Area of research
Materials Chemistry · Cell Biology
Research interest
Research focused on Osteocyte and Cancer research, with related work in Osteolysis, Cell, RNA splicing. Notable publications include 'Skeletal loading regulates breast cancer-associated osteolysis in a loading intensity-dependent fashion', 'The nuclear structural protein NuMA is a negative regulator of 53BP1 in DNA double-strand break repair', and 'Overexpression of Lrp5 enhanced the anti-breast cancer effects of osteocytes in bone'.
Enhancing anti-tumor potential: low-intensity vibration suppresses osteosarcoma progression and augments MSCs' tumor-suppressive abilities
Therapeutic Insights into Low-intensity Vibration for Generating Induced Tumor-Suppressive Cells and Modulating the Bone Microenvironment
Overexpression of Lrp5 enhanced the anti-breast cancer effects of osteocytes in bone
Impact of Proinflammatory Cytokines on Alternative Splicing Patterns in Human Islets
Performance of deep learning restoration methods for the extraction of particle dynamics in noisy microscopy image sequences
Mechanical tibial loading remotely suppresses brain tumors by dopamine-mediated downregulation of CCN4
Monitoring Dark-State Dynamics of a Single Nitrogen-Vacancy Center in Nanodiamond by Auto-Correlation Spectroscopy: Photonionization and Recharging
Skeletal loading regulates breast cancer-associated osteolysis in a loading intensity-dependent fashion
Loading‐induced antitumor capability of murine and human urine
Performance of deep learning restoration methods for the extraction of particle dynamics in noisy microscopy image sequences
The nuclear structural protein NuMA is a negative regulator of 53BP1 in DNA double-strand break repair
Vinculin Force Sensor Detects Tumor-Osteocyte Interactions
Artesunate altered cellular mechanical properties leading to deregulation of cell proliferation and migration in esophageal squamous cell carcinoma