Area of research
Molecular Biology · Food Science
Research interest
Research focused on Chondrogenesis and Mesenchymal stem cell, with related work in Slug, Cell biology, Gene silencing. Notable publications include 'Silencing of Antichondrogenic MicroRNA-221 in Human Mesenchymal Stem Cells Promotes Cartilage Repair In Vivo', 'Correlation between Slug transcription factor and miR-221 in MDA-MB-231 breast cancer cells', and 'MicroRNA-221 silencing attenuates the degenerated phenotype of intervertebral disc cells'.
Methods and Technical Issues for Optimizing the Production of Hydrogels Containing Decellularized Wharton’s Jelly
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
Immunohistochemical analysis to detect a molecular signature in intervertebral disc degeneration
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
The NFATc1/P2X7 receptor relationship in human intervertebral disc cells
Unorthodox localization of P2X7 receptor in subcellular compartments of skeletal system cells
Pro‑differentiating compounds for human intervertebral disc cells are present in Violina pumpkin leaf extracts
Clinically-driven design of novel methods of investigation on skeletal health status in neurological disorders. The case of the traumatic brain injuries
What Is Safe and How Much Does It Matter? Food Vendors’ and Consumers’ Views on Food Safety in Urban Nigeria
Decellularized extracellular matrix-based scaffold and hypoxic priming: A promising combination to improve the phenotype of degenerate intervertebral disc cells
Human osteoclasts/osteoblasts 3D dynamic co‑culture system to study the beneficial effects of glucosamine on bone microenvironment
Three-Dimensional Co-Culture System of Human Osteoblasts and Osteoclast Precursors from Osteoporotic Patients as an Innovative Model to Study the Role of Nutrients: Focus on Vitamin K2
The P2X7 purinergic receptor in intervertebral disc degeneration
Pro-Osteogenic Properties of Violina pumpkin (Cucurbita moschata) Leaf Extracts: Data from In Vitro Human Primary Cell Cultures
Extracellular Matrix From Decellularized Wharton’s Jelly Improves the Behavior of Cells From Degenerated Intervertebral Disc
Expression and function of the P2X7 receptor in human osteoblasts: The role of NFATc1 transcription factor
The Adequacy of Experimental Models and Understanding the Role of Non-coding RNA in Joint Homeostasis and Disease
Human Osteoclasts/Osteoblasts 3D Dynamic Co-Culture System to Study the Beneficial Effects of Glucosamine on Bone Microenvironment
Estrogen-mediated protection against coronary heart disease: The role of the Notch pathway
Reciprocal Regulation of TRPS1 and miR-221 in Intervertebral Disc Cells
MicroRNA-221 silencing attenuates the degenerated phenotype of intervertebral disc cells
Hypoxia Preconditioning of Human MSCs: a Direct Evidence of HIF-1α and Collagen Type XV Correlation
Vav1 is necessary for <scp>PU</scp>.1 mediated upmodulation of miR‐29b in acute myeloid leukaemia‐derived cells
Ectopic expression of PLC‐β2 in non‐invasive breast tumor cells plays a protective role against malignant progression and is correlated with the deregulation of miR‐146a
Immunoelectron microscopic localization of Collagen type XV during human mesenchymal stem cells mineralization
Collagen type XV and the ‘osteogenic status’
Dedifferentiated Chondrocytes in Composite Microfibers As Tool for Cartilage Repair