned Medium on Bone Remodeling: Insights from a 3D Osteoblast–Osteoclast Co-Culture Model
Wharton's Jelly-Derived Nanovesicles for Targeting Intervertebral Disc Degeneration
Wharton's jelly-derived nanovesicles for targeting intervertebral disc degeneration
Wharton's jelly‐derived multifunctional hydrogels: New tools to promote intervertebral disc regeneration in vitro and ex vivo
A 3D in vitro model of biphasic calcium phosphate (BCP) scaffold combined with human osteoblasts, osteoclasts, and endothelial cells as a platform to mimic the oral microenvironment for tissue regeneration
The NFATc1/P2X7 receptor relationship in human intervertebral disc cells
Unorthodox localization of P2X7 receptor in subcellular compartments of skeletal system cells
Decellularized extracellular matrix-based scaffold and hypoxic priming: A promising combination to improve the phenotype of degenerate intervertebral disc cells