Background/aims: Advances in induced pluripotent stem cell (iPSC) technology allow for reprogramming of adult somatic cells into stem cells from which patient- and disease-specific cardiomyocytes (CMs) can be derived. Yet, the potential of iPSC technology to revolutionize cardiovascular research is limited, in part, by the embryonic nature of these cells. Here, we test the hypothesis that decellularized porcine left ventricular extracellular cardiac matrix (ECM) provides environmental cues that promote transcriptional maturation and patterning of iPSC-CMs in culture.
Methods: Cardiac progenitor cells were plated on ECM or standard tissue plates (2D monolayer) for 30 days, after which CM orientation and single cell transcriptomics were evaluated using confocal imaging and singe cell RNA-sequencing, respectively.
Results: Cardiac progenitors differentiated on left ventricular ECM formed longitudinal fibers that differed quantitatively from progenitors differentiated in standard 2D conditions. Unsupervised clustering of single cell transcriptomics identified a CM cluster expressing a higher level of genes related to CM maturation. CMs differentiated on ECM were overrepresented in this cluster, indicating a bias toward CM maturation, compared to cells differentiated in standard 2D monolayer conditions.
Conclusion: Our data suggest that environmental cues related to the left ventricular ECM may promote differentiation to a more mature CM state compared to cells differentiated on a standard 2D monolayer, while facilitating organization into longitudinal micro-fibers. Our study highlights the utility of ECM as a differentiation substrate to promote CM maturation and fiber orientation .
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http://dx.doi.org/10.33594/000000730 | DOI Listing |
Elife
January 2025
Institut Pasteur, Université Paris Cité, Unité Plasticité du Génome Bactérien, Paris, France.
Tgt is the enzyme modifying the guanine (G) in tRNAs with GUN anticodon to queuosine (Q). is required for optimal growth of in the presence of sub-lethal aminoglycoside concentrations. We further explored here the role of the Q34 in the efficiency of codon decoding upon tobramycin exposure.
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Paediatric and prenatal radiology department, Hôpital Timone Enfants, APHM, 264 rue Saint Pierre, Marseille, 13005, France.
Effective communication with the child and his/her parents is of paramount importance in our daily work in paediatric radiology to establish a trusting relationship and enhance satisfaction for both patients and physicians. Although communication skills and empathy can be effectively taught, and efforts have been made in this area in medical schools, there is still much room for improvement, as communication skills tend to decline throughout medical training. Certain methods are valuable for conducting effective consultations with both the child and the parents, not only when breaking bad news.
View Article and Find Full Text PDFNat Rev Endocrinol
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Nutrition and Obesities: Systemic Approach Research Group, Nutriomics, Sorbonne Université, INSERM, Paris, France.
Adipose tissue demonstrates considerable plasticity and heterogeneity, enabling metabolic, cellular and structural adaptations to environmental signals. This adaptability is key for maintaining metabolic homeostasis. Impaired adipose tissue plasticity can lead to abnormal adipose tissue responses to metabolic cues, which contributes to the development of cardiometabolic diseases.
View Article and Find Full Text PDFProg Neuropsychopharmacol Biol Psychiatry
January 2025
Department of Physiology and Institute of Physiology and Biophysics, School of Medicine, University of Buenos Aires, Buenos Aires, Argentina. Electronic address:
Environmental enrichment (EE) is a well-known strategy in animal behavior to improve the welfare and health of animals in captivity. EE provides animals with stimulating and engaging environments that promote natural behaviors, cognitive stimulation and stress reduction. EE turns out to be an important strategy to increase the validity and reproducibility of behavioral data.
View Article and Find Full Text PDFTrends Ecol Evol
January 2025
Department of Environmental Science and Policy, University of California, One Shields Ave, Davis, CA 95616, USA.
Transgenerational plasticity (TGP) has largely focused on how parental exposure to ecological conditions shapes the phenotypes of future generations. However, organisms acquire information about their ecological environment via social learning, which can also shape TGP in profound ways. We demonstrate that non-parents alter how parents detect and respond to environmental cues in ways that spillover to affect offspring, non-parents influence offspring even without direct physical interactions, and parental cues received by offspring can alter the phenotypes of other juveniles.
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