PLX062154
GSE156754: SARS-CoV2 infection of iPSC-derived cardiac cells predicts novel cytopathic features in COVID-19 patients
- Organsim human
- Type RNASEQ
- Target gene
- Project ARCHS4
Mounting clinical evidence indicates severe pathological consequences from COVID-19 in the heart. Here we examine cardiac susceptibility and response to SARS-CoV-2 using human induced pluripotent stem cell-derived cardiomyocytes, cardiac fibroblasts, and endothelial cells. Of these cell types, SARS-CoV-2 can only productively infect cardiomyocytes, and does so via an endolysosomal mechanism. Transcriptomic profiling of infected cells revealed changes in protein homeostasis and cardiomyocyte contractility, and activation of innate immune response pathways. In addition, we observed a striking pattern of myofibrillar fragmentation, with specific cleavage at the M-line. Numerous cardiomyocytes also lacked nuclear DNA in tissue culture experiments and COVID-19 autopsy specimens. These novel cardiac pathologies induced by SARS-CoV-2 strongly motivate the development of targeted cardioprotective strategies to prevent acute and long-term heart failure in COVID-19 patients. SOURCE: Todd McDevittMcDevitt Gladstone Institutes
View on GEOView in PlutoKey Features
Enhance your research with our curated data sets and powerful platform features. Pluto Bio makes it simple to find and use the data you need.
Learn MoreAnalyze and visualize data for this experiment
Use Pluto's intuitive interface to analyze and visualize data for this experiment. Pluto's platform is equipped with an API & SDKs, making it easy to integrate into your internal bioinformatics processes.
Read about post-pipeline analysisView QC data and experiment metadata
View quality control data and experiment metadata for this experiment.
Request import of other GEO data
Request imports from GEO or TCGA directly within Pluto Bio.
Chat with our Scientific Insights team