Area of research
Molecular Biology · Aging
Research interest
Research focused on Graphene and Cell biology, with related work in Synapse, Selenocysteine, Colorectal cancer. Notable publications include 'The Mitochondrial Unfolded Protein Response Is Mediated Cell-Non-autonomously by Retromer-Dependent Wnt Signaling', 'Piezotronic Graphene Artificial Sensory Synapse', and 'Ribosome 18S m6A Methyltransferase METTL5 Promotes Translation Initiation and Breast Cancer Cell Growth'.
Fluorinated Hybrid Diluent Modulated Electrolyte for Wide-Temperature 508.5 Wh kg<sup>–1</sup> Lithium Metal Batteries
TGF-β signaling as an organismal proteostasis regulator
Seryl-tRNA synthetase promotes translational readthrough by mRNA binding and involvement of the selenocysteine incorporation machinery
Pan-Cancer analysis and experimental validation identify the oncogenic nature of ESPL1: Potential therapeutic target in colorectal cancer
Pathological and Prognostic Indications of the mdig Gene in Human Lung Cancer
N6-Methyladenosine Regulators Are Involved in the Progression of and Have Clinical Impact on Breast Cancer
Ribosome 18S m6A Methyltransferase METTL5 Promotes Translation Initiation and Breast Cancer Cell Growth
Piezotronic Graphene Artificial Sensory Synapse
Graphene Synapses: Piezotronic Graphene Artificial Sensory Synapse (Adv. Funct. Mater. 41/2019)
The Mitochondrial Unfolded Protein Response Is Mediated Cell-Non-autonomously by Retromer-Dependent Wnt Signaling