activity
20202026
most citedUnderstanding how chromatin folding and enzyme competition affect rugged epigenetic landscapes

2 citations · 3 across the 5 of their papers we have counts for

collaborators

5 papers

q-bio.TO2026

Adaptive therapy under parametric, structural, and measurement uncertainty

Alexander P Browning, Rebecca M Crossley, Ryan J Murphy +2

Adaptive therapy has emerged as a promising treatment strategy that exploits within-tumour competition to delay disease progression. Implementation, however, typically relies on in…

q-bio.CB2026

Parameter Identifiability Under Limited Experimental Data in Age-Structured Models of the Cell Cycle

Ruby E. Nixson, Helen M. Byrne, Joe M. Pitt-Francis +1

The mitotic cell cycle governs DNA replication and cell division. The effectiveness of radiotherapy and chemotherapy depends on cell-cycle position, with increased resistance durin…

q-bio.QM20251 cited

Stochastic modelling reveals that chromatin folding buffers epigenetic landscapes against sirtuin depletion during DNA damage

Daria Stepanova, Helen M. Byrne, Tomás Alarcón

Epigenetic landscapes, represented by patterns of chemical modifications on histone tails, are essential for maintaining cell identity and tissue homeostasis. These landscapes are…

q-bio.QM20242 cited

Understanding how chromatin folding and enzyme competition affect rugged epigenetic landscapes

Daria Stepanova, Meritxell Brunet Guasch, Helen M. Byrne +1

Epigenetics plays a key role in cellular differentiation and maintaining cell identity, enabling cells to regulate their genetic activity without altering the DNA sequence. Epigene…

physics.bio-ph2020

The role of mechanics in the growth and homeostasis of the intestinal crypt

Axel A. Almet, Helen M. Byrne, Philip K. Maini +1

We present a mechanical model of tissue homeostasis that is specialised to the intestinal crypt. Growth and deformation of the crypt, idealised as a line of cells on a substrate, a…