Area of research
Surgery · Biomaterials
Research interest
Research interests include Tissue Engineering and Regenerative Medicine, Electrospun Nanofibers in Biomedical Applications, Liver physiology and pathology, and Tracheal and airway disorders.
Lessons learned from pre-clinical testing of xenogeneic decellularized esophagi in a rabbit model
Immunomodulatory Role of the Extracellular Matrix Within the Liver Disease Microenvironment
Patient-Derived Scaffolds of Colorectal Cancer Metastases as an Organotypic 3D Model of the Liver Metastatic Microenvironment
Recellularized Colorectal Cancer Patient-Derived Scaffolds as In Vitro Pre-Clinical 3D Model for Drug Screening
Extracellular matrix hydrogel derived from decellularized tissues enables endodermal organoid culture
Generation of a Functioning and Self-Renewing Diaphragmatic Muscle Construct
Allogenic tissue-specific decellularized scaffolds promote long-term muscle innervation and functional recovery in a surgical diaphragmatic hernia model
Decellularised skeletal muscles allow functional muscle regeneration by promoting host cell migration
Decellularized Diaphragmatic Muscle Drives a Constructive Angiogenic Response In Vivo
Decellularized colorectal cancer matrix as bioactive microenvironment for in vitro 3D cancer research
A comparison of tracheal scaffold strategies for pediatric transplantation in a rabbit model
Dry acellular oesophageal matrix prepared by supercritical carbon dioxide
Isolation and Expansion of Muscle Precursor Cells from Human Skeletal Muscle Biopsies
Improvement of diaphragmatic performance through orthotopic application of decellularized extracellular matrix patch
Quinazoline-based multi-tyrosine kinase inhibitors: Synthesis, modeling, antitumor and antiangiogenic properties
Amniotic Fluid Stem Cells Restore the Muscle Cell Niche in a <i>HSA‐Cre</i> , <i> Smn <sup>F7/F7</sup> </i> Mouse Model
Hypoxia Increases Mouse Satellite Cell Clone Proliferation Maintaining both In Vitro and In Vivo Heterogeneity and Myogenic Potential