Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Extracellular vesicles in disease, Cellular Mechanics and Interactions, Cell Adhesion Molecules Research, and MicroRNA in disease regulation.
Secreted exosomes induce filopodia formation.
Advancements in extracellular vesicle research
Fluid shear stress modulates endocytic pathways and junctional targeting of tumor-derived extracellular vesicles in endothelial cells
Small Extracellular Vesicle Cargoes Associated with Lymph Node Metastasis in Head and Neck Cancer
Secreted exosomes induce filopodia formation
Sphingolipids in Extracellular Vesicles Released From the Skeletal Muscle Plasma Membrane Control Muscle Stem Cell Fate During Muscle Regeneration
Sphingolipids in Extracellular Vesicles Released From the Skeletal Muscle Plasma Membrane Control Muscle Stem Cell Fate During Muscle Regeneration.
Macromolecular Diamidobenzimidazole Conjugates Can Activate Stimulator of Interferon Genes.
Exosomes are specialized vehicles to induce fibronectin assembly
Macromolecular Diamidobenzimidazole Conjugates Activate STING
Secreted exosomes induce filopodia formation
Author response: Secreted exosomes induce filopodia formation
Multiparametric Single-Vesicle Flow Cytometry Resolves Extracellular Vesicle Heterogeneity and Reveals Selective Regulation of Biogenesis and Cargo Distribution.
Extracellular vesicles from non-neuroendocrine SCLC cells promote adhesion and survival of neuroendocrine SCLC cells.
A perspective from the National Eye Institute Extracellular Vesicle Workshop: Gaps, needs, and opportunities for studies of extracellular vesicles in vision research
A perspective from the National Eye Institute Extracellular Vesicle Workshop: Gaps, needs, and opportunities for studies of extracellular vesicles in vision research.
Analysis of small EV proteomes reveals unique functional protein networks regulated by VAP-A.
5-Fluorouracil treatment represses pseudouridine-containing miRNA export into extracellular vesicles.
Secreted exosomes induce filopodia formation
Secreted exosomes induce filopodia formation
<i>miR-100</i>
and
<i>miR-125b</i>
Contribute to Enhanced 3D Growth and Invasiveness and can be Functionally Transferred to Silence Target Genes in Recipient Cells
Author response: Secreted exosomes induce filopodia formation
5-Fluorouracil Treatment Represses Pseudouridine-Containing Small RNA Export into Extracellular Vesicles
Context-specific regulation of extracellular vesicle biogenesis and cargo selection.
Niche tension controls exosome production.
Analysis of small EV proteomes reveals unique functional protein networks regulated by VAP-A
Culture conditions greatly impact the levels of vesicular and extravesicular Ago2 and RNA in extracellular vesicle preparations
Extracellular Vesicles and Their Emerging Roles as Cellular Messengers in Endocrinology: An Endocrine Society Scientific Statement
Archetype tasks link intratumoral heterogeneity to plasticity and cancer hallmarks in small cell lung cancer
EV Fingerprinting: Resolving extracellular vesicle heterogeneity using multi-parametric flow cytometry