Royal College of Surgeons in Ireland
Browse
1/1
2 files

Simulating and predicting cellular and in vivo responses of colon cancer to combined treatment with chemotherapy and IAP antagonist Birinapant/TL32711.

Version 2 2022-02-25, 09:24
Version 1 2019-11-23, 10:34
journal contribution
posted on 2019-11-23, 10:34 authored by Nyree Crawford, Manuela Salvucci, Christian T. Hellwig, Frank A. Lincoln, Ruth E. Mooney, Carla L O'Connor, Jochen HM Prehn, Daniel B Longley, Markus Rehm

Apoptosis resistance contributes to treatment failure in colorectal cancer (CRC). New treatments that reinstate apoptosis competency have potential to improve patient outcome but require predictive biomarkers to target them to responsive patient populations. Inhibitor of apoptosis proteins (IAPs) suppress apoptosis, contributing to drug resistance; IAP antagonists such as TL32711 have therefore been developed. We developed a systems biology approach for predicting response of CRC cells to chemotherapy and TL32711 combinations in vitro and in vivo. CRC cells responded poorly to TL32711 monotherapy in vitro; however, co-treatment with 5-fluorouracil (5-FU) and oxaliplatin enhanced TL32711-induced apoptosis. Notably, cells from genetically identical populations responded highly heterogeneously, with caspases being activated both upstream and downstream of mitochondrial outer membrane permeabilisation (MOMP). These data, combined with quantities of key apoptosis regulators were sufficient to replicate in vitro cell death profiles by mathematical modelling. In vivo, apoptosis protein expression was significantly altered, and mathematical modelling for these conditions predicted higher apoptosis resistance that could nevertheless be overcome by combination of chemotherapy and TL32711. Subsequent experimental observations agreed with these predictions, and the observed effects on tumour growth inhibition correlated robustly with apoptosis competency. We therefore obtained insights into intracellular signal transduction kinetics and their population-based heterogeneities for chemotherapy/TL32711 combinations and provide proof-of-concept that mathematical modelling of apoptosis competency can simulate and predict responsiveness in vivo. Being able to predict response to IAP antagonist-based treatments on the background of cell-to-cell heterogeneities in the future might assist in improving treatment stratification approaches for these emerging apoptosis-targeting agents.

Funding

European Union (FP7 APO-DECIDE) Science Foundation Ireland/Department for Employment and Learning Northern Ireland Investigator Programme (14/IA/2582; 13/IA/1881) Irish Research Council (GOIPD/2013/102; GOIPG/2014/1299) (FOR2036, MO 3226/1-1)

History

Comments

The original article is available at https://www.nature.com

Published Citation

Crawford N, Salvucci M, Hellwig CT, Lincoln FA, Mooney RE, O'Connor CL, Prehn JH, Longley DB, Rehm M.Simulating and predicting cellular and in vivo responses of colon cancer to combined treatment with chemotherapy and IAP antagonist Birinapant/TL32711. Cell Death and Differentiation.2018;Mar 2[epub]

Publication Date

2018-03-02

Publisher

Nature Publishing Group

PubMed ID

29500433

Usage metrics

    Royal College of Surgeons in Ireland

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC