Area of research
Cell Biology · Biomedical Engineering
Research interest
Research interests include Cellular Mechanics and Interactions, Microfluidic and Bio-sensing Technologies, 3D Printing in Biomedical Research, and Cell Image Analysis Techniques.
Cell viscosity influences haematogenous dissemination and metastatic extravasation of tumour cells.
Consensus statement on Brillouin light scattering microscopy of biological materials
Cytoskeleton-functionalized synthetic cells with life-like mechanical features and regulated membrane dynamicity.
A label-free method for measuring the composition of multicomponent biomolecular condensates.
Conserved nucleocytoplasmic density homeostasis drives cellular organization across eukaryotes.
De novo identification of universal cell mechanics gene signatures.
Biphasic inflammation control by fibroblasts enables spinal cord regeneration in zebrafish
High-Throughput Mechanomic Screening Reveals Novel Regulators of Single-Cell Mechanics
Author Correction: Cytoskeleton-functionalized synthetic cells with life-like mechanical features and regulated membrane dynamicity.
Self-organization of tumor heterogeneity and plasticity
Adipose-mimetic granular hydrogels uncover biophysical cues driving breast cancer invasion
Automation and improvement of WBC mechanical profiling in deformability cytometry.
High-throughput mechanomic screening reveals novel regulators of single-cell mechanics.
Fine-tuning cell-mimicking polyacrylamide microgels: Sensitivity to microscale reaction conditions in droplet microfluidics
Viscoelastic characterization of cells in microfluidic channels with 3D hydrodynamic focusing
Hierarchical Heterogeneities in Spatio-Temporal Dynamics of the Cytoplasm
Direct, high-throughput linking of single cell imaging and gene expression
High-throughput multimodal optofluidic biophysical imaging cytometry.
Longitudinal associations between depressive symptoms and cell deformability: do glucocorticoids play a role?
De novo identification of universal cell mechanics gene signatures
Viscoelastic characterization of cells in microfluidic channels with 3D hydrodynamic focusing
Quantitative phase deformability cytometry (QP-DC) for precise and clinically relevant multiparametric immune cell profiling
Membrane to cortex attachment determines different mechanical phenotypes in LGR5+ and LGR5- colorectal cancer cells.
Optical characterization of molecular interaction strength in protein condensates.
AI-driven projection tomography with multicore fibre-optic cell rotation.
High-throughput viscoelastic characterization of cells in hyperbolic microchannels.
Estimation of the mass density of biological matter from refractive index measurements.
Beyond comparison: Brillouin microscopy and AFM-based indentation reveal divergent insights into the mechanical profile of the murine retina