Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include Materials science, Chemistry, Medicine, Computer science, Biophysics, and Cancer.
MOX Nanosensors to Detect Colorectal Cancer Relapses from Patient’s Blood at Three Years Follow-Up, and Gender Correlation
Transient capacitance changes recorded from vestibular type I hair cells are produced by <i>G</i><sub>K,L</sub> gating and do not involve neurotransmitter exocytosis
Investigating the Temperature-Dependent Kinetics in Humidity-Resilient Tin–Titanium-Based Metal Oxide Gas Sensors
Pimozide Inhibits Type II but Not Type I Hair Cells in Chicken Embryo and Adult Mouse Vestibular Organs
Overview of Gas Sensors Focusing on Chemoresistive Ones for Cancer Detection
Reproducibility and Repeatability Tests on (SnTiNb)O2 Sensors in Detecting ppm-Concentrations of CO and Up to 40% of Humidity: A Statistical Approach
Chemoresistive Nanosensors Employed to Detect Blood Tumor Markers in Patients Affected by Colorectal Cancer in a One-Year Follow Up
The role of potassium current in the pulmonary response to environmental oxidative stress
A Portable Device for I–V and Arrhenius Plots to Characterize Chemoresistive Gas Sensors: Test on SnO2-Based Sensors
The possible modulation of NRF2 and NF-kB crosstalk by Sulforaphane in the progression of human melanoma
Chemoresistive Sensors for Cellular Type Discrimination Based on Their Exhalations
Cation Permeability of Voltage-Gated Hair Cell Ca2+ Channels of the Vertebrate Labyrinth
Chemoresistive Nanosensors Employed to Detect Blood Tumor Markers in Patients Affected by Colorectal Cancer in a One-Year Follow-Up
Tin, Titanium, Tantalum, Vanadium and Niobium Oxide Based Sensors to Detect Colorectal Cancer Exhalations in Blood Samples
Chemoresistive Nanostructured Metal-Oxide Sensors for Human Tumor Tissue and Blood Exhalations Analysis
Colorectal Cancer Study with Nanostructured Sensors: Tumor Marker Screening of Patient Biopsies
Nanostructured Chemoresistive Sensors for Oncological Screening and Tumor Markers Tracking: Single Sensor Approach Applications on Human Blood and Cell Samples
Advanced real-time recordings of neuronal activity with tailored patch pipettes, diamond multi-electrode arrays and electrochromic voltage-sensitive dyes
Chemoresistive Nanostructured Sensors for the Analysis of Tumor Tissues Exhalations
Incorporating phototransduction proteins in zebrafish green cone with pressure-polished patch pipettes
Chemoresistive Nanostructured Sensors for Tumor Pre-Screening
Nanostructured Chemoresistive Sensors for Oncological Screening: Preliminary Study with Single Sensor Approach on Human Blood Samples
Neoplasms and metastasis detection in human blood exhalations with a device composed by nanostructured sensors
P1DH.7 - Chemoresistive Sensors for Cancer Pre-Screening in Human Tissue
Potassium Ascorbate with Ribose: Promising Therapeutic Approach for Melanoma Treatment
Detection of Tumor Markers and Cell Metabolites in Cell Cultures, Using Nanostructured Chemoresistive Sensors
Studying the Mechanism of Membrane Permeabilization Induced by Antimicrobial Peptides Using Patch-Clamp Techniques
Characterization of Zebrafish Green Cone Photoresponse Recorded with Pressure-Polished Patch Pipettes, Yielding Efficient Intracellular Dialysis
Mechanistic Insight into CM18-Tat11 Peptide Membrane-Perturbing Action by Whole-Cell Patch-Clamp Recording