Area of research
Oncology · Biomedical Engineering
Research interest
Research focused on Osteocyte and Cancer research, with related work in Bone metastasis, Wnt signaling pathway, Osteolysis. Notable publications include 'Skeletal loading regulates breast cancer-associated osteolysis in a loading intensity-dependent fashion', 'Inhibitory Effects of Dopamine Receptor D1 Agonist on Mammary Tumor and Bone Metastasis', and 'Osteocyte-Driven Downregulation of Snail Restrains Effects of Drd2 Inhibitors on Mammary Tumor Cells'.
Canine-Inspired Chemometric Analysis of Volatile Organic Compounds in Urine Headspace to Distinguish Prostate Cancer in Mice and Men
Counterintuitive production of tumor-suppressive secretomes from Oct4- and c-Myc-overexpressing tumor cells and MSCs
Chemometric Analysis of Urinary Volatile Organic Compounds to Monitor the Efficacy of Pitavastatin Treatments on Mammary Tumor Progression over Time
Prostate cancer-associated urinary proteomes differ before and after prostatectomy
Preventing tumor progression to the bone by induced tumor-suppressing MSCs: Erratum
Overexpression of Lrp5 enhanced the anti-breast cancer effects of osteocytes in bone
Preventing tumor progression to the bone by induced tumor-suppressing MSCs
Generation of the tumor-suppressive secretome from tumor cells
Inhibition of the Growth of Breast Cancer-Associated Brain Tumors by the Osteocyte-Derived Conditioned Medium
Mechanical Loading-Driven Tumor Suppression Is Mediated by Lrp5-Dependent and Independent Mechanisms
Mechanical tibial loading remotely suppresses brain tumors by dopamine-mediated downregulation of CCN4
Skeletal loading regulates breast cancer-associated osteolysis in a loading intensity-dependent fashion
Loading‐induced antitumor capability of murine and human urine
Mechanical stimulations can inhibit local and remote tumor progression by downregulating WISP1
Vinculin Force Sensor Detects Tumor-Osteocyte Interactions
Pitavastatin slows tumor progression and alters urine‐derived volatile organic compounds through the mevalonate pathway
Vinculin Force Sensor Detects Tumor-Osteocyte Interactions
Publisher 2019cited by 1position: middle
Osteocyte-Driven Downregulation of Snail Restrains Effects of Drd2 Inhibitors on Mammary Tumor Cells
Attraction and Compaction of Migratory Breast Cancer Cells by Bone Matrix Proteins through Tumor-Osteocyte Interactions
Effects of a checkpoint kinase inhibitor, AZD7762, on tumor suppression and bone remodeling
Inhibiting checkpoint kinase 1 protects bone from bone resorption by mammary tumor in a mouse model
Finite Element Analysis of the Mouse Distal Femur with Tumor Burden in Response to Knee Loading.
PubMed 2018cited by 5position: middle
Effects of a checkpoint kinase inhibitor, AZD7762, on tumor suppression and bone remodeling
PMC 2018cited by 5position: middle
Finite Element Analysis of the Mouse Distal Femur with TumorBurden in Response to Knee Loading
Attraction and Compaction of Migratory Breast Cancer Cells by Bone Matrix Proteins through Tumor-Osteocyte Interactions
PMC 2018cited by 2position: middle
Finite-element analysis of the mouse proximal ulna in response to elbow loading
Osteocyte-Driven Downregulation of Snail Restrains Effects of Drd2 Inhibitors on Mammary Tumor Cells
PMC 2018cited by 0position: first
Inhibiting checkpoint kinase 1 protects bone from bone resorption by mammary tumor in a mouse model
PMC 2018cited by 0position: first
Finite Element Analysis of the Mouse Proximal Ulna in Response to Elbow Loading
Author eBooks 2018cited by 0position: middle
Inhibitory Effects of Dopamine Receptor D1 Agonist on Mammary Tumor and Bone Metastasis