Spatial-Omics and Machine Learning in Muscle Stem Cell Repair (Will Wang)

Spatial-Omics and Machine Learning in Muscle Stem Cell Repair (Will Wang)

In this episode of the Epigenetics Podcast, we talked with Will Wang from Sanford Burnham Prebys about his work on muscle stem cell repair, regeneration, and aging, exploring spatial-omics and machine learning.

We begin our conversation by exploring the traditional concepts of spatial biology and how they have evolved to play a critical role in disease research. Dr. Wang recounts his journey from a young student in a family of academics to becoming a leading figure in regenerative biology, highlighting how his early interests in life sciences, natural problem-solving abilities, and inspirations from mentorship set the stage for his current research trajectory.

Throughout the discussion, we uncover key insights on how muscle stem cells transition from a quiescent state to a proliferative state in response to injury and how this dynamic process is governed by the epigenetic landscape and various signalling pathways. Dr. Wang emphasises the impact of external factors—be it microenvironment conditions or metabolic cues—on the fate and function of these stem cells, reflecting on the methodologies used to investigate these processes throughout his career.

He shares fascinating findings from his PhD work, where he explored the regulatory role of transcription factors like PAX-7 in muscle stem cell activation, and how subsequent research developed in his postdoc at Stanford further illuminated the relationship between metabolism and histone acetylation. This pivotal work not only demonstrated how metabolic states dictate epigenetic modifications but also offered potential therapeutic insights for muscle degeneration and repair.

As we move into more recent projects, Dr. Wang discusses the advances in multiplexed spatial proteomics and the insights garnered from a single-cell spatiotemporal atlas of muscle regeneration, which highlight the cellular heterogeneity in muscle tissue. He describes the use of novel computational tools, including neural networks, to uncover the regulatory mechanisms underlying stem cell function, particularly how prostaglandin signalling informs the regeneration process and how age impacts stem cell efficacy. The episode then wraps up with an engaging dialogue about the future implications of Dr. Wang’s work in addressing age-related muscle degradation and broader applications in regenerative medicine.

References
  • Yucel, N., Wang, Y. X., Mai, T., Porpiglia, E., Lund, P. J., Markov, G., Garcia, B. A., Bendall, S. C., Angelo, M., & Blau, H. M. (2019). Glucose Metabolism Drives Histone Acetylation Landscape Transitions that Dictate Muscle Stem Cell Function. Cell Reports, 27(13), 3939-3955.e6. https://doi.org/10.1016/j.celrep.2019.05.092

  • Wang, Y. X., Palla, A. R., Ho, A. T. V., Robinson, D. C. L., Ravichandran, M., Markov, G. J., Mai, T., Still, C., Balsubramani, A., Nair, S., Holbrook, C. A., Yang, A. V., Kraft, P. E., Su, S., Burns, D. M., Yucel, N. D., Qi, L. S., Kundaje, A., & Blau, H. M. (2025). Multiomic profiling reveals that prostaglandin E2 reverses aged muscle stem cell dysfunction, leading to increased regeneration and strength. Cell Stem Cell, 32(7), 1154-1169.e9. https://doi.org/10.1016/j.stem.2025.05.012

Related Episodes Contact

Jaksot(173)

Evolutionary Epigenetic Clocks and Epigenetic Inheritance in Plants (Frank Johannes)

Evolutionary Epigenetic Clocks and Epigenetic Inheritance in Plants (Frank Johannes)

In this episode of the Epigenetics Podcast, we talked with Dr. Frank Johannes from the Technical University of Munich in Freising about his work on evolutionary clocks and epigenetic inheritance in pl...

24 Huhti 202539min

Neuroepigenetic Mechanisms and Primate Epigenome Evolution (Boyan Bonev)

Neuroepigenetic Mechanisms and Primate Epigenome Evolution (Boyan Bonev)

In this episode of the Epigenetics Podcast, we talked with Boyan Bonev from the HelmholtzZetrum in Munich about his work on neuroepigenetics, focusing on gene regulation, chromatin architecture, and p...

10 Huhti 202545min

The Role of H3K4me3 in Embryonic Development (Eva Hörmanseder)

The Role of H3K4me3 in Embryonic Development (Eva Hörmanseder)

In this episode of the Epigenetics Podcast, we talked with Dr. Eva Hörmanseder from the HelmholtzZentrum in Munich about her work on epigenetic mechanisms in cellular memory and gene regulation. In th...

27 Maalis 202537min

Using RICC-Seq to Probe Short Range Chromatin Folding (Viviana Risca)

Using RICC-Seq to Probe Short Range Chromatin Folding (Viviana Risca)

In this episode of the Epigenetics Podcast, we talked with Viviana Risca from Rockefeller University about her work on RICC-Seq and how it's used to probe DNA-DNA contacts in intact or fixed cells usi...

13 Maalis 202546min

The Mechanism of ATP-dependent Remodelers and HP1 Gene Silencing (Geeta Narlikar)

The Mechanism of ATP-dependent Remodelers and HP1 Gene Silencing (Geeta Narlikar)

In this episode of the Epigenetics Podcast, we talked with Geeta Narlikar from UCSF about her work on chromatin remodeling, Heterochromatin Protein 1, and the molecular mechanisms that influence the g...

27 Helmi 202539min

Polycomb Proteins, Gene Regulation, and Genome Organization in Drosophila (Giacomo Cavalli)

Polycomb Proteins, Gene Regulation, and Genome Organization in Drosophila (Giacomo Cavalli)

In this episode of the Epigenetics Podcast, we talked with Giacomo Cavalli from the Institute of Human Genetics in Montpellier about his work on critical aspects of epigenetic regulation, particularly...

13 Helmi 202544min

The Interplay of Nutrition, Metabolic Pathways, and Epigenetic Regulation (Ferdinand von Meyenn)

The Interplay of Nutrition, Metabolic Pathways, and Epigenetic Regulation (Ferdinand von Meyenn)

In this episode of the Epigenetics Podcast, we talked with Ferdinand von Meyenn from ETH Zürich about his work on the interplay of nutrition, metabolic pathways, and epigenetic regulation. To start Dr...

23 Tammi 202548min

Single-Molecule Adenine Methylated Oligonucleosome Sequencing Assay (SAMOSA) (Vijay Ramani)

Single-Molecule Adenine Methylated Oligonucleosome Sequencing Assay (SAMOSA) (Vijay Ramani)

In this episode of the Epigenetics Podcast, we talked with Vijay Ramani from the Gladstone Institute about his work on Single-Molecule Adenine Methylated Oligonucleosome Sequencing Assay (SAMOSA). Our...

9 Tammi 202552min

Suosittua kategoriassa Tiede

rss-mita-tulisi-tietaa
rss-poliisin-mieli
tiedekulma-podcast
rss-tiedetta-vai-tarinaa
rss-lihavuudesta-podcast
hippokrateen-vastaanotolla
rss-tervetta-skeptisyytta
utelias-mieli
koodikahvit
rss-duodecim-lehti
rss-astetta-parempi-elama-podcast
rss-metsantuntijat-podcast
university-of-eastern-finland
mielipaivakirja
radio-antro
rss-ranskaa-raakana
rss-ylistys-elaimille
rss-sosiopodi
rss-kasvikutsut
rss-miljonaarien-tasavalta