已发表成果:
WOK 论文 18 篇;中文核心 1 篇;专利发明 2 个;图书及章节 1 本;
Rbm24/Notch1 signaling regulates adult neurogenesis in the subventricular zone and mediates Parkinson-associated olfactory dysfunction
RBM24 controls cardiac QT interval through CaMKII delta splicing
RNA-binding protein RBM24 represses colorectal tumourigenesis by stabilising PTEN mRNA
Rbm24 regulates inner-ear-specific alternative splicing and is essential for maintaining auditory and motor coordination
Stimulus-Responsive Microfluidic Interface Enables Efficient Enrichment and Cytogenetic Profiling of Circulating Myeloma Cells
Rbm24 modulates adult skeletal muscle regeneration via regulation of alternative splicing
RNA binding protein 24 deletion disrupts global alternative splicing and causes dilated cardiomyopathy
Expression of two non-mutated genetic elements is sufficient to stimulate oncogenic transformation of human mammary epithelial cells
Global profiling of Rbm24 bound RNAs uncovers a multi-tasking RNA binding protein
Quantitative Proteomics Study Reveals Changes in the Molecular Landscape of Human Embryonic Stem Cells with Impaired Stem Cell Differentiation upon Exposure to Titanium Dioxide Nanoparticles
STAT3-Inducible Mouse ESCs: A Model to Study the Role of STAT3 in ESC Maintenance and Lineage Differentiation
Stk38 Modulates Rbm24 Protein Stability to Regulate Sarcomere Assembly in Cardiomyocytes
Rbm24 Regulates Alternative Splicing Switch in Embryonic Stem Cell Cardiac Lineage Differentiation
Functional investigations on embryonic stem cells labeled with clinically translatable iron oxide nanoparticles
Perspective from the heart: The potential of human pluripotent stem cell-derived cardiomyocytes
Berberine potently attenuates intestinal polyps growth in ApcMin mice and familial adenomatous polyposis patients through inhibition of Wnt signalling
MicroRNA-24 regulates cardiac fibrosis after myocardial infarction
RNA-binding protein RBM24 is required for sarcomere assembly and heart contractility
人类多能干细胞源心肌细胞的研究进展与应用前景
中国细胞生物学学报,1674-7666,2013-02-26.Cardiomyocytes from Human Embryonic Stem Cells. (专著). John Wiley & Sons, 2013年02月.