Area of research
Pulmonary and Respiratory Medicine · Molecular Biology
Research interest
Research focused on Apoptosis and Basal forebrain, with related work in Ascorbic acid, Lipid metabolism, Gene. Notable publications include 'Nickel-smelting fumes induce mitochondrial damage and apoptosis, accompanied by decreases in viability, in NIH/3T3 cells', 'Evaluation of the Oncogene Function of GOLPH3 and Correlated Regulatory Network in Lung Adenocarcinoma', and 'MiR-153 Prevents NRF2 Nuclear Translocation to Drive Hypoperfusion-Related Cognitive Deficits by Targeting KPNA5'.
<i>MiR-153</i>Prevents NRF2 Nuclear Translocation to Drive Hypoperfusion-Related Cognitive Deficits by Targeting<i>KPNA5</i>
Brevilin A suppresses lipid metabolism reprogramming in colorectal adenoma-to-adenocarcinoma sequence via the NR1D1/APOH signaling axis
Constructing a prognostic risk model for Alzheimer’s disease based on ferroptosis
Evaluation of the Oncogene Function of GOLPH3 and Correlated Regulatory Network in Lung Adenocarcinoma
Nickel-smelting fumes induce mitochondrial damage and apoptosis, accompanied by decreases in viability, in NIH/3T3 cells
[Nickel exposure to A549 cell damage and L-ascorbic acid interference effect].
PubMed 2015cited by 3position: last
[The effect of nickel-smelting fumes on the expression of bcl-2 and bax in NIH/3T3 cells].
PubMed 2015cited by 0position: last