TY - JOUR
T1 - Do we need B7-H3 immunohistochemistry for the inclusion of children with high-grade central nervous system tumors in clinical trials targeting B7-H3?
AU - Kranendonk, Mariëtte E.G.
AU - Hoogendijk, Raoull
AU - Lammers, Julie A.S.
AU - Van Der Lugt, Jasper
AU - Tolboom, Nelleke
AU - Van Mastrigt, Esther
AU - De Boed, Ella
AU - Van Den Broek, Thijs J.M.
AU - Kester, Lennart A.
AU - Van Vuurden, Dannis G.
AU - Tops, Bastiaan B.J.
AU - Hoving, Eelco W.
AU - Wesseling, Pieter
AU - Plasschaert, Sabine L.A.
N1 - Publisher Copyright:
© 2025 The Author(s). Published by Oxford University Press on behalf of the Society for Neuro-Oncology. All rights reserved.
PY - 2025/7/1
Y1 - 2025/7/1
N2 - Background Pediatric high-grade central nervous system (pHG-CNS) tumors are the leading cause of childhood cancer-related deaths, partly due to poor response to standard treatments. B7-H3 is reportedly expressed in pHG-CNS tumors, making antigen-targeting therapies, including anti-B7-H3 chimeric antigen receptor T-cell (CAR-T) therapy, promising. However, given substantial inter-tumoral protein expression diversity in CNS tumors, it's unclear which patients might benefit from these treatments. Therefore, we studied B7-H3 expression in a large set of pHG-CNS tumors. Methods We retrospectively analyzed 136 pHG-CNS tumors (embryonal tumors (n = 44), high-grade neuroepithelial tumors (n = 4), ependymomas (n = 30),high-grade gliomas (HGGs, n = 58)) from the Princess Máxima Center for Pediatric Oncology. CD276 mRNA (encoding B7-H3) and immunohistochemical (IHC) protein expression of B7-H3 was measured and correlated to clinical-molecular data. Results Large variability of B7-H3 mRNA and protein expression was observed both between and within tumor types. Many tumors expressed B7-H3, but 30% of diffuse midline glioma H3K27-altered and ependymomas posterior fossa type A showed no or minimal expression. This variability was unrelated to patient age, tumor location, epigenetic subclass, or molecular tumor driver. B7-H3 negative cases were high in tumor cells, ruling out low tumor cell percentage as an explanation for negative staining. Conclusions Our study of B7-H3-expression in the largest pHG-CNS tumor set to date revealed significant interpatient variability and numerous negative cases. Our results urge for tumor tissue acquisition at enrollment in B7-H3 targeting therapeutic trials (including CAR-T cells) in order to thoroughly assess the value of IHC B7-H3 expression as biomarker and, ultimately, to allow for more tailored therapy.
AB - Background Pediatric high-grade central nervous system (pHG-CNS) tumors are the leading cause of childhood cancer-related deaths, partly due to poor response to standard treatments. B7-H3 is reportedly expressed in pHG-CNS tumors, making antigen-targeting therapies, including anti-B7-H3 chimeric antigen receptor T-cell (CAR-T) therapy, promising. However, given substantial inter-tumoral protein expression diversity in CNS tumors, it's unclear which patients might benefit from these treatments. Therefore, we studied B7-H3 expression in a large set of pHG-CNS tumors. Methods We retrospectively analyzed 136 pHG-CNS tumors (embryonal tumors (n = 44), high-grade neuroepithelial tumors (n = 4), ependymomas (n = 30),high-grade gliomas (HGGs, n = 58)) from the Princess Máxima Center for Pediatric Oncology. CD276 mRNA (encoding B7-H3) and immunohistochemical (IHC) protein expression of B7-H3 was measured and correlated to clinical-molecular data. Results Large variability of B7-H3 mRNA and protein expression was observed both between and within tumor types. Many tumors expressed B7-H3, but 30% of diffuse midline glioma H3K27-altered and ependymomas posterior fossa type A showed no or minimal expression. This variability was unrelated to patient age, tumor location, epigenetic subclass, or molecular tumor driver. B7-H3 negative cases were high in tumor cells, ruling out low tumor cell percentage as an explanation for negative staining. Conclusions Our study of B7-H3-expression in the largest pHG-CNS tumor set to date revealed significant interpatient variability and numerous negative cases. Our results urge for tumor tissue acquisition at enrollment in B7-H3 targeting therapeutic trials (including CAR-T cells) in order to thoroughly assess the value of IHC B7-H3 expression as biomarker and, ultimately, to allow for more tailored therapy.
KW - B7-H3
KW - antigen-targeting therapy
KW - diffuse midline glioma
KW - pediatric CNS tumor
KW - Prognosis
KW - Follow-Up Studies
KW - Humans
KW - Child, Preschool
KW - Infant
KW - Male
KW - B7 Antigens/metabolism
KW - Clinical Trials as Topic
KW - Immunohistochemistry/methods
KW - Neoplasm Grading
KW - Adolescent
KW - Female
KW - Retrospective Studies
KW - Biomarkers, Tumor/metabolism
KW - Central Nervous System Neoplasms/metabolism
KW - Child
UR - https://www.scopus.com/pages/publications/105015440774
UR - https://www.mendeley.com/catalogue/9320e1d3-f885-3a1e-b86c-b0cd5f234cdc/
U2 - 10.1093/neuonc/noaf095
DO - 10.1093/neuonc/noaf095
M3 - Article
C2 - 40207575
AN - SCOPUS:105015440774
SN - 1522-8517
VL - 27
SP - 1864
EP - 1877
JO - Neuro-Oncology
JF - Neuro-Oncology
IS - 7
ER -