activity
20162026
most citedMathematical modelling of the interaction between cancer cells and an oncolytic virus: insights into the effects of treatment protocols

80 citations · 256 across the 11 of their papers we have counts for

collaborators
Showing 2021Show all

5 papers · 1 filter

math.DS2021

The role of antigen-competitive dynamics in regulating the immune response

Pantea Pooladvand, Peter S. Kim, Barbara Fazekas de St Groth

The clonal expansion of T cells during an infection is tightly regulated to ensure an appropriate immune response against invading pathogens. Although experiments have mapped the t…

math.DS2021★ 28 cited

The role of viral infectivity in oncolytic virotherapy outcomes: A mathematical study

Pantea Pooladvand, Chae-Ok Yun, A-Rum Yoon +2

A model capturing the dynamics between virus and tumour cells in the context of oncolytic virotherapy is presented and analysed. The ability of the virus to be internalised by unin…

math.DS2021★ 7 cited

Mathematical model for delayed responses in immune checkpoint blockades

Collin Y. Zheng, Peter S. Kim

We introduce a set of ordinary differential equations (ODE) that qualitatively reproduces delayed responses observed in immune checkpoint blockade therapy (e.g. anti-CTLA-4 Ipilimu…

math.DS2021★ 52 cited

Oncolytic virotherapy for tumours following a Gompertz growth law

Adrianne L. Jenner, Peter S. Kim, Federico Frascoli

We present a mathematical model describing oncolytic virotherapy treatment of a tumour that proliferates according to a Gompertz growth function. We present local stability analysi…

math.DS2021★ 3 cited

Effects of mutations and immunogenicity on outcomes of anti-cancer therapies for secondary lesions

Elena Piretto, Marcello Delitala, Peter S. Kim +1

Cancer development is driven by mutations and selective forces, including the action of the immune system and interspecific competition. When administered to patients, anti-cancer…