Video 1_Doxorubicin induces cardiotoxicity by enhancing autophagy via mTOR signaling in hiPSC- and hESC-derived cardiomyocytes.mp4
Introduction<p>Doxorubicin (DOX) is a highly effective anti-cancer drug, but its clinical applications are limited by its cardiotoxicity. The mechanisms underlying DOX-induced cardiotoxicity (DIC) remain incompletely understood. Human induced pluripotent stem cells (hiPSCs) and human embryonic...
Gorde:
| Egile nagusia: | Minxia Ke (4889887) (author) |
|---|---|
| Beste egile batzuk: | Hao Wang (39217) (author), Kailun Yang (4685239) (author), Meng Ji (305678) (author), Nianmin Qi (14431644) (author), Yuehong Wu (4889893) (author) |
| Argitaratua: |
2025
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| Gaiak: | |
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Video 2_Doxorubicin induces cardiotoxicity by enhancing autophagy via mTOR signaling in hiPSC- and hESC-derived cardiomyocytes.mp4
nork: Minxia Ke (4889887)
Argitaratua: (2025) -
Data Sheet 1_Doxorubicin induces cardiotoxicity by enhancing autophagy via mTOR signaling in hiPSC- and hESC-derived cardiomyocytes.docx
nork: Minxia Ke (4889887)
Argitaratua: (2025) -
Electrophysiological development and functional plasticity in dissociated human cerebral organoids across multiple cell lines - Raw MEA data (2 of 4)
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Electrophysiological development and functional plasticity in dissociated human cerebral organoids across multiple cell lines - Well average data and metadata (1 of 4)
nork: Adam Pavlinek (20917388)
Argitaratua: (2025) -
Graphical abstract from Single-Cell Spatial Analysis Identifies Regulators of Brain Tumor–Initiating Cells
nork: Reza Mirzaei (15306062)
Argitaratua: (2025)