Developmental origins of childhood leukaemia

Lead Research Organisation: University of Oxford
Department Name: UNLISTED

Abstract

Although it is possible to cure 90% of children with the commonest type of blood cancer (leukaemia), unfortunately there are some children who develop leukaemia who cannot be cured. These are called 'high-risk' leukaemias and are usually associated with abnormalities of particular genes. A better understanding of these treatment resistant leukaemias is required, so that we can cure every child with leukaemia.

We have developed a model of infant leukaemia by creating an MLL leukaemia gene in normal cells so that those cells behave just like infant leukaemia. We now want to create similar models for other high-risk childhood leukaemias by transforming normal cells. We will use these models to understand how these leukaemias develop, the pathways that drive aggressive disease and test new drugs for treatment. Previous research in our lab has shown that in some cases, leukaemic cells depend on genes that are turned on or off by mistake.

In this project, we want to use leukaemia cells from the models we develop, and from patients to understand how these genes contributes to their ability to resist treatment. To do this we will analyse how normal cells change during and after transformation, and whether suppressing these pathways can make the leukaemia less aggressive. The results of these experiments will inform us whether we can use certain targets to develop novel
effective treatments, particularly by targeting it as a ‘label’ unique to treatment-resistant leukaemia cells.

Technical Summary

Many childhood leukaemias originate in utero, suggesting cellular, molecular and epigenetic features of human fetal cells make them particularly susceptible to leukaemic transformation. Human haematopoiesis is a dynamic process that starts in utero. In past and ongoing work we are systematically characterising ontogeny-related properties of human haematopoietic stem and progenitor cells (HSPC), with a particular focus on B lymphopoiesis, and have developed a model of infant ALL by transforming primary human fetal HSPC. The developmental stage-specific cellular and molecular characteristics of fetal and postnatal progenitors are likely to determine the biology of ALL at different ages. Developing leukaemia models using primary human HSPC through ontogeny, will enable us to unravel the mechanisms that initiate and maintain ALL. Our studies feed into translational research projects including developing novel immunotherapies and small molecule inhibitors; and
molecular profiling of patient samples via national and international infant ALL trials.

I hypothesise that identification of key developmental stage- or leukaemia-specific mechanisms will allow these to
be targeted for treatment. The overarching aim of my research is to improve the outcomes of children with high risk ALL using these strategies.

Specific Aims:
1. How does human haematopoiesis evolve from embryonic life through to adulthood? Pinpointing the molecular basis of embryonic/fetal specific B lymphoid development in humans using functional,
transcriptomic and chromatin accessibility assays.
2. How does the developmental stage at which a leukaemia initiates affect the biology of the disease? To investigate whether developmental stage-specific characteristics of human HSPC determine the biology of poor prognosis ALL, we will develop models of high-risk childhood leukaemia (TCF3-HLF+; BCR-ABL1+ and BCR-ABL-‘like’ ALL) by transforming fetal and postnatal HSPC using CRISPR based approaches. These models will be characterised using functional and molecular assays.
3. What are the mechanisms that drive treatment-resistant leukaemias? Our leukaemia models allow direct comparison of cell populations pre- and post-transformation in humans, enabling key dependencies required for leukaemia initiation and progression to be identified. We will investigate molecular mechanisms using transcriptomic, genomic and epigenetic techniques, including at single cell level.
4. Can we leverage this knowledge to develop more effective therapy? The leukaemia models will be taken forward for preclinical studies to identify pan-leukaemic/cancer targets, as well as key developmental stage-specific targets that can transform outcomes in treatment-refractory leukaemias. Commercialisation pipelines developed through Deep Blue Therapeutics (collaboration T Milne), will be made available for any new therapeutic targets identified.

Clinical:
i) Co-PI on national infant ALL study;
ii) developing an adapted protocol for treatment of infant ALL in India (funded by Wellcome Trust),
iii) incorporating scientific studies as part of a consortium for the upcoming international infant ALL study.

Related Projects

Project Reference Relationship Related To Start End Award Value
MC_UU_00029/1 01/04/2022 31/03/2027 £4,671,000
MC_UU_00029/2 Transfer MC_UU_00029/1 01/04/2022 31/03/2027 £2,140,000
MC_UU_00029/3 Transfer MC_UU_00029/2 01/04/2022 31/03/2027 £3,857,000
MC_UU_00029/4 Transfer MC_UU_00029/3 01/04/2022 31/03/2027 £1,339,000
MC_UU_00029/5 Transfer MC_UU_00029/4 01/04/2022 31/03/2027 £2,875,000
MC_UU_00029/6 Transfer MC_UU_00029/5 01/04/2022 31/03/2027 £1,968,000
MC_UU_00029/7 Transfer MC_UU_00029/6 01/04/2022 31/03/2027 £1,450,000
MC_UU_00029/8 Transfer MC_UU_00029/7 01/04/2022 31/03/2027 £2,507,000
MC_UU_00029/9 Transfer MC_UU_00029/8 01/04/2022 31/03/2027 £3,688,000
 
Title Infant leukaemia Research animation video 
Description Animation video describing the research in our lab- launched on Childhood Cancer awareness month (Sep 2022) 
Type Of Art Film/Video/Animation 
Year Produced 2022 
Impact Engagement with other researchers and the public 
URL https://www.youtube.com/watch?v=4YVzGn-MAcc&list=PLNKAavW6JtUzkGQMqePahFBfrnr1iNOeM&index=1
 
Description Backtracking Leukemia-Typical Somatic Alterations in Cord Blood at Single-cell Resolution.
Amount $2,499,000 (USD)
Funding ID R01CA262012 
Organisation National Institutes of Health (NIH) 
Sector Public
Country United States
Start 08/2021 
End 07/2026
 
Description CCLG Acute Lymphoblastic Leukaemia (ALL) grant scheme
Amount £99,400 (GBP)
Organisation Children's Cancer and Leukaemia Group (CCLG) 
Sector Charity/Non Profit
Country United Kingdom
Start 08/2023 
End 07/2026
 
Description DPhil in Cancer Science Programme
Amount £140,000 (GBP)
Funding ID SEBCATP-2022/100011 
Organisation Cancer Research UK 
Sector Charity/Non Profit
Country United Kingdom
Start 08/2022 
End 07/2025
 
Description Dissecting Treatment Resistance in infant acute lymphoblastic leukaemia (Co-PI)
Amount £279,998 (GBP)
Funding ID 3471 
Organisation Blood Cancer UK 
Sector Charity/Non Profit
Country United Kingdom
Start 04/2023 
End 03/2025
 
Description NIH Oxford-Cambridge Scholars Program
Amount £183,360 (GBP)
Organisation National Institutes of Health (NIH) 
Sector Public
Country United States
Start 08/2022 
End 07/2026
 
Title Single Cell transcriptomics assay pipeline 
Description Collaborated in developing SingCellaR; a bioinformatics pipeline for sc datasets 
Type Of Material Technology assay or reagent 
Year Produced 2022 
Provided To Others? Yes  
Impact doi: 10.1016/j.xpro.2022.101266. doi: 10.1016/j.celrep.2021.109698 
 
Title Single cell transcriptomic data analysis pipeline 
Description Collaborated in developing SingCellaR; a bioinformatics pipeline for sc datasets 
Type Of Material Data analysis technique 
Year Produced 2022 
Provided To Others? Yes  
Impact doi: 10.1016/j.xpro.2022.101266 doi: 10.1016/j.celrep.2021.109698 
 
Description Dr Jack Bartram, Great Ormond Street Hospital London 
Organisation Great Ormond Street Hospital (GOSH)
Department Department of Haematology and Oncology
Country United Kingdom 
Sector Hospitals 
PI Contribution Co-PI on national infant ALL study Obtain funding to support research staff within diagnostic lab for infant ALL study
Collaborator Contribution Co-PI on national infant ALL study Co-PI on research funding
Impact Co-PI on national infant ALL study Co-PI on research funding from Azaylia Foundation Publication: doi: 10.1038/s41467-021-27270-z
Start Year 2019
 
Description Dr Phil Ancliff, Great Ormond Street Hospital 
Organisation Great Ormond Street Hospital (GOSH)
Country United Kingdom 
Sector Hospitals 
PI Contribution Collaboration in project titled: Molecular and functional characteristics of leukaemia-initiating cells in infant ALL and Wellcome Trust CRCDF and CRUK Oxford DPhil studentship
Collaborator Contribution Collaboration in project titled: Molecular and functional characteristics of leukaemia-initiating cells in infant ALL Provision of diagnostic data/ flow cytometry support and infant ALL samples (to be obtained) Joint supervision of DPhil student (2020-2024)- CRUK funded
Impact Publications: doi: 10.1038/s41467-021-27270-z doi: 10.1038/s41375-020-0808-y doi: 10.1182/blood.2019001289 doi: 10.1084/jem.20181625
Start Year 2014
 
Description Prof A Karadimitris, Imperial College London 
Organisation Imperial College London
Department Centre for Haematology
Country United Kingdom 
Sector Academic/University 
PI Contribution Lead PI for CRUK Childhood Cancer Innovation award (2021) Ongoing: collaboration on fetal pathogenesis of childhood leukaemia and generation of leukaemia models
Collaborator Contribution Immunotherapeutic approaches to treat resistant leukaemia: designing bi-specific CAR-iNKT for infant leukaemia. (Co- Lead PI for CRUK Childhood Cancer Innovation award (2021))
Impact Recent publications: doi: 10.1016/j.celrep.2021.109698 doi: 10.1126/scitranslmed.abf0113 doi: 10.1182/blood.2019001289 doi: 10.1016/j.clim.2017.06.005 doi: 10.1186/s13059-016-0939-7 doi: 10.1073/pnas.1211405109
Start Year 2011
 
Description Prof Adam Mead, Oxford Single Cell Biology Consortium 
Organisation University of Oxford
Department Weatherall Institute of Molecular Medicine (WIMM)
Country United Kingdom 
Sector Academic/University 
PI Contribution Collaboration on project titled: Molecular and functional characteristics of leukaemia-initiating cells in infant ALL Single cell analysis of human fetal haematopoietic stem and progenitor cells NIH-R01 award: ReCORD study Co-supervision of 1 DPhil student (ongoing)
Collaborator Contribution Collaboration on project titled: Molecular and functional characteristics of leukaemia-initiating cells in infant ALL Single cell analysis of human fetal and adult haematopoietic stem and progenitor cells Joint grants as Co-PIs -Medical Research Council Discovery award (2016-2018): Identification and characterisation of cellular targets for genome editing of foetal haematopoietic stem/progenitor cells. Role: Co-PI (A Mead, I Roberts, A Roy). -University of Oxford John Fell Fund grant (2017-2020): Genome and transcriptome analysis of patients with rare stem and myeloid disorders. Role: Co-PI (A Mead, I Roberts, Supat Thongjeua, A Roy, B Psaila). -Co-Investigator on NIH-R01 award
Impact Publications arising: doi: 10.1038/s41591-022-01793-4 doi: 10.1182/blood.2021014840 doi: 10.1016/j.xpro.2022.101266 doi: 10.1038/s41467-021-27270-z doi: 10.1016/j.celrep.2021.109698 doi: 10.1126/scitranslmed.abf0113 doi: 10.1084/jem.20180853 doi: 10.1182/blood.2019001289 doi: 10.1186/s13059-016-0939-7 doi: 10.1073/pnas.1211405109
Start Year 2015
 
Description Prof Adam Wilkinson, MHU WIMM, University of Oxford 
Organisation University of Oxford
Department Medical Sciences Division
Country United Kingdom 
Sector Academic/University 
PI Contribution Collaboration to study and validate human HSC properties and function, as well as CRISPR screening in leukaemia models developed by my lab. Collaboration for cord blood stem cell research- including providing samples and undertaking research under appropriate ethics license
Collaborator Contribution Prof Wilkinson is a co-supervisor for an NIH-OxCam DPhil student in my lab Co-PIs on a Blood Cancer UK project grant (2023-2026)
Impact Successful project grant award from Blood Cancer UK
Start Year 2022
 
Description Prof Adam de Smith, USC 
Organisation University of Southern California
Department Department of Preventive Medicine
Country United States 
Sector Academic/University 
PI Contribution Co-Investigator on NIH R01 award: ReCORD study Joint application to access samples for analysis Research project: Investigating the role of genetic variation in risk of childhood acute lymphoblastic leukaemia in Down syndrome.
Collaborator Contribution Backtracking of childhood leukaemia in cord blood, sample collection and WGS Sequencing of samples Epigenetic analysis of DS neonatal blood samples
Impact Publications: doi: 10.1182/bloodadvances.2022007098 doi: 10.1038/s41467-021-21064-z doi: 10.1182/bloodadvances.2019001216
Start Year 2017
 
Description Prof Benedikt Kessler 
Organisation University of Oxford
Department Nuffield Department of Medicine
Country United Kingdom 
Sector Academic/University 
PI Contribution Collaboration to study the global protein profile of human mesenchymal stromal cells.
Collaborator Contribution Collaboration to study the global protein profile of human mesenchymal stromal cells.
Impact Current analyses ongoing
Start Year 2016
 
Description Prof Bethan Psaila, University of Oxford 
Organisation University of Oxford
Department Medical Sciences Division
Country United Kingdom 
Sector Academic/University 
PI Contribution Studying changes in normal haematopoiesis through ontogeny, and understanding the role of the bone marrow microenvironment in health and disease
Collaborator Contribution single cell assays, developing best models for BM microenvironment including 3D organoids to support normal and malignant haematopoiesis
Impact Currently oint supervisors for a CRUK DPhil studentship. Publications: doi: 10.1158/2159-8290.CD-22-0199 doi: 10.1038/s41591-022-01793-4 doi: 10.1182/blood.2021014840 doi: 10.1016/j.xpro.2022.101266 doi: 10.1016/j.celrep.2021.109698 doi: 10.1126/scitranslmed.abf0113 doi: 10.1182/blood.2020005357 doi: 10.1182/blood.2019002301 doi: 10.1182/blood.2019001289
Start Year 2018
 
Description Prof Irene Roberts, University of Oxford 
Organisation University of Oxford
Country United Kingdom 
Sector Academic/University 
PI Contribution Collaboration on research in human fetal haematopoiesis and its perturbation in Down syndrome Generation of leukaemia models using human fetal cells Joint grant funding as Co-PIs -Medical Research Council Discovery award (2016-2018): Identification and characterisation of cellular targets for genome editing of foetal haematopoietic stem/progenitor cells. Role: Co-PI (A Mead, I Roberts, A Roy). -University of Oxford John Fell Fund grant (2017-2020): Genome and transcriptome analysis of patients with rare stem and myeloid disorders. Role: Co-PI (A Mead, I Roberts, Supat Thongjeua, A Roy, B Psaila). - NIH R01: ReCORD study Joint supervision of 5 DPhil students (3 completed, 2 ongoing)
Collaborator Contribution Collaboration on research in human fetal haematopoiesis and its perturbation in Down syndrome
Impact Publications: doi: 10.1182/bloodadvances.2022007098 doi: 10.1182/blood.2021014840 doi: 10.1038/s41467-021-27270-z doi: 10.1038/s41586-021-03929-x doi: 10.1016/j.celrep.2021.109698 doi: 10.1126/scitranslmed.abf0113 doi: 10.1101/gr.268490.120 doi: 10.1038/s41467-021-21064-z doi: 10.1084/jem.20180853 doi: 10.1182/blood.2020005357 doi: 10.1038/s41375-020-0808-y doi: 10.1182/bloodadvances.2019001216 doi: 10.1182/blood.2019002301 doi: 10.1038/s41586-019-1652-y doi: 10.1182/blood.2019001289 doi: 10.3324/haematol.2018.206375 doi: 10.1016/j.clim.2017.06.005 doi: 10.1016/j.celrep.2016.12.054 doi: 10.1186/s13059-016-0939-7 doi: 10.15252/embr.201439583 doi: 10.1182/blood-2013-07-515148 doi: 10.1016/j.bcmd.2013.07.008 doi: 10.4161/cc.23667 doi: 10.1073/pnas.1211405109 doi: 10.1016/j.siny.2012.02.010
Start Year 2011
 
Description Prof Logan Spector 
Organisation University of Minnesota Medical School
Country United States 
Sector Academic/University 
PI Contribution Co-Investigator on NIH R01 award: ReCORD study Single cell assays for backtracking studies in childhood leukaemia using ddPCR and TARGET-seq in cord blood samples stored at birth from children with leukaemia.
Collaborator Contribution Sample collection and study coordination Epidemiological aspects of study
Impact N/A
Start Year 2021
 
Description Prof M Haniffa 
Organisation Newcastle University
Country United Kingdom 
Sector Academic/University 
PI Contribution single cell analysis of human fetal haematopoiesis and its perturbation
Collaborator Contribution single cell analysis of human fetal haematopoiesis, immune development (HCA consortium) Collaborator on CRUK Childhood Cancer Innovation award
Impact Publications: doi: 10.1038/s41586-021-03929-x doi: 10.1038/s41586-019-1652-y
Start Year 2017
 
Description Prof Pablo Menendez, University of Barcelona 
Organisation University of Barcelona
Country Spain 
Sector Academic/University 
PI Contribution Exchanging research data to further the understanding of infant leukaemia Part of international scientific consortium for infant ALL trial: Interfant
Collaborator Contribution Exchanging research data to further the understanding of infant leukaemia Part of international scientific consortium for infant ALL trial: Interfant
Impact Publications: doi: 10.1182/blood.2021014840 doi: 10.1038/s41375-020-0808-y doi: 10.1182/blood.2019001289 doi: 10.3324/haematol.2018.206375
Start Year 2017
 
Description Prof T Milne, University of Oxford 
Organisation University of Oxford
Department Weatherall Institute of Molecular Medicine (WIMM)
Country United Kingdom 
Sector Academic/University 
PI Contribution Collaboration in understanding the pathogenesis of MLL-AF4 positive ALL- provision of fetal samples; flow cytometry, tissue culture techniques and generating leukaemia models Co-PI on Blood Cancer UK grant (2023-2025), held by T Milne
Collaborator Contribution Collaboration in understanding the pathogenesis of MLL-AF4 positive ALL- exploring epigenetic mechanisms Translational research including targeted therapy development Epigenetic mechanisms in targeted Immunotherapy (Co-investigator in CRUK Childhood Cancer Innovation award, and CCLG project grant held by A Roy) Joint supervision of 2 DPhil students (1 completed, 1 ongoing) and one postdoc
Impact Recent publications: doi: 10.1038/s41467-021-27270-z doi: 10.1101/gr.268490.120 doi: 10.1182/blood.2020005357 doi: 10.1038/s41375-020-0808-y doi: 10.1182/blood.2019001289 doi: 10.1016/j.celrep.2016.12.054 Co- PIs on 3 active research grants
Start Year 2015
 
Description Prof Vaskar Saha, Tata Medical Centre KOlkata, India 
Organisation Tata Medical Center
Country India 
Sector Hospitals 
PI Contribution Integration of research findings into clinical practice through national/international childhood leukaemia trials, including low and middle-income countries. I have begun to put in place a network to take forward my aim of creating a low-cost model of care for iALL in resource-poor settings.
Collaborator Contribution Input about co-culture systems and phenotypic screening of patient samples. Setting up treatment networks
Impact Currently setting up a network of treatment centres for managing infant leukaemia in India
Start Year 2019
 
Description Azaylia Foundation lab visit 
Form Of Engagement Activity Participation in an open day or visit at my research institution
Part Of Official Scheme? No
Geographic Reach National
Primary Audience Supporters
Results and Impact Departmental and lab tour for CEO and founders/ staff of Azaylia Foundation. Met other research team members and students
Year(s) Of Engagement Activity 2022
 
Description Meeting Blood Cancer UK representatives 
Form Of Engagement Activity Participation in an open day or visit at my research institution
Part Of Official Scheme? No
Geographic Reach National
Primary Audience Supporters
Results and Impact Meeting Research Programme manager at Blood Cancer UK at WIMM, and discussions about research strategy, lab tour
Year(s) Of Engagement Activity 2022
 
Description PPI workshop 
Form Of Engagement Activity Participation in an activity, workshop or similar
Part Of Official Scheme? No
Geographic Reach National
Primary Audience Professional Practitioners
Results and Impact PPI workshop through Children's Leukaemia Research UK to better understand how to integrate PPI at early stages of framing a research project.
Year(s) Of Engagement Activity 2022
 
Description Participated in charity event 
Form Of Engagement Activity Participation in an activity, workshop or similar
Part Of Official Scheme? No
Geographic Reach National
Primary Audience Supporters
Results and Impact Sep 2022: Childhood Cancer Awareness month: Lab team participated in 'Muck you childhood Cancer event' organised for by Azaylia Foundation to raise awareness and funds for childhood cancer.
Year(s) Of Engagement Activity 2022
URL https://www.ourcommunityspace.co.uk/muck-you
 
Description Visit by CRIS Cancer Foundation 
Form Of Engagement Activity Participation in an open day or visit at my research institution
Part Of Official Scheme? No
Geographic Reach International
Primary Audience Supporters
Results and Impact Met representatives and CEO of CRIS Cancer Foundation, Spain who support CRUK Oxford Centre: meeting students supported by CRUK and lab tour
Year(s) Of Engagement Activity 2022
 
Description video animation 
Form Of Engagement Activity A broadcast e.g. TV/radio/film/podcast (other than news/press)
Part Of Official Scheme? No
Geographic Reach International
Primary Audience Other audiences
Results and Impact Sep: Childhood Cancer Awareness month: We released an animation video for the general public and other researchers, explaining the research we carry out in our lab
Year(s) Of Engagement Activity 2022
URL https://www.youtube.com/watch?v=4YVzGn-MAcc