André Katayama Yamada
yamadaakphysiology.bsky.social
André Katayama Yamada
@yamadaakphysiology.bsky.social
Doctor in Exercise Physiology. Love sports, arts, music, movies and all things related to Science, mainly skeletal muscle, metabolism, nutrition, molecular biology and genetics.
Reposted by André Katayama Yamada
"Endurance training promotes chromatin closure and timely repression of the post-exercise immediate early stress response" - our new manuscript describes the changes in chromatin accessibility in exercise (acute & training) associated with gene expression.
www.sciencedirect.com/science/arti...
Endurance training promotes chromatin closure and timely repression of the post-exercise immediate early stress response
Endurance training is known to elicit numerous changes in skeletal muscle to enhance performance and function. Many of these adaptations are controlle…
www.sciencedirect.com
July 8, 2025 at 1:29 PM
Reposted by André Katayama Yamada
Highlighting our latest research.
Deconvoluting insulin signaling in human skeletal muscle.
www.news-medical.net/news/2025052...
Scientists discover unique molecular fingerprints of insulin resistance
Scientists have unearthed surprising details about how our bodies handle insulin – the hormone that plays a crucial role in regulating blood sugar and developing diabetes.
www.news-medical.net
May 27, 2025 at 6:31 PM
Reposted by André Katayama Yamada
Q sdd do Twitter 😭
September 9, 2024 at 11:28 PM
Reposted by André Katayama Yamada
Transparent mice made with light-absorbing dye reveal organs at work
Transparent mice made with light-absorbing dye reveal organs at work
A method that renders skin temporarily see-through could offer researchers a non-invasive way to look inside the bodies of live mice.
www.nature.com
September 5, 2024 at 11:30 PM
Reposted by André Katayama Yamada
Myospreader improves gene editing in skeletal muscle by myonuclear propagation https://www.biorxiv.org/content/10.1101/2023.11.06.565807v1
Myospreader improves gene editing in skeletal muscle by myonuclear propagation https://www.biorxiv.org/content/10.1101/2023.11.06.565807v1
Successful CRISPR/Cas9-based gene editing in skeletal muscle is dependent on efficient propagation o
www.biorxiv.org
November 7, 2023 at 12:31 AM
Reposted by André Katayama Yamada
Molecular Landscape of Modality-Specific Exercise Adaptation in Human Skeletal Muscle through Large-Scale Multi-OMICs Integration https://www.biorxiv.org/content/10.1101/2024.07.14.603458v1
Molecular Landscape of Modality-Specific Exercise Adaptation in Human Skeletal Muscle through Large-Scale Multi-OMICs Integration https://www.biorxiv.org/content/10.1101/2024.07.14.603458v1
We conducted a large-scale, statistically powered, meta-analysis of exercise adaptations in human sk
www.biorxiv.org
July 16, 2024 at 5:20 AM