Area of research
Molecular Biology · Neurology
Research interest
Research focused on Traumatic brain injury and Inflammation, with related work in Microglia, HOTAIR, Glioma. Notable publications include 'Increased miR‐124‐3p in microglial exosomes following traumatic brain injury inhibits neuronal inflammation and contributes to neurite outgrowth via their transfer into neurons', 'Single-atom nanozymes catalytically surpassing naturally occurring enzymes as sustained stitching for brain trauma', and 'Long non-coding RNA HOTAIR promotes glioblastoma cell cycle progression in an EZH2 dependent manner'.
Single-atom nanozyme immunoassay with electron-rich property for clinical patient cancer detection
Brain-derived extracellular vesicles mediate systemic coagulopathy and inflammation after traumatic brain injury
A Nanozyme‐Based Electrode for High‐Performance Neural Recording
Brain-derived extracellular vesicles mediate traumatic brain injury associated multi-organ damage
Single-atom nanozymes catalytically surpassing naturally occurring enzymes as sustained stitching for brain trauma
Increased miR‐124‐3p in microglial exosomes following traumatic brain injury inhibits neuronal inflammation and contributes to neurite outgrowth <i>via</i> their transfer into neurons
Involvement of microRNA-1297, a new regulator of HMGA1, in the regulation of glioma cell growth in vivo and in vitro.
PubMed 2016cited by 31position: middle
Long non-coding RNA HOTAIR promotes glioblastoma cell cycle progression in an EZH2 dependent manner
Intracerebroventricular Transplantation of <i>Ex Vivo</i> Expanded Endothelial Colony-Forming Cells Restores Blood–Brain Barrier Integrity and Promotes Angiogenesis of Mice with Traumatic Brain Injury