Area of research
Biotechnology · Ocean Engineering
Research interest
Research interests include Marine Sponges and Natural Products, Marine Biology and Environmental Chemistry, Diatoms and Algae Research, and Microbial Natural Products and Biosynthesis.
Mucosal Wound Repair: Reinforcement of Respiratory Mucus Barrier Function by Inorganic Polyphosphate.
Inorganic Polyphosphate and Alkaline Phosphatase/Adenylate Kinase: Key Components of the Physiological ATP-Dependent Wound Repair and Mode of Action.
Chronic Wound Healing: Breakthrough Strategies Based on Inorganic Polyphosphate.
DNA Damage and Skin Injuries Caused by Ionizing Radiation and Strategies for Wound Healing.
A GMP-compliant formulation of regeneratively active polyphosphate for wound healing and skin regeneration.
Wound healing: Advanced strategies in energy-dependent tissue regeneration
Freeze-Cast Composites of Alginate/Pyrophosphate-Stabilized Amorphous Calcium Carbonate: From the Nanoscale Structuration to the Macroscopic Properties
Janus orthogonal nanofiber membrane containing CPP@PDA for skull base reconstruction
Inorganic polyphosphate, a paradigm changer in 3D printing of <i>β</i>-tricalcium phosphate based materials for bone tissue surgery
Inorganic polyphosphate, a paradigm changer in 3D printing of<i>β</i>-tricalcium phosphate based materials for bone tissue surgery.
Freeze-Cast Composites of Alginate/Pyrophosphate-Stabilized Amorphous Calcium Carbonate: From the Nanoscale Structuration to the Macroscopic Properties.
Polyphosphate Nanoparticles: Balancing Energy Requirements in Tissue Regeneration Processes
Cell migration, DNA fragmentation and antibacterial properties of novel silver doped calcium polyphosphate nanoparticles
The Physiological Inorganic Polymers Biosilica and Polyphosphate as Key Drivers for Biomedical Materials in Regenerative Nanomedicine
Evaluation of a novel triplex immunochromatographic test for rapid simultaneous detection of norovirus, rotavirus, and adenovirus on a single strip test
Polyphosphate Nanoparticles: Balancing Energy Requirements in Tissue Regeneration Processes.
Energy level as a theranostic factor for successful therapy of tissue injuries with polyphosphate: the triad metabolic energy - mechanical energy - heat
The Physiological Inorganic Polymers Biosilica and Polyphosphate as Key Drivers for Biomedical Materials in Regenerative Nanomedicine.
Microfragmented Fat and Biphasic Calcium Phosphates for Alveolar Cleft Repair: Protocol for a Prospective, Nonblinded, First-in-Human Clinical Study
Liquid–liquid phase transition as a basis for novel materials for skin repair and regeneration
Liquid-liquid phase transition as a basis for novel materials for skin repair and regeneration.
Microfragmented Fat and Biphasic Calcium Phosphates for Alveolar Cleft Repair: Protocol for a Prospective, Nonblinded, First-in-Human Clinical Study.
Janus radial nanofiber patch with leak-proof, antimicrobial, and osteogenic integration for skull base reconstruction
The physiological polyphosphate as a healing biomaterial for chronic wounds: Crucial roles of its antibacterial and unique metabolic energy supplying properties
Standard in vitro evaluations of engineered bone substitutes are not sufficient to predict in vivo preclinical model outcomes
Acceleration of Wound Healing through Amorphous Calcium Carbonate, Stabilized with High-Energy Polyphosphate
Acceleration of Wound Healing through Amorphous Calcium Carbonate, Stabilized with High-Energy Polyphosphate.
Ascorbyl palmitate–PCL fiber mats loaded with strontium polyphosphate nanoparticles for guided bone regeneration
The physiological polyphosphate as a healing biomaterial for chronic wounds: Crucial roles of its antibacterial and unique metabolic energy supplying properties
Inorganic Polyphosphate: Coacervate Formation and Functional Significance in Nanomedical Applications