Patient-specific Cardiomyocytes

Patient-specific cardiomyocytes are heart muscle cells generated from an individual’s own cells, providing a biologically relevant model for studying cardiac function and disease. Researchers typically reprogram adult cells into induced pluripotent stem cells, then guide their differentiation into cardiomyocytes using developmental signaling cues and culture conditions that promote cardiac identity. These cells can retain patient-associated genetic features, enabling disease modeling, investigation of abnormal electrical or contractile activity, and testing of drug efficacy and cardiotoxicity. In bioengineering, patient-specific cardiomyocytes support precision medicine, tissue-engineered heart models, and the development of personalized therapies.

Patient-specific Cardiomyocytes - Related Videos

Research

JoVE Journal - Immunology and Infection

Measurement of Antibody Effects on Cellular Function of Isolated Cardiomyocytes

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Cited by 3 •

2013

The presented method offers a way to detect functional effective cardiotropic autoantibodies in the plasma of patients with dilated cardiomyopathy, irrespective of the specific antigen, by analysing the impact of isolated patient immunoglobulin on cellular shortening and intracellular calcium transients in isolated rat cardiomyocytes.

Patient-specific Modeling of the Heart: Estimation of Ventricular Fiber Orientations

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Cited by 14 •

2013

A methodology to estimate ventricular fiber orientations from in vivo images of patient heart geometries for personalized modeling is described. Validation of the methodology performed using normal and failing canine hearts demonstrate that that there are no significant differences between estimated and acquired fiber orientations at a clinically observable level.

Research

JoVE Journal - Developmental Biology
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Simultaneous Assessment of Cardiomyocyte DNA Synthesis and Ploidy: A Method to Assist Quantification of Cardiomyocyte Regeneration and Turnover

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Cited by 25 •

2016

Quantification of cardiomyocyte turnover is challenging. The protocol described here makes an important contribution to this challenge by enabling accurate and sensitive quantification of neo-cardiomyocyte nuclei generation and nuclei ploidy.

Isolation and Culture of Neonatal Mouse Cardiomyocytes

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Cited by 187 •

2013

Primary mouse cardiomyocyte cultures are one of the pivotal tools for the investigation of myofibrillar organization and function. The following protocol describes the isolation and culture of primary cardiomyocytes from neonatal mouse hearts. The resulting cardiomyocyte cultures may be subsequently used for a variety of biomechanical, biochemical and cell-biological assays.

Measuring Fast Calcium Fluxes in Cardiomyocytes

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Cited by 3 •

2011

We present a method to isolate rapid (microsecond) calcium events from slower fluxes in living cells using laser scanning confocal microscopy. The method measures fluorescence intensity fluctuations of calcium indicators by recording line scans of several hundred pixels in a cell. Histogram analysis allows us to isolate the time scales of different calcium fluxes.

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