Area of research
Biomedical Engineering · Epidemiology
Research interest
Research focused on Autophagy and Competing endogenous RNA, with related work in Glioma, Nitazoxanide, microRNA. Notable publications include 'Inhibition of autophagy induced by quercetin at a late stage enhances cytotoxic effects on glioma cells', 'Nitazoxanide, an antiprotozoal drug, inhibits late-stage autophagy and promotes ING1-induced cell cycle arrest in glioblastoma', and 'Novel LncRNA OXCT1-AS1 indicates poor prognosis and contributes to tumorigenesis by regulating miR-195/CDC25A axis in glioblastoma'.
Accurate cross-species 5mC detection for Oxford Nanopore sequencing in plants with DeepPlant
Novel LncRNA OXCT1-AS1 indicates poor prognosis and contributes to tumorigenesis by regulating miR-195/CDC25A axis in glioblastoma
Construction of lncRNA‐associated ceRNA networks to identify prognostic lncRNA biomarkers for glioblastoma
Identification of hub genes and small-molecule compounds in medulloblastoma by integrated bioinformatic analyses
MicroRNA-195 protection against focal cerebral ischemia by targeting CX3CR1
Identification of hub genes and small-molecule compounds related to intracerebral hemorrhage with bioinformatics analysis
Oncogenic Ras is downregulated by ARHI and induces autophagy by Ras/AKT/mTOR pathway in glioblastoma
Nitazoxanide, an antiprotozoal drug, inhibits late-stage autophagy and promotes ING1-induced cell cycle arrest in glioblastoma
Inhibition of autophagy induced by quercetin at a late stage enhances cytotoxic effects on glioma cells