Area of research
Pulmonary and Respiratory Medicine · Oncology
Research interest
Research interests include Prostate Cancer Treatment and Research, Radiopharmaceutical Chemistry and Applications, Cancer Cells and Metastasis, and Cancer Treatment and Pharmacology.
mistriotis-lab/cell-migration-PRW-analysis: v1.0.0
mistriotis-lab/cell-migration-PRW-analysis: v1.0.0
mistriotis-lab/morphology-analysis: v0.1.0-alpha
mistriotis-lab/morphology-analysis: v0.1.0-alpha
mistriotis-lab/cell-trajectory-plotting: v0.1.0-alpha
mistriotis-lab/cell-trajectory-plotting: v0.1.0-alpha
Cytoplasmic anillin and Ect2 promote RhoA/myosin II-dependent confined migration and invasion
Frontiers in mechanobiology and mechanomedicine
Clofazimine Treatment Modulates Key Non-Coding RNAs Associated with Tumor Progression and Drug Resistance in Lethal Prostate Cancer
Cellular interactions in tumor microenvironment during breast cancer progression: new frontiers and implications for novel therapeutics
The impact of tumor microenvironment: unraveling the role of physical cues in breast cancer progression
Coordinated in confined migration: crosstalk between the nucleus and ion channel-mediated mechanosensation
Confinement controls the directional cell responses to fluid forces
Differential effects of confinement‐induced <scp>reactive oxygen species</scp> accumulation on highly motile cancerous and non‐cancerous cells
Leveraging Cell Migration Dynamics to Discriminate Between Senescent and Presenescent Human Mesenchymal Stem Cells
Cytoplasmic accumulation and plasma membrane association of anillin and Ect2 promote confined migration and invasion
3D confinement alters smooth muscle cell responses to chemical and mechanical cues
Cytokinesis machinery promotes cell dissociation from collectively migrating strands in confinement
Downregulation of YAP Activity Restricts P53 Hyperactivation to Promote Cell Survival in Confinement
Metronomic Administration of Topotecan Alone and in Combination with Docetaxel Inhibits Epithelial–mesenchymal Transition in Aggressive Variant Prostate Cancers
Data from Metronomic Administration of Topotecan Alone and in Combination with Docetaxel Inhibits Epithelial–mesenchymal Transition in Aggressive Variant Prostate Cancers
Extracellular fluid viscosity enhances cell migration and cancer dissemination
Polarized NHE1 and SWELL1 regulate migration direction, efficiency and metastasis
Kidney epithelial cells are active mechano-biological fluid pumps
Migration and 3D Traction Force Measurements inside Compliant Microchannels
Integrating Pharmacogenomics Data-Driven Computational Drug Prediction with Single-Cell RNAseq to Demonstrate the Efficacy of a NAMPT Inhibitor against Aggressive, Taxane-Resistant, and Stem-like Cells in Lethal Prostate Cancer
Integrating pharmacogenomics data-driven prediction with bulk and single-cell RNAseq to demonstrate the efficacy of an NAMPT inhibitor against aggressive, taxane-resistant, and stem-like cells in lethal prostate cancer
A Procarcinogenic Colon Microbe Promotes Breast Tumorigenesis and Metastatic Progression and Concomitantly Activates Notch and β-Catenin Axes
The fluid shear stress sensor TRPM7 regulates tumor cell intravasation
Trans-epithelial Fluid Pumping Performance of Renal Epithelial Cells and Mechanics of Cystic Expansion