Please use this identifier to cite or link to this item: https://dora.health.qld.gov.au/qldresearchjspui/handle/1/6017
Title: A novel transcriptional signature identifies T-cell infiltration in high-risk paediatric cancer
Authors: Mayoh, Chelsea
Gifford, Andrew J.
Terry, Rachael
Lau, Loretta M. S.
Wong, Marie
Rao, Padmashree
Shai-Hee, Tyler
Saletta, Federica
Khuong-Quang, Dong-Anh
Qin, Vicky
Mateos, Marion K.
Meyran, Deborah
Miller, Katherine E.
Yuksel, Aysen
Mould, Emily V. A.
Bowen-James, Rachel
Govender, Dinisha
Senapati, Akanksha
Zhukova, Nataliya
Omer, Natacha
Dholaria, Hetal
Alvaro, Frank
Tapp, Heather
Diamond, Yonatan
Pozza, Luciano Dalla
Moore, Andrew S. 
Nicholls, Wayne 
Gottardo, Nicholas G.
McCowage, Geoffrey
Hansford, Jordan R.
Khaw, Seong-Lin
Wood, Paul J.
Catchpoole, Daniel
Cottrell, Catherine E.
Mardis, Elaine R.
Marshall, Glenn M.
Tyrrell, Vanessa
Haber, Michelle
Ziegler, David S.
Vittorio, Orazio
Trapani, Joseph A.
Cowley, Mark J.
Neeson, Paul J.
Ekert, Paul G.
Issue Date: 2023
Source: Genome medicine, 2023 (15) 1 p.20
Pages: 20
Journal Title: Genome medicine
Abstract: Background: Molecular profiling of the tumour immune microenvironment (TIME) has enabled the rational choice of immunotherapies in some adult cancers. In contrast, the TIME of paediatric cancers is relatively unexplored. We speculated that a more refined appreciation of the TIME in childhood cancers, rather than a reliance on commonly used biomarkers such as tumour mutation burden (TMB), neoantigen load and PD-L1 expression, is an essential prerequisite for improved immunotherapies in childhood solid cancers.; Methods: We combined immunohistochemistry (IHC) with RNA sequencing and whole-genome sequencing across a diverse spectrum of high-risk paediatric cancers to develop an alternative, expression-based signature associated with CD8 + T-cell infiltration of the TIME. Furthermore, we explored transcriptional features of immune archetypes and T-cell receptor sequencing diversity, assessed the relationship between CD8 + and CD4 + abundance by IHC and deconvolution predictions and assessed the common adult biomarkers such as neoantigen load and TMB.; Results: A novel 15-gene immune signature, Immune Paediatric Signature Score (IPASS), was identified. Using this signature, we estimate up to 31% of high-risk cancers harbour infiltrating T-cells. In addition, we showed that PD-L1 protein expression is poorly correlated with PD-L1 RNA expression and TMB and neoantigen load are not predictive of T-cell infiltration in paediatrics. Furthermore, deconvolution algorithms are only weakly correlated with IHC measurements of T-cells.; Conclusions: Our data provides new insights into the variable immune-suppressive mechanisms dampening responses in paediatric solid cancers. Effective immune-based interventions in high-risk paediatric cancer will require individualised analysis of the TIME. (© 2023. The Author(s).)
DOI: 10.1186/s13073-023-01170-x
Resources: https://search.ebscohost.com/login.aspx?direct=true&AuthType=ip,athens&db=mdc&AN=37013636&site=ehost-live
Appears in Sites:Children's Health Queensland Publications

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