Sublethal Caspase Activation Promotes Generation of Cardiomyocytes from Embryonic Stem Cells
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Summary
It is demonstrated that sublethal activation of caspase-activation has an important role in cardiomyocyte differentiation and may have significant implications for promoting cardiac regeneration after myocardial injury involving exogenous or endogenous cell sources.
- Type
- article
- Published
- 2015-03-12
- Cited by
- 25
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W1970124907
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14867406
Keywords
Embryonic stem cell, Cell biology, Progenitor cell, Regeneration (biology), Caspase
References
- Cardiac c‐kit+AT2+ Cell Population is Increased in Response to Ischemic Injury and Supports Cardiomyocyte Performance
- Protein Kinase RNA/FADD/Caspase-8 Pathway Mediates the Proapoptotic Activity of the RNA-binding Protein Human Antigen R (HuR)*
- Signal-dependent nuclear export of a histone deacetylase regulates muscle differentiation
- Caspases: the executioners of apoptosis.
- Caspase 3/caspase-activated DNase promote cell differentiation by inducing DNA strand breaks
- Caspase activity and a specific cytochrome C are required for sperm differentiation in Drosophila.
- Is caspase‐dependent apoptosis only cell differentiation taken to the extreme?
- Ischemia-Reperfusion Injury and Pregnancy Initiate Time-Dependent and Robust Signs of Up-Regulation of Cardiac Progenitor Cells
- Apoptosis repressor with caspase recruitment domain (ARC) inhibits myogenic differentiation
- Neural stem cell differentiation is dependent upon endogenous caspase‐3 activity
- Hematopoietic stem cell responsiveness to exogenous signals is limited by caspase-3.
- Compensatory proliferation induced by cell death in the Drosophila wing disc requires activity of the apical cell death caspase Dronc in a nonapoptotic role.
- c-kit+ Cells Minimally Contribute Cardiomyocytes to the Heart
- Islet-1 Cells Are Cardiac Progenitors Present During the Entire Lifespan: From the Embryonic Stage to Adulthood
- Rehabilitation of a contract killer: caspase-3 directs stem cell differentiation.
- Adult cardiac stem cells are multipotent and support myocardial regeneration.
- The renewal and differentiation of Isl1+ cardiovascular progenitors are controlled by a Wnt/beta-catenin pathway.
- c-kit expression identifies cardiovascular precursors in the neonatal heart
- Multi-image colocalization and its statistical significance.
- Fas receptor signaling inhibits glycogen synthase kinase 3 beta and induces cardiac hypertrophy following pressure overload.
Cited by
- Effective Hypothermic Storage of Human Pluripotent Stem Cell‐Derived Cardiomyocytes Compatible With Global Distribution of Cells for Clinical Applications and Toxicology Testing
- Stem cells for cardiac regeneration
- Evolution of caspase-mediated cell death and differentiation: twins separated at birth
- Rapamycin and CHIR99021 Coordinate Robust Cardiomyocyte Differentiation From Human Pluripotent Stem Cells Via Reducing p53‐Dependent Apoptosis
- Non-apoptotic Caspase regulation of stem cell properties
- Synergistic role of Caspase-8 and Caspase-3 expressions: Prognostic and predictive biomarkers in colorectal cancer
- Endothelial Caspase-9 Activity Exacerbates Edema and Neuronal Dysfunction after Retinal Vein Occlusion
- Apoptotic Caspases: Multiple or Mistaken Identities?
- Role of Mcl‐1 in regulation of cell death in human induced pluripotent stem cell‐derived cardiomyocytes in vitro
- Non-apoptotic Roles of Caspases in Stem Cell Biology, Carcinogenesis, and Radiotherapy
- The T-type Ca2+ Channel Cav3.2 Regulates Differentiation of Neural Progenitor Cells during Cortical Development via Caspase-3.
- Caspases interplay with kinases and phosphatases to determine cell fate.
- Cryopreservation of human pluripotent stem cell-derived cardiomyocytes is not detrimental to their molecular and functional properties
- Cell penetrating caspase substrates promote survival of the transplanted cells
- Apoptosis – Fueling the oncogenic fire
- Caspase-9: A Multimodal Therapeutic Target With Diverse Cellular Expression in Human Disease
- On the origin of metastases: Induction of pro-metastatic states after impending cell death via ER stress, reprogramming, and a cytokine storm.
- Perish in the Attempt: Regulated Cell Death in Regenerative and Nonregenerative Tissue
- Dependence of human cell survival and proliferation on the CASP3 prodomain
- Caspase-9 Is a Positive Regulator of Osteoblastic Cell Migration Identified by diaPASEF Proteomics
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