A Micro-Engineered Heart Tissue Model of Desmin-related Cardiomyopathy Caused by Mutant αB Crystalin
Kargar Gaz Kooh, Y.; Bahmani, B.; Zhao, C.; Malayath, G.; Hayem, L.; Jin, H.; Ramahdita, G.; Jiang, H.; Santiago Perez, J.; Chou, H.-Y.; Huang, Y.; Ma, X.; Genin, G. M.; Rawnsley, D.; Diwan, A.; Huebsch, N.
Show abstract
Protein quality control (PQC) is essential for maintaining sarcomere integrity in cardiomyocytes. Crystallin B chain (CRYAB) R120G mutation disrupts CRYABs chaperone activity, leading to aggregation of CRYAB and its client proteins (including Desmin), leading to Desmin-related cardiomyopathy (DRM). Prior experimental systems for modeling DRM linked to CRYAB require massive overexpression of CRYAB mutant isoforms, raising questions about translational relevance. Here, we establish the first model of CRYAB-linked DRM that uses genome-edited hiPSC together with isogenic controls, allowing us to study the impact of mutant CRYAB expressed at near endogenous levels. Within micro-engineered heart tissues (HT), CRYAB-R120G mutant hiPSC-derived cardiomyocytes recapitulated key DRM hallmarks, including Desmin and CRYAB aggregation, contractile dysfunction, and increased vulnerability to PQC pathway inhibition. CRYAB-R120G mutant HT also exhibited dysfunctional calcium-contraction coupling, which exacerbated contractile deficits at higher pacing frequencies. JAK1 inhibition with Itacitinib partially restored contractile function at higher pacing frequencies, suggesting JAK1 inhibition as a viable therapeutic strategy. By preserving human-specific structural and functional features, our {micro}HT platform enables mechanistic characterization of proteotoxic cardiomyopathies and offers a scalable system for targeted drug screening.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Atf3 controls transitioning in female mitochondrial cardiomyopathy as identified by single-cell transcriptomics 95%
- Xenogeneic Skin Transplantation Promotes Angiogenesis and Tissue Regeneration Through Vitamin D-Activated Trem2+ Macrophages 94%
- Induction of Muscle Regenerative Multipotent Stem Cells from Human Adipocytes by PDGF-AB and 5-Azacytidine. 94%
Similar papers in this journal
- Dynamic Loading of Human Engineered Heart Tissue Enhances Contractile Function and Drives Desmosome-linked Disease Phenotype 96%
- Control of cytokinesis by β-adrenergic receptors indicates an approach for regulating cardiomyocyte endowment 96%
- The mechanical regulation of RNA binding protein hnRNPC in the failing heart 94%
Similar papers in this journal
- Matrix architecture and mechanics regulate myofibril organization, costamere assembly, and contractility of engineered myocardial microtissues 95%
- An Integrated Optogenetic and Bioelectronic Platform for Regulating Cardiomyocyte Function 94%
- Three-dimensional drug screen identifies HDAC inhibitors as therapeutic agents in mTORC1-driven lymphangioleiomyomatosis 94%
Similar papers in this journal
- In vivo proximity labeling identifies cardiomyocyte protein networks during zebrafish heart regeneration 95%
- Human induced pluripotent stem cell-derived cardiomyocytes to study inflammation-induced diastolic dysfunction 95%
- Coordinated Tbx3/Tbx5 transcriptional control of the adult ventricular conduction system 95%
Similar papers in this journal
- A Conserved Mechanism of Cardiac Hypertrophy Regression through FoxO1 94%
- Murine gut microbiota dysbiosis via enteric infection modulates the foreign body response to a distal biomaterial implant 94%
- Network Modeling Predicts Personalized Gene Expression and Drug Responses in Valve Myofibroblasts Cultured with Patient Sera 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.