Area of research
Molecular Biology · Clinical Biochemistry
Research interest
Research focused on Endoplasmic reticulum and Cell biology, with related work in Organelle, Autophagy, Skeletal muscle. Notable publications include 'A Universal Approach to Analyzing Transmission Electron Microscopy with ImageJ', 'BBS7 is required for BBSome formation and its absence in mice results in Bardet-Biedl syndrome phenotypes and selective abnormalities in membrane protein trafficking', and 'Systematic Transmission Electron Microscopy‐Based Identification and 3D Reconstruction of Cellular Degradation Machinery'.
3 <scp>D</scp> Mitochondrial Structure in Aging Human Skeletal Muscle: Insights Into <scp>MFN</scp> ‐2‐Mediated Changes
ATF4‐dependent increase in mitochondrial‐endoplasmic reticulum tethering following OPA1 deletion in skeletal muscle
Systematic Transmission Electron Microscopy‐Based Identification and 3D Reconstruction of Cellular Degradation Machinery
A Comprehensive Approach to Sample Preparation for Electron Microscopy and the Assessment of Mitochondrial Morphology in Tissue and Cultured Cells
Molecular and clinical characterization of ICOS expression in breast cancer through large-scale transcriptome data
Sustained over-expression of calpain-2 induces age-dependent dilated cardiomyopathy in mice through aberrant autophagy
A Universal Approach to Analyzing Transmission Electron Microscopy with ImageJ
BBS7 is required for BBSome formation and its absence in mice results in Bardet-Biedl syndrome phenotypes and selective abnormalities in membrane protein trafficking